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Microstructure and high-temperature wear behaviour of Inconel 625 multi-layer cladding prepared on H13 mould steel by a hybrid additive manufacturing method

机译:通过混合添加剂制造方法在H13模钢上制备的Inconel 625多层包层的微观结构和高温磨损行为

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摘要

To improve the high-temperature performance of a hot-working mould, high-temperature wear-resistant multi-layer laser cladding was prepared on the forming surface of the mould by a hybrid additive manufacturing (HAM) method. First, an Inconel 625 multi-layer cladding was fabricated on the H13 mould steel by laser cladding. Then, the multi-layer laser cladding was milled by CNC. Finally, the milled multi-layer cladding was subjected to ultrasonic surface rolling (USR) treatment. The microstructure and high-temperature wear behaviour of the multi-layer cladding prepared by HAM were studied using SEM, EDS, and a high-temperature tribometer. The results show that the multi-layer laser cladding after USR has a smooth nanolayer. The surface roughness is below 0.15 mu m. The multi-layer cladding has better high temperature wear resistance than the substrate. The microstructure of the multi-layer cladding from the surface to the substrate is composed of coaxial, columnar, and dendritic grains. After USR treatment, the dendritic grains are grown in the processing direction and significantly refined.
机译:为了提高热加工模具的高温性能,采用混合添加剂制造(HAM)方法在模具成形表面制备了高温耐磨多层激光熔覆层。首先,采用激光熔覆技术在H13模具钢上制备了Inconel 625多层熔覆层。然后,用数控铣削多层激光熔覆层。最后,对铣削后的多层覆层进行超声波表面滚压(USR)处理。利用SEM、EDS和高温摩擦磨损试验机研究了HAM制备的多层覆层的微观结构和高温磨损性能。结果表明,超声反射后的多层激光熔覆具有光滑的纳米层。表面粗糙度低于0.15μm。多层覆层比基体具有更好的高温耐磨性。多层熔覆层从表面到基体的微观结构由同轴、柱状和树枝状晶粒组成。在USR处理后,树枝状晶粒在加工方向生长并显著细化。

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