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Effect of route B-C-ECAP on microstructural evolution and mechanical properties of Al-Si-Cu alloy

机译:路径B-C-ECAP对Al-Si-Cu合金微结构演化和力学性能的影响

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In this study, the microstructure, tensile properties, and the fracture behavior of hypereutectic A390 aluminum alloy produced by route B-C of equal channel angular pressing (ECAP) were investigated. Microstructural observations showed that the microstructure of the A390 alloy was considerably improved by the ECAP. After the fourth pass, most of the primary silicon particles (PSPs) and coarse acicular eutectic silicon particles (ESPs) were broken, and the alpha-Al was refined. The ultimate tensile strength (UTS) of ECAPed specimens after 1 pass, 2 passes, 3 passes, and 4 passes was increased by 28%, 59%, 30%, and 61%, and the fracture strain was improved by 52%, 54%, 106%, and 93%, respectively. The fractography results revealed that the fracture mechanism turned to mixed rupture which is characterized by cleavage in the PSPs and dimples in the Al matrix. Finally, results showed that route A on modifying of microstructure and improvement of the tensile properties is more effective than route B-C. This difference could be explained by the redundant strain between each pass and cyclic restoration in every 4 passes of route B-C.
机译:研究了等通道转角挤压(ECAP)B-C工艺生产的过共晶A390铝合金的组织、拉伸性能和断裂行为。显微组织观察表明,ECAP显著改善了A390合金的显微组织。第四道次后,大部分初生硅颗粒(PSP)和粗针状共晶硅颗粒(ESP)被破碎,α-Al被细化。1道次、2道次、3道次和4道次ECAPed试样的极限抗拉强度(UTS)分别提高了28%、59%、30%和61%,断裂应变分别提高了52%、54%、106%和93%。断口分析结果表明,断裂机制转变为混合断裂,以PSP中的解理和铝基体中的韧窝为特征。最后,结果表明,路线A在改善微观结构和提高拉伸性能方面比路线B-C更有效。这种差异可以通过路线B-C的每道次之间的冗余应变和每4道次的循环恢复来解释。

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