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1

Hasan, Yusra, Ishak Hasan, Amir A. Aliabadi, and Bahram Gharabaghi. "Comparative Life Cycle Assessment (LCA) in the Aerospace Industry Regarding Aviation Seat Frame Options." Sustainability 17, no. 7 (2025): 3188. https://doi.org/10.3390/su17073188.

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The aerospace industry is actively seeking sustainable solutions within the aviation sector to mitigate greenhouse gas (GHG) emissions driven by increasing population demands. This study presents the first environmental life cycle assessment (LCA) of economy-class seating frames, comparing conventional alloy steel with lightweight alternative materials, including magnesium alloy, aluminum alloy, and titanium. Seat frames account for an aircraft’s total weight, making them a critical component for innovation toward more sustainable solutions. Using SolidWorks V3.1, economy-class seat frames wer
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VIDOVIC, Yvonne, Hyun-Gon P. CHUNG, and Toshiko MORI. "Enhancement of a Titanium Denture Frame Model." Dental Materials Journal 14, no. 2 (1995): 256–62. http://dx.doi.org/10.4012/dmj.14.256.

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Olesov, E. E., D. A. Bronstein, A. Y. Lerner, R. S. Zaslavsky, and K. V. Shmatov. "Electrochemical Interaction of TiNi-based Implant with Overlay Denture." KnE Materials Science 2, no. 1 (2017): 448. http://dx.doi.org/10.18502/kms.v2i1.834.

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Experimental electrochemical studies simulating the contact of a dental implant of titanium nickelide and metal frames of a denture covering an implant were carried out. The contact currents in artificial saliva were measured under stationary conditions and when updating the denture surface. Different amounts of the current depending on the denture frame material were registered.
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Nagao, Mitsuharu, Chihiro Masaki, Mihoko Nakao, et al. "Is Anterior Guidance a Key Factor on Planning Implant Treatment for Free-End Missing in the Posterior Mandible?" Journal of Oral Implantology 45, no. 2 (2019): 100–105. http://dx.doi.org/10.1563/aaid-joi-d-17-00237.

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To perform safe implant treatment, the anatomical structure and bone quality at implant placement sites are evaluated based on a patient's computerized tomography (CT) data, but there is no definite method to determine placement sites and the appropriate number of implants. The objective of this study was to investigate the influence of the number and arrangement of implants on the stress distribution in 3-unit posterior fixed partial dentures for the posterior mandible by mechanical analysis using the finite element method. Three-dimensional finite element analysis models were constructed fro
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Arcieri, Emanuele Vincenzo, and Sergio Baragetti. "Finite element analysis of a titanium bicycle frame." Procedia Structural Integrity 68 (2025): 969–73. https://doi.org/10.1016/j.prostr.2025.06.158.

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Astashina, Nataliya, Kamilla Valiakhmetova, Ol'ga Ursakiy, and Aleksy Bazhin. "DEVELOPMENT OF A NEW DESIGN OF REINFORCED OCCLUSAL SPRINT WITH PARAMETRIZED FRAME BASED ON MEDICAL AND ENGINEERING DIGITAL TECHNOLOGIES." Actual problems in dentistry 20, no. 1 (2024): 141–45. http://dx.doi.org/10.18481/2077-7566-2024-20-1-141-145.

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Subject. Today, the use of splint therapy is an essential part of specialized dental treatment, since in recent years the number of patients with dysfunctional conditions of the dentofacial apparatus, has increased significantly. In addition, according to recent research, the use of occlusal splints as part of complex therapy is effective in the treatment of neurological diseases, such as bruxism, chronic tension-type headache, and neuromuscular syndrome. Traditionally used designs of occlusal splints have some disadvantages, such as fragility of use, insufficient rigidity, and the impossibili
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7

Kulcsár, Klaudia, and János Kónya. "Numerical Analysis of Additively Manufactured, Individual Titanium Implants Designed in a Virtual Environment." Műszaki Tudományos Közlemények 10, no. 1 (2019): 41–48. http://dx.doi.org/10.33894/mtk-2019.10.05.

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Abstract The aim of this study is the design, manufacture, and development of a metallic rehabilitation device (titanium frame structure) that is created with a printing process. Product design is inspired by the Computed Tomography (CT) based reconstruction method, during which a metallic frame structure is designed that perfectly fits the retrieved bone surface. The internal structure of the designed metallic frames is a statically analysed three-dimensional construct which makes it possible to create individual product types. Constructs with different structure are checked by finite element
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8

Yu, Zeqing, Changyuan Li, and Changmeng Liu. "Fabricating large scale titanium alloy thin-walled double-sided part by hot-wire arc additive manufacturing." Journal of Physics: Conference Series 2671, no. 1 (2024): 012004. http://dx.doi.org/10.1088/1742-6596/2671/1/012004.

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Abstract Using traditional process to fabricate large scale titanium alloy thin-walled part such as wings and grid rudder, has the problem of low material utilization. Wire arc additive manufacturing (WAAM) is a flexible manufacturing technology with high deposition efficiency and high material utilization. In addition, a hot-wire device is attached to the WAAM system as auxiliary heat source, and the WAAM system becomes hot-wire arc additive manufacturing (HWAAM) system. In this paper, a large scale titanium alloy drone frame was fabricated by HWAAM. A double-side alternating deposition metho
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9

Cahyo Wibowo, Fathan Mubina Dewadi, and Abduh Al-Afgani. "IMPLEMENTASI MATERIAL TITANIUM PADA SEPEDA LISTRIK SEBAGAI RANGKA YANG EFISIEN." Jurnal Teknik Mesin Mechanical Xplore 2, no. 1 (2021): 13–18. http://dx.doi.org/10.36805/jtmmx.v2i1.1932.

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Titanium memiliki sifat yang baik dalam menahan korosi. Selain menahan karat, sifat titanium ini cukup lentur hingga mampu menahan benturan dari permukaan yang bergelombang sehingga jadi kenyamanan sendiri bagisi pengendara sepeda. Berbeda dengan material besi, pada material besi rentan korosi. Penelitian ini merupakan jenis penelitian kuantitatif dengan metode komparatif, penelitian komparatif bertujuan untuk membandingkan antar 2 penelitian yaitu penelitian sebelumnya dengan penelitian yang sedang dijalankan. Dari hasil penelitian yang telah dilakukan, maka didapatkan beberapa kesimpulan, an
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10

Rizal, Ahmad Ayyub Syaiful, Mahros Darsin, Robertoes Koekoeh K. Wibowo, and Khairul Anam. "Analysis of Titanium Mesh Ti6Al4V Formation Using Die Press Forming Machine for Cranioplasty." Journal of Mechanical Engineering Science and Technology (JMEST) 8, no. 2 (2024): 445. https://doi.org/10.17977/um016v8i22024p445.

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Cranioplasty is required for patients with head defects, where the deformed part of the head is replaced with Ti6Al4V titanium wire implants. The titanium wire forming process is usually done manually, which can take a long time and give results that do not match the anatomical shape of the head. Therefore, it is important to develop domestic technology that can produce titanium wire automatically. This study aims to analyze the frame and mold of the automatic wire mesh molding machine before production. The tool is made using press forming method and finite element analysis with ANSYS softwar
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11

NAKAMURA, Hiroshi. "Application of Laser Micro Welding for Titanium Glasses Frame." JOURNAL OF THE JAPAN WELDING SOCIETY 83, no. 4 (2014): 262–65. http://dx.doi.org/10.2207/jjws.83.262.

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Chénier, Félix, and Rachid Aissaoui. "Effect of Wheelchair Frame Material on Users’ Mechanical Work and Transmitted Vibration." BioMed Research International 2014 (2014): 1–12. http://dx.doi.org/10.1155/2014/609369.

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Wheelchair propulsion exposes the user to a high risk of shoulder injury and to whole-body vibration that exceeds recommendations of ISO 2631-1:1997. Reducing the mechanical work required to travel a given distance (WN-WPM, weight-normalized work-per-meter) can help reduce the risk of shoulder injury, while reducing the vibration transmissibility (VT) of the wheelchair frame can reduce whole-body vibration. New materials such as titanium and carbon are used in today’s wheelchairs and are advertised to improve both parameters, but current knowledge on this matter is limited. In this study, WN-W
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13

Panchal, Dileep. "The Evaluation of Structural Analysis on Bicycle Frame using Steel Alloy and Titanium Alloy." International Journal for Research in Applied Science and Engineering Technology 9, no. VI (2021): 693–700. http://dx.doi.org/10.22214/ijraset.2021.34936.

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Analysis of Bicycle Frame by using 3D CAD MODELLING TOOL In this project we are going to design Bicycle Frame by using 3D CAD Modelling tool i.e., CATIA V5 R20.After completion of design we are going to do structural analysis on frame with the use of existing material and proposed material and we’ll conclude why the proposed material better than the existing material.
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14

Rizali, Awang Eka Novia. "ESTETIKA PADA FRAME SEPEDA BALAP MERLIN TIPE CYRENE." Jurnal Dimensi Seni Rupa dan Desain 11, no. 1 (2014): 1–14. http://dx.doi.org/10.25105/dim.v11i1.1897.

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AbstractThe Aesthetic of Type Cyrene Merlin Road Race Frame. Type Cyrene Merlin road race frame is one of the innovative designs of Tom Kellogg and produced by Merlin Metal Work, known as one of the best bike production in Tennessee, USA. Produce uniquely with laser engraved motif on the frame pipe, this bike won The Best Titanium Bike in North American Handmade BicycleShow. This paper explained about the aesthetic analysis of the product design with the formalistic aspect, the technical aspect, and the ergonomic aspect which affect the function of the product. The formalistic analysis instrum
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15

Ponomarev, M. A., V. E. Loryan, and N. A. Kochetov. "Synthesis of composite material in combustion mode from mixture of Ti + 2B and Ni – Al composite particles with various ratios of components." PERSPEKTIVNYE MATERIALY 2 (2025): 41–54. https://doi.org/10.30791/1028-978x-2025-2-41-54.

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Ni – Al – Ti – 2B powder system consisting of mechanically activated composite particles-granules (Ni + Al) and a mixture of fine boron and titanium powder were used to obtain a composite with interpenetrating intermetallic/ceramic phases (by type IPC – interpenetrating phase composites) by self-propagating high-temperature synthesis (SHS). The quantitative ratio between the granules and the Ti + 2B mixture was varied. For all the compositions, synthesis was carried out in the combustion mode without heating. The chemical reactions in the combustion front took place in the composite granules a
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16

Pachurin, German Vasilevich, Nikolay Aleksandrovich Kuzmin, Maria Vadimovna Mochalina, and Alexey Aleksandrovich Filippov. "Effect Produced by the Treatment Type on the Performance of the Artificial Heart Valve Welded Frame." Recent Innovations in Chemical Engineering (Formerly Recent Patents on Chemical Engineering) 16, no. 3 (2023): 220–25. http://dx.doi.org/10.2174/2405520416666230809124226.

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Background: The welded joint loss of performance is largely determined by the heterogeneity of the structural state of the heat-affected zones. The basic materials from which the artificial heart valve welded frames are made are technically pure titanium grade VT1-OS and alloy grade 40 KHNM with the required biomedical properties. Objective: The study of the structural state, and changes in mechanical characteristics under static and cyclic loading of welded joints made of pure titanium grade VT1-OS and alloy grade 40 KHNM. Method: The paper investigates structural changes and mechanical chara
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17

Hashmi, Atif Ali. "Performance Evaluation of F1 Car Chassis Frame using Finite Element Analysis." International Journal for Research in Applied Science and Engineering Technology 13, no. 7 (2025): 453–66. https://doi.org/10.22214/ijraset.2025.73032.

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This research evaluates the structural performance of the front part of a Formula One (F1) car chassis using Finite Element Analysis (FEA). A comparative study is conducted using four advanced materials: Carbon Fiber (Epoxy), Aluminum 7075-T6, Titanium Alloy (Ti-6Al-4V), and AISI 4130 Chromoly Steel. CATIA is employed for accurate 3D modeling, while ANSYS Workbench is used for static structural simulations. The study applies a 15,000 N frontal load to replicate crash conditions and examines key output parameters such as directional deformation, total deformation, and von Mises stress. The resu
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18

Zhuravleva, Irina, Dmitry Nushtaev, Konstantin Ardatov, Ravil Sharifulin, Alexander Afanasyev, and Alexander Bogachev-Prokofiev. "Numerical assessment of fatigue strength of transcatheter mitral bioprosthetic stent based on the titanium nickelide model." Russian journal of biomechanics. 23, no. 4 (2019): 510–21. http://dx.doi.org/10.15593/rjbiomech/2019.4.11.

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This study is devoted to assessing the fatigue strength of a self-expanding Nitinol frame for a prosthetic heart valve when reconstructing the conditions of primary implantation in the mitral position. The object of research is a stent-like supporting frame, which is a cellular structure that performs the function of the main fastening and maintaining the shape of the leaflets and cover. The study included two stages of the formation of the stress-strain state of the frame: the creation of a mathematical model that provides an assessment of the state of the structure of the support frame in th
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19

Milyukova, Irina V., and Ruslan D. Yunusov. "Thermostimulation of titanium aluminide synthesis by high-calorie mixtures." Yugra State University Bulletin 15, no. 4 (2020): 17–23. http://dx.doi.org/10.17816/byusu2019417-23.

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A comparative microstructural and phase analysis of titanium aluminide samples obtained by SHS method in shells from a highly exothermic thermite mixture and an equimolar mixture of Nickel and aluminum is carried out. The energy of exothermic reactions of the shells allows heating the charge on the basis of titanium and aluminum and starting the SHS reaction in it. In the sinter sample in the Ni-Al shell, the reaction of titanium aluminide synthesis was not complete; the samples have a high-porous structure with small frame inclusions of intermetallides. In the synthesis of samples in the shel
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20

Kannaiyan, Mathi, P. Balashanmugam, and V. Sangeetha. "A Study on Compressive Behaviour of Thermal Cycled Titanium Alloy." International Journal for Research in Applied Science and Engineering Technology 11, no. 7 (2023): 2146–56. http://dx.doi.org/10.22214/ijraset.2023.55079.

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Abstract: Now a day, the titanium was recognized for its strategic importance as a unique lightweight, high strength alloyed structurally efficient metal for critical, high-performance aircraft, such as jet engine and airframe components. Titanium -6Al4v alloy is an alpha + beta alloy, which generally contains alpha and beta stabilizers and is heat treatable to various degrees. Over 70% of all Titanium alloy grades melted on a sub grade of Ti-6A1-4v which is used in aerospace, air frame and engine components. , Titanium alloy (Ti-6Al-4v) is heat treated for two different methods in order to ge
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21

Víctor, Octavio Fuentes Hernández. "Black Queen Cell Disease in Honeybees. Effect of a Citric Extract Adsorbed to a Titanium Nanoparticle." RA JOURNAL OF APPLIED RESEARCH 08, no. 08 (2022): 589–92. https://doi.org/10.5281/zenodo.6977162.

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<strong>ABSTRACT</strong> Titanium nanoparticles with citrus extracts adsorbed to its structure dissolved in water was used to control this viral disease of bees. Initially, two nuclei of two- and three-frame bees, four well-populated three-frame nuclei with a progenitor queen selected and inseminated to obtain larvae for translarvae, two starter hives consisting of two jumbo hive bodies separated by a queen excluder, two finisher hives with a queen excluder and a queen excluder were used, two finishing hives with a capacity of one and a half jumbo hives (fifteen frames), with a queen excluder
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Pang, Zongqiang, Yutao Gong, Ming Yuan, and Xin Li. "A Newly Designed Modular ZnBr2 Single Cell Structure." Batteries 6, no. 2 (2020): 27. http://dx.doi.org/10.3390/batteries6020027.

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We describe a ZnBr2 single cell which has a highly modular symmetrical structure. With designed polyethylene shell frames, membrane frame and composite titanium-carbon felt electrodes, it has a higher energy density and is more flexible compared with traditional flow batteries. We repeatedly tested its performance, which showed good tightness, high reliability and a high energy efficiency of 75%. Due to the special symmetrical structure and modular design, it is easy to assemble and disassemble, which makes it suitable as a test platform for electrodes, membranes and electrolyte performance te
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23

Dr.K., Anusha Ravindra, and Malathi Dayalan Dr. "A Comparative Evaluation of Stress Distribution, Deformation and Retentive Force of Three Different Partial Denture Framework in Two Removable Partial Denture Designs: A Finite Element Analytical Study." International Journal of Innovative Science and Research Technology 8, no. 2 (2023): 1357–65. https://doi.org/10.5281/zenodo.7691914.

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The aim of this study is to evaluate and compare stress distribution, deformation and retentive force of three different partial denture framework in two removable partial denture designs.  Materials &amp; Methodology: CBCT images of Kennedy&rsquo;s class I &amp; II mandibular arches were converted to STL file. HYPERMESH 10 software was used to convert 3D images into numerical models. Geometric model of the Kennedy&rsquo;s class I &amp; II frameworks were created using ANSYS 18 software and then was inserted in the bone model. Material properties of titanium alloy, acetal resin and PEEK was t
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Gerasimova, L. G., A. I. Nikolaev, E. S. Shchukina, and M. V. Maslova. "Hydrothermal synthesis of framed titanosilicates with a structure of ivanyukite mineral." Доклады Академии наук 487, no. 3 (2019): 289–92. http://dx.doi.org/10.31857/s0869-56524873289-292.

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The phase formation in the Na2O-TiO2-SiO2-H2SO4-H2O system during hydrothermal has been studied. The obtained data were used for the producing of a new type of sorbents with a frame structure similar to the mineral ivanyukite. Excess amounts of silicon and sodium in relation to titanium (III) and titanium (IV) as well as pH up to 12 provide “supersaturating” of the salt mass and affect the rate of precipitation, phase composition, structure and surface properties. The framework arrangement of SiO4 tetrahedron and TiO6 octahedron create channels where Na+ and water molecules are located. The st
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Siqueira, Rafael Humberto Mota de, Diego Javier Celentano, and Milton Sergio Fernandes de Lima. "Laser Beam Welding of CubeSat 1U Structure Parts Obtained by Powder Bed Fusion." Metals 12, no. 11 (2022): 1992. http://dx.doi.org/10.3390/met12111992.

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This study contributes to a possible methodology for manufacturing CubeSats using additive manufacturing and laser beam welding. Titanium connectors were constructed by selective laser melting and electron beam melting and characterized from a topological point of view. The connectors can be joined to titanium tubes for the construction of CubeSats via laser spot welding. The fiber laser welds exhibited full penetration using pulses with 400 J of energy. The welds showed titanium acicular martensite grains with recesses and pores. The average hardness of the cast zone was 350 HV, which is clos
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Choi, Gye-Hun, and Sang-Yeoun Kim. "Development of Manufacturing Process of Pure Titanium Wire to make Eyewear Frame." Journal of the Korea Academia-Industrial cooperation Society 12, no. 3 (2011): 1105–10. http://dx.doi.org/10.5762/kais.2011.12.3.1105.

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Hussain, Syed Altaf, and Charanya Vijayakumar. "A Technical Innovation in Midface Advancement With the External Frame Distraction Device." Cleft Palate-Craniofacial Journal 56, no. 5 (2018): 670–73. http://dx.doi.org/10.1177/1055665618807817.

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Background: Maxillary advancement with a rigid external distractor (RED) II is a commonly performed procedure for correcting midface hypoplasia. While there are various methods of anchoring the osteotomized maxillary segment to the halo device, the looped transpyriform wire is the simplest and most cost-effective. However, a common complication with this is the cutting through of the stainless steel traction wire across the pyriform buttress during distraction. The patient with cleft undergoing midface distraction is particularly vulnerable since the force needed for distraction is higher due
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28

Guo, Quan Feng, Wei Li, Ji Hong Dong, et al. "Application of Carbon Fiber Composite on Space Camera Frame." Advanced Materials Research 194-196 (February 2011): 1558–63. http://dx.doi.org/10.4028/www.scientific.net/amr.194-196.1558.

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General materials can satisfy the structure strength requirement of space effective payload easily. But it can hardly satisfy the structure stiffness requirement of space payload. Carbon fiber composite has many excellent properties, such as high relative strength, high relative stiffness, small expansion coefficient, good fatigue resistance and excellent vibration resistance. It can be used to make space products. Firstly, this paper discussed the properties of carbon fiber composite material. Compared with common materials, such as aluminum alloy and titanium alloy, carbon fiber composite ma
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Sun, Chao, Jie Sun, and Jian Feng Li. "Influences of the Cutting Path about Machining Performance in Manufacturing Titanium Alloys Ti6Al4V Thin-Walled Components." Advanced Materials Research 566 (September 2012): 222–26. http://dx.doi.org/10.4028/www.scientific.net/amr.566.222.

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The difficult-to-machine property of titanium alloy has been on important subject in the field of manufacture, especially for the thin-walled structure. The material removal amount can reach 95% and even 98%. This paper applies the finite element method (FEM) to evaluate the process of machining. The influences of the different tool paths in rough machining frame structure is studied. The influence of the tool path on the dynamic characteristic in finish machining thin-walled frame structure is also investigated. As a result, the tool path in rough machining will influence the machining effici
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30

Mingazov, Eduard, Nikita Gvozdev, Arnold Popkov, Pierre Journeau, and Dmitry Popkov. "Preliminary Results of Bone Lengthening over Telescopic Titanium Intramedullary Rod." Case Reports in Orthopedics 2023 (January 30, 2023): 1–16. http://dx.doi.org/10.1155/2023/4796006.

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Background. Limb lengthening and deformity correction in patients with abnormal bone associating fragility often require an approach combining methods of external and internal fixation. This study demonstrates results of simultaneous application of external fixator, and telescopic rod for femoral lengthening and deformity correction in three children with osteogenesis imperfecta or severe form of Ollier’s disease. Materials and Methods. Three patients (two boys with Ollier’s disease and a girl with osteogenesis imperfecta, type I) were operated on for femoral lengthening with combined techniqu
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Davydov, D. M., E. R. Umerov, E. I. Latukhin, and A. P. Amosov. "THE INFLUENCE OF ELEMENTAL POWDER RAW MATERIAL ON THE FORMATION OF THE POROUS FRAME OF TI3ALC2 MAX-PHASE WHEN OBTAINING BY THE SHS METHOD." Vektor nauki Tol'yattinskogo gosudarstvennogo universiteta, no. 3 (2021): 37–47. http://dx.doi.org/10.18323/2073-5073-2021-3-37-47.

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The ternary carbide compound Ti3AlC2 belongs to the so-called MAX-phases – a new type of ceramic materials with unique properties. A simple energy-saving method of self-propagating high-temperature synthesis (SHS) based on combustion is one of the promising methods for the production of this MAX-phase. The application of the SHS technology is to produce a Ti3AlC2 MAX-phase porous frame with the homogeneous porous structure without such defects as large pores, laminations, and cracks is of great interest. The paper investigates the possibility of producing such a porous frame with the maximum c
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Davydov, D. M., E. R. Umerov, E. I. Latukhin, and A. P. Amosov. "THE INFLUENCE OF ELEMENTAL POWDER RAW MATERIAL ON THE FORMATION OF THE POROUS FRAME OF TI3ALC2 MAX-PHASE WHEN OBTAINING BY THE SHS METHOD." Vektor nauki Tol'yattinskogo gosudarstvennogo universiteta, no. 3 (2021): 37–47. http://dx.doi.org/10.18323/2073-5073-2021-3-37-47.

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The ternary carbide compound Ti3AlC2 belongs to the so-called MAX-phases – a new type of ceramic materials with unique properties. A simple energy-saving method of self-propagating high-temperature synthesis (SHS) based on combustion is one of the promising methods for the production of this MAX-phase. The application of the SHS technology is to produce a Ti3AlC2 MAX-phase porous frame with the homogeneous porous structure without such defects as large pores, laminations, and cracks is of great interest. The paper investigates the possibility of producing such a porous frame with the maximum c
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Latukhin, Evgeny, Evgeniy Amosov, Emil' Umerov, and Denis Davydov. "TIC/Al cermet (ceramics+metal) structuring and composition forming with spontaneous infiltration of aluminum melt into a porous hot titanium carbide frame obtained by the SHS (Self-propagating high temperature synthesis) method." Science intensive technologies in mechanical engineering 2022, no. 4 (2022): 3–12. http://dx.doi.org/10.30987/2223-4608-2022-4-3-12.

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The morphology of structuring and composition forming of the ceramic-metal composite material (cermet) TiC/Al is shown in obtaining it using a new method with spontaneous infiltration of aluminum melt into a porous ceramic frame of titanium carbide TiC synthesized in the combustion mode of the initial mixture of powders (charge) Ti+C, i.e. in the process of self-propagating high-temperature synthesis (SHS).
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Loperfido, Cosimo, Juan Mesquida, and Jaime L. Lozada. "Severe Mandibular Atrophy Treated With a Subperiosteal Implant and Simultaneous Graft With rhBMP-2 and Mineralized Allograft: A Case Report." Journal of Oral Implantology 40, no. 6 (2014): 707–13. http://dx.doi.org/10.1563/aaid-joi-d-12-00132.

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A 71-year-old patient was successfully rehabilitated by means of a 3D model-derived, hydroxyapatite-coated titanium subperiosteal mandibular implant. The implant was specifically designed to allow bone augmentation. The deficient bone was simultaneously grafted with mineralized bone allograft and recombinant bone morphogenetic protein −2 (rhBMP–2). The 32-month postoperative cone beam computerized tomography follow-up showed vertical bone augmentation beneath the implant frame.
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Rusdi, Firman Maulana, and Arini Dwi Cahyani. "STUDI IDENTIFIKASI PASANGAN COMMERCIALLY PURE TITANIUM DAN UHMWPE UNTUK APLIKASI MATERIAL IMPLAN LUTUT." Jurnal Rekayasa Mesin 15, no. 3 (2024): 1605–19. https://doi.org/10.21776/jrm.v15i3.1820.

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Orthopedics is a science that studies the human body skeleton. This field of science helps patients who experience joint and skeletal problems. One of the problems faced is the need for body frame components to be replaced, for example the knees. This replacement requires a man-made component, namely an implant. Implants can be made from metal, polymer, and ceramic. The biomaterial implant identification process includes X-Ray Diffraction analysis, hardness and tensile testing. XRD testing of CP–Titanium and UHMWPE using the Rigaku XRD tool. CP–Titanium hardness testing uses Vickers micro hard
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Wisnujati, Andika, and Rela Adi Himarosa. "Analysis the Strength of Mild Steel Material on a Handcycle Bike Frame." Logic : Jurnal Rancang Bangun dan Teknologi 21, no. 2 (2021): 80–86. http://dx.doi.org/10.31940/logic.v21i2.2452.

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The frame is one of the most important parts in a series of constituents of a bicycle. The materials for making bicycle frames usually use tight and strong materials such as stainless steel, carbon and titanium. Mild steel is steel with low carbon, which is about 0.05-0.30%. After conducting a tensile test on the mild steel material used on the handcycle bicycle frame, the highest stress results were 1,093.87 N/mm² and the highest strain was 0.167%. For the results of stress analysis contained in the autodesk inverter, the von mesess results are obtained for men weighing 70 kg von mesess maxim
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Налчаджян, А. М., А. А. Мураев, С. В. Бопхоев, Г. Г. Казарян, Г. Д. Тунян, and М. П. Мартиросян. "Guided bone regeneration the alveolar part of low jaw with skeletal titanium membrane: clinical case." Клиническая стоматология 26, no. 4 (2023): 29–33. http://dx.doi.org/10.37988/1811-153x_2023_4_29.

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При проведении направленной костной регенерации в области альвеолярного гребня успешно применяются каркасные титановые мембраны. Интраоперационное использование стандартных каркасных мембран трудоемко, так как необходимо вручную моделировать их форму, что значительно увеличивает время операции. Кроме этого, титановые сетки часто прорезаются через слизистую оболочку раньше времени, необходимого для созревания костного регенерата. С помощью аддитивных технологий, в частности лазерной 3D-печати титаном, появилась возможность изготавливать индивидуализированные титановые каркасные мембраны, которы
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Sakuma, Takashi. "Casting of pure titanium and high fusing dental alloys by experimental casting machine. 7. Casting procedure for pure titanium denture frame." Nihon Hotetsu Shika Gakkai Zasshi 33, no. 3 (1989): 728–38. http://dx.doi.org/10.2186/jjps.33.728.

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Zemtsova, Elena, Denis Yurchuk, and Vladimir Smirnov. "The Process of Nanostructuring of Metal (Iron) Matrix in Composite Materials for Directional Control of the Mechanical Properties." Scientific World Journal 2014 (2014): 1–12. http://dx.doi.org/10.1155/2014/979510.

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We justified theoretical and experimental bases of synthesis of new class of highly nanostructured composite nanomaterials based on metal matrix with titanium carbide nanowires as dispersed phase. A new combined method for obtaining of metal iron-based composite materials comprising the powder metallurgy processes and the surface design of the dispersed phase is considered. The following stages of material synthesis are investigated: (1) preparation of porous metal matrix; (2) surface structuring of the porous metal matrix by TiC nanowires; (3) pressing and sintering to give solid metal compos
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Teng, Mengyuan, Haixia Liu, Bensheng Lin, Xiangzhu Zhou, and Wei Zhou. "Preparation and Photocatalytic Properties of Anatase TiO2 with Hollow Hexagonal Frame Structure." Nanomaterials 12, no. 9 (2022): 1409. http://dx.doi.org/10.3390/nano12091409.

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Titanium dioxide (TiO2) has been widely used to solve energy and environmental pollution problems due to its excellent properties. In this study, the precursor (HTiOF3) with a spherical structure composed of hexagonal prisms was prepared via a simple solvothermal method using tetrabutyl titanate, hydrofluoric acid, glacial acetic acid and isopropanol as raw materials. Then, the calcination time and temperature of the precursor were controlled to prepare anatase TiO2 with different morphologies, and the photocatalytic performance of the prepared catalysts was studied. When the precursor was cal
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Salikhov, T. P., V. V. Kan, E. M. Urazaeva, T. V. Savatyugina, and G. M. Arushanov. "Solid ceramic based on mixed-frame titanium phosphate and calcium synthesized in solar furnace." Applied Solar Energy 48, no. 3 (2012): 201–3. http://dx.doi.org/10.3103/s0003701x12030139.

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Steblovnik, Klemen, and Matjaz Bunc. "Technical Aspects and Development of Transcatheter Aortic Valve Implantation." Journal of Cardiovascular Development and Disease 9, no. 8 (2022): 282. http://dx.doi.org/10.3390/jcdd9080282.

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Aortic stenosis is the most common valve disease requiring surgery or percutaneous treatment. Since the first-in-man implantation in 2002 we have witnessed incredible progress in transcatheter aortic valve implantation (TAVI). In this article, we review the technical aspects of TAVI development with a look at the future. Durability, low thrombogenicity, good hydrodynamics, biocompatibility, low catheter profile, and deployment stability are the attributes of an ideal TAVI device. Two main design types exist—balloon-expandable and self-expanding prostheses. Balloon-expandable prostheses use a c
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Mukaddam, Khaled, Monika Astasov-Frauenhoffer, Elizaveta Fasler-Kan, et al. "Novel Titanium Nanospike Structure Using Low-Energy Helium Ion Bombardment for the Transgingival Part of a Dental Implant." Nanomaterials 12, no. 7 (2022): 1065. http://dx.doi.org/10.3390/nano12071065.

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Aim(s): The aim of the study was to fabricate a nanospike surface on a titanium alloy surface using a newly established method of low-energy helium ion bombardment. Various methods to achieve nanospike formation on titanium have been introduced recently, and their antibacterial properties have been mainly investigated with respect to Escherichia coli and Staphylococcus aureus. Oral pathogens such as Porphyromonas gingivalis play an important role in the development of peri-implantitis. For that reason, the antibacterial properties of the novel, nanostructured titanium surface against P. gingiv
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Liu, Robert, and H. T. Ou. "Synthesis and Application of Magnetic Photocatalyst of Ni-Zn Ferrite/TiO2from IC Lead Frame Scraps." Journal of Nanotechnology 2015 (2015): 1–7. http://dx.doi.org/10.1155/2015/727210.

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IC lead frame scraps with about 18.01% tin, 34.33% nickel, and 47.66% iron in composition are industrial wastes of IC lead frame production. The amount of thousand tons of frame scraps in Taiwan each year is treated as scrap irons. Ni-Zn ferrites used in high frequent inductors and filters are produced from Ni-Zn ferrite powders by pressing and sintering. The amount of several ten thousand tons of ferrites ofNi1-XZnXFe2O4in compositions is consumed annually in the whole world. Therefore, these IC lead frame scraps will be used in this research as raw materials to fabricate magnetic ferrite pow
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Abraham, Melvin. "Frame Designing and Architecture of Electric dirt bike." International Journal for Research in Applied Science and Engineering Technology 9, no. 9 (2021): 738–51. http://dx.doi.org/10.22214/ijraset.2021.38000.

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Abstract: A bike frame is also a non-standard structural component of a motorcycle linking various components of the vehicle systems and providing the vehicle rigidity and strength while running on various road conditions. This study is geared toward designing the frame of a two-wheeler, two-seater motorcycle for an electrical mobility purpose, while considering strength, safety and optimum performance of the vehicle. The said study has been allotted with a two-step approach. the first step includes modelling of the frame as per structural and ergonomic considerations, the design constraints g
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Gordeev, Y. I., A. S. Binchurov, Е. V. Moskvichev, G. M. Zeer, E. G. Zelenkova, and V. B. Yasinsky. "Investigation of properties of the regular structures obtained by additive technologies in combination with the powder metallurgy methods." Proceedings of Higher Educational Institutions. Маchine Building, no. 10 (763) (October 2023): 28–43. http://dx.doi.org/10.18698/0536-1044-2023-10-28-43.

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Despite significant amount of research and applied works in the additive technologies, problems of the topological optimization of structures obtained by combining 3D printing and the powder metallurgy methods remain insufficiently studied both theoretically and experimentally. Results of simulating regular structures made of plastics and studying their destruction processes could be effectively used as a starting approach in developing technology for production of the composite materials based on the titanium alloys with the increased level of strength properties. Based on numerical experimen
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el Mtili, Chayma, Loubna Hessissen, and Abdellatif Khamlichi. "Seismic Performance of 2D Regular Reinforced Concrete Frame Buildings Strengthened by Using Shape Memory Alloys." International Journal of Engineering Research in Africa 72 (December 26, 2024): 135–54. https://doi.org/10.4028/p-yc3fxl.

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Reinforced concrete frame buildings are at risk of earthquake. Improving their response by adequate strengthening provision is an issue of major importance. Among the recent techniques introduced to increase the seismic resistance of this type of structure, shape memory alloy materials were found to be promising. They have large damping properties and significant re-centering capacity that reduce seismic efforts and limit damage. This work was dedicated to assessing the enhancement of building seismic capacity based on shape memory alloys of different sorts. Reinforcement consists of using reb
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Sasaki, Yoshinori, Masaaki Otsu, Masami Matsumura, et al. "Deriving Position of Bending Roll in Roll Bending of Titanium Alloy Wire for Glasses Frame." Procedia Engineering 81 (2014): 257–62. http://dx.doi.org/10.1016/j.proeng.2014.09.160.

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de Wild, Michael, Simon Zimmermann, Marcel Obrecht, and Michel Dard. "Marker for the pre-clinical development of bone substitute materials." Current Directions in Biomedical Engineering 3, no. 2 (2017): 711–15. http://dx.doi.org/10.1515/cdbme-2017-0151.

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AbstractThin mechanically stable Ti-cages have been developed for the in-vivo application as X-ray and histology markers for the optimized evaluation of pre-clinical performance of bone graft materials. A metallic frame defines the region of interest during histological investigations and supports the identification of the defect site. This standardization of the procedure enhances the quality of pre-clinical experiments. Different models of thin metallic frameworks were designed and produced out of titanium by additive manufacturing (Selective Laser Melting). The productibility, the mechanica
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Tabourot, Laurent, Pascale Balland, Jonathan Raujol-Veillé, Mathieu Vautrot, Christophe Déprés, and Franck Toussaint. "Compartmentalized Model for the Mechanical Behavior of Titanium." Key Engineering Materials 504-506 (February 2012): 673–78. http://dx.doi.org/10.4028/www.scientific.net/kem.504-506.673.

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As close as you watch them, the materials (especially metals) present discontinuities that can easily be qualified as strong. Dislocations, structures formed by these dislocations, phases and grains are all discontinuities, also sources of heterogeneity, with effects on material behavior that are not really well reproduced by a model based on a continuity assessment. Consequently, the materials should be considered as a set of compartments with different behaviors. This promotes an alternative way to define models. A coherent modeling process is probably the integration of the different behavi
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