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1

Li, Yu Guang, and Guo Qing Zhang. "The Dynamic Simulation Study of WN Gear Pair after Coupling Tribology." Applied Mechanics and Materials 577 (July 2014): 214–17. http://dx.doi.org/10.4028/www.scientific.net/amm.577.214.

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Based on WN gear characteristics and considering system error, a multi-degree-freedom (Tangential-Radial-Axial) dynamics analysis model after coupling friction was established. In this article, we established the three-dimensional solid model by using PROE and then imported WN gear’ three-dimensional model into Ansys software through the data interface of Ansys software and PROE software and conducted a three-dimensional simulation anasys of the impact of dynamic contact. By applying load, the stress analysis of WN gear was conducted and the WN gear’s the effective stress clouds was gotten. Meanwhile, basing on ANSYS / LS-DYNA, it established the rigid-flexible body of gear dynamic contact model and analyzed the dynamic simulation anasys of WN gear. The results demonstrated that the tangential and axial vibration of double arc gear was significantly greater than the radial vibration.
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2

Wang, Zhi Ming, Yu Chao Wang, and Dong Mei Tang. "Method Study on Digital-Model Conversion of Magnetic Worm from CAD Software to ANSYS Software." Advanced Materials Research 443-444 (January 2012): 252–57. http://dx.doi.org/10.4028/www.scientific.net/amr.443-444.252.

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In order to solve the model element-missing problem of magnetic worm during the transmission process from Pro/Engineer software to ANSYS software, the paper proposes a novel transmission method. Tooth surface point-data file is established by the MATLAB software. Then the tooth surface curve is generated by the Pro/Engineer software according to the point-data file. The curve is imported into ANSYS software to set up the finite element analysis model. Finally grids are divided by the ANSYS software. After a series of programming and related works, the finite element model of the worm is established in ANSYS software and it indicates that this method is practical and effective and successfully resolved the model element-missing problem of magnetic worm during the transmission process from Pro/Engineer software to ANSYS software.
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3

Wang, Li Xin, Wen Ge Qiu, Qiu Chao Deng, and Zhi Hua Yan. "To Use ANSYS Software with Programming Ideas." Advanced Materials Research 433-440 (January 2012): 4316–19. http://dx.doi.org/10.4028/www.scientific.net/amr.433-440.4316.

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In this paper, the viewpoint, which to use ANSYS software with programming ideas whatever the beginner, medium and advanced users, is put forward. This style of using ANSYS can make full use of ANSYS powerful functionality. There are many advantages, especially in modifying and deleting commands during an analysis, archiving and transferring your analysis documents, protecting your modeling and simulation intellectual property right, concurrent design and analysis, etc
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4

Jaskot, Anna. "STEEL CANTILEVER BEAM OPTIMIZATION WITH ANSYS SOFTWARE." Zeszyty Naukowe Politechniki Częstochowskiej. Budownictwo 177, no. 27 (December 2021): 69–75. http://dx.doi.org/10.17512/znb.2021.1.11.

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5

Buzalo, N. A., A. S. Alexeeva, and B. A. Chernykhovsky. "Modelling framework joints in ANSYS software complex." IOP Conference Series: Materials Science and Engineering 687 (December 10, 2019): 033036. http://dx.doi.org/10.1088/1757-899x/687/3/033036.

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6

Lv, Ling Wei. "Thermal Analysis Module of ANSYS." Advanced Materials Research 1030-1032 (September 2014): 653–56. http://dx.doi.org/10.4028/www.scientific.net/amr.1030-1032.653.

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Briefly introduced ANSYS software in this paper,especially its powerful function as a kind of finite element analysis software in terms of thermal analysis. Describes the basic principle of ANSYS thermal analysis、analysis steps and method of data pretreatment and post-treatment, discussed the application of ansys and problems needing attention. in thermal analysis
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7

Pandey, K. M., and Amrit Sarkar. "Structural Analysis of Nuclear Fuel Element with Ansys Software." International Journal of Engineering and Technology 3, no. 2 (2011): 187–92. http://dx.doi.org/10.7763/ijet.2011.v3.222.

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8

Kuznetsov, I. A., A. N. Gribanov, A. A. Kurushin, G. F. Moseychuk, and A. I. Sinani. "Electrodynamic computations using ANSYS Electronics Desktop software controlled by a program developed in the MATLAB environment." Journal of «Almaz – Antey» Air and Space Defence Corporation, no. 3 (September 30, 2019): 13–18. http://dx.doi.org/10.38013/2542-0542-2019-3-13-18.

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The paper considers methods of controlling the process of electrodynamic structure simulation in the ANSYS Electronics Desktop software (previously known as ANSYS HFSS). The MATLAB software was leading the computation. In order to transmit data to the ANSYS Electronics Desktop software we employed the Microsoft Component Object Model technology, which makes it possible to combine software components into executables. We used simulation of a planar aperture phased antenna array to show the possibilities and limitations in controlling the ANSYS HFSS software subsequently outputting data to a text file and importing the latter into MATLAB for further computation. We present simulation results for a phased antenna array generated by the ANSYS Electronics Desktop software according to the array model compiled in MATLAB
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9

Zhao, Wei Tao, Feng Guo, and Xiao Li. "Reliability Analysis of Composite Structure Using ANSYS Software." Advanced Materials Research 945-949 (June 2014): 1155–58. http://dx.doi.org/10.4028/www.scientific.net/amr.945-949.1155.

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ANSYS software has provided complete and accurate solutions for composite laminate analysis and provided a set of special elements for different composite structures such as laminated plates, beams, solid structures and stiffeners. Fiber composite materials have been widely used to critical components of aircrafts, automobiles, mechanical, and marine structures. Since uncertainties associated with geometric tolerances, material properties, and boundary conditions widely exist in practical engineering problems. The probability approach is the most popular way to quantify uncertain parameters and perform the reliability analysis. The paper researches on the reliability analysis of the composite panels using ANSYS software. The numerical example is given, it is shown that the response surface method (RSM) can reduce the computational efforts comparing with Monte Carlo simulation (MCS).
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10

Marchuk, N. I., S. V. Deordiev, and E. V. Prasolenko. "Optimal design solutions for structures using ANSYS software." IOP Conference Series: Materials Science and Engineering 456 (December 31, 2018): 012022. http://dx.doi.org/10.1088/1757-899x/456/1/012022.

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11

Fayaz .K, Mohammed. "Analysis of Industrial Safety Helmet using ANSYS software." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 01 (January 29, 2025): 1–9. https://doi.org/10.55041/ijsrem41175.

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This study investigates the feasibility of incorporating natural fibers like hemp, cotton, coconut, and bamboo into the design of industrial safety helmets, aiming to enhance sustainability and potentially reduce costs. The research utilizes finite element analysis (FEA) software, specifically ANSYS, to simulate and compare the performance of helmets incorporating these natural fibers with traditional materials such as glass fiber, aramid, and polycarbonate. The analysis focuses on key parameters such as impact resistance, penetration resistance, and deformation under various loading conditions. The results are expected to provide valuable insights into the mechanical behavior of helmets with natural fiber reinforcements, identifying potential areas for optimization and highlighting the advantages and limitations of these materials. This research contributes to the development of more sustainable and cost-effective industrial safety helmets while ensuring compliance with relevant safety standards.
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12

Shalamov, P. V., I. A. Kulygina, and E. N. Yaroslavova. "ANSYS Software-based Study of Thermal Drilling Process." Procedia Engineering 150 (2016): 746–52. http://dx.doi.org/10.1016/j.proeng.2016.07.098.

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13

Chemezov, Denis Alexandrovich. "DESCRIPTION OF LIBRARY MATERIALS SOFTWARE PACKAGE ANSYS AUTODYN." Theoretical & Applied Science 16, no. 08 (August 30, 2014): 4–23. http://dx.doi.org/10.15863/tas.2014.08.16.2.

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14

Zhou, Bo, Jun Lv, and Dong Xue Wang. "Numerical Analysis on Stress Field near Crack-Tip of Mode I in Shape Memory Alloy." Applied Mechanics and Materials 357-360 (August 2013): 1437–40. http://dx.doi.org/10.4028/www.scientific.net/amm.357-360.1437.

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The methods to define the material parameters related to the super-elasticity of shape memory alloy in the software of ANSYS are introduced. The mechanical behaviors with super-elasticity occurring in the shape memory alloy are numerically simulated by the software ANSYS. The stress field near crack-tip of mode I in the material of shape memory alloy with super-elasticity are numerically simulated by the software ANSYS. Results of numerical simulation show that the software ANSYS is able to simulate the fracture behaviors occurring in the shape memory alloy structures effectively.
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15

Zhang, Xin Zhong, Lei Lei Liu, and Ke Dong Tang. "Nonlinear Analysis of Reinforced Concrete Beam by ANSYS." Applied Mechanics and Materials 438-439 (October 2013): 663–66. http://dx.doi.org/10.4028/www.scientific.net/amm.438-439.663.

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This paper mainly uses ANSYS, the finite element analysis software, to make nonlinear analysis of reinforced concrete beam. The model simulating the test process was established, the calculation results of ANSYS are compared with the experimental results. The comparison shows that ANSYS analysis results are similar to experimental results, which indicates ANSYS analysis software can be used to simulate the mechanical property of reinforced concrete structures.
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16

Zhang, Guo Hua, Shi Xuan Liu, and Yong Qi. "The Application of ANSYS to Ultrasonic Cleaner Design." Applied Mechanics and Materials 441 (December 2013): 518–21. http://dx.doi.org/10.4028/www.scientific.net/amm.441.518.

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With the development of modern mechanics methods and computer technology, some practical commercial finite element analysis software was introduced to the ultrasonic cleaner design. ANSYS software is a financial structure, fluid, electric field, magnetic field, the sound field analysis in one large general-purpose finite element analysis software can be used in many industrial fields. The basic operation of ANSYS was introduced. The simulation based on the ANSYS was applied in the design of ultrasonic cleaner successfully, which can improve work efficiency and shorten development period of ultrasonic cleaner.
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17

Wang, Yan Xia, and Hui Gao. "Optimization Design of Piston Head on ANSYS." Advanced Materials Research 199-200 (February 2011): 1196–99. http://dx.doi.org/10.4028/www.scientific.net/amr.199-200.1196.

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Based on the axially symmetric of piston head, the 2D parametric model of piston head is established using the ANSYS software. The optimized design program is written by APDL language and the optimization is carried out using the ANSYS software, which provides a better reference for reliability and life of engine.
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18

Brestovič, Tomáš, and Natália Jasminská. "SOFTWARE SUPPORT DEVELOPMENT FOR NUMERICAL SOLUTION OF ANSYS CFX." Acta Mechanica et Automatica 7, no. 4 (December 1, 2013): 215–21. http://dx.doi.org/10.2478/ama-2013-0036.

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Abstract The paper deals with possibilities to apply a new developed software support for simulation programme ANSYS CFX. A direct export of heat-transfer coefficients into variables used under edge conditions as well as of physical properties of gas mixtures into material properties during simulation solution of technical tasks means a significant saving of time. The paper summarizes in detail description of the software for calculation of heat-transfer coefficient during free convection (HTC-FC) and of material properties of gas mixture (MPGM) that enable to export calculated data directly into the text files which can be imported then into the programme ANSYS CFX.
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19

Liu, Cheng Lin, Ze Sun, Yun Zhao, Xing Fu Song, Gui Min Lu, and Jian Guo Yu. "Different Finite Element Software on Electric Field Analysis of Magnesium Electrolysis Cell." Advanced Materials Research 291-294 (July 2011): 2352–55. http://dx.doi.org/10.4028/www.scientific.net/amr.291-294.2352.

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The electric field distribution was the main factor affecting on the current efficiency of electrolysis cell. So, the electric field distribution of magnesium electrolysis cell was studied to improve the current efficiency by two of main finite element softwares, COMSOL and ANSYS. The electric field distribution and its trends with the electrolyte change from 1.25m to 1.40m were calculated by using the two softwares. Form the results, the characteristics of COMSOL and ANSYS can be obtained. The conclusions of the paper will provided a significant reference for choose the appropriate software in practice process.
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20

Ren, Bai Cheng. "Surrounding Rock Rupture Modeling of Tunnel Based on ANSYS." Applied Mechanics and Materials 490-491 (January 2014): 863–66. http://dx.doi.org/10.4028/www.scientific.net/amm.490-491.863.

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This article is based on the real condition of a tunnel. By using displacement and stress contours get from finite element analysis software ANSYS, the simulation of the tunnel excavation is modeled and the regulation of overlying rock’s displacement and stress is deducted during the evacuation of the tunnel. The analysis result to overlying rock mass’ rupture regularity can be helpful for the control of surrounding rock’s stability and the improvement of supporting system. The result shows finite element analysis software ANASYS can be used to guide tunnel constructions during the evacuation.
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21

Kukreja, Nitin, and Piyush Singhal. "Design and verify a natural frequency using ANSYS software." Materials Today: Proceedings 45 (2021): 3255–58. http://dx.doi.org/10.1016/j.matpr.2020.12.386.

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22

Zhiltsov, Yuriy, and Viktor Elshin. "ANSYS CFX SOFTWARE APPLICATION FOR PULVERIZED COAL BURNER SIMULATION." Proceedings of Irkutsk State Technical University 21, no. 4 (April 2017): 75–80. http://dx.doi.org/10.21285/1814-3520-2017-4-75-80.

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23

Godara, S. S., Vinayak Brenia, Amit Kumar Soni, Rupender Singh Shekhawat, and K. K. Saxena. "Design & analysis of connecting rod using ANSYS software." Materials Today: Proceedings 56 (2022): 1896–903. http://dx.doi.org/10.1016/j.matpr.2021.11.166.

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24

Ovsepian, E. E., E. L. Leusheva, and V. A. Morenov. "Drilling mud upward velocity modelling in Ansys CFX software." IOP Conference Series: Earth and Environmental Science 931, no. 1 (December 1, 2021): 012020. http://dx.doi.org/10.1088/1755-1315/931/1/012020.

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Abstract Drilling mud has various functions, one of which is to carry cuttings to the surface. All other things being equal, the removal of cuttings is characterized by the upward velocity. This paper simulates the rheology of polymer-glycolic non-dispersing mud (in particular viscosity) to achieve the required upward velocity in the «Ansys CFX» software. The viscosity of the mud varies from 6 to 12 mPa·s, on production casing drilling in Arctic conditions. The results of the study showed that for such conditions, the viscosity should be in the range from 6 to 8 mPa·s.
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25

Surendra, Bathala, and D. Vinod. "Finite Element Analysis of Composite Laminate by ANSYS Software." Journal of Physics: Conference Series 1964, no. 6 (July 1, 2021): 062097. http://dx.doi.org/10.1088/1742-6596/1964/6/062097.

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26

Ahiwale, Dhiraj, Harshada Madake, Nikita Phadtare, Amit Jarande, and Deepak Jambhale. "Modal analysis of cracked cantilever beam using ANSYS software." Materials Today: Proceedings 56 (2022): 165–70. http://dx.doi.org/10.1016/j.matpr.2022.01.055.

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27

Yuan, Qing Ke, Ya Nan Du, Yao Ding, and Tong Le Wang. "Modal Analysis of Ball Screw Based on ANSYS Software." Advanced Materials Research 314-316 (August 2011): 1981–86. http://dx.doi.org/10.4028/www.scientific.net/amr.314-316.1981.

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Ball screw is an important part in the machine tool feeding system. This paper researches on the ball screw, establishes the 3D virtual numerical model by Pro/engineer. Modal analysis of ball screw is carried out in three different cases by ANSYS, then gets the intrinsic frequency and vibration model of ball screw. It provides reliable reference for further structure analysis of ball screw.
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28

Sergeev, S. V., D. V. Proshunin, and Yu S. Sergeev. "Calculation of errors in hole machining by ansys software." Russian Engineering Research 32, no. 5-6 (May 2012): 515–18. http://dx.doi.org/10.3103/s1068798x1205022x.

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29

Dahmani, L., A. Khennane, and S. Kaci. "Crack identification in reinforced concrete beams using ANSYS software." Strength of Materials 42, no. 2 (March 2010): 232–40. http://dx.doi.org/10.1007/s11223-010-9212-6.

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30

Cheng, Li Juan, and Xin Chi Yan. "Compare SM Solver, ANSYS Soft Ware to Analyze Structural Internal Force Bars." Applied Mechanics and Materials 590 (June 2014): 732–35. http://dx.doi.org/10.4028/www.scientific.net/amm.590.732.

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In order to compare the accuracy of SM Solver, ANSYS software to analyze structural internal force bars,we use SM Solver and ANSYS software modeling steel frame door respectively, and comparing the situation of internal forces of the same type frame for error analysis. The results show that SM Solver and ANSYS software have small error in shear analysis, but the gap is relatively large in moment analysis, and the error is reduced with the increase in the number of dividing cells.
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31

Paulech, Juraj, Gabriel Gálik, Vladimír Kutiš, and Justín Murín. "Software for Model Preparation of Transmission Lattice Construction." Strojnícky časopis - Journal of Mechanical Engineering 69, no. 3 (November 1, 2019): 89–94. http://dx.doi.org/10.2478/scjme-2019-0034.

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AbstractThis paper presents the preparation phase for model of transmission tower lattice construction using ANSYS APDL environment. Beam elements are used for the model which introduce complications in the preparation phase because of the need to define the beam shape. Considering that the lattice construction of the transmission tower consists of hundreds of trusses it is obvious that some auxiliary tool is necessary for preparation of such model in ANSYS APDL. This tool was programmed in SW Wolfram Mathematica.
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32

BOJKO, MARIAN, LUKAS HERTL, and SYLVA DRABKOVA. "METHODS OF CFD MODELLING OF TWIN-SCREW PUMPS FOR NON-NEWTONIAN MATERIALS." MM Science Journal 2021, no. 6 (December 15, 2021): 5366–72. http://dx.doi.org/10.17973/mmsj.2021_12_2021103.

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The twin-screw pump is designed for pumping highly viscous materials in the food industry. Rheological characteristics of materials are important in the specification of design parameters of screw pumps. Analysis of flow in the twin-screw pumps with definition of non-newtonian materials can be made by numerical modelling. CFD generally oriented software ANSYS Fluent and ANSYS Polyflow has been used for modelling. In this study those software’s (ANSYS Fluent and ANSYS Polyflow) were defined for solution of flow in the twin-screw pumps. Results were compared for the same boundary conditions on the inlet and outlet of the 3D model. For definition of the viscosity were used the Nonnewtonian power law. Parameters as consistency coefficient and flow exponent for Nonnewtonian power law were analysed by software ANSYS Fluent and ANSYS Polyflow. Postprocessing form ANSYS Fluent and ANSYS Polyflow were made by contours of field and by graphs.
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33

Omer Eissa ALSharef, Blgasam, and Mohammed Bin Jubeir. "Optimisation of Flywheel Materials by using Solidworks and Ansys Workbench Software." International Journal of Science and Research (IJSR) 13, no. 7 (July 5, 2024): 1460–63. http://dx.doi.org/10.21275/sr24716233144.

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34

Li, Teng, Le Mu, Xian Da Wang, Bo Feng, and Zi Yi Jin. "Contact Stress Analysis of Packer Rubber Based on ANSYS Software." Advanced Materials Research 860-863 (December 2013): 2966–69. http://dx.doi.org/10.4028/www.scientific.net/amr.860-863.2966.

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In this paper three-rubber compression packers are regard as study objects, hyper-elastic constitution equation Yeoh has been used, the ANSYS mechanical model of packer rubber has been established by ANSYS software, the influence of axial setting force and frictional coefficient on the contact stress of packer rubber has been analyzed. The research results indicate that with the increasing of setting force, the axial compression amount and Von Mises stress increase; with the increasing of frictional coefficient between rubber and casing, the Von Mises stress of the intermediate rubber decreases slowly.
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35

K, Sandhya. "Structural Analysis of an Off-Road Vehicle Suspension System Using CATIA and ANSYS." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 08, no. 05 (May 5, 2024): 1–5. http://dx.doi.org/10.55041/ijsrem33001.

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This project delves into the structural analysis of an off-road vehicle suspension system, employing cutting-edge software tools such as CATIA and ANSYS. Off-road vehicles necessitate robust suspension systems capable of withstanding harsh terrain conditions while ensuring vehicle stability, manoeuvrability, and passenger comfort. The study focuses on evaluating the structural integrity, performance, and behaviour of the suspension system under diverse load conditions and terrain scenarios. This project focuses on conducting a comprehensive structural analysis of an off-road vehicle suspension system using advanced engineering software tools, specifically CATIA and ANSYS. CATIA is a powerful computer-aided design (CAD) software known for its capabilities in creating detailed 3D models, while ANSYS is a leading finite element analysis (FEA) software used for simulating structural behaviour and analyzing mechanical systems. Keywords: suspension system, CATIA v5, ANSYS, iterations, FEA.
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36

Martirosyan, A. A., V. I. Mileshin, Ya M. Druzhinin та P. G. Kozhemyako. "Сomputational and Experimental Investigation of Aerodynamic Characteristics of a Counter-Rotating fan Using Various Software Packages". Herald of the Bauman Moscow State Technical University. Series Mechanical Engineering, № 2 (125) (квітень 2019): 115–30. http://dx.doi.org/10.18698/0236-3941-2019-2-115-130.

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The paper presents the results of computing aerodynamic properties of the CRTF2A counter-rotating cowled fan developed as part of the European VITAL program. To achieve these results, we used the following software packages: NUMECA FINE TURBO, ANSYS CFX and CIAMs own 3D--IMP--MULTI hydrocode. We use the RANS approach to model turbulent flows. We performed a three-dimensional computation, completing Reynolds-averaged Navier --- Stokes equations by various turbulence models for the following relative angular frequency modes: n = 1 and 0.9. We used the following turbulence models available in the software packages: k--ε (ANSYS CFX, 3D--IMP--MULTI), k--ε (ANSYS CFX, NUMECA FINE TURBO, 3D--IMP--MULTI), SST (NUMECA FINE TURBO, ANSYS CFX, 3D--IMP--MULTI). We plotted head characteristics for each software package and determined the main differences. We plotted adiabatic efficiency and total pressure ratios as functions of height for the first and second rotors at the maximum efficiency points for both modes in the ANSYS CFX, NUMECA FINE TURBO and 3D--IMP--MULTI software packages
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37

Makki, Asst Prof Dr Ragheed Fatehi, Asst Prof Dr Ali Talib Jassem, and Hayder Abd Al-latef Jassem. "NON-LINEAR ANALYSIS OF REACTIVE POWDER CONCRETE (RPC) DEEP BEAMS WITH OPENINGS STRENGTHENED BY CFRP." Al-Qadisiyah Journal for Engineering Sciences 11, no. 2 (January 29, 2019): 176–96. http://dx.doi.org/10.30772/qjes.v11i2.551.

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This paper mainly uses ANSYS V.15 , the finite element analysis software, to make nonlinear analysis of reactive powder concrete deep beams . The models simulating the test process were established, the calculation results of ANSYS are compared with the experimental results. Data of eight RPC deep beams tested by researchers were used for comparison with ANSYS models .Furthermore three parametric studies were carried out by changing the size of opening , location of openings and CFRP systems configuration . The comparison shows that ANSYS analysis results are similar to experimental results (the maximum difference in the ultimate load was less than 7.5 %), which indicates ANSYS analysis software can be used to simulate the mechanical property of reactive powder concrete structures.
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38

Zhao, Bin. "Finite Element Analysis for the Crankshaft of the Piston Compressor." Advanced Materials Research 102-104 (March 2010): 17–21. http://dx.doi.org/10.4028/www.scientific.net/amr.102-104.17.

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In order to study the static and dynamical characteristics of the crankshaft, ANSYS software was used to carry out the corresponding calculations. The entity model of the crankshaft was established by UG software firstly, and then was imported into ANSYS software for meshing, and then the finite element model of the crankshaft was constructed. The crankshaft satisfied the requirement of stiffness and strength through static analysis. The top six natural frequencies and corresponding shapes were acquired through modal analysis, and the every order critical rotating speed of the crankshaft was calculated. The fatigue life of the crank was calculated by fatigue module of ANSYS software finally. These results offered the theoretical guidance for designing, manufacturing and repairing the crankshaft.
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39

Tao, Yang, Zhi Hu Li, Shao Fei Wang, Jing Jing Fan, Wen Wu Zou, and Yong Huang. "Based on ANSYS Design Optimization of Vehicle's Tailgate." Applied Mechanics and Materials 152-154 (January 2012): 709–13. http://dx.doi.org/10.4028/www.scientific.net/amm.152-154.709.

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Increased the machinery of spring and baffle to prevent goods falling bodies ,in order to ensure the safety of persons and goods when loading and unloading. Using UG software for designing automotive Vehicle Tailboards structure of solid modeling, using ANSYS software for mechanical analysising the floating beam, which is the important structural parts of automotive Vehicle’s Tailboards. Analysis the floating beam in different thicknesses and loads of stress, To determined the optimal combination about thickness and load of the floating beam. Above all, The main components of mechanical analysis cannot product the Vehicle’s Tailboards by ANSYS software,Which saving costs on the design and manufacture of production, shorten production cycle and improved the market competitiveness of the product.
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40

V. M, Abishek, Faizudeen N, Chandru S. H, and Palani R. "Design and Analysis of Cylinder Liner with Different Coatings." International Journal for Research in Applied Science and Engineering Technology 10, no. 10 (October 31, 2022): 322–57. http://dx.doi.org/10.22214/ijraset.2022.46987.

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Abstract: In this project, the surface of a cylinder Liner in a diesel engine is coated with ceramiccoating powders by the plasmaspray technique using Ansys and its surface behavior is subsequently analyzed. The purpose of this study is to analyze with tribological effects of surface coating for a Liner in frictional mechanism. In, with and without coated cylinderliner was analyzed with Ansys software. The modeling and analysis of the cylinder liner is carrying by the catia and ansys software. Also, the combustion flow analysis of the cylinder liner is carried by Ansys software. From the obtained test results, it was found that the coated liner having improved properties in towards the diesel engine performance. The results show less deformation and fewer scratches due to wear on the Titania-coated Liner ascompared to uncoated one.
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41

Chang, Juan, Jian Hua Zhang, Dian Ji Zhang, and Zhi Gang Liu. "Research on Computer Information System of Disaster Warning Based on ANSYS and MATLAB." Applied Mechanics and Materials 484-485 (January 2014): 958–62. http://dx.doi.org/10.4028/www.scientific.net/amm.484-485.958.

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In this paper, we use the software of ANSYS and MATLAB to do research on early computer warning system. ANSYS can check the intensity of early warning system, and MATLAB can realize the visual function of warning system. In this paper we established the process model of ANSYS intensity checking, and designed the calculation process of order flow. We use the disaster warning when opencast mining to underground mining as an example to verify the model and the algorithm. Through the calculation we get the correlation table between calculated and measured value. Finally we get the biggest stress nephogram of chamber center by using ANSYS software, and through the MATLAB software we realized visualization of surrounding rock stress. It provides the theoretical reference for the research on computer warning system in mining process. With the development of computer hardware and software technology, computer information early warning system begins to appear in many engineering fields. This system can carry on security issues of real-time detection and warning in the process of project implementation, and through the visualization software to display this information.
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42

Zhai, Wei Wei, Yu Zhang, Xiao Long Lin, Li Chun Wu, Jia Quan Zhang, Yi Wen Xu, and Tie Qiang Zhang. "The Emulation Design of Hall Component Based on ANSYS Software." Advanced Materials Research 482-484 (February 2012): 1929–32. http://dx.doi.org/10.4028/www.scientific.net/amr.482-484.1929.

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This essay describes the design methodology of Hall component based on ANSYS soft emulation, and analyses the key parameters of Hall component affecting its performance in the design process. The ANSYS software emulation results shows that Hall voltage will be affected by the Hall components with different length to width ratio and the plus electrode in different length and width. The length to width ratio of 1.5 to 2 will get better results, and it proves that the width of the electrode should be less than one-tenth the size of length. The Hall voltage within a certain range will increase with increasing length of Hall components plus electrode. So it is important to choose the best size ratio when designing the Hall components.
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43

Chiu, Min Chie, Long Jyi Yeh, and I. Lang Chiu. "The Assessment of Stress Analysis for a Notebook's Hinge Stopper Using the FEM Method." Advanced Materials Research 740 (August 2013): 350–58. http://dx.doi.org/10.4028/www.scientific.net/amr.740.350.

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Computer Aided Engineering (CAE) software is a vital analytical tool which is often adopted for product design. Engineers can obtain related design information for stress, strain, displacement, fatigue, and longevity of products via a CAE simulation. In order to improve product reliability, analysis of a products structure using CAE is compulsory. The purpose of this research is to implement CAE analysis on a laptops hinge. A 3-D model of the laptops hinge was first established by Pro/Engineer software and then transferred onto ANSYS/Workbench software. Moreover, all boundary conditions, connections, materials, and mesh property were set into an ANSYS program. Subsequently, the calculation of kinetic behavior for the hinge structure and maximum stress and stress allocation were performed by the ANSYS. In order to verify the correctness of the parameter settings on ANSYS/Workbench software, a products breaking test was conducted. A comparison between the experimental data and the theoretical data of the ANSYS was also carried out. Consequently, the deviation between the analyzed data and the real testing data is within 5%. Therefore, the analytical methods established above can provide a quick and efficient design for the structural strength of a hinge stopper.
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44

Mr., Safal A. Shambharkar*1 &. Mr. Amar. W. Kawale2. "ANALYSIS OF SINGLE POINT CUTTING TOOL USING ANSYS." INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY 7, no. 1 (January 6, 2018): 258–66. https://doi.org/10.5281/zenodo.1136154.

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This paper highlights the effect of the temperature and cutting forces generated on the tip of the Single Point Cutting Tool (SPCT) while working. In a experimental work, temperature measurement is done by using thermocouple at various depth of cut and it found that the temperature increases with increase in depth of cut. Cutting forces acting on cutting tool are determined analytically at different depth of cut. Modeling of single point cutting tool is done by PRO-Engineer Wildfire-4 software. The model is then imported in ANSYS software and meshing is done. Then the temperature readings and the forces calculated at different depths of cut are given as an input to the software. The software analyzed the model by finite element analysis at various forces and calculated the stresses developed at the tip of the tool and also the deformation of the tip of the tool. In Finite element analysis of single point cutting tool the maximum stresses are developed at the tip of tool which is the main cause of failure. Also the maximum deformation takes place at the tip of tool which blunts the tool, is the cause of failure.
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45

Yang, Xiao Yu. "Tube Hydroforming Analysis Based on Ansys." Applied Mechanics and Materials 232 (November 2012): 537–40. http://dx.doi.org/10.4028/www.scientific.net/amm.232.537.

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This paper briefly introduces some problems of tube hydroforming process, at the same time, also uses Ansys software to simulate in tube hydroforming process. And draw an conclusion,To avoid defects in tube hydroforming process, the applied internal pressure must be high enough to suppress buckling but not too high to cause bursting.
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46

Čuma, Matúš, Jozef Török, and Monika Telišková. "Design and Verifying of Composite Materials in ANSYS Environment." Technological Engineering 13, no. 1 (October 1, 2016): 31–32. http://dx.doi.org/10.2478/teen-2016-0010.

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47

Yu, Dong Ming, Hai Lin Yao, and Feng Guang Chen. "3D Modeling of Complicated Geological Body in Numerical Software." Advanced Materials Research 255-260 (May 2011): 1895–99. http://dx.doi.org/10.4028/www.scientific.net/amr.255-260.1895.

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This paper provides a simple and effective modeling method for complicated geological bodies in numerical software. By means of the most common tool software, the high quality 3d numerical model of the complicated geological body in the geotechnical engineering was built quickly and easily in the numerical software, ANSYS. Furthermore, this numerical model was reproduced in other numerical software, FLAC3D and ABAQUS. It is achieved that the 3d numerical model is shared among the numerical software, ANSYS, FLAC3D and ABAQUS and a basis is supplied for numerical calculation. The modeling method in this paper is of practical significance.
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48

Shen, Jiang Feng, Yu Jing He, and Yong Chang Yu. "Frame Strength and Stiffness Analysis Based on ANSYS." Advanced Materials Research 1094 (March 2015): 464–68. http://dx.doi.org/10.4028/www.scientific.net/amr.1094.464.

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A Case Study in spraying trailers, the frame of the structural characteristics were analyzed, using ANSYS workbench finite element analysis software for the frame were static stress analysis. First, create a physical model of the frame in Solidworks software. Then import ANSYS workbench on the frame payload processing constraints and suffered, were analyzed by calculating the frame strength and stiffness, get the frame stress cloud and find the weak links in the frame. To improve frame structure provides a theoretical basis.
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49

Pelevin, Aleksander, and Vladimir Shadrin. "Features of using the viscoelastic material model in the ANSYS software package." Вестник Пермского университета. Математика. Механика. Информатика, no. 3(54) (2021): 52–57. http://dx.doi.org/10.17072/1993-0550-2021-3-52-57.

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The paper presents an experiment on uniaxial cyclic stretching with increasing amplitude of a filled elastomeric material. Such materials have complex mechanisms of mechanical behavior, in addition to elasticity, there are viscoelasticity and the Mullins softening effect. According to the experimental data, a mathematical model of a viscoelastic material with a softening effect is constructed in the ANSYS software package. It is shown that the combined use of the Ogden hyperelastic model, the Ogden–Roxburgh softening model, and the Prony viscoelastic model in the ANSYS software package accurately describes the mechanical behavior of the material for a multiplicity of elongation 2.
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50

Lealin, Stanislav. "Stress Analysis, Frame Analysis and Calculation of Metal Structures in Inventor Software." Applied Mechanics and Materials 809-810 (November 2015): 871–77. http://dx.doi.org/10.4028/www.scientific.net/amm.809-810.871.

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In order to obtain a better designing of the industrial products, various software can be used. Sometimes, such a software allows simulation and highlighting the behavior of the product during its use. It is important to know and select adequate software applicable in the engineer activity. The study of the accessible information showed that such a software is ANSYS. In this paper, a case study for some modalities of modern calculation by FEM method using ANSYS program is presented.
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