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首页> 外文期刊>International Journal of Manufacturing Engineering >Finite Element Analysis of Residual Stress in Ti-6Al-4V Alloy Plate Induced by Deep Rolling Process under Complex Roller Path
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Finite Element Analysis of Residual Stress in Ti-6Al-4V Alloy Plate Induced by Deep Rolling Process under Complex Roller Path

机译:复杂辊道下深轧工艺引起的Ti-6Al-4V合金板残余应力的有限元分析

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摘要

The kinematics of the deep rolling tool, contact stress, and induced residual stress in the near-surface material of a flat Ti-6Al-4V alloy plate are numerically investigated. The deep rolling tool is under multiaxis nonlinear motion in the process. Unlike available deep rolling simulations in the open literature, the roller motion investigated in this study includes penetrative and slightly translational motions. A three-dimensional finite element model with dynamic explicit technique is developed to simulate the instantaneous complex roller motions during the deep rolling process. The initial motion of the rollers followed by the penetration motion to apply the load and perform the deep rolling process, the load releasing, and material recovery steps is sequentially simulated. This model is able to capture the transient characteristics of the kinematics on the roller and contacts between the roller and the plate due to variations of roller motion. The predictions show that the magnitude of roller reaction force in the penetration direction starts to decrease with time when the roller motion changes to the deep rolling step and the residual stress distributions in the near-surface material after the material recovery step varies considerably along the roller path.
机译:数值研究了扁平Ti-6Al-4V合金板近表面材料中的深轧工具的运动学,接触应力和感应残余应力。深轧工具在此过程中处于多轴非线性运动下。与公开文献中可用的深滚模拟不同,本研究中研究的滚轴运动包括穿透运动和轻微平移运动。建立了具有动态显式技术的三维有限元模型,以模拟深轧过程中瞬时的复杂滚子运动。依次模拟了轧辊的初始运动,然后是施加载荷并执行深度轧制过程的穿透运动,载荷释放和物料回收步骤。该模型能够捕获辊上运动的瞬时特性以及由于辊运动的变化而引起的辊与板之间的接触。预测表明,当辊子的运动改变为深轧步骤时,在穿透方向上辊子反作用力的大小开始随时间减小,并且在材料恢复步骤之后,近表面材料中的残余应力分布沿辊子变化很大。路径。

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