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COMPARISON OF CONVENTIONAL AND MICROWAVE SINTERING OF BIOCERAMICS

机译:生物陶瓷常规和微波烧结的比较

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Hydroxyapatite (HA) presents excellent biocompatibility because of its chemical composition close to that of human bone. However, its low mechanical properties limit the structural uses. An interesting way to improve the mechanical resistance of HA consists in obtaining dense samples with fine microstracture, With this aim, microwaves represent a promising method due to the very short thermal treatment duration. In this study, the direct microwave sintering in a single mode cavity was first investigated: >99% dense samples with submicronic microstructures were obtained in less than 15 minutes of irradiation. The resulting mechanical properties are therefore improved: higher Young modulus (> 140 GPa), higher hardness (> 9 GPa) than those classically reported with other sintering processes. The obtained results are discussed according to the microstructures and experimental parameters such as sintering temperature and microwave irradiation time. The second part of this work consists in scaling up the microwaves process to obtain larger sized dense parts (more than 40mm diameter). To achieve this goal, sintering was carried out in a 2.45 GHz multimode furnace. The resulting microstructures and mechanical properties are discussed regarding the specific characteristics of this microwaves process.
机译:羟基磷灰石(HA)呈现出优异的生物相容性,因为其化学成分接近人骨的化学成分。然而,其低机械性能限制了结构用途。一种有趣的方法来提高HA的机械电阻包括在具有精细微动画的致密样品中,用这种目的,微波表示由于非常短的热处理持续时间而有希望的方法。在这项研究中,首先研究了单模腔中的直接微波烧结:>在不到15分钟的照射中获得99%致密样品。因此,所得到的机械性能得到改善:较高杨氏模量(> 140 GPa)的,较高的硬度(> 9 GPa)的比用其它烧结方法经典的报道。根据烧结温度和微波照射时间的微观结构和实验参数讨论得到的结果。这项工作的第二部分包括缩放微波过程,以获得更大的尺寸密集部分(直径超过40mm)。为了实现这一目标,烧结是在2.45 GHz多模炉中进行的。关于该微波过程的具体特征讨论了所得的微观结构和机械性能。

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