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新型液态模锻Al-Cu合金的成型性能和微观组织(英文)

Forming properties and microstructure of Al-Cu alloy prepared by liquid-die forging

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【作者】 张新徐宏陈彤王长顺王延龙徐兰军李宏伟

【Author】 ZHANG Xin;XU Hong;CHEN Tong;WANG Chang-shun;WANG Yan-long;XU Lan-jun;LI Hong-wei;Technology Center/General Institute of Emergency Research,Xinxing Cathay International Group;Xinxing Cathay International Science & Technology Development Co.,Ltd;School of Materials Science and Engineering,North University of China;Beijing Engineering Research Center for Advanced Preparation and Evaluation of Special Vehicle Parts,Beijing North Vehicle Group Co.,Ltd.;

【通讯作者】 张新;

【机构】 Technology Center/General Institute of Emergency Research,Xinxing Cathay International GroupXinxing Cathay International Science & Technology Development Co.,LtdSchool of Materials Science and Engineering,North University of ChinaBeijing Engineering Research Center for Advanced Preparation and Evaluation of Special Vehicle Parts,Beijing North Vehicle Group Co.,Ltd.

【摘要】 采用新型铝合金液态模锻制备了Al-Cu合金轮毂,研究了其力学性能、成分分布、显微组织及断裂行为。研究结果表明:轮毂试样中存在多种元素的富集和分布现象,其中Cu偏析较为严重;Al-Cu合金轮毂的显微组织由铸造组织和少量变形组织组成;Al-Cu合金轮毂最佳热处理制度为(530±5)°C,4 h+(535±5)°C,24 h固溶后(155±5)°C,4 h时效;T6和T5-1热处理试样的断口形貌为扁平韧窝,塑性差;T4热处理后的断口形貌显示出完全的回复性;经T4热处理后Al-Cu合金轮毂具有最好的伸长率;Al-Cu合金轮毂试样断裂失效的主要原因是CuAl2(θ)相的形成;试样的断裂机制为沿晶断裂。

【Abstract】 The Al-Cu wheel adopting the new Al alloy was prepared by the liquid-die forging, and the mechanical properties, composition distribution, microstructure and fracture behavior were investigated. The results showed that serious Cu segregation was found in the wheel specimen; the microstructure of the Al-Cu wheel was comprised of the casting microstructure and a small amount of the deformed microstructure; the best heat treatment and water quenching system were found to solution treated at(530±5) °C for 4 h followed by(535±5) °C for 24 h and aging treated at(155±5) °C for 4 h; the fracture morphologies of the samples heated under T6 and T5-1 heat treatment showed flat, tough nest,and poor plastic characteristics; the fracture morphologies of the samples heated under T4 heat treatment exhibited complete resilience, but no residual metallographic characteristic; the sample treated under T4 protocol had the best elongation; the fracture failure was mainly due to the formation of the CuAl2(θ) phases; and the fracture mechanism of the Al-Cu wheel was intergranular fracture.

【基金】 Project (2019YFC1511400) supported by the National Key Technologies R&D Program of China
  • 【文献出处】 Journal of Central South University ,中南大学学报(英文版) , 编辑部邮箱 ,2022年01期
  • 【分类号】TG146.21
  • 【被引频次】3
  • 【下载频次】171
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