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Spark Plasma Sintering of Commercial Zirconium Carbide Powders: Densification Behavior and Mechanical Properties

机译:商用碳化锆粉末的火花等离子体烧结:致密化行为和力学性能

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摘要

Commercial zirconium carbide (ZrC) powder is consolidated by Spark Plasma Sintering (SPS). Processing temperatures range from 1650 to 2100 °C. Specimens with various density levels are obtained when performing single-die SPS at different temperatures. Besides the single-die tooling setup, a double-die tooling setup is employed to largely increase the actual applied pressure to achieve higher densification in a shorter processing time. In order to describe the densification mechanism of ZrC powder under SPS conditions, a power-law creep constitutive equation is utilized, whose coefficients are determined by the inverse regression of the obtained experimental data. The densification of the selected ZrC powder is shown to be likely associated with grain boundary sliding and dislocation glide controlled creep. Transverse rupture strength and microhardness of sintered specimens are measured to be up to 380 MPa and 24 GPa, respectively. Mechanical properties are correlated with specimens’ average grain size and relative density to elucidate the co-factor dependencies.
机译:商业碳化锆(ZrC)粉末通过火花等离子烧结(SPS)进行固结。加工温度范围为1650至2100°C。当在不同温度下执行单芯片SPS时,可以获得具有不同密度级别的标本。除了单模工具设置外,还采用了双模工具设置,以大大增加实际施加的压力,从而在较短的处理时间内实现更高的密度。为了描述ZrC粉末在SPS条件下的致密化机理,利用幂律蠕变本构方程,其系数由获得的实验数据的逆回归确定。所选ZrC粉末的致密化可能与晶界滑动和位错滑移控制的蠕变有关。烧结样品的横向断裂强度和显微硬度分别达到380 MPa和24 GPa。力学性能与样品的平均晶粒尺寸和相对密度相关,以阐明辅助因子的依赖性。

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