热等静压羟基磷灰石基复合材料:第1部分。氧化铝纤维增强

N. Ehsani, A. Ruys, C. Sorrell
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引用次数: 5

摘要

将羟基磷灰石基复合材料的断裂韧性提高到与体内天然骨相当的水平是本研究的目的。使用石墨/不锈钢封装系统的热等静压能够生产出完全致密的无分解Hap,其韧性提高了2.4倍(Al2O3纤维,最佳Vol%为20)。纤维增强Hap的玻璃包封导致样品挥发曝气。结果表明,在100 Mpa(压平压力)下,合金的分解温度高于无压烧结。Al2o3纤维添加剂致塑性变形和韧性断裂的增韧效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydroxyapatite Matrix Composites by Hot Isostatic Pressing: Part 1. Alumina Fibre Reinforced
Fracture Toughness Improvement of the Hydroxyapatite Matrix Composite, to a Level Comparable to that of Natural Bone for in Vivo Applications, Was the Aim of the Present Work. Hot Isostatic Press Using a Graphite/stainless Steel Encapsulation System Enabled the Production of Fully Dense Decomposition-Free Hap with Toughness Improvements of: 2.4 Times (Al2O3 Fibres, Optimally 20 Vol%). Glass Encapsulation of Fibre-Reinforced Hap Resulted in Aeration from Sample Volatilization. Further, it Was Found that the Hap Decomposition Temperature Was Higher at 100 Mpa (the Hiping Pressure) than for Pressureless Sintering. the Toughening Effect of the Al2o3 Fibre Additive Induced Plastic Deformation and Ductile Fracture.
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