Affiliation:
1. College of Mechanical Engineering, Anhui Science and Technology University, Bengbu 233100, China
2. Department of Business Administration, Stamford International University, Bangkok 10250, Thailand
Abstract
To study the deformation and fracture mechanism of 6061 aluminum alloy extruded pipe after secondary heat treatment under different stress triaxiality, a Johnson–Cook failure model was developed. Through the FEM method and SEM, the fracture mechanism of different types of aluminum alloy tensile specimens was analyzed. The research results show that the Johnson–Cook failure model could better simulate the tensile deformation of 6061 aluminum alloy specimens of different types, the parameters of the Johnson–Cook failure model were finally obtained D1 = 0.29, D2 = 1.356, and D3 = −2.567. With the increase of the stress triaxiality, the fracture strain showed a decreasing trend as a whole, and the fracture mechanism changed from a shear type to a hole aggregation type. The stress triaxiality gradually decreased with the increase of the notch radius/angles of the aluminum alloy notch specimen, and the stress triaxiality at the center of the notch was higher than the stress triaxiality at the root of the notch.
Funder
2021 School-level Quality Engineering Project of Anhui Science and Technology University
Talent introduction project of Anhui University of science and technology
University Collaborative Innovation Project of Anhui Province
Natural Science Research in Colleges and Universities in Anhui Province
Design and Key Technology Research of TFT Silicon Ultrafine Powder Automatic Complete Equipment
Design and Key Technology Research of Multi-parameter Intelligent Control Instrument Junction Box
Traditional Professional Transformation and Upgrading
First-class Textbook Construction Project
Perspective of Professional Certification
The Reform and Practice of Cultivation of Industrial and Agricultural Compound
Reform and Practice of “One Type and Six Modernizations” Practical Teaching System
Anhui Science and Technology University
Subject
Inorganic Chemistry,Condensed Matter Physics,General Materials Science,General Chemical Engineering
Cited by
2 articles.
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