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Evolution of microstructure and mechanical properties of Al-B4C composite after recycling

机译:再循环后Al-B4C复合材料微观结构和力学性能的演变

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A remelting method was used to recycle Al-15wt.% B4C composite and the microstructure and mechanical properties of the composite were investigated before and after recycling.Scanning electronic microscope(SEM)showed that some of the particle clusters present in the original composite were broken down and the distribution of B4C in the matrix was more uniform after recycling.The interface reaction was further intensified and the protection layer coated on the surface of B4C was thicker after recycling.In addition,there were more TiB2 particles which peeled off from the surface of B4C and distributed around B4C.Al3Ti phase,which was present in the original composite,disappeared after recycling,while AI3BC phase increased markedly.Tensile test and hardness test revealed that the mechanical properties were preserved well after recycling.Therefore,it is proposed that remelting method is a feasible method for A1-B4C composite recycling.
机译:将重熔方法用于回收Al-15wt。%B4C复合物和复合材料的微观结构和机械性能在再循环后和后进行。扫描电子显微镜(SEM)显示原始复合材料中存在的一些颗粒簇被破坏再循环后,基质中B4C的分布更均匀。进一步加剧界面反应,再循环后,涂覆在B4C表面上的保护层较厚。另外,从表面剥离的粒子脱落B4C的围绕B4C.Al3TI相分布,该阶段存在于原始复合材料中,在再循环后消失,而AI3BC相消失,而Ai3BC相增加明显。畸形试验和硬度测试显示,再循环后良好的机械性能良好地保存。因此,提出了Remelting方法是A1-B4C复合回收的可行方法。

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