首页> 外文期刊>Journal of Applied Biomaterials & Biomechanics >Perspectives of the Si_3N_4-TiN ceramic composite as a biomaterial and manufacturing of complex-shaped implantable devices by electrical discharge machining (EDM)
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Perspectives of the Si_3N_4-TiN ceramic composite as a biomaterial and manufacturing of complex-shaped implantable devices by electrical discharge machining (EDM)

机译:Si_3N_4-TiN陶瓷复合材料作为生物材料的前景以及通过放电加工(EDM)制造复杂形状的可植入设备的观点

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Purpose: In this work we investigated the suitability of electroconductive silicon nitride/titanium nitride composite for biomedical implantable devices with particular attention on the processing route that allows the net-shaping of complex components by electrical discharge machining (EDM). Methods: The composite, constituted mainly of a β-Si_3N_4' dispersed TiN grains and a glassy grain boundary phase, exhibited a low density and high hardness, strength and toughness. Bulk, surface characteristics and properties of the Si_3N_4-TiN composite were analyzed. After the EDM process, the microstructure of the machined surface was examined. Results and Conclusions: The obtained results showed that the Si_3N_4-TiN ceramic composite together with the EDM manufacturing process might potentially play a key role in implantable load-bearing prosthesis applications.
机译:目的:在这项工作中,我们研究了导电氮化硅/氮化钛复合材料在生物医学可植入设备中的适用性,并特别关注允许通过放电加工(EDM)净成形复杂部件的工艺路线。方法:该复合材料主要由β-Si_3N_4'分散的TiN晶粒和玻璃态晶界相组成,具有低密度,高硬度,高强度和高韧性的特点。分析了Si_3N_4-TiN复合材料的体积,表面特性和性能。在电火花加工之后,检查加工表面的微观结构。结果与结论:获得的结果表明,Si_3N_4-TiN陶瓷复合材料与EDM制造工艺一起可能在植入式负重假体应用中发挥关键作用。

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