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Spark plasma sintering novel tooling design: temperature uniformization during consolidation of silicon nitride powder

机译:火花等离子体烧结的新颖工具设计:氮化硅粉末固结过程中的温度均匀化

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Spark Plasma Sintering (SPS) of silicon nitride is affected by temperature non-uniformities within the powder compact, resulting in density and microstructure inhomogeneities. A double-pyrometer experimental setup reveals a temperature disparity of 100–200°C between the overheated outer surface of the die and the bottom of the upper punch, as a consequence of the electric current concentration through the die’s wall characterizing the SPS of non-conductive powders utilizing conventional SPS tooling. A novel tooling design, consisting in the tailored drilling of axial cylindrical or ring-shaped holes within the punch, is individuated and optimized through a campaign of fully-coupled thermal, electrical and mechanical finite element simulations. The analysis of the numerical results, experimentally assessed, allows for a comprehensive understanding of the phenomena underlying radial temperature distributions in SPS and leads to the development of a technological solution for the uniformization of temperature distribution.
机译:氮化硅的火花等离子体烧结(SPS)受粉末压块内部温度不均匀的影响,从而导致密度和微观结构不均匀。双高温计实验装置显示出,模具外表面过热与上冲头底部之间存在100-200°C的温度差异,这是由于通过模具壁的电流集中导致非SPS的特征。利用常规SPS工具的导电粉末。通过全面耦合的热,电和机械有限元模拟,可以个性化和优化一种新颖的工具设计,其中包括对冲头内的轴向圆柱形或环形孔进行定制钻削。通过对实验结果进行评估,可以对数值结果进行分析,从而全面了解SPS中径向温度分布的基本现象,从而可以开发出一种温度分布均匀的技术解决方案。

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