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Measurement and Simulation of Residual Stresses of Electron Beam Welding Joint of Pure Aluminum

机译:纯铝电子束焊接接头剩余应力的测量与仿真

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The effects of electron beam welding on the residual stresses of welded joints of pure aluminum plate 99.60 are studied by through-hole-drilling and blind-hole-drilling method. Meanwhile, based on the thermal elastic-plastic theory, and making use of ANSYS finite element procedure, a three - dimensional finite element model using mobile heat source of temperature and stresses field of electron beam welding in pure aluminum is established. The welding process is simulated by means of the ANSYS software. The results show that the main residual stress is the longitudinal residual stress, the value of the longitudinal residual stress is much larger than the transverse residual stress. But the residual stress in the thickness is rather small. And in the weld center, the maximum value of residual stresses is lower than its yield strength. The simulation results about the welded residual stresses are almost identical with the experimental results by measuring. So the research result is important to science research and engineering application.
机译:通过通孔钻孔和盲孔钻探方法研究了电子束焊接对纯铝板99.60焊接接头的剩余应力的影响。同时,基于热弹性塑料理论,利用ANSYS有限元件,建立了一种三维有限元模型,使用移动热源的温度和应力在纯铝中的电子束焊接领域。通过ANSYS软件模拟焊接过程。结果表明,主要残余应力是纵向残余应力,纵向残余应力的值远大于横向残余应力。但厚度的残余应力相当小。并且在焊接中心,残余应力的最大值低于其屈服强度。关于焊接残余应力的仿真结果几乎与通过测量的实验结果相同。因此,研究结果对于科学研究和工程应用很重要。

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