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Microstructure and superelasticity of porous NiTi alloy 被引量:1

Microstructure and superelasticity of porous NiTi alloy
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摘要 The microstructure, porosity, phase composition and superelasticity (SE) in porous NiTi alloys produced by elemental powder sintering are examined by SEM, image analysis and XRD. It is found that it is feasible to produce porous NiTi alloy by elemental powder sintering, and the porosity of sintered porous NiTi alloy is in the range of 36.0 %-41.5 %. The pores are interconnected and the microstructure is sponge-like. Meanwhile, porous NiTi alloy has good SE. XRD patterns show that there is no pure Ni in alloy sintered at 1223 K-9 h. Compared with the biomedical criteria for choice of implanting materials, porous NiTi alloy is satisfying to a great degree. The microstructure, porosity, phase composition and superelasticity (SE) in porous NiTi alloys produced by elemental powder sintering are examined by SEM, image analysis and XRD. It is found that it is feasible to produce porous NiTi alloy by elemental powder sintering, and the porosity of sintered porous NiTi alloy is in the range of 36.0%–41.5%. The pores are interconnected and the microstructure is sponge-like. Meanwhile, porous NiTi alloy has good SE. XRD patterns show that there is no pure Ni in alloy sintered at 1 223 K-9 h. Compared with the biomedical criteria for choice of implanting materials, porous NiTi alloy is satisfying to a great degree.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 1999年第1期94-99,共6页 中国科学(技术科学英文版)
基金 Project supported by the Chinese Academy of Sciences under key program (Grant No. 971524).
关键词 POWDER SINTERING POROUS ALLOY NITI shape memory ALLOY superelasticity. powder sintering porous alloy NiTi shape memory alloy superelasticity
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  • 1XU Miaohua1, LI Yutong1, YUAN Xiaohui1,2, ZHENG Zhiyuan1, LIANG Wenxi1, YU Quanzhi1, ZHANG Yi1, WANG Zhaohua1, WEI Zhiyi1 & ZHANG Jie1 1. Key Laboratory of Optical Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100080, China,2. State Key Laboratory of Transient Optics Technology, Chinese Academy of Sciences, Xi’an 710068, China.Generation of surface electrons in femtosecond laser-solid interactions[J].Science China(Physics,Mechanics & Astronomy),2006,49(3):335-340. 被引量:5

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