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Microstructural Evolution and Mechanical Evaluation of a Laser-Induced Composite Coating on a Ni-Based Superalloy during Thermal Exposure

机译:镍基高温合金激光诱导复合涂层在热暴露过程中的组织演变及力学性能评估

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摘要

A Ni–17Mo–7Cr-based superalloy was laser surface-modified to improve its tribological properties. Si particles were employed as coating materials. Si melted on the surface of the alloy during the process, triggering the formation of Mo6Ni6C carbides and Ni–Si intermetallics. A defect-free coating obtained was mostly made up of primary Mo6Ni6C and γ-Ni31Si12, as well as a eutectic structure of β1-Ni3Si and α-Ni-based solid solution (α-Ni (s.s)). The volume fraction of hard reinforcements (Mo6Ni6C, γ-Ni31Si12, and β1-Ni3Si) reached up to 85% in the coating. High-temperature microstructural stability of the coating was investigated by aging the coating at 1073 K for 240–480 h, to reveal its microstructural evolution. In addition, the mechanical performance of the coating was investigated. The nanoscale elastic modulus and hardness of Mo6Ni6C, γ-Ni31Si12, and α-Ni (s.s) were characterized using the nanoindentation tests. The nanoscratch tests were performed to measure the local wear resistance of the coating. Lastly, the Vickers hardness distribution across the cross-section of the coating before and after thermal exposure was compared. The work performed provides basic information understanding the microstructural evolution and mechanical performance of laser-induced coatings on Ni-based superalloys.
机译:对Ni–17Mo–7Cr基高温合金进行了激光表面改性,以改善其摩擦学性能。 Si颗粒用作涂层材料。在此过程中,Si熔化在合金表面上,从而触发了Mo6Ni6C碳化物和Ni-Si金属间化合物的形成。获得的无缺陷涂层主要由Mo6Ni6C和γ-Ni31Si12以及β1-Ni3Si和α-Ni基固溶体(α-Ni(s.s))的共晶结构组成。涂层中硬质增强材料(Mo6Ni6C,γ-Ni31Si12和β1-Ni3Si)的体积分数达到了85%。通过在1073 K下对涂层进行时效240-480 h来研究涂层的高温微结构稳定性,以揭示其组织演变。另外,研究了涂层的机械性能。使用纳米压痕试验表征了Mo6Ni6C,γ-Ni 31 Si 12 和α-Ni(s.s)的纳米级弹性模量和硬度。进行纳米划痕测试以测量涂层的局部耐磨性。最后,比较了热暴露前后涂层在整个横截面上的维氏硬度分布。所进行的工作为了解镍基高温合金上的激光诱导涂层的组织演变和力学性能提供了基本信息。

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