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Microstructure And Interface Interaction In Laser Induction Hybrid Cladding Of Ni-based Coating

机译:镍基涂层激光感应复合熔覆层的微观结构和界面相互作用

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Based on the powder feeding laser induction hybrid cladding experiments by means of three different laser and induction energy, the microstructure of Ni-based coating and interface characteristics between the Ni-based coating and steel substrate were investigated. The results show that the hybrid cladding energy including laser and induction energy has an important influence on the formation of the interface and the microstructure of the Ni-based coating characterized by the dendrite. In addition, the laser and induction energy can complement each other. For high hybrid cladding energy, the single phase Fe-Ni-Cr solid solution is formed at the interface between the coating and substrate, while the microhardness of the Ni-based coating decreases. For low hybrid cladding energy, the solid solution phases of Fe-Ni-Cr and Ni-Fe-Cr are respectively obtained on both sides of the interface and microhardness of the Ni-based coating is relatively high. During laser induction hybrid cladding, the metallurgical bond characterized by the white light layer is achieved between the coating and substrate, and the extent of metallurgical reaction can be controlled by adjusting the laser energy and induction energy appropriately.
机译:在三种不同的激光和感应能量的基础上,采用粉末进料激光感应混合熔覆实验,研究了镍基涂层的微观结构以及镍基涂层与钢基材之间的界面特性。结果表明,包括激光和感应能量在内的混合熔覆能量对以枝晶为特征的镍基涂层的界面形成和微观结构有重要影响。另外,激光和感应能量可以互补。对于高混合熔覆能量,单相Fe-Ni-Cr固溶体在涂层和基底之间的界面处形成,而Ni基涂层的显微硬度降低。对于低混合熔覆能量,在界面的两侧分别获得Fe-Ni-Cr和Ni-Fe-Cr的固溶相,并且Ni基涂层的显微硬度较高。在激光感应混合熔覆过程中,在涂层和基体之间实现了以白光层为特征的冶金结合,可以通过适当调节激光能量和感应能量来控制冶金反应的程度。

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