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Original Articles

Analysis of bending strength of porous titanium processed by space holder method

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Pages 67-70 | Received 16 Jun 2008, Accepted 03 Jan 2009, Published online: 12 Nov 2013

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C. Guerra, C. Aguilar, D. Guzmán, M. Arancibia, P. A. Rojas, S. Lascano & L. Perez. (2015) Production and characterisation of mechanical properties of Ti–Nb–Ta–Mn alloys foams for biomedical applications. Powder Metallurgy 58:1, pages 12-15.
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I. M. Pohrelyuk, A. G. Luk’yanenko, O. V. Tkachuk & Kh. S. Shlyahetka. (2019) Corrosion Resistance of Sintered Commercially Pure Titanium in Inorganic Acids after Oxidation and Nitriding. JOM 71:12, pages 4910-4916.
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Mohit Sharma, O. P. Modi & Punit Kumar. (2018) Synthesis and characterization of copper foams through a powder metallurgy route using a compressible and lubricant space-holder material. International Journal of Minerals, Metallurgy, and Materials 25:8, pages 902-912.
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Biao Zhao, Tianyu Yu, Wenfeng Ding, Liangchi Zhang, Honghua Su & Zhenzhen Chen. (2018) Effect of micropores on the microstructure and mechanical properties of porous Cu-Sn-Ti composites. Materials Science and Engineering: A 730, pages 345-354.
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Biao Zhao, Tianyu Yu, Wenfeng Ding, Xianying Li & Honghua Su. (2018) BP neural network based flexural strength prediction of open-porous Cu-Sn-Ti composites. Progress in Natural Science: Materials International 28:3, pages 315-324.
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Biao Zhao, Asit Kumar Gain, Wenfeng Ding, Liangchi Zhang, Xianying Li & Yucan Fu. (2017) A review on metallic porous materials: pore formation, mechanical properties, and their applications. The International Journal of Advanced Manufacturing Technology 95:5-8, pages 2641-2659.
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Majid Abdellahi, Aliakbar Najafinezhad, Hamid Ghayour, Saeed Saber-Samandari & Amirsalar Khandan. (2017) Preparing diopside nanoparticle scaffolds via space holder method: Simulation of the compressive strength and porosity. Journal of the Mechanical Behavior of Biomedical Materials 72, pages 171-181.
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?. ?. Pohrelyuk, O. V. Ovchynnykov, ?. ?. Skrebtsov, Kh. S. Shvachko, R. V. Proskurnyak & S. ?. Lavrys?. (2017) Corrosion Properties of Titanium Obtained by the Method of Powder Metallurgy. Materials Science 52:5, pages 700-705.
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B. Arifvianto, M.A. Leeflang & J. Zhou. (2016) Characterization of the porous structures of the green body and sintered biomedical titanium scaffolds with micro-computed tomography. Materials Characterization 121, pages 48-60.
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I. M. Pogrelyuk, O. V. Ovchynnykov, A. A. Skrebtsov & Kh. S. Shvachko. (2016) Effect of the Starting Powder Mixture on the Porosity and Corrosion Properties of Sintered Titanium in Corrosive Media. Powder Metallurgy and Metal Ceramics 55:7-8, pages 445-453.
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Sedat Özbilen, Daniela Liebert, Tilmann Beck & Martin Bram. (2016) Fatigue behavior of highly porous titanium produced by powder metallurgy with temporary space holders. Materials Science and Engineering: C 60, pages 446-457.
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Xiao Jian, Cui Hao, Qiu Guibao & Yang Yang. 2016. Characterization of Minerals, Metals, and Materials 2016. Characterization of Minerals, Metals, and Materials 2016 27 34 .
Xiao Jian, Cui Hao, Qiu Guibao & Yang Yang. 2016. Characterization of Minerals, Metals, and Materials 2016. Characterization of Minerals, Metals, and Materials 2016 27 34 .
Xiao Jian, Cui Hao, Qiu Guibao, Yang Yang & Lyu Xuewei. (2015) Investigation on relationship between porosity and spacer content of titanium foams. Materials & Design 88, pages 132-137.
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Budi Arifvianto & Jie Zhou. (2014) Fabrication of Metallic Biomedical Scaffolds with the Space Holder Method: A Review. Materials 7:5, pages 3588-3622.
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Lucía Reig, Concepción Tojal, David Busquets & Vicente Amigó. (2013) Microstructure and Mechanical Behavior of Porous Ti–6Al–4V Processed by Spherical Powder Sintering. Materials 6:10, pages 4868-4878.
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C. Tojal, V. Amigó & J. A. Calero. (2013) Fabricación y caracterización de aleaciones porosas de Ti y Ti6Al4V producidas mediante sinterización con espaciador. Revista de Metalurgia 49:1, pages 20-30.
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. (2012) Porous Materials. Journal of the Japan Society for Technology of Plasticity 53:619, pages 743-747.
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Lucía Reig, Vicente Amigó, David J. Busquets & Jose A. Calero. (2012) Development of porous Ti6Al4V samples by microsphere sintering. Journal of Materials Processing Technology 212:1, pages 3-7.
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