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首页> 外文期刊>Transactions of Nonferrous Metals Society of China >Effect of low temperature treatment on tensile yield strength of SiCw/606l Al alloy composites
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Effect of low temperature treatment on tensile yield strength of SiCw/606l Al alloy composites

机译:低温处理对SiCw / 606l铝合金复合材料拉伸屈服强度的影响

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The effect of the low temperature treatment at -- 78deg.C and -- 196deg.C on the microstructure and properties of 18/100 SiCw/6061(volume fraction) Al alloy composites of as-squeeze-casting were studied. The results show that, after the low temperature treatment, the dislocation density in matrix increases, and the residual stress of the matrix decreases, as well as the tensile yield strength of the composites improves. The high residual stress exists in the matrix of the composites of as original squeeze casting. The mismatch degree between the matrix and SiC_w phases increases during the low tempera- ture treatment. The matrix undergoes the tensile plastic deformation during the cooling procedure. On the contrary, the matrix encountered an elastic unloading procedure during the heating up process from low temperature to room tempera- ture. The increase of dislocation density and the decrease of residual stress in the matrix are the main reason of the im- provement for tensile yield strength of the composites.
机译:研究了在--78°C和-196°C下的低温处理对18/100 SiCw / 6061(体积分数)挤压铸造铝合金复合材料的组织和性能的影响。结果表明,经过低温处理后,基体中的位错密度增加,基体的残余应力减小,复合材料的拉伸屈服强度提高。原始挤压铸造的复合材料基体中存在较高的残余应力。在低温处理期间,基体和SiC_w相之间的失配度增加。基质在冷却过程中经历拉伸塑性变形。相反,在从低温到室温的加热过程中,基体遇到了弹性卸载过程。位错密度的增加和基体中残余应力的减少是提高复合材料拉伸屈服强度的主要原因。

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