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Microhardness of pore walls in porous titanium prepared with novel powder metallurgy

机译:新型粉末冶金法制备的多孔钛合金孔壁的显微硬度

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摘要

Owing to the adjustable mechanical properties, porous titanium as bone substitute can reduce the effect of stress shielding. Microhardness and its distribution on pore walls are good factors to determine the microstructure of porous titanium related to the wear and corrosion resistance in vivo. In the procedure of novel powder metallurgy, porous titanium was prepared after space holders as the second phase were removed during heat treatment. Through changing the compaction pressure, sintering temperature or holding time, porous bodies with different sintering index were prepared. The effect of the friction between die wall and powders or between powders themselves can be reduced by changing the compaction pressure. The mean hardness Hm and homogeneous index HI are used to determine the homogeneity of porous structures. In order to gain specimens with high sintering index or high micro-hardness, sintering at higher temperature is preferred for longer Holding time.
机译:由于可调节的机械性能,多孔钛作为骨替代物可以降低应力屏蔽的效果。显微硬度及其在孔壁上的分布是确定与体内耐磨性和耐蚀性有关的多孔钛微结构的良好因素。在新型粉末冶金的过程中,在热处理期间去除了作为第二相的空间保持器之后,制备了多孔钛。通过改变压制压力,烧结温度或保温时间,制备了具有不同烧结指数的多孔体。模具壁与粉末之间或粉末本身之间的摩擦影响可以通过改变压实压力来降低。平均硬度Hm和均质指数HI用于确定多孔结构的均质性。为了获得具有高烧结指数或高显微硬度的标本,最好在较高温度下烧结以延长保持时间。

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