The Residual Stress Relief and Deformation Control of Al Alloy Thin-Walled Antenna Components by Ultrasonic Regulation

Author:

Song Wen-Yuan1,Xu Chun-Guang1,Pan Qin-Xue1ORCID,Li Pei-Lu12,Yu Tao3

Affiliation:

1. School of Mechanical Engineering, Beijing Institute of Technology, Beijing 100081, China

2. State Key Laboratory of Smart Manufacturing for Special Vehicles and Transmission System, Inner Mongolia First Machinery Group Co., Ltd., Baotou 014032, China

3. Xi’an Electronic Engineering Research Institute, Xi’an 710100, China

Abstract

The residual stress fields of the initial billet and subsequent machining in the material bring great challenges to the precision machining and geometrical stability of aluminum alloy thin-walled components. To ensure that a certain type of large-sized aluminum alloy thin-walled antenna has a small flatness deformation during forming, this paper firstly employed the ultrasonic critical refraction longitudinal wave (LCR wave) detection method to measure the different depth ranges’ residual stress distribution of 5A06/6061/7075 aluminum alloy plate, both as blanks and after multiple milling. Additionally, the effects of inherent residual stress (IRS) and machining-induced residual stress (MIRS) on the subsequent milling deformation were analyzed. After that, combined with the self-developed ultrasonic stress relief (USR) system, the deformation control effect of a thin-walled plate after eliminating residual stress in each stage was tested. The results show that the ultrasonic stress relief treatment can quickly and efficiently eliminate the IRS and MIRS with small flatness deformation. By introducing the URS treatment in the blank, rough machining, and semi-finishing stages, the components before each subsequent machining are in a low-stress state, and the component deformation can be gradually controlled so that the final thin-walled antenna has a smaller flatness.

Funder

National Natural Science Foundation of China

Technology and Quality Division of the Ministry of Industry and Information Technology

China’s National Key R&D Programmes

Publisher

MDPI AG

Subject

Control and Optimization,Control and Systems Engineering

Reference26 articles.

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4. Low-Stiffness Spring Element Constraint Boundary Condition Method for Machining Deformation Simulation;Song;J. Mech. Sci. Technol.,2020

5. Residual Stress and Distortion Modeling on Aeronautical Aluminum Alloy Parts for Machining Sequence Optimization;Casuso;Int. J. Adv. Manuf. Technol.,2020

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