文章摘要
7075铝合金半固态浆料制备及流变压铸工艺研究
Preparation and Rheological Die-Casting of 7075 Aluminum Alloy Semisolid Slurry
Received:April 25, 2020  Revised:May 10, 2020
DOI:10.3969/j.issn.1674-6457.2020.03.008
中文关键词: 7075铝合金  半固态浆料  ACSR工艺  流变压铸  组织性能
英文关键词: 7075 aluminumalloy  semisolid slurry  ACSR process  rheological die-casting  microstructure and properties
基金项目:国家重点研发计划(2018YFB0704102);中央高校基本科研业务费专项资金(FRF-TP-18-043A1);中国博士后科学基金(2019M650486)
Author NameAffiliation
KANG Yong-lin 1. School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China 
LI Jing-yuan 1. School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China 
LI Gu-nan 2. Zhuhai Runxingtai Electric Appliance Co., Ltd., Zhuhai 519000, China 
WANG Ji-cheng 2. Zhuhai Runxingtai Electric Appliance Co., Ltd., Zhuhai 519000, China 
LIU Ai-sen 3. Center International Group Co., Ltd., Beijing 100176, China 
CHEN Jun-chen 3. Center International Group Co., Ltd., Beijing 100176, China 
QI Ming-fan 1. School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China 
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中文摘要:
      目的 研究搅拌速度和搅拌时间对ACSR工艺制备的7075铝合金半固态浆料组织的影响,研究和比较传统压铸与流变压铸7075铝合金的组织与性能。方法 通过改变搅拌速度和搅拌时间制备7075铝合金半固态浆料,取料水淬获得半固态坯料,将剩余浆料进行流变压铸,采用金相显微镜、扫描电子显微镜、万能试验机等研究了试样的微观组织、拉伸性能与断口形貌,探究搅拌速度和搅拌时间对7075合金半固态浆料组织的影响,同时研究与比较传统压铸与流变压铸7075铝合金的组织性能。结果 在一定范围内提高搅拌速度和搅拌时间有利于α1-Al的细化与球化,与传统压铸7075铝合金相比,流变压铸合金具有更优异的力学性能,T6热处理后,其抗拉强度、屈服强度和伸长率分别为547 MPa、494 MPa和3.2%。结论 ACSR工艺可制备出组织细小圆整的7075铝合金半固态浆料,且流变压铸可改善7075铝合金力学性能。
英文摘要:
      The paper aims to study the effects of stirring speed and stirring time on the microstructure of 7075 aluminum alloy semisolid slurry prepared by ACSR process, and to study and compare the microstructures and properties of 7075 alloy prepared by traditional die-casting and rheological die-casting processes. In this paper, the semisolid slurry of 7075 aluminum alloy was prepared by altering the stirring speed and stirring time. Part of the semisolid slurry was taken out for water quenching to obtain the semisolid billets. The remaining semisolid slurry was poured into the chamber of die-casting machine for rheological die-casting. Microstructures, tensile properties and fracture morphology of the samples were studied by means of metallographic microscopy, scanning electron microscope and universal testing machine. The effects of stirring speed and stirring time on the microstructure of 7075 aluminum alloy semisolid slurry were investigated. The microstructure and mechanical properties of 7075 aluminum alloy by traditional die-casting and rheological die-casting processes were also studied and compared. The results indicated that increasing the stirring speed and stirring time in a certain range was beneficial to the refinement and spheroidization of α1-Al grains. Compared with 7075 aluminum alloy by traditional die-casting process, the alloy by rheological die-casting process had better mechanical properties. After T6 heat treatment, its tensile strength, yield strength and elongation were 547 MPa, 494 MPa and 3.2% respectively. The semisolid slurry of 7075 aluminum alloy with fine and spherical microstructure can be prepared by the ACSR process, and the mechanical properties of 7075 aluminum alloy can be improved by rheological die-casting.
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