Hot Isostatic Pressing (HIPing) of FeCralloy®-Reinforced Hydroxyapatite

N. Ehsani, A. Ruys, C. Sorrell
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引用次数: 7

Abstract

The goal of this study was to produce hydroxyapatite (HAp), a bioactive biomaterial, in a decomposition-free form with fracture toughness comparable to bone by metal fibre-reinforcement. This goal was ultimately achieved. Glass encapsulation of FeCralloy®-reinforced HAp was an unsuccessful technique due to the excessive low-temperature volatilisation, which aerated the glass. Therefore a graphite/stainless steel encapsulation system was used in the present study. Hot isostatic pressing enabled the production of fully dense decomposition-free HAp with toughness improvements of 14 times (FeCralloy® fibres, optimally 15 vol%), comparable to cortical bone. Further, it was found that the HAp decomposition temperature was higher at 100 MPa (the HIPing pressure) than for pressureless sintering. Addition of the FeCralloy® fibre additive induced significant plastic deformation and ductile fracture of the hydroxyapatite.
铁合金®增强羟基磷灰石的热等静压(HIPing)
这项研究的目的是生产羟基磷灰石(HAp),这是一种生物活性生物材料,通过金属纤维增强,以不分解的形式具有与骨相当的断裂韧性。这一目标最终实现了。铁合金®增强HAp的玻璃封装是一种不成功的技术,因为过度的低温挥发使玻璃曝气。因此,本研究采用石墨/不锈钢封装体系。热等静压能够生产出完全致密的无分解HAp,其韧性提高了14倍(FeCralloy®纤维,最佳为15 vol%),与皮质骨相当。此外,发现在100 MPa (HIPing压力)下,HAp的分解温度比无压烧结时更高。FeCralloy®纤维添加剂的加入引起了羟基磷灰石的显著塑性变形和韧性断裂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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