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首页> 外文期刊>JOM Journal of the Minerals, Metals and Materials Society >Ti matrix syntactic foam fabricated by powder metallurgy: Particle breakage and elastic modulus
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Ti matrix syntactic foam fabricated by powder metallurgy: Particle breakage and elastic modulus

机译:粉末冶金制备的Ti基复合泡沫:颗粒破裂和弹性模量

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Titanium matrix syntactic foams have potential for orthopedic applications because of their good biocompatibility, corrosion resistance and ability of varying the elastic modulus. This paper studies the fabrication of Ti matrix syntactic foams embedded with ceramic microspheres (CMs) by a powder metallurgy method. The percentage of the crushed CMs during compaction was measured by the volume measurement and water absorption methods, and the elastic modulus of the Ti matrix syntactic foam was measured by compression tests. The effects of the Ti volume percentage and the compaction pressure on the percentage of crushed CMs and the elastic modulus were studied. For a given Ti volume percentage, the percentage of crushed CMs increases with increasing compaction pressure; for a given compaction pressure, the percentage of crushed CMs decreases with increasing Ti volume percentage. At a compaction pressure lower than 100 MPa, the elastic modulus increases with increasing Ti volume percentage and compaction pressure; at a compaction pressure above 100 MPa, further increases in Ti volume percentage and compaction pressure decrease the elastic modulus.
机译:钛基复合泡沫塑料具有良好的生物相容性,耐腐蚀性和改变弹性模量的能力,因此在整形外科领域具有潜力。本文研究了粉末冶金法制备埋藏有陶瓷微球(CMs)的Ti基复合泡沫塑料。通过体积测量和吸水方法测量压实过程中压碎的CM的百分比,并通过压缩试验测量Ti基复合泡沫材料的弹性模量。研究了钛的体积百分比和压实压力对粉碎的CMs百分比和弹性模量的影响。对于给定的Ti体积百分比,压实CM的百分比随着压实压力的增加而增加;对于给定的压实压力,压碎的CMs的百分比随着Ti体积百分比的增加而降低。在压实压力低于100 MPa时,弹性模量随Ti体积百分比和压实压力的增加而增加;在高于100MPa的压实压力下,Ti体积百分比进一步增加,并且压实压力降低弹性模量。

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