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首页> 外文期刊>Materials transactions >Effects of High-Temperature Solutionizing on Microstructure and Tear Toughness of A356 Cast Aluminum Alloy
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Effects of High-Temperature Solutionizing on Microstructure and Tear Toughness of A356 Cast Aluminum Alloy

机译:高温固溶处理对A356铸造铝合金组织和撕裂韧性的影响

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摘要

A356 alloy was cast into permanent molds and subjected to T6 heat treatment. Two solutionizing (solution heat treatment) temperatures (540°C and 560°C) were used, with the holding time for each varied between 0 min and 240 min. Tear test specimens of 4 mm in thickness were machined from the castings. Tear toughness (UEp: unit crack propagation energy) was obtained from load-displacement curves. With increasing solutionizing holding time, eutectic silicon particles were found to become larger and mean interparticle distance was found to increase. The UEp of specimens solutionized at the higher temperature (560°C) increased with holding time until 120 min but decreased with longer holding times. SEM observation of fracture surfaces after tear testing revealed dimples originating from dispersed silicon particles within the eutectic phase. Fine dimples were also observed in the eutectic aluminum region in specimens with reduced UEp. These fine dimples were different from the dimples found to originate from the eutectic silicon particles.
机译:将A356合金铸造到永久模具中,并进行T6热处理。使用两种固溶(固溶热处理)温度(540°C和560°C),每种保持时间在0分钟至240分钟之间变化。从铸件上加工出厚度为4毫米的撕裂试样。从载荷-位移曲线获得撕裂韧性(UEp:单元裂纹扩展能)。随着固溶时间的增加,发现共晶硅颗粒变大,平均颗粒间距离增加。在较高温度(560°C)下固溶的样品的UEp随保持时间的增加而增加,直至120分钟,但随着保持时间的延长而降低。撕裂测试后的SEM断口表面观察表明,凹坑源自共晶相内分散的硅颗粒。 UEp降低的样品在共晶铝区域也观察到细微的凹坑。这些细微的凹坑不同于发现的源自共晶硅颗粒的凹坑。

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