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Tailoring the Mechanical Properties of Laser Cladding-Deposited Ferrous Alloys with a Mixture of 410L Alloy and Fe–Cr–B–Si–Mo Alloy Powders

机译:调整410L合金和Fe–Cr–B–Si–Mo合金粉末混合物的熔覆激光熔覆铁合金的机械性能

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摘要

The effects of different ratios of 410L alloy and Fe–Cr–B–Si–Mo alloy powders on the microstructure and mechanical properties of laser cladding-deposited ferrous alloys were investigated. The experimental results revealed that the 410L alloy had good strength and excellent ductility due to its microstructure consisting of large elongated ferrite dendrites surrounded by a small number of martensite grains, while the Fe–Cr–B–Si–Mo alloy had high strength and poor ductility because of its eutectic microstructure composed of ferrite and Fe2B/Cr2B. As the concentration of Fe–Cr–B–Si–Mo alloy powder added to the 410L alloy powder increased, the ferrite grains became finer and the volume fraction of the eutectic increased, which eventually improved the strength and reduced the plasticity. Then, 410L + 12.5% Fe–Cr–B–Si–Mo alloy powder was successfully deposited onto AISI 1060 steel substrate via laser cladding deposition, and the mechanical properties met those of the substrate, which verified that tailoring the mechanical properties of the laser cladding-deposited alloys with a mixture of 410L and Fe–Cr–B–Si–Mo alloy powders for steel repairing applications is a feasible solution.
机译:研究了不同比例的410L合金和Fe–Cr–B–Si–Mo合金粉末对激光熔覆铁合金的组织和力学性能的影响。实验结果表明,410L合金具有良好的强度和延展性,这是由于其微观结构由大的伸长的铁素体枝晶和少量的马氏体晶粒包围而组成,而Fe–Cr–B–Si–Mo合金具有高强度且较差由于其由铁素体和Fe2B / Cr2B组成的共晶组织,因此具有延展性。随着添加到410L合金粉末中的Fe–Cr–B–Si–Mo合金粉末的浓度增加,铁素体晶粒变得更细,共晶的体积分数增加,最终提高了强度并降低了可塑性。然后,通过激光熔覆沉积将410L + 12.5%Fe–Cr–B–Si–Mo合金粉末成功地沉积到AISI 1060钢基底上,其机械性能达到了基底的性能,这证明了定制激光的机械性能410L和Fe–Cr–B–Si–Mo合金粉末的混合熔覆沉积合金用于钢修复应用是一种可行的解决方案。

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