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Finite Element Analysis of Residual Stresses in Metallic Coatings through a Compound Casting

机译:通过复合铸造金属涂层残余应力的有限元分析

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Al and Mg alloys are widely used in industry as main lightweight alloys. They have excellent properties, such as low density, high ductility, and high specific strength, and so on. Generally speaking, Mg alloys are better than Al alloys. However the corrosion of Mg alloys is much more difficult to control compared Al alloys. Therefore to combine these two lightweight alloys, a composite-like structure is an ideal solution since Al alloys can be used as protective coatings for Mg alloys. Compound casting is a realistic technique to get this coating system. In the current study, we numerically study the compound casting using finite element method (FEM) to make these two alloys, a composite-like structure, satisfy requirements to resist corrosion required from industry, in which the aluminum layer is acting as a protective coating for the magnesium substrate. Several finite element models have been developed by using the birth and death element technique and we focus on compound casting-induced residual stresses in the compounded structure. The numerical results obtained from the proposed finite element models show the distribution profiles of thermal residual stresses. We found the major factors influencing the residual stresses are the temperature to pre-heating the Al substrate and the thickness of Mg deposits.
机译:Al和Mg合金广泛用于工业中作为主要的轻质合金。它们具有优异的性能,例如低密度,高延展性和高比强度等。一般而言,Mg合金优于Al合金。然而,Mg合金的腐蚀更难以控制Al合金。因此,结合这两个轻质合金,复合结构是理想的溶液,因为Al合金可用作Mg合金的保护涂层。复合铸件是获得该涂层系统的实际技术。在目前的研究中,我们使用有限元法(FEM)进行数值研究,使这两种合金,复合结构,满足抗腐蚀的要求,使铝层用作保护涂层对于镁基材。通过使用出生和死亡元素技术开发了几种有限元模型,我们专注于复合结构中的复合铸造诱导的残余应力。从所提出的有限元模型获得的数值结果显示了热残余应力的分布型材。我们发现影响残余应力的主要因素是预热Al底物的温度和Mg沉积物的厚度。

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