材料科学
烧结
钛合金
钛
棕榈硬脂
原材料
复合材料
钛粉
极限抗拉强度
复合数
多孔性
造型(装饰)
冶金
合金
棕榈油
化学
有机化学
生物
农林复合经营
作者
Nurul Nadiah Mahmud,Abu Bakar Sulong,Bhupendra Sharma,Kei Ameyama
出处
期刊:Metals
[Multidisciplinary Digital Publishing Institute]
日期:2021-02-12
卷期号:11 (2): 318-318
被引量:7
摘要
Ti6Al4V-HA composites have been recognized for their potential for biomedical implantation purposes. In the present study, Ti6Al4V-HA composites were fabricated by Powder Injection Molding (PIM) route. Ti6Al4V-HA feedstock at a ratio of 87:13 vol.% was prepared by using a binder system consisting of palm stearin (PS) and polyethylene (PE). The Critical Powder Volume Percentage (CPVP) value for Ti6Al4V-HA was 68 vol.%. Ti6Al4V-HA feedstock was developed at 66 vol.% powder loading. Ti6Al4V-HA feedstock showed pseudoplastic behaviour with a low viscosity and low activation energy of flow and was successfully injected into a tensile bar shape. The debinding process involved a solvent and thermal debinding operation. The debonded parts were sintered at 1300 °C, and the influence of the presintering stage on the physical and mechanical properties of the sintered parts was investigated. It was proven that the presintering stage was able to restrain the transformation of Ti6Al4V into Ti3Al (α2) as well as the decomposition of HA. These are key findings ideas for the designing of sintering parameters, where the decomposition of HA becoming the main problem in the sintering of Ti6Al4V-HA composites at a high temperature. The obtained results also showed that the sintered parts had a porous structure, which looked promising for their use in biomedical implantations. purposes.
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