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首页> 外文期刊>Metallurgical and Materials Transactions A >As-Cast Residual Stresses in an Aluminum Alloy AA6063 Billet: Neutron Diffraction Measurements and Finite Element Modeling
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As-Cast Residual Stresses in an Aluminum Alloy AA6063 Billet: Neutron Diffraction Measurements and Finite Element Modeling

机译:铝合金AA6063钢坯中的铸态残余应力:中子衍射测量和有限元建模

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摘要

The presence of thermally induced residual stresses, created during the industrial direct chill (DC) casting process of aluminum alloys, can cause both significant safety concerns and the formation of defects during downstream processing. Although numerical models have been previously developed to compute these residual stresses, most of the computations have been validated only against measured surface distortions. Recently, the variation in residual elastic strains in the steady-state regime of casting has been measured as a function of radial position using neutron diffraction (ND) in an AA6063 grain-refined cylindrical billet. In the present study, these measurements are used to show that a well-designed thermomechanical finite element (FE) process model can reproduce relatively well the experimental results. A sensitivity analysis is then carried out to determine the relative effect of the various mechanical parameters when computing the as-cast residual stresses in a cylindrical billet. Two model parameters have been investigated: the temperature when the alloy starts to thermally contract and the plasticity behavior. It is shown that the mechanical properties at low temperatures have a much larger influence on the residual stresses than those at high temperatures.
机译:在铝合金的工业直接冷铸(DC)铸造过程中产生的热感应残余应力的存在,既会引起重大的安全隐患,又会在下游加工过程中形成缺陷。尽管以前已经开发了数值模型来计算这些残余应力,但是大多数计算仅针对所测得的表面变形进行了验证。最近,在AA6063晶粒细化的圆柱坯中,使用中子衍射(ND)测量了铸造稳态状态下残余弹性应变的变化,该变化是径向位置的函数。在本研究中,这些测量结果被用来表明设计良好的热机械有限元(FE)过程模型可以较好地再现实验结果。然后,在计算圆柱坯中铸态残余应力时,进行敏感性分析,以确定各种机械参数的相对影响。已经研究了两个模型参数:合金开始热收缩时的温度和塑性行为。结果表明,低温下的机械性能对残余应力的影响比高温下大。

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