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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >On the Preparation of Advanced Materials via Pulsed Electric Current Sintering Procedures
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On the Preparation of Advanced Materials via Pulsed Electric Current Sintering Procedures

机译:脉冲电流烧结法制备高级材料的研究

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A general overview on the processing of a series of advanced engineering materials, synthesized via pulsed-electric-current-sintering related techniques, and the similarities in between those techniques are introduced in this work. This paper is focused on two major techniques; namely, the Spark Plasma Extrusion (SPE) and Current Assisted Infiltration Sintering (CAIS), which in turn are derived from the Spark Plasma Sintering (SPS) technique, all widely used by this research group. Not only the geometry but also the microstructure of thus prepared specimens might vary depending on the selected technique. The resulting specimens can be under the forms of discs (flat or thick coin-like), rivets (enlarged cylindrical bars)-like and/or disclosing interpenetrated periodic networks with regular or irregular (either coin or rivet/screw)-like specimens, respectively. As for the CAIS technique, either 3D printed ceramic frameworks or naturally synthesized porous substrates (such as bone-like structures), can be infiltrated with virtually any metal or alloy. Among the series of produced materials we can include, for example: biomaterials such as: Ti- and Mg-hydroxyapatite, pure hydroxyapatite HA, composites, e.g., A15083-CNT's, just to name a few. The expanding possibilities of SPS, SPE and CAIS techniques are briefly indicated here.
机译:本文介绍了通过脉冲电流烧结相关技术合成的一系列高级工程材料的加工概况,以及这些技术之间的相似性。本文着重于两种主要技术。即火花等离子挤压(SPE)和电流辅助渗透烧结(CAIS),它们又是由火花等离子烧结(SPS)技术衍生而来的,这些技术都被该研究小组广泛使用。如此制备的样品的几何形状和微观结构都可能会因所选技术而异。所得标本可以是圆盘状(扁平或厚的硬币状),铆钉(增大的圆柱状)状和/或具有规则或不规则(硬币状或铆钉/螺钉状)标本的互穿的周期性网络,分别。对于CAIS技术,实际上任何金属或合金都可以渗透3D打印的陶瓷框架或自然合成的多孔基材(例如骨状结构)。在一系列生产的材料中,我们可以包括,例如:生物材料,例如:Ti和Mg-羟基磷灰石,纯羟基磷灰石HA,复合材料,例如A15083-CNT,仅举几例。在此简要说明了SPS,SPE和CAIS技术的扩展可能性。

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