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Microstructural Modelling and Performance Simulation of Engineered Bio-Composites

机译:工程生物复合材料的微结构建模与性能模拟

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A primary goal in modern orthopaedics is increasing the rate and long-lasting anchoring of implants in the human body. Hydroxyapatite, having a chemical structure and chemistry that is identical to bone, significantly enhances the ongrowth and subsequent ingrowth of natural bone material. Nevertheless some aspects of the performance of hydroxyapatite coatings have not been investigated sufficiently; for example the in vivo, long-term behaviour of the material, including the time-dependent dissolution accompanied by changes of mechanical properties have been poorly documented. The current study creates an idealized, virtual microstructural coating model that examines the time-dependent behaviour and properties of hydroxyapatite coatings. The analyses examine time vs. dissolution dependencies that reflect in vivo behaviour.
机译:现代骨科的主要目标正在增加人体中植入物的速率和长期堆积。具有与骨骼相同的化学结构和化学的羟基磷灰石显着增强了天然骨材料的初步和随后的发起。然而,羟基磷灰石涂层的性能的一些方面尚未得到充分研究;例如,体内,材料的长期行为,包括伴随机械性能变化的时间依赖性溶解已经记录不佳。目前的研究创造了一种理想化的虚拟微观结构涂层模型,用于检查羟基磷灰石涂层的时间依赖性行为和性质。分析检查反映体内行为的时间与溶出依赖性。

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