粉末冶金材料科学与工程
粉末冶金材料科學與工程
분말야금재료과학여공정
POWDER METALLURGY MATERIALS SCIENCE AND ENGINEERING
2014年
4期
589-594
,共6页
张浩闯%张玉勤%蒋业华%周荣
張浩闖%張玉勤%蔣業華%週榮
장호틈%장옥근%장업화%주영
Ti-29Nb-13Ta-4.6Zr合金%放电等离子烧结%原料粒径%显微组织%力学性能
Ti-29Nb-13Ta-4.6Zr閤金%放電等離子燒結%原料粒徑%顯微組織%力學性能
Ti-29Nb-13Ta-4.6Zr합금%방전등리자소결%원료립경%현미조직%역학성능
Ti-29Nb-13Ta-4.6Zr alloy%spark plasma sintering%powder size%microstructure%mechanical properties
利用放电等离子烧结技术(SPS)制备生物医用Ti-29Nb-13Ta-4.6Zr合金,研究原料粒径与烧结温度对合金显微组织和力学性能的综合影响。结果表明:烧结合金组织由β-Ti 相基体及少量未熔化金属颗粒和残留α-Ti 相组成,烧结温度的升高会减少未熔化金属颗粒和残留α-Ti相;在相同烧结温度下,Nb、Ta、Zr金属颗粒粒径的减小,会促使烧结合金中的β-Ti相组织更为均匀并使未熔化金属颗粒明显减少,从而降低合金的压缩弹性模量和提高合金的抗压强度与致密度;在Nb、Ta、Zr金属颗粒粒径为10.5μm和烧结温度为1200℃时,合金获得了压缩弹性模量为46 GPa、抗压强度为1550 MPa的最佳综合力学性能。
利用放電等離子燒結技術(SPS)製備生物醫用Ti-29Nb-13Ta-4.6Zr閤金,研究原料粒徑與燒結溫度對閤金顯微組織和力學性能的綜閤影響。結果錶明:燒結閤金組織由β-Ti 相基體及少量未鎔化金屬顆粒和殘留α-Ti 相組成,燒結溫度的升高會減少未鎔化金屬顆粒和殘留α-Ti相;在相同燒結溫度下,Nb、Ta、Zr金屬顆粒粒徑的減小,會促使燒結閤金中的β-Ti相組織更為均勻併使未鎔化金屬顆粒明顯減少,從而降低閤金的壓縮彈性模量和提高閤金的抗壓彊度與緻密度;在Nb、Ta、Zr金屬顆粒粒徑為10.5μm和燒結溫度為1200℃時,閤金穫得瞭壓縮彈性模量為46 GPa、抗壓彊度為1550 MPa的最佳綜閤力學性能。
이용방전등리자소결기술(SPS)제비생물의용Ti-29Nb-13Ta-4.6Zr합금,연구원료립경여소결온도대합금현미조직화역학성능적종합영향。결과표명:소결합금조직유β-Ti 상기체급소량미용화금속과립화잔류α-Ti 상조성,소결온도적승고회감소미용화금속과립화잔류α-Ti상;재상동소결온도하,Nb、Ta、Zr금속과립립경적감소,회촉사소결합금중적β-Ti상조직경위균균병사미용화금속과립명현감소,종이강저합금적압축탄성모량화제고합금적항압강도여치밀도;재Nb、Ta、Zr금속과립립경위10.5μm화소결온도위1200℃시,합금획득료압축탄성모량위46 GPa、항압강도위1550 MPa적최가종합역학성능。
Ti-29Nb-13Ta-4.6Zr biomedical alloy was prepared by Spark Plasma Sintering (SPS) technology. The effects of raw powder size and sintering temperature on microstructure and mechanical properties of the alloys were investigated. The results show that, the alloys are consisted mainly of theβ-Ti phase matrix, the some unmelted Nb, Ta metal particles, and a littleα-Ti phase. With increasing sintering temperature, the content of unmelted Nb, Ta particles andα-Ti phase in the alloys decrease. With decreasing raw powder size, the β-Ti phase is more evenly distributed and the content of unmelted metal particles decrease significantly in the alloys at the same sintering temperature. As a result, the compressive elastic modulus of the alloys reduce. In the meantime, the compressive strength and the relative density of the alloys are improved. When the raw powder size of Nb, Ta and Zr is 10.5μm and the sintering temperature is 1 200℃, the best mechanical properties of the alloys are obtained with the compressive elastic modulus of 46 GPa and the compressive strength of 1 550 MPa.