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Rapid processing & characterization of micro-scale functionally graded porous materials

机译:微米级功能梯度多孔材料的快速加工和表征

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Spark plasma sintering (SPS) is a process that has stimulated worldwide interest for the rapid consolidation of powder-based materials through the combined effects of electric current and pressure. Recently the localization of SPS has been realized through current activated tip-based sintering (CATS) where electric current is selectively applied to small targeted regions of a green compact/powder bed via a precision controlled electrically conductive small tip. The unique tip-specimen geometry allows for locally controlled temperature and current distributions that can result in microstructural modifications on the micro-scale. The present paper presents for the first time the rapid processing and characterization of micro-scale functionally graded materials in relation to porosity content and size. The effects of initial green density and particle size on the developed micro-scale functionally graded material are discussed.
机译:火花等离子体烧结(SPS)这一过程已经激发了全世界对于通过电流和压力的综合作用快速固结粉末基材料的兴趣。最近,通过电流激活的基于尖端的烧结(CATS)实现了SPS的定位,其中电流通过精密控制的导电小尖端选择性地施加到生坯/粉末床的小目标区域。独特的尖端试样几何形状允许局部控制温度和电流分布,这可能导致微观结构的微观结构改变。本文首次介绍了与孔隙率含量和尺寸有关的微细功能梯度材料的快速加工和表征。讨论了初始绿色密度和粒径对开发的微米级功能梯度材料的影响。

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