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Effect of V content on microstructures and properties of TiC cermet fusion welding interface

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【作者】 魏炜徐莹王旭黄智泉刘胜新

【Author】 Wei Wei;Xu Ying;Wang Xu;Huang Zhiquan;Liu Shengxin;Zhengzhou Research Institute of Mechanical Engineering Co.,Ltd.;Zhengzhou University;

【通讯作者】 魏炜;

【机构】 Zhengzhou Research Institute of Mechanical Engineering Co.,Ltd.Zhengzhou University

【摘要】 The effects of vanadium(V) on the microstructures and mechanical properties of the TiC cermet fusion welding interface were studied by adjusting the content of V in the self-developed flux-cored wires using metal inert gas arc(MIG) welding for surfacing on the TiC cermet. The results show that the increase in V content promotes the element diffusion between TiC cermet and weld metal. There are no defects observed in the interface, and the diffusion of elements refers to excellent metallurgical bonding. The shear strength of the fusion zone initially decreases and then increases with the increase in V content. The maximum shear strength of the TiC cermet/weld interface, reaching 552 MPa, occurred when the V content reached 0.65%. Meanwhile, the average hardness in the transition zone reached 488.2 HV0.2.

【Abstract】 The effects of vanadium(V) on the microstructures and mechanical properties of the TiC cermet fusion welding interface were studied by adjusting the content of V in the self-developed flux-cored wires using metal inert gas arc(MIG) welding for surfacing on the TiC cermet. The results show that the increase in V content promotes the element diffusion between TiC cermet and weld metal. There are no defects observed in the interface, and the diffusion of elements refers to excellent metallurgical bonding. The shear strength of the fusion zone initially decreases and then increases with the increase in V content. The maximum shear strength of the TiC cermet/weld interface, reaching 552 MPa, occurred when the V content reached 0.65%. Meanwhile, the average hardness in the transition zone reached 488.2 HV0.2.

【关键词】 TiC cermetMIG weldinginterfaceV contentshear strength
【Key words】 TiC cermetMIG weldinginterfaceV contentshear strength
【基金】 supported by Henan Province Key Research and Development and Promotion Project(Grant No.201ZP20220010)
  • 【文献出处】 China Welding ,中国焊接(英文版) , 编辑部邮箱 ,2024年01期
  • 【分类号】TG442
  • 【下载频次】1
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