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Effect of B 4C particle size on the mechanical properties of B 4C reinforced aluminum matrix layered composite

机译:B 4 C粒径对B 4 C增强铝基层状复合材料力学性能的影响

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Reinforcement particle size is very important for the performance of metal ceramic composites. This work studied the influence of B_(4)C particle size on the mechanical properties of Al matrix layered composites. These composites were fabricated using a simplified semicontinuous casting and hot-rolling process. To obtain an optimized filling structure of particles, Horsfield filling principle was applied to determine the size and mass fraction of B_(4)C particles. Four sizes of B_(4)C particles were used with various combinations. The results showed that with the increase of the B_(4)C particle size and fine B_(4)C mass fraction, the hardness of the composites decreases whereas the impact strength and ultimate tensile strength increase. The residual stress at interface should be responsible for the variation in properties. Besides, the interparticle distance also contributes to the change in impact strength and ultimate tensile strength.
机译:增强粒径对于金属陶瓷复合材料的性能非常重要。这项工作研究了B_(4)C粒径对Al基层状复合材料力学性能的影响。这些复合材料是使用简化的半连续铸造和热轧工艺制造的。为了获得优化的颗粒填充结构,应用Horsfield填充原理确定B_(4)C颗粒的大小和质量分数。使用了四种大小的B_(4)C颗粒,并具有各种组合。结果表明,随着B_(4)C粒径和细B_(4)C质量分数的增加,复合材料的硬度降低,而冲击强度和极限拉伸强度提高。界面处的残余应力应负责特性的变化。此外,粒子间距离也有助于冲击强度和极限拉伸强度的变化。

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