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Effects of deformed volume, volume fraction and particle size on the deformation behaviour of W/Cu composites

机译:变形体积,体积分数和粒径对钨铜复合材料变形行为的影响

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摘要

Tungsten/copper (W/Cu) particle reinforced composites were used to investigate the scaling effects on the deformation and fracture behaviour. The effects of the volume fraction and the particle size of the reinforcement (tungsten particles) were studied. W/Cu-80/20, 70/30 and 60/40 wt.% each with tungsten particle size of 10 mu m and 30 mu m were tested under compression and shear loading. Cylindrical Compression specimens with different volumes (D-s = H) were investigated with strain rates between 0.001 s(-1) and about 5750 s(-1) at temperatures from 20 degrees C to 800 degrees C. Axis-symmetric hat-shaped shear specimens with different shear zone widths were examined at different strain rates as well. A clear dependence of the flow stress on the deformed volume and the particle size was found under compression and shear loading. Metallographic investigation was carried out to show a relation between the deformation of the tungsten particles and the global deformation of the specimens. The size of the deformed zone under either compression or shear loading has shown a clear size effect on the fracture of the hat shaped specimens.
机译:钨/铜(W / Cu)颗粒增强复合材料用于研究结垢对变形和断裂行为的影响。研究了增强剂(钨颗粒)的体积分数和粒径的影响。在压缩和剪切负荷下测试钨颗粒尺寸分别为10μm和30μm的W / Cu-80 / 20、70 / 30和60 / 40wt。%。研究了在20摄氏度至800摄氏度的温度下应变率在0.001 s(-1)和约5750 s(-1)之间的不同体积(Ds = H)的圆柱压缩标本。轴对称帽状剪切标本在不同的应变速率下,对具有不同剪切带宽度的材料也进行了检查。在压缩和剪切载荷下,发现流应力与变形量和颗粒大小有明显的相关性。进行了金相研究,以显示钨颗粒的变形与试样整体变形之间的关系。压缩或剪切载荷作用下的变形区的大小对帽形试样的断裂表现出明显的尺寸影响。

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