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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Superelasticity and compression behavior of porous TiNi alloys produced using Mg spacers
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Superelasticity and compression behavior of porous TiNi alloys produced using Mg spacers

机译:使用Mg垫片生产的多孔TiNi合金的超弹性和压缩行为

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摘要

In the scope of the present study, Ni-rich TiNi (Ti-50.6 at %Ni) foams with porosities in the range 38-59% were produced by space holder technique using spherical magnesium powders as space formers. Single phase porous TiNi alloys produced with spherical pores were subjected to loading-unloading cycles in compression up to 250. MPa stress levels at different temperatures in as-processed and aged conditions. It has been observed that strength, elastic modulus and critical stress for inducing martensite decrease with increasing porosity. Partial superelasticity was observed for all porosity levels at different test temperatures and conditions employed. Irrecoverable strain was found to decrease with pre-straining and with increasing test temperature. Unlike in bulk TiNi alloys a constant stress plateau has not been observed during the compression testing of porous TiNi alloys. Instead linear superelasticity with a quite steep slope allowing 5% applied strain to be recovered after pre-straining or aging was observed. Even at test temperatures higher than austenite finish temperature in as-sintered and aged condition, strain applied could not be recovered fully due to martensite stabilization resulting from heavy deformation of macro-pore walls and sintering necks. TiNi foams produced with porosities in the range of 38-51% meet the main requirements of biomaterials in terms of mechanical properties for use as bone implant.
机译:在本研究的范围内,使用球形镁粉作为空间形成剂,通过空间保持器技术生产了孔隙率在38-59%范围内的富镍TiNi(Ti-50.6 at%Ni)泡沫。在加工和时效条件下,在不同温度下,具有球形孔的单相多孔TiNi合金在高达250. MPa的压力下经受加载/卸载循环。已经观察到,诱导马氏体的强度,弹性模量和临界应力随着孔隙率的增加而降低。在所采用的不同测试温度和条件下,在所有孔隙度水平下均观察到部分超弹性。发现不可恢复的应变随着预应变和测试温度的升高而降低。与块状TiNi合金不同,在多孔TiNi合金的压缩测试过程中未观察到恒定的应力平稳期。取而代之的是观察到具有相当陡峭斜率的线性超弹性,从而可以在预应变或老化之后恢复5%的施加应变。即使在高于烧结和时效条件下的奥氏体终点温度的测试温度下,由于大孔壁和烧结颈的严重变形导致的马氏体稳定作用,所施加的应变也无法完全恢复。生产的TiNi泡沫的孔隙率在38-51%的范围内,可以满足生物材料对用作骨植入物的机械性能的主要要求。

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