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Functionally Graded Al Alloy Matrix In-Situ Composites

机译:功能梯度铝合金基体原位复合材料

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摘要

In the present work, functionally graded (FG) aluminum alloy matrix in-situ composites (FG-AMCs) with TiB_2 and TiC reinforcements were synthesized using the horizontal centrif-ugal casting process. A commercial Al-Si alloy (A356) and an Al-Cu alloy were used as matrices in the present study. The material parameters (such as matrix and reinforcement type) and process parameters (such as mold temperature, mold speed, and melt stirring) were found to influence the gradient in the FG-AMCs. Detailed microstructural analysis of the composites in different processing conditions revealed that the gradients in the reinforcement modify the microstructure and hardness of the Al alloy. The segregated in-situ formed TiB_2 and TiC particles change the morphology of Si particles during the solidification of Al-Si alloy. A maximum of 20 vol pct of reinforcement at the surface was achieved by this process in the Al-4Cu-TiB_2 system. The stirring of the melt before pouring causes the reinforcement particles to segregate at the periphery of the casting, while in the absence of such stirring, the particles are segregated at the interior of the casting.
机译:在目前的工作中,使用水平离心铸造工艺合成了具有TiB_2和TiC增强材料的功能梯度(FG)铝合金基体原位复合材料(FG-AMC)。在本研究中,使用商品化的Al-Si合金(A356)和Al-Cu合金作为基质。发现材料参数(例如基体和增强材料类型)和工艺参数(例如模具温度,模具速度和熔融搅拌)会影响FG-AMC中的梯度。在不同加工条件下对复合材料进行的详细的微观结构分析表明,增强物中的梯度会改变铝合金的微观结构和硬度。在Al-Si合金凝固过程中,原位分离形成的TiB_2和TiC颗粒改变了Si颗粒的形貌。在Al-4Cu-TiB_2系统中,通过此过程可在表面获得最大20 volt的增强。浇铸前对熔体的搅拌使增强颗粒在铸件的外围偏析,而在不进行这种搅拌的情况下,颗粒在铸件的内部偏析。

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