首页> 外文会议>ASME international manufacturing science and engineering conference >STUDY ON THE GENERATION AND REDISTRIBUTION MECHANISM OF RESIDUAL STRESS IN BILATERAL ROLLING CORRECTION PROCESS FOR THIN-WALLED PARTS
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STUDY ON THE GENERATION AND REDISTRIBUTION MECHANISM OF RESIDUAL STRESS IN BILATERAL ROLLING CORRECTION PROCESS FOR THIN-WALLED PARTS

机译:薄壁零件双向轧制修正过程中残余应力的产生与再分布机理研究

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The distortion and dimensional instability are the main problems in the machining of thin-walled parts with high-strength aluminum alloys. To ensure the accuracy of aircraft assembly, distortion correction process is essential. Bilateral rolling process has been widely used to correct the distorted parts in the aerospace industries due to the introduction of proper plastic deformation and residual stresses. However, the generation and redistribution mechanism of residual stresses in bilateral rolling correction process remains unclear. This internal mechanism was investigated by finite element method (FEM) in this paper. First, FE models were verified by experiments in terms of residual stresses and strain. Then, simulation results (e.g. plastic strain, true strain and part distortion) were extracted for further analysis. It was shown that the residual stresses are produced in the compatibility process of plastic and elastic strain, and a large plastic deformation can lead to a high amplitude residual stresses. Besides, the binding force from the surrounding materials also results in higher strain gradient and amplitude of residual stresses. Although part distortion has little effect on the limit value of residual stresses, it greatly influences the redistribution of the residual stresses.
机译:变形和尺寸不稳定性是用高强度铝合金加工薄壁零件的主要问题。为了确保飞机组装的准确性,畸变校正过程必不可少。由于引入了适当的塑性变形和残余应力,双边轧制工艺已广泛用于纠正航空航天工业中的变形零件。然而,双边滚动矫正过程中残余应力的产生和再分布机制仍不清楚。本文通过有限元方法(FEM)研究了这种内部机理。首先,通过残余应力和应变实验验证了有限元模型。然后,提取仿真结果(例如塑性应变,真实应变和零件变形)以进行进一步分析。结果表明,残余应力是在塑性和弹性应变的相容过程中产生的,较大的塑性变形会导致高振幅的残余应力。此外,来自周围材料的结合力还导致较高的应变梯度和残余应力的幅度。尽管零件变形对残余应力的极限值影响很小,但它极大地影响了残余应力的重新分布。

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