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1

Musiienko, Olha, Vitalii Parii, and Oleksii Morhun. "Stress-strain state of the mandible-implant system under static loading." International Scientific and Technical conference "The Progressive Technics, Technology and Engineering Education", no. XXIII (June 6, 2023): 101–4. http://dx.doi.org/10.20535/2409-7160.2023.xxiii.279272.

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The paper represents the results of research of the stress-strain state of the mandible-implant system under static loading. Simulations and calculations were carried out for four different implant installation angles: 0°, 7°, 15° and 22°. The three-dimensional model of the mandibular segment and the implant model were created in the Spaceclaim software environment, and stress calculations were performed using ANSYS Workbench. The obtained results of the study show the influence of the angle of installation of the implant on the distribution of stresses in the mandible and the implant. The ana
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Jasim, Ali M., and Ibtihal A. Mahmood. "Flexural and Fatigue Analysis of Blend Matrix Composite Reinforced by Natural Fibers." Al-Qadisiyah Journal for Engineering Sciences 15, no. 2 (2022): 087–93. http://dx.doi.org/10.30772/qjes.v15i2.829.

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In this study, the mechanical properties, fatigue life, and endurance limit values were investigated for composite materials containing natural fiber reinforcement (flax, wool), which were arranged by 0°/90° Angle orientation and a combination of 0°/90° and 45°/-45° angle orientation, then the wool woven mixed by flax woven and unidirectional flax interfered with jute woven. Binary blends containing epoxy and polyurethane at v were mixed at various weight percent (0%, 5%, 10%, and 15 %) vacuum infusion technique was used to prepare the specimens. ANSYS Workbench was used as numerical software
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P., A. Limon Leyva, A. Figueroa Diaz R., Murillo Verduzco I., Herrera Sarellano M., and Campoy Salguero J.M. "Análisis de calidad en el proceso de engargolado lineal." Coloquio de Investigación Multidisciplinaria 7, no. 1 (2019): 1124–31. https://doi.org/10.5281/zenodo.4245231.

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El presente trabajo se enfoca en el análisis del parámetro superficial denominado arruga, el cual se presenta como un ondulamiento en la ceja de la lámina exterior que puede ser generada por una distribución de esfuerzos longitudinales no uniforme durante el proceso de engargolado. El estudio consistió en el análisis por Elemento Finito de los tres métodos de engargolado, utilizando el software comercial ANSYS Workbench 15®, para la validación experimental se realizó un diseño de experimentos para cada uno de los proceso
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Zuhair Zainy, Hayder, Luay S. Alansari, and Qasim Abbas Atiyah. "Manufacturing Functionally Graded Materials Using Centrifugal Force." Kerbala Journal for Engineering Sciences 3, no. 4 (2023): 255–74. https://doi.org/10.63463/kjes1110.

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In this work, functionally graded Materials (FGMs) were created by centrifugal force mixing polyester resin with silicon dioxide (SiO2) to create five layers, each having a thickness of 1.2 mm. Tensile composite specimens with varying volume fractions (0, 10, 15, 20, 25, and 30)% are taken before the fabrication of the FGMs specimens, and their modulus of elasticity is subsequently computed. The fourth specimen was made using the exponential equation to describe the property distribution throughout the thickness of the three-points specimen, whereas the other three specimens were made using th
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5

Zhang, Xuguang, Hexiang Zhang, Amjad Almansour, et al. "A Comprehensive Analysis of Thermal Heat Dissipation for Lithium-Ion Battery Packs." Energies 18, no. 9 (2025): 2234. https://doi.org/10.3390/en18092234.

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Effective thermal management is essential for the safe and efficient operation of lithium-ion battery packs, particularly in compact, airflow-sensitive applications such as drones. This study presents a comprehensive thermal analysis of a 16-cell lithium-ion battery pack by exploring seven geometric configurations under airflow speeds ranging from 0 to 15 m/s and integrating nano-carbon-based phase change materials (PCMs) to enhance heat dissipation. A Computational Fluid Dynamics (CFD) approach was employed using Ansys Discovery and Workbench 2024 R1 to simulate airflow and heat transfer proc
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Kapoor, Sumedha, Shobha Rodrigues, M. Mahesh, et al. "Evaluation of Stress Generated with Different Abutment Materials and Angulations under Axial and Oblique Loading in the Anterior Maxilla: Three-Dimensional Finite Element Analysis." International Journal of Dentistry 2021 (December 1, 2021): 1–11. http://dx.doi.org/10.1155/2021/9205930.

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Purpose. The aim of this study was to assess and correlate the stress distribution in an anterior maxillary implant-supported prosthesis with 0°(degree), 15°, and 25° angulated titanium and zirconia abutments using a three-dimensional (3D) finite element analysis (FEA). Materials and Methods. Six FEA models consisting of a dentate anterior maxilla with a single bone-level implant of dimension 4.2 × 10 mm placed in the region of left maxillary central incisor and abutments of dimension 4.2 mm made of titanium and zirconia each with angulation 0° (IA and IB), 15° (IIA and IIB), and 25° (IIIA and
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Wen, Chenxi, and Zhenliang Wang. "Formation and Evolution of Multi-Genetic Overpressure and Its Effect on Hydrocarbon Accumulation in the Dabei Area, Kuqa Depression, Tarim Basin, China." Energies 17, no. 24 (2024): 6263. https://doi.org/10.3390/en17246263.

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The Kuqa Foreland Basin is an important hydrocarbon-producing basin in western China. The Dabei area is an important zone for hydrocarbon accumulation. High fluid overpressures in the Lower Cretaceous Bashijiqike Formation are related to multi-genetic processes. However, the formation and evolution of pressure remain unclear, hindering the further development of oil and gas migration and accumulation. In this study, the overpressure distribution is described based on a drill stem test and mud density data. The formation and quantification of multi-genetic overpressure were evaluated based on w
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8

Musiienko, Olha, Vitalii Parii, Oleksii Morhun, and Viktor Koval. "Influence of the angle of dental implant placement on the stress-strain state of the jaw." Ukrainian Scientific Medical Youth Journal 144, no. 1 (2024): 98–104. http://dx.doi.org/10.32345/usmyj.1(144).2024.98-104.

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prosthetics on dental implants is a complex and responsible stage of treatment of patients with dental defects. The success of dental implantation depends not only on careful planning and performed surgical intervention in compliance with the requirements of the protocol, but also on the type of load on the dental implant, the choice of orthopedic design and material. Thorough preparation for prosthetics, taking into account the initial clinical situation and individual characteristics of the patient, ensures a full restoration of the dentition defect with reproduction of the chewing function.
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9

A., Harinee, Rajesh C., S. Anilkumar, Indu Raj, and Sandhya M. Raghavan. "COMPARISON OF MECHANICAL PROPERTIES OF THE IMPLANT MATERIALS- TITANIUM, ZIRCONIUM AND PEEK USING THREE DIMENSIONAL FINITE ELEMENT ANALYSIS." International Journal of Advanced Research 11, no. 02 (2023): 656–63. http://dx.doi.org/10.21474/ijar01/16294.

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Background And Objective:Dental implants have been universally accepted as the best option for prosthetic rehabilitation of missing teeth.A material of choice for manufacturing dental implants was for long time commercially pure titanium due to its excellent bio compatibility and mechanical properties. Zirconia seems to be a suitable alternative dental implant material because of its tooth like color and biocompatibility. The most promising novel alternative to titanium is polyetheretherketone (PEEK) which is a partially crystalline poly aromatic linear thermoplastic substance. The objective o
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Maxwell Obadiah, Konitufe Claudius, Godday Abu Ogar, and Chinedu Emmanuel Oshilike. "Simulating the effect of elevated temperature on the compressive strength of steel fiber reinforced concrete (SFRC) using ANSYS workbench." Global Journal of Engineering and Technology Advances 21, no. 3 (2024): 024–32. https://doi.org/10.30574/gjeta.2024.21.3.0222.

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The behavior of concrete structures at elevated temperatures is of significant importance in predicting the safety of structures in response to certain accidents or particular service conditions. The behavior of M50 Steel Fiber Reinforced Concrete (SFRC) at 28-days strength subjected to elevated temperatures was simulated using ANSYS 2020 R2 Workbench, and results validated with experimental results from a referenced Journal. M50 concrete at 28-days was modelled along with steel fibers from 0 to 4% by weight of cement. Models were made and subjected at room temperature, 100, 200, 300, 400 and
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11

Rai, Ambuj. "Finite Element Analysis of Laminated Composite Bridge Deck with GFRP Outer Layers and Wood Core." International Scientific Journal of Engineering and Management 04, no. 04 (2025): 1–9. https://doi.org/10.55041/isjem02792.

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This study presents a comprehensive finite element analysis of a laminated composite bridge deck using ANSYS Workbench. The bridge deck consists of a Glass Fiber Reinforced Polymer (GFRP) as a outer layer of 50 mm with three different wood species (Paulownia, Bamboo, and Balsa) as core of 300 mm. The research investigates the structural performance of the bridge deck by varying ply angles (0°, 30°, 60°, 90°). The analysis follows the IRC 6:2017 Class AA tracked loading conditions for a bridge deck of 30 m length, 10 m width. Results indicate that the combination of GFRP with Bamboo core at 0°
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Prasetiyo, Angger Bagus, Rizqi Prastowo, Kartinasari Ayuhikmatin Sekarjati, et al. "Finite Element Analysis (FEA) of blade weed design using Ansys workbench." SINERGI 26, no. 3 (2022): 371. http://dx.doi.org/10.22441/sinergi.2022.3.012.

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Manual, semi-conventional, and conventional weed eradication are the three forms of weed eradication utilized. Farmers benefit greatly from the usage of weeding equipment in combating pests in the fields. The blade you use determines how successful you are at weeding. As a result, it is required to examine the weeding weeds blade. With a tetrahedral mesh, simulation utilizing the finite element analysis approach allows for the optimization of design, computation, and prediction of material strength. The goal of this research was to figure out how much von Mises's stress, deformation, and safet
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Vargas-Chable, Pedro, Margarita Tecpoyotl-Torres, Ramon Cabello-Ruiz, Jose Rodriguez-Ramirez, and Rafael Vargas-Bernal. "A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper." Actuators 8, no. 1 (2019): 28. http://dx.doi.org/10.3390/act8010028.

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In this paper, a modified U-shaped micro-actuator with a compliant mechanism is proposed. It was analyzed with a uniform and modified thin arm, as well as a similar variation in the corresponding flexure, in order to observe the impact of the compliant lumped mechanism. The use of these compliant mechanisms implies an increment in the deformation and a reduction in the equivalent stress of 25% and 52.25%, respectively. This characterization was developed using the Finite Element Method (FEM) in ANSYS Workbench. The design, analysis and simulation were developed with Polysilicon. In this study,
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Panggabean, Beltsazar Joy, Adhes Gamayel, Ida Bagus Indra, M. U. Z. Priyadi, and Mohamad Zaenudin. "Analisis Stress Pada Modifikasi Ketebalan Velg Diameter 15 Inch Melalui Simulasi Pengujian Dynamic Cornering Fatigue Menggunakan Ansys Workbench." Integrated Mechanical Engineering Journal 2, no. 1 (2024): 28–34. http://dx.doi.org/10.56904/imejour.v2i1.26.

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Penelitian ini bertujuan untuk menganalisis stress pada modifikasi ketebalan velg berdiameter 15 inch melalui simulasi pengujian Dynamic Cornering Fatigue menggunakan ANSYS Workbench. Tiga variasi ketebalan rim velg dimodelkan: 8 mm, 6 mm, dan 4 mm. Simulasi dilakukan untuk mengevaluasi distribusi tegangan, regangan elastis, dan umur kelelahan pada tiap model. Hasil penelitian menunjukkan bahwa penurunan ketebalan velg berbanding lurus dengan peningkatan tegangan yang dialami. Ketiga model velg menunjukkan nilai fatigue life yang memenuhi standar SAE J 328, dengan ketahanan minimal 1.000.000 p
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15

Sherin P., Shahaba, Jisha P., and Minu U. "Analysis of the Bending Behaviour of T-Shaped Glulam Beam." Journal of Structural Technology 9, no. 2 (2024): 24–31. http://dx.doi.org/10.46610/jost.2024.v09i02.004.

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Glulam, a sustainable manufactured wood product, is gaining prominence for its numerous advantages. The current study employed an analytical approach using a finite element model developed in ANSYS Workbench 2023 R2 to investigate the flexural properties of glued-laminated timber beams compared to solid T beams. This research focused on assessing the impact of different lamina thicknesses on glulam beams using Larix wood. Glulam beams were categorized into three groups based on lamina thickness: 30 mm, 15 mm, and 10 mm. Additionally, solid T beams were modelled for comparison. Both solid and l
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16

Kanagaraj, Anandan, Senthilkumar Pandurangan, Saravavan Durai, and Arunkumar Gopi. "The Design and Analysis of the Helical Gear in the Car Gear Box for the Slag Port Transfer." International Journal of Mechanical Engineering and Applications 12, no. 3 (2024): 71–80. http://dx.doi.org/10.11648/j.ijmea.20241203.12.

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The design and analysis of helical gears with involutes profiles is the primary focus of this study. The most widely utilized gearing system in use today is the involutes gear profile. Power and torque are typically transmitted through them. When compared to other forms of transmission, the efficiency of power transmission via gears is extremely high. Bending and contact stress are the main causes of gear tooth failure. The current study examines helical gear, which has to do with slag transfer in the steel production sector. The most affected stress concentrated location of any set of gears i
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17

Sekacheva, Antonina, Alexander Noskov, and Lilia Pastukhova. "INVESTIGATION OF NATURAL FREQUENCIES OF COMPLEX WATER PIPELINES." Akustika, VOLUME 38 (March 2021): 2–7. http://dx.doi.org/10.36336/akustika2021382.

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The article deals with the problem of emergence of noise and vibration from pipelines of multi-storey residential buildings. The determination method of risk of increased noise and vibration using the modal analysis method in the ANSYS Workbench software packages is offered. The numerical modal analysis of straight pipeline sections with various geometrical parameters is carried out. Risk predictions of possible resonant modes are made. The maximum allowed span lengths between supports for sections of pipeline systems with a diameter of 15, 20, 25, 32, 40, 48, 60, 70, 102, 114, 140, 168, 180,
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Wu, Shao Hua, Xu Hong Guo, Gao Lian Shi, and Xing Huang. "Research on the Rules of Influence of Austempering Parameters on the Tensile Strength and Elongation of ADI." Applied Mechanics and Materials 488-489 (January 2014): 115–20. http://dx.doi.org/10.4028/www.scientific.net/amm.488-489.115.

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select ADI commonly used in engineering, set 15 sets of austempering parameters and research on the rules of their influence on the tensile strength and elongation of ADI. Through the tensile test, use ANSYS Workbench to simulate the process of tensile measurement and compare the experimental data. The results show that: longer austenitizing time leads to smaller tensile strength, whereas the elongation remains unchanged. The tensile strength reduces linearly as the austempering temperature rises while the elongation first increases and then reduces as the austempering temperature rises and pe
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Kavitha, C., and M. Ganesh Madhan. "Characteristic Analysis on Transverse Comb Structure Using PSpice." Applied Mechanics and Materials 627 (September 2014): 202–6. http://dx.doi.org/10.4028/www.scientific.net/amm.627.202.

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An analysis of transverse comb structure based MEMS accelerometer is carried out. Its static and dynamic behavior is analyzed by employing a simple electrical equivalent circuit in the acceleration range of 0-30g. The device is simulated for dc, transient and frequency conditions. In the transient analysis, the device is excited with sinusoidal and step input acceleration and the proof mass displacement is evaluated. It is found that, the capacitance and displacement values obtained from our simulation matches well with reports from ANSYS Workbench®. The maximum displacement in the structure i
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Zhang, Xiao Guang, Ying Jie Ji, Shi Gang Wang, and Xiao Li. "Numerical Simulation of the Effect of Particle Random Spatial Distribution on the Thermal Conductivity of Composites." Key Engineering Materials 561 (July 2013): 130–34. http://dx.doi.org/10.4028/www.scientific.net/kem.561.130.

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The overall thermal properties of particle reinforced composites are of primary importance for practical applications. Effect of random spatial distribution of sphere particles on the thermal conductivity of composites was numerically studied by ANSYS Workbench Steady-State Thermal analysis module. MATLAB procedure is used to achieve random distribution of particles in composites and to generate a representative volume element (RVE) model. The simulation results indicate that, at the same volume fraction, the random distribution has higher thermal conductivity than the uniform distribution; ef
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Tarcolea, Mihai, Daniel Vlasceanu, Mihai Cosmin Cotrut, Maria Diana Vrânceanu, and Raluca Monica Comăneanu. "Mechanical Effects of Simulated Pressure and Temperature Conditions on Porcelain Dental Bridges." Solid State Phenomena 216 (August 2014): 157–62. http://dx.doi.org/10.4028/www.scientific.net/ssp.216.157.

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A dental bridge, designed in STL format on a Dental Scanner software, was covered with the porcelain layer in 3-matic Design ©Materialise NV. FEA simulations were made in ANSYS ® Workbench TM ©SAS, Inc. Firstly, was performed the thermal analysis with the Transient Thermal module, and secondly, the structural static analysis with the Static Structural module. The applied masticatory force was of 300 N, and the studied temperatures were 36°C as reference and, as extremes, 0° and 50°C. The purpose was to determine mechanical effects in the bridge structure for a specific design of the dental bri
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Mulyadi, Mulyadi, Akhmad Surya Wijianto, and Iswanto. "Aftermarket Wheels Numerical Simulation To Get Maximum Stress and Deformation Values." R.E.M. (Rekayasa Energi Manufaktur) Jurnal 7, no. 2 (2022): 63–68. http://dx.doi.org/10.21070/r.e.m.v7i2.1568.

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The purpose of this research is to get wheels with offset variants of -15, +20, and +35 made of aluminum alloy with a maximum load of 690 kg. Autocad 2018 and Unigraphic NX 8 were used to create all three designs. The load was calculated using the SAE J2530 standard and simulated using the ANSYS Workbench 14.5 application's numerical simulation method. As a result, the car rim is designed with a spoke form that becomes steeper (Concave) as the offset decreases. Methods a) Dynamic Cornering Fatigue Test, b) Dynamic Radial Fatigue Test, and c) Impact test consecutively at offset -15 of a) 62.33
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Lin, Zhong Chao. "The Strength Analysis and Structure Optimization of Packer Slip Based on ANSYS." Applied Mechanics and Materials 423-426 (September 2013): 1967–71. http://dx.doi.org/10.4028/www.scientific.net/amm.423-426.1967.

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Packer is one of the main down-hole mining tools in oil field. When setting the packer prone to fracture under tremendous pressure, directly affect the sealing performance of the packer, which affects the process of mining and safety in production wells. The slip was analysised by using the finite element analysis software ANSYS Workbench. When the applied load is 140kN, the slips maximum stress is 230.11MPa, which exceeding the maximum compressive strength of this material. In the fracturing test of the slip packer test model, the test pressure is 186.33kN when slip fracturing, the compressiv
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Reshma Sett, Prathmesh Pravin Verekar, and Mohammad Zuber. "Comparative Study of Dimple Effect on Three-Dimensional Cambered Aircraft Wing." Journal of Advanced Research in Fluid Mechanics and Thermal Sciences 104, no. 2 (2023): 115–26. http://dx.doi.org/10.37934/arfmts.104.2.115126.

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This paper focuses on aerodynamic analysis over a 3D cambered wing with dimple-like surface modification. Application of the golf ball dimples on airfoils is predicted to be a good alternative for drag reduction. A golf ball with dimples allows for smooth and controlled flight. Models of cambered wings based on NACA 2412 airfoil were created to investigate the dimple effect. A comparative study is carried out between wing models with inward and outward dimples at 50% of chord length locations. Simulations were conducted for two velocities – 30 m/s and 90 m/s and the angle of attacks varying fr
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Iqbal, M. Rashid, Iqra Asif, Muhammad Rashid, Muhammad Danial Faiz, and Mis Muqaddas Naeem. "INVESTIGATING THE LIFT AND DRAG COEFFICIENTS OF NACA 4412 AIRFOIL USING CFD SIMULATIONS." International Journal of Trendy Research in Engineering and Technology 09, no. 04 (2025): 22–29. https://doi.org/10.54473/ijtret.2025.9403.

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This research examines the aerodynamic behavior of a NACA 4412 airfoil under subsonic flow conditions. The behavior is examined in terms of the lift which is produced as a result of air attacking the airfoil. The paper systematically including pressure and velocity distribution as well as the variations in the lift , drag coefficient and lift to drag ratio is calculated against angle of attack for different inlet velocity conditions using a C-type geometry. The mathematical model comprises the Nervier-Stokes equations along with the Standard k-ϵ turbulence model to capture the turbulence. The
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Babu, Tasruzzaman, Arefin Kowser, and A. N. M. Mominul Islam Mukut. "Numerical investigation of wind turbine blade materials and airfoil profiles to extract maximum wind energy." International Journal for Simulation and Multidisciplinary Design Optimization 15 (2024): 25. https://doi.org/10.1051/smdo/2024023.

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In order to fulfill the rising demand for power, wind energy will take the lead in the energy mix in the foreseeable future. To increase wind power generation, selection of the proper airfoil profile and material of wind turbine blade is a pivotal measure. This paper investigates a horizontal axis wind turbine under various boundary conditions from the aforementioned perspectives by using two software packages named Ansys Fluent and Ansys Static Structural (both of which fall under the aegis of Ansys Workbench). After analyzing with the help of Ansys Fluent, this paper determines NACA 4412 as
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Thu, Phạm Thị Ngọc, та Nguyễn Như Hoàng. "Khả năng chịu lửa của cột thép tiết diện chữ I bọc thạch cao dạng hộp chịu nén đúng tâm – So sánh giữa phương pháp tính đơn giản hóa theo EN 1993-1-2 và phương pháp mô phỏng số". Tạp chí Khoa học Công nghệ Xây dựng (KHCNXD) - ĐHXDHN 15, № 5V (2021): 120–31. http://dx.doi.org/10.31814/stce.huce(nuce)2021-15(5v)-10.

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Bọc bảo vệ các cấu kiện thép bằng thạch cao chống cháy là một trong những giải pháp phổ biến tăng khả năng chịu lực cho kết cấu thép trong điều kiện chịu lửa ở Việt Nam. Trong bài báo này, hai phương pháp tính khả năng chịu lực của cột thép tiết diện chữ I chịu nén đúng tâm được bọc thạch cao chống cháy dạng hình hộp: phương pháp tính đơn giản hóa theo EN 1993-1-2 và phương pháp mô phỏng số (dùng phần mềm ANSYS Workbench) được trình bày. Một ví dụ được thực hiện để so sánh giá trị nhiệt độ thu được bên trong cấu kiện theo hai phương pháp trên. Kết quả về khả năng chịu lực của cột trong điều ki
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Mudrov, Andrej, Gintas Šaučiuvėnas, Antanas Sapalas, and Ivar Talvik. "PLASTIC CAPACITY OF BOLTED RHS FLANGE-PLATE JOINTS UNDER AXIAL TENSION." Engineering Structures and Technologies 8, no. 3 (2016): 85–93. http://dx.doi.org/10.3846/2029882x.2016.1216806.

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This article considers the calculation of load-bearing capacity of flange-plate joints with bolts along two sides of rectangular hollow sections (RHS) under axial tension. It provides a review and comparison of various calculation methodologies for establishing the load-bearing capacity of RHS flange-plate joints, such as suggested in EN 1993-1-8:2005 and STR 2.05.08:2005 as well as those proposed in different countries and by other authors. Common design principles and derived results for load-bearing capacity of flange-plate joints have been analysed and compared. Following the numerical mod
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Su, Tian, Wei Su, Chenyu Du, Zhanfang Huang, Jianping Dong, and Chao Hu. "Damage identification of wind turbine blades based on dynamic characteristics." Nonlinear Engineering 11, no. 1 (2022): 47–57. http://dx.doi.org/10.1515/nleng-2022-0007.

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Abstract In this article, the Ansys Workbench was used to carry out the finite element analysis of 15 kW wind turbine blades with different damaged positions and different damaged degrees. The results show that the change rate of natural frequency, displacement modes, and strain modes of the blades increased with the increase in the damage degree; the change rate of the natural frequency and displacement modes of the blade decreased with the increase in the speed, while the change rate of the strain modes increased; the change allocation ratio of the displacement modes and strain modes after t
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Azam, N. M. A., Rosdi Daud, H. Mas Ayu, et al. "The Effect of Knee Flexion Angle on Contact Stress of Total Knee Arthroplasty." MATEC Web of Conferences 225 (2018): 03009. http://dx.doi.org/10.1051/matecconf/201822503009.

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The effect of flexion angle on contact stress of the knee joint still open to the debate since lack of proof shown that flexion angles does effect the contact stress of Total Knee Arthroplasty (TKA). Thus the aim of this study is to investigate the effect of different flexion angle on contact stress of TKA via finite element method. The TKA is simulated using ANSYS Workbench and the applied loads are 2200 N, 3200 N and 2800 N. The Finite element Analysis (FEA) results for maximum stress of current and proposed designed were then compared. For the new proposed design, the maximum stress for 15°
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Sathishkumar, Dhanalakshmi, P. Sivakumar, K. Shanmuga Sundaram, and S. Anand. "Finite Element Analysis and Experimental Study on the Effect of Extrusion Ratio during Hot Extrusion Process of Aluminium Matrix Composites." Defence Science Journal 67, no. 4 (2017): 428. http://dx.doi.org/10.14429/dsj.67.11535.

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The finite element (FE) analysis on the effect of extrusion process parameter namely, extrusion ratio at different billet temperatures on the plastic strain and strain rate of aluminium matrix composite during hot extrusion process has been dealt. The dynamic explicit FE code in ANSYS 15.0 workbench was used for simulation. The FE analysis was carried out on the SiC reinforced aluminium matrix composites for three extrusion ratios 4:1, 8:1 and 15:1, for the billet temperatures in the range 350 °C - 450 °C in steps of 50 °C. The plastic strain and strain rate were found to increase with increas
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Sun, Jiyu, Wenzhe Wang, Pengpeng Li, and Zhijun Zhang. "Research on Deployable Wings for MAVs Bioinspired by the Hind Wings of the Beetle Protaetia brevitarsis." Biomimetics 9, no. 6 (2024): 313. http://dx.doi.org/10.3390/biomimetics9060313.

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Deployable hind wings of beetles led to a bio-inspired idea to design deployable micro aerial vehicles (MAVs) to meet the requirement of miniaturization. In this paper, a bionic deployable wing (BD-W) model is designed based on the folding mechanism and elliptical wing vein structure of the Protaetia brevitarsis hindwing, and its structural static and aerodynamic characteristics are analyzed by using ANSYS Workbench. Finally, the 3D-printed bionic deployable wing was tested in a wind tunnel and compared with simulation experiments to explore the effects of different incoming velocity, flapping
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Sagar Kumar Achary, G., and Shakti Prasanna Khadanga. "A detailed review of drag Force and lift force when fluid flow over rotating cylinders." YMER Digital 21, no. 07 (2022): 1369–82. http://dx.doi.org/10.37896/ymer21.07/b4.

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The thesis discusses how the hydrodynamics of flow are affected by the Reynolds number and rotational speed around bodies. The experiment considers the Newtonian fluid flow over two cylinders placed side by side, results obtained from the numerical simulation was carried out by combination of various parameters in the range of 0 ≤ α a(non-dimensional rotational velocity) ≤ 4, 10 ≤ Re ≤ 40 , G=4 (gap between cylinder / diameter). The domain size taken into account was 240m. The simulation is carried out on each of these variables using ANSYS 16.0. While Fluent is used for the remaining of the s
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K N, Chethan, Afiya Eram, Nisha Shetty, Divya D. Shetty, Mohan Futane, and Laxmikant G. Keni. "Evaluating Angled Abutments: Three-Dimensional Finite Element Stress Analysis of Anterior Maxillary Implants." Prosthesis 6, no. 2 (2024): 315–28. http://dx.doi.org/10.3390/prosthesis6020024.

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Restorative dentistry is the repairing of damaged teeth and restoring oral health and function. Dental implants are typically placed within the cortical bone of the jaw to provide stability and support for prosthetic restorations. The successful restoration of complex anatomical features of the maxillary anterior is difficult for prosthodontists. Using a 3D slicer, CT scan images were used to create a detailed three-dimensional model of the maxilla bone. This study utilizes ANSYS Workbench, a finite element software program, to analyze the abutment angles, ranging from 0° to 25°, and the impac
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Das Lala, Sumit, Shaik Sadikbasha, and Ashish B. Deoghare. "Prediction of elastic modulus of polymer composites using Hashin–Shtrikman bound, mean field homogenization and finite element technique." Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 234, no. 8 (2019): 1653–59. http://dx.doi.org/10.1177/0954406219895791.

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Polymer matrix composites are developed by reinforcing biodegradable rubber seed shell, cashew nut shell and walnut shell powder in epoxy resin. Theoretically, elastic modulus is calculated using Hashin–Shtrikman bounds using variational principles. Investigation of the elastic modulus of the composites is extended by varying filler weight up to 25% in Digimat 2017-MF which applies Mori–Tanaka mean field homogenization and ANSYS 15.0 Workbench which uses a three-dimensional model of representative volume element having spherical shaped filler particles to calculate elastic modulus. Elastic mod
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Mikosianchyk, Oksana, Olha Ilina, Rudolf Mnatsakanov, Sergii Bespalov, Olesia Yashchuk, and Oleksii Kushch. "ANALYSIS OF THE STRESS-STRAIN STATE OF THE GEARING OF A GEAR PUMP IN THE ANSYS SOFTWARE PACKAGE." Problems of Friction and Wear, no. 1(106) (April 3, 2025): 17–28. https://doi.org/10.18372/0370-2197.1(106).19820.

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The aim of the work was to evaluate the stress-strain state in the zone of tooth engagement under friction when modeling the gear engagement of a gear pump in ANSYS Workbench. It was found that with an increase in the contact Hertzian stress from 180 to 555 MPa, the depth of the zone of distribution of equivalent Mises stresses and the depth of localization of the maximum equivalent Mises stresses increased by 20% and 23%, respectively. The analysis of the tangential stress diagrams (τxy) in the cross-section of the teeth shows that in the contact zone, the tangential stresses vary in magnitud
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Ferreira, Marcelo do Amaral, Fábio Rodrigo Mandello Rodrigues, Marco Antônio Luersen, Paulo César Borges, Ravindra Nanda, and Marcio Rodrigues de Almeida. "Von Mises stresses on Mushroom-loop archwires for incisor retraction: a numerical study." Dental Press Journal of Orthodontics 25, no. 4 (2020): 44–50. http://dx.doi.org/10.1590/2177-6709.25.4.044-050.oar.

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ABSTRACT Objective: To perform a numerical simulation using FEM to study the von Mises stresses on Mushroom archwires. Methods: Mushroom archwires made of titanium-molybdenum alloy with 0.017 x 0.025-in cross-section were used in this study. A YS of 1240 MPa and a Young’s modulus of 69 GPa were adopted. The archwire was modeled in Autodesk Inventor software and its behavior was simulated using the finite element code Ansys Workbench (Swanson Analysis Systems, Houston, Pennsylvania, USA). A large displacement simulation was used for non-linear analysis. The archwires were deformed in their extr
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Xu, Hong, Yi Chao Ding, Chui Min Luo, and Wen Yong Guan. "Dynamic Analysis and Optimization of WEDM Based on AWE and LMS." Applied Mechanics and Materials 741 (March 2015): 772–78. http://dx.doi.org/10.4028/www.scientific.net/amm.741.772.

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In the operation process, the Wire Electrical Discharge Machine (WEDM) has certain imperfections such as vibration and the descent of machine precision which vibration produces. This paper studies the dynamic parameter of the machine tool and optimizes the natural frequency and vibration. Taking the DK7725 taper machine tool as an example, the paper establishes a 3Dmodel with Pro-Engineer 5.0.According to the Masataks Yoshimura method, the authors could ascertain the stiffness and damping of joint surfaces among machine main parts and ascertain the equivalent dynamic model. In order to have a
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Sosiati, Harini, Ainur Luthfi Abdul Afif, Azhar Hudiatma, Rahmad Kuncoro Adi, and Ankas Pamasti. "Study of Abaca/Carbon/Epoxy Hybrid Composite Properties as an Alternative Prosthetic Socket Material." Key Engineering Materials 977 (March 22, 2024): 95–102. http://dx.doi.org/10.4028/p-8jitl7.

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Composites of natural fiber-reinforced thermoplastic and thermoset polymers have been studied for developing prosthetic socket materials. This study investigated the abaca fiber (AF)/carbon fiber (CF)/epoxy (EP) hybrid composite properties: i.e., tensile, flexural, impact, thermal, and water absorption, by varying AF and CF ratios of 1: 0, 0: 1, 2: 1, 3: 1, and 4: 1 with 80 vol% epoxy resin. The cracks formed in bending test specimens were characterized with an optical microscope, whereas the tensile fracture surface was characterized by scanning electron microscopy (SEM). The results confirme
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Yousef, H. H., Y. Ma, K. S. Patel, and Y. Xing. "A novel design of a hybrid glulam-steel substructure for the IEA 15-MW floating wind turbine." IOP Conference Series: Materials Science and Engineering 1294, no. 1 (2023): 012004. http://dx.doi.org/10.1088/1757-899x/1294/1/012004.

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Abstract Wind energy has become increasingly recognised as a very promising type of renewable energy. In addition, floating offshore wind turbines have facilitated the development of electricity production in intermediate (45-150 m) and deep sea (>150 m) depths. Despite this, wind turbine manufacturing, installation, and operation may generate substantial greenhouse gas emissions. A novel hybrid glulam-steel floating substructure design is presented in this research, intended for the IEA 15 MW floating wind turbine. The objective is to contribute to advancing floating wind energy while mini
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Naguib, Ghada H., Ahmed O. Abougazia, Lulwa E. Al-Turki, et al. "A New Multi-Axial Functional Stress Analysis Assessing the Longevity of a Ti-6Al-4V Dental Implant Abutment Screw." Biomimetics 9, no. 11 (2024): 689. http://dx.doi.org/10.3390/biomimetics9110689.

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This study investigates the impact of tightening torque (preload) and the friction coefficient on stress generation and fatigue resistance of a Ti-6Al-4V abutment screw with an internal hexagonal connection under dynamic multi-axial masticatory loads in high-cycle fatigue (HCF) conditions. A three-dimensional model of the implant–abutment assembly was simulated using ANSYS Workbench 16.2 computer aided engineering software with chewing forces ranging from 300 N to 1000 N, evaluated over 1.35 × 107 cycles, simulating 15 years of service. Results indicate that the healthy range of normal to maxi
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Cheng, Yuan, Heran Geng, Chao Cao, Abul Fazal M. Arif, Xinhua Liu, and Junfeng Yuan. "Study on L-Bending Springback of 45 Steel Leather Cutting Tool Coupled with Local Induction Heating." Applied Sciences 14, no. 14 (2024): 6253. http://dx.doi.org/10.3390/app14146253.

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Springback error is a major obstacle in L-bending sheets via cold working. Although thermal processing can effectively reduce the springback phenomenon, it is challenging to heat the sheet globally due to the influence of working conditions. Therefore, this study applied local induction heating to reduce the springback of 45 steel sheets and investigated the effects of bending parameters on springback behavior. Initially, a thermodynamic coupling model and a static model were created utilizing the VOCE hardening model and the von Mises yield criterion in the ANSYS workbench 2022 R2 software. T
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Brathikan, V. M., S. Balasubramanian, S. Kiranlal, and R. Ravi Ragul. "Design and development of large scale FDM based 3D printer." Journal of Physics: Conference Series 2272, no. 1 (2022): 012016. http://dx.doi.org/10.1088/1742-6596/2272/1/012016.

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Abstract Additive Layer Manufacturing (ALM) is one of the fabricating methods because it permits outrageous customization, quick prototyping of wanted designs and low volume creation of items. FDM printer goes under the material expulsion class. The filament is constrained into the hot extruder. The filament is warmed first and afterward stored, through the spout, onto a form stage layer-by-layer to frame the total 3D structure. A printer equipped for printing a 1.5-meter cubic-sized object was designed in SOLIDWORKS CAD software and manufactured into a functioning model. The Frame, Linear gui
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Gund, Rahul. "Transient Thermal Analysis of Disk Brake System under Varying Velocities and Pad Material Properties." International Journal for Research in Applied Science and Engineering Technology 9, no. 8 (2021): 1702–10. http://dx.doi.org/10.22214/ijraset.2021.37642.

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Abstract: The Enormous progressions in the field of automobiles have led their car engines to have enriched brake power in vehicles. The braking system’s efficiency should be at par with the engine to decelerate the car from a given speed within a less braking distance. The disc rotor and brake pads design and material while counting other impacting factors contribute to braking efficiency. The disc rotor will be exposed to large stresses which result in surface cracking, overheating of brake fluid, seals and other components. Many factors are affecting it as coefficient of friction between br
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Tan, Zhi Xian, Tsz Loong Tang, Hamidon Salleh, et al. "Numerical Study on Heat Transfer Characteristics of Jet Impingement by using MgO Nanofluid." Journal of Advanced Research in Fluid Mechanics and Thermal Sciences 122, no. 2 (2024): 202–18. http://dx.doi.org/10.37934/arfmts.122.2.202218.

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Liquid impingement jet can provide high local heat transfer coefficients between the impinged liquid and the targeted surface. Jet impingement is utilized in the applications which is related to rapid cooling and better control of high temperature in many applications. The studies are carried out numerically by using ANSYS Workbench 18.2. Hexagonal meshing and Shear-Stress Transport (SST) turbulence model is used in the numerical simulation. By using SST turbulence model, the effect of jet Reynolds number, nanofluid volume concentration on the average heat transfer coefficient of the target pl
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Chen, Xuejun, Lin Ma, Lei Zhang, and Chenhua Zhang. "Vibration and Noise Optimization of Rotor Structure of Permanent Magnet Synchronous Motor for Vehicles." Electrotehnica, Electronica, Automatica 71, no. 2 (2023): 1–9. http://dx.doi.org/10.46904/eea.23.71.2.1108001.

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In order to improve the vibration and noise level of permanent magnet synchronous motor, based on the ANSYS workbench multi-physical field coupling platform, the motor structure is designed and simulated to optimize the vibration and noise of the motor. The spatial and temporal order of the vibration noise caused by the first order tooth harmonic is analysed, and the vibration noise caused by the first order tooth harmonic is reduced by slotting the rotor. By analysing the influence of rotor slots with different positions and different size parameters on the air gap magnetic flux density of th
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Fahmi, Fariz Rifqi Zul, Harry Hermawan, and Fuad Dwi Hanggara. "Modeling the effect of bullet velocity and composite fiber orientation on the ballistic impact strength of Eglass/isophthalic polyester composites." Jurnal Polimesin 22, no. 6 (2024): 605. https://doi.org/10.30811/jpl.v22i6.5861.

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Numerical simulation has been widely used as a cost-effective and practical solution to understand phenomena previously determined only through experiment. One example is ballistic impact simulation using the finite element method. The simulation of ballistic impact was used to determine the effect of fiber orientation and bullet velocity on the ballistic impact strength of E-glass/isophthalic polyester. The analysis and simulation process were conducted using ANSYS Workbench v19.2 software. The simulation involved firing a 9 mm FMJ Parabellum bullet with a mass of 6.98 grams at a composite pa
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Pranav Hegde, Gowrava Shenoy B, S M Abdul Khader, et al. "CFD Analysis on Effect of Angulation in A Healthy Abdominal Aorta-Renal Artery Junction." Journal of Advanced Research in Fluid Mechanics and Thermal Sciences 88, no. 1 (2021): 149–65. http://dx.doi.org/10.37934/arfmts.88.1.149165.

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The recent developments in computational fluid dynamics (CFD) can be useful in observing the detailed haemodynamics in renal artery bifurcation for clinical evaluation and treatment. The present study focuses on haemodynamic behaviour of blood as it flows through the abdominal aorta-renal artery junction in an idealistic healthy artery with varying bifurcation angles to the abdominal aorta, i.e. from 30° to 90° with increments of 15°. This is to examine the effect of angulation on the junction and to determine whether arterial geometry plays a role in the prediction of atherosclerotic lesions.
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Abbas, Saif M., Ghanim Sh Sadiq, and Muhammed Abdul Sattar. "Improving the Composite Materials for Bi Lateral Prosthesis with Below Knee Amputation." Materials Science Forum 1002 (July 2020): 379–88. http://dx.doi.org/10.4028/www.scientific.net/msf.1002.379.

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This study used the tensile and fatigue test to find the properties of composite material used to fabricate a prosthetic socket with below knee amputation using an excluding air technique. The composite materials consisted of eight layers of carbon-fiber for first socket and eight layers of perlon for second socket of below knee amputation. This study was conducted on a patient have 45years old of height 164cm and weight95kg were measured, and the results showed that the ultimate stress (Ϭult) and yield stress (Ϭy) for eight layers of perlon was39 MPa and 36 MPa, while for eight layers of carb
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Gamayel, Adhes, Moh Nova Ikhsannudin, and Mohamad Zaenudin. "DESAIN DAN ANALISA VELG MOBIL 15 INCH TIPE ALUMINIUM ALLOY 6061 MELALUI SIMULASI PENGUJIAN DYNAMIC CORNERING FATIGUE SESUAI STANDAR SAE J 328." Machine : Jurnal Teknik Mesin 10, no. 1 (2024): 6–13. http://dx.doi.org/10.33019/jm.v10i1.3867.

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Velg adalah bagian roda yang mendapatkan gaya dan tegangan akibat dari menahan berat kendaraan pada posisi diam atau bergerak. Velg memiliki zona kritis terkait gaya dan tegangan pada daerah bernama spoke. Penelitian ini bertujuan untuk membandingkan beberapa model velg yang telah dimodifikasi guna mencari nilai kritis yang minimum. Velg yang dilakukan analisis terdiri dari model velg 1 dengan radius spoke 4 mm, velg model 2 radius spoke 8 mm serta velg model 3 radius spoke 12 mm. Metode penelitian dilakukan menggunakan metode static structural analysis dengan pendekatan reverse engineering. P
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