AbstractPore characteristics and morphology have significant effect on mechanical behavior of porous N'/> Mechanical Degradation of Porous NiTi Alloys Under Static and Cyclic Loading
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Mechanical Degradation of Porous NiTi Alloys Under Static and Cyclic Loading

机译:静态循环载荷下多孔氮合金机械降解

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AbstractPore characteristics and morphology have significant effect on mechanical behavior of porous NiTi specimens. In this research, porous NiTi with different pore sizes, shapes and morphology were produced by powder metallurgy methods using space-holder materials. The effect of the pore characteristics on the mechanical properties was investigated by static and cyclic compression tests at body temperature. The results show that specimens with low porosity and isolated pores exhibit more mechanical strength and recoverable strain. The specimen with 36% porosity produced without space holder could preserve its properties up to 10% strain and its strain recovery was complete after cyclic compression tests. On the other hand, the specimens produced by a urea space holder with more than 60% interconnected porosity show rapid degradation of their scaffolds. The highly porous specimens degraded even below 5% strain due to crack formation and propagation in the thin pore walls. For highly porous specimens produced by a NaCl space holder, the pores are partially interconnected with a cubic shape; nevertheless, their mechanical behavior is close to low-porosity specimens.]]>
机译:<![CDATA [ <标题>抽象 ara Id =“par1”>孔隙特征和形态对机械行为有显着影响多孔的硝基标本。在本研究中,通过使用空间架材料的粉末冶金方法产生具有不同孔径,形状和形态的多孔NITI。通过在体温下静态和环状压缩试验研究了孔特性对机械性能的影响。结果表明,具有低孔隙率和隔离孔的标本表现出更多机械强度和可恢复的菌株。具有36%孔隙率没有空间夹持器的样品可以保持其特性,其特性高达10%的菌株,并且在环状压缩试验后,其应变恢复完成。另一方面,由尿素空间支架产生的标本,其具有超过60%的相互连接的孔隙率显示出其支架的快速降解。由于薄孔壁中的裂缝形成和繁殖,高度多孔的标本甚至降低了5%的菌株。对于由NaCl空间支架产生的高度多孔标本,孔隙部分地互连立方体;然而,它们的力学行为接近低孔隙度标本。 ]]>

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