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首页> 外文期刊>Metals and Materials International >Self-consolidation mechanism of porous-surfaced Ti implant compacts induced by electro-discharge-sintering of spherical Ti powders
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Self-consolidation mechanism of porous-surfaced Ti implant compacts induced by electro-discharge-sintering of spherical Ti powders

机译:球形Ti粉的电火花烧结诱导的多孔表面Ti植入物的自固结机理

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Porous-surfaced Ti implant compacts, with a solid core surrounded by a porous layer, were self-assembled by electro-discharge-sintering directly from spherical Ti powders. During an electro-discharge, instant high temperatures through the Ti powder column ranged from 1093 to 4925 A degrees C were generated in times as short as 86-153 A mu sec. At the same time, pinch pressures ranging from 11 to 38 MPa were applied, especially to the middle of the Ti powder column. The solid core size depended on both the pinch pressure magnitude and the heat generated during a discharge. Both the pinch pressure (to squeeze and deform Ti powder particles), and the heat (to weld them together), were key factors in the production of porous-surfaced Ti implant compacts. It is thus suggested that the input energy at constant capacitance is a controllable electro-discharge parameter affecting the porosity and strength of the porous-surfaced Ti implant compacts.
机译:通过直接从球形Ti粉末进行电火花烧结自组装多孔表面的Ti植入物压块,其实心核被多孔层包围。在放电过程中,经过Ti粉柱的瞬间高温在短至86-153 Aμsec的时间内产生,范围从1093至4925 A摄氏度。同时,特别是在Ti粉柱的中间施加了11到38 MPa的收缩压力。实心芯的大小取决于收缩压力大小和放电过程中产生的热量。挤压压力(挤压和变形Ti粉末颗粒)和热量(将它们焊接在一起)都是生产多孔表面Ti植入物压块的关键因素。因此建议在恒定电容下的输入能量是可控制的放电参数,会影响多孔表面Ti植入物的孔隙率和强度。

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