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Effect of equal-channel angular extrusion on mechanical and wear properties of eutectic Al-12Si alloy

机译:等径角挤压对共晶Al-12Si合金力学性能和磨损性能的影响

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摘要

Mechanical and wear properties of severely deformed Al-12Si alloy by equal-channel angular extrusion/ pressing (ECAE/P) were investigated. Multi-pass ECAE processing of the as-cast alloy substantially increased both its strength and ductility. The increase in the tensile and yield strength values after six ECAE passes were about 48% and 87%. respectively. The sample after six ECAE passes exhibited 10% elongation before rupture, which was about five times higher than that of the as-cast one. The improvement in both strength and ductility was mainly attributed to the changes of the shape, size and distribution of the eutectic silicon particles along with the breakage and refined of the large α-Al grains during multipass ECAE processing. However, the wear test results surprisingly showed that the ECAE process decreased the wear resistance of the alloy, although there was improvement in strength and ductility values. This was mainly attributed to the tribochemical reaction leading to oxidative wear with the abrasive effect in Al-Si alloys during sliding. The oxide layer played a dominant role in determining the wear resistance of the sample in both as-cast and ECAE-processed states, and it masked the effect of strengthening of alloy structure on the wear resistance.
机译:通过等径角挤压/挤压(ECAE / P)研究了严重变形的Al-12Si合金的力学性能和磨损性能。铸态合金的多道次ECAE加工大大提高了强度和延展性。经过六次ECAE测试后,抗拉强度和屈服强度值分别增加了48%和87%。分别。六次ECAE通过后的样品在断裂前显示出10%的伸长率,这是铸态样品伸长率的大约五倍。强度和延展性的提高主要归因于在多道次ECAE加工过程中共晶硅颗粒的形状,尺寸和分布的变化以及大α-Al晶粒的破碎和细化。但是,磨损测试结果出人意料地表明,尽管强度和延展性值有所提高,但ECAE工艺降低了合金的耐磨性。这主要归因于摩擦化学反应在滑动过程中导致Al-Si合金的氧化磨损和磨蚀作用。在铸态和ECAE处理状态下,氧化层在确定样品的耐磨性方面起主要作用,并且掩盖了合金结构强化对耐磨性的影响。

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