Heat Treatment of Metals ›› 2020, Vol. 45 ›› Issue (9): 191-194.DOI: 10.13251/j.issn.0254-6051.2020.09.035

• MICROSTRUCTURE AND PROPERTIES • Previous Articles     Next Articles

Microstructure evolution and mechanical properties at different thickness of 7A75 aluminum alloy plate

Wang Shuhui1, Wang Shan1, Sui Xinju1,2, Meng Cuiyu1   

  1. 1. College of Engineering,Yantai Nanshan University,Yantai Shandong 265713,China;
    2. National Engineering Research Centerfor Plastic Working of Aluminum Alloys,Shandong Nanshan Aluminum Co.,Ltd.,Yantai Shandong 265700,China
  • Received:2020-03-19 Online:2020-09-25 Published:2020-12-29

Abstract: Microstructure evolution and mechanical properties at different thickness of as-hot rolled 7A75 aluminum after solution treatment were investigated.The microstructure,crack propagation and fracture morphologies were characterized by using OM and SEM.The texture constitution and residual stress were analyzed by using XRD,and the mechanical properties were tested by using tensile tester.The results indicate that at different thickness of the 7A75 aluminum alloy,the yield strength at surface,1/4 thickness and center are 200,200 and 185 MPa,while tension strength is 345,335 and 325 MPa respectively,but the elongation is 20%,19.5% and 22% respectively,which show that the center layer has the lowest strength and the highest elongation.The average grain size at surface,1/4 thickness and center are about 24.5,24.8 and 25.5 μm respectively,which are all within the range of 24-26 μm and no obvious difference.There are obvious plane strain texture which distributing along β orientation line at surface,mainly Copper texture {112}<111>at 1/4 thickness and weakened β orientation line texture at center.The residual stress at surface,1/4 thickness and center are -18.5,-3.5 and 7.5 MPa respectively,which show a compressive stress at surface and 1/4 thickness and a tensile stress at center.

Key words: 7A75 aluminum alloy, thickness, texture, mechanical properties

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