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Effect of copper and solidification conditions on the microstmcture and mechanical properties of Al-Si-Mg alloys

机译:铜和凝固条件对Al-Si-Mg合金组织和力学性能的影响

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In this research, copper has been used in the ternary system of Al-Si-Mg alloy in different solidification conditions to increase the mechanical properties of the existing alloys. Copper in the range of 0.2-2.5 wt. percent has been used in A356 aluminum alloy and cast at different solidification conditions. Sand, graphite, copper and cast iron molds have been designed and manufactured to produce tensile lest specimens at different cooling rates during solidification of the alloys. The microstructures of the alloys have been studied through optical and scanning electron microscopy (SEM). Mechanical properties of different alloys at various solidification conditions have been investigated in both non-heat treated and heat treated conditions. The fracture surfaces of the tensile test samples have been studied. All iniermetallic compounds formed during solidification have been investigated through SEM-EDS. A new alloy has been developed. It has been found that the best mechanical properties obtained with about 1.5 wt. percent copper in Al-Si-Mg alloys solidified in the graphite molds.
机译:在这项研究中,铜已在不同的凝固条件下用于Al-Si-Mg合金的三元体系中,以提高现有合金的机械性能。铜在0.2-2.5 wt。百分号已用于A356铝合金,并在不同的凝固条件下铸造。设计了沙,石墨,铜和铸铁模具,以在合金凝固过程中以不同的冷却速率生产拉伸试样。通过光学和扫描电子显微镜(SEM)研究了合金的微观结构。在非热处理和热处理条件下,都已研究了不同合金在各种凝固条件下的机械性能。已经研究了拉伸测试样品的断裂表面。固化过程中形成的所有金属化合物均已通过SEM-EDS进行了研究。已经开发了一种新合金。已经发现,以约1.5wt。%获得最佳的机械性能。在石墨模具中凝固的Al-Si-Mg合金中的铜含量为50%。

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