Finite Element Simulation of In-situ Al-Fe-Si Composite Coatings by Laser Melting
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    Abstract:

    The residual stress of aluminium-based composite coating by laser cladding was simulated by the finite element method with ANSYS. The finite element model of composite coating was established. The effects of the in-situ Al-Fe-Si content in the Al matrix coatings by laser cladding on the temperature field and residual stress was discussed systematically. The results show that the temperature along Z-axis increases gradually with the increase of the in-situ Al-Fe-Si content, and the amplitude of temperature rising gradually decreases with itsbeing closer to substrate. However, the X-direction stress and Von Mises stress on the coating surface first decreases and then increases, and the Y-direction stress on the coating surface gradually decreases, while, the shear stress at the interface changes little. Therefore, when the in-situ Al-Fe-Si content by laser cladding is about 0.4, the residual stress of aluminium-based composite coating is the minimum.

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李德英,赵龙志,张坚,刘德佳.激光熔凝原位Al-Fe-Si复合涂层残余应力有限元模拟[J].华东交通大学学报英文版,2020,37(6):108-112.
Li Deying, Zhao Longzhi, Zhang Jian, Liu Dejia. Finite Element Simulation of In-situ Al-Fe-Si Composite Coatings by Laser Melting[J]. JOURNAL OF EAST CHINA JIAOTONG UNIVERSTTY,2020,37(6):108-112

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  • Online: May 11,2021
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