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Investigation on cracking behavior of Ni-based coating by laser-induction hybrid cladding

机译:激光感应混合熔覆Ni基涂层的开裂行为研究

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Based on the experiments of laser-induction hybrid cladding by powder feeding, the cracking behavior of Ni-based coating and solidification characteristic in molten pool were investigated. The results indicate that the hybrid cladding is effective to prevent from cracking in Ni-based coating. With the increase of induction energy density, the tensile stress and crack rate decrease obviously. When the induction energy density arrives at 36J/mm~2, the free-cracks coating can be achieved. In laser-induction hybrid cladding, the martensite can be eliminated in the heat affected zone and the phase transformation stress is little. Moreover, the molten pool is solidified through two directions such as the coating surface and coating/substrate interface, i.e., firstly the top and bottom in molten pool are solidified, and then the middle in molten pool is solidified. Therefore, in hybrid cladding, the peak value of tensile stress is located in the middle of coating, which is different from that in laser cladding. This distribution status of residual stress is greatly helpful to restrict the cracks of Ni-based coating in laser-induction hybrid cladding.
机译:通过送粉激光感应混合熔覆实验,研究了镍基涂层的开裂行为和熔池的凝固特性。结果表明,混合包层有效地防止了镍基涂层的破裂。随着感应能量密度的增加,拉应力和裂纹率明显降低。当感应能量密度达到36J / mm〜2时,可以实现自由裂纹涂层。在激光感应混合熔覆中,可以在热影响区消除马氏体,并且相变应力很小。此外,熔池通过诸如涂层表面和涂层/基材界面的两个方向固化,即,首先固化熔池的顶部和底部,然后固化熔池的中间。因此,在混合熔覆中,拉伸应力的峰值位于涂层的中间,这与激光熔覆中的峰值不同。残余应力的这种分布状态极大地有助于限制激光感应混合熔覆中Ni基涂层的裂纹。

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