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Effect of Milling on the Mechanical Properties of Chopped SiC Fiber-Reinforced ZrB2

机译:铣削对短切SiC纤维增强ZrB 2 力学性能的影响

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摘要

This work aims at studying the effect of the milling conditions on the microstructure and mechanical properties of a ZrB2-5 vol% Si3N4 matrix reinforced with chopped Hi-Nicalon SiC fibers. Several composites were obtained using different milling conditions in terms of time, speed and type of milling media. The composites were prepared from commercial powders, ball milled, dried and shaped, and hot pressed at 1720 °C. Their relative bulk densities achieved values as high as 99%. For each material the fiber length distribution, the extent of reacted fiber area and matrix mean grain size were evaluated in order to ascertain the effects of milling time, milling speed and type of milling media. While the fracture toughness and hardness were statistically the same independently of the milling conditions, the flexural strength changed. From the results obtained, the best milling conditions for optimized mechanical properties were determined.
机译:这项工作旨在研究铣削条件对ZrB 2 -5 vol%Si 3 N 4 的显微组织和力学性能的影响。切碎的Hi-Nicalon SiC纤维增强的基体。在时间,速度和研磨介质类型方面,使用不同的研磨条件获得了几种复合材料。由商业粉末制备复合材料,进行球磨,干燥和定型,然后在1720°C下热压。它们的相对堆积密度达到了高达99%的值。对每种材料的纤维长度分布,反应纤维面积的程度和基体平均晶粒度进行了评估,以确定研磨时间,研磨速度和研磨介质类型的影响。尽管断裂韧性和硬度在统计上与铣削条件无关,但抗弯强度却发生了变化。从获得的结果中,确定了用于优化机械性能的最佳研磨条件。

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