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首页> 外文期刊>Journal of Materials Research >Processing and properties of highly porous Ti6Al4V mimicking human bones
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Processing and properties of highly porous Ti6Al4V mimicking human bones

机译:模仿人体骨骼的高孔隙度Ti6Al4V的加工和性能

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Ti6Al4V alloy samples with large pores suitable for bone implants are fabricated by pressing and sintering. Ti6Al4V powder is mixed with different volume fractions of salt particles. The sintering behavior up to 1260 degrees C is studied by dilatometry and pore features are observed by scanning electron microscopy and X-ray microtomography. Sintered materials with a relative density between 0.26 and 0.97 are obtained. 3D image analysis proves that large pores form a connected network when the amount of salt is 20% and above. The Young's modulus and the yield stress of sintered materials deduced from compression tests span over wide ranges of values, which are consistent with real bone data. A simple analytical model is proposed to estimate the relative density as a function of the fraction of salt. This model combined with classical Gibson and Ashby's power equations for mechanical properties can predict the fraction of salt required to obtain prescribed properties.
机译:通过压制和烧结来制造具有适合于骨植入物的大孔的Ti6Al4V合金样品。将Ti6Al4V粉末与不同体积分数的盐颗粒混合。通过膨胀计研究了高达1260℃的烧结行为,并且通过扫描电子显微镜和X射线显微照相术观察了孔特征。获得相对密度在0.26至0.97之间的烧结材料。 3D图像分析证明,当盐的量大于等于20%时,大孔会形成连接的网络。由压缩试验得出的烧结材料的杨氏模量和屈服应力跨越很宽的数值范围,与真实的骨骼数据一致。提出了一个简单的分析模型来估计相对密度与盐分的关系。该模型与经典Gibson和Ashby的机械性能幂方程相结合,可以预测获得规定性能所需的盐分。

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