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首页> 外文期刊>Transactions of Nonferrous Metals Society of China >Finite element analysis on stresses field of normalized layer thickness within ceramic coating on aluminized steel
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Finite element analysis on stresses field of normalized layer thickness within ceramic coating on aluminized steel

机译:渗铝钢涂层内归一化层厚度应力场的有限元分析

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摘要

Multilayer ceramic coatings were fabricated on steel substrate using a combined technique of hot dipping aluminum(HDA) and plasma electrolytic oxidation(PEO). A triangle of normalized layer thickness was created for describing thickness ratios of HDA/PEO coatings. Then, the effect of thickness ratio on stresses field of HDA/PEO coatings subjected to uniform normal contact load was investigated by finite element method. Results show that the surface tensile stress is mainly affected by the thickness ratio of Al layer when the total thickness of coating is unchanged. With the increase of Al layer thickness, the surface tensile stress rises quickly. When Al_2O_3 layer thickness increases, surface tensile stress is diminished.Meanwhile, the maximum shear stress moves rapidly towards internal part of HDA/PEO coatings. Shear stress at the Al_2O_3/Al interface is minimal when Al_2O_3 layer and Al layer have the same thickness.
机译:采用热浸铝(HDA)和等离子电解氧化(PEO)的组合技术在钢基底上制备了多层陶瓷涂层。创建归一化层厚度的三角形以描述HDA / PEO涂层的厚度比。然后,通过有限元方法研究了厚度比对HDA / PEO涂层在均匀法向接触载荷下应力场的影响。结果表明,当涂层总厚度不变时,表面拉应力主要受Al层厚度比的影响。随着Al层厚度的增加,表面拉伸应力迅速升高。当Al_2O_3层的厚度增加时,表面拉伸应力减小,同时最大剪切应力迅速向HDA / PEO涂层的内部移动。当Al_2O_3层和Al层的厚度相同时,Al_2O_3 / Al界面处的切应力最小。

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