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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Microstructure and sliding wear behaviour of Tribaloy T-800 coatings deposited by laser cladding
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Microstructure and sliding wear behaviour of Tribaloy T-800 coatings deposited by laser cladding

机译:激光熔覆Tribaloy T-800涂层的组织和滑动磨损行为

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This work has focused on the obtainment of Tribaloy T-800 coatings by laser cladding on plane 18/8 stainless steel specimens (AISI 304), The appropriate selection of cladding parameters allowed defect-free coatings to be obtained with minimal dilution. In order to evaluate their microstructure, cross-sections of the coatings were examined by optical microscopy and scanning electron microscopy (SEM) with energy dispersive spectroscopy (EDS). The elemental composition of the coatings was determined using an optical emission spectrometer with an excitation source (GDOES) and phase analysis was performed by X-ray diffraction (XRD). Several zones can be distinguished in the microstructure of the clad layer: a planar crystallization region at the interface with the substrate, followed by cellular and dendrite crystallization from the interface to the surface of the laser track and an overlap zone between tracks which is characterised by the coarsening of the structure and the formation of a lamellar eutectic phase. The mechanical properties were evaluated by hardness measurements and sliding wear tests (ball-on-disk and block-on-ring configurations) at room temperature and without lubrication. It was observed the great hardness (close to 850 HV{sub}0.3) achieved for the Tribaloy 800 laser coatings, which presented a wear coefficient (k) between one and two orders of magnitude lower than the substrate. The analysis of the clad worn surfaces showed that there was a transition from an adhesive-oxidational mechanism to a more severe plastic deformation and crack formation wear process with increasing the applied load.
机译:这项工作的重点是在平面18/8不锈钢试样上通过激光熔覆获得Tribaloy T-800涂层(AISI 304)。适当选择熔覆参数可以以最小的稀释度获得无缺陷的涂层。为了评估它们的微观结构,通过光学显微镜和具有能量色散光谱法(EDS)的扫描电子显微镜(SEM)检查了涂层的横截面。使用带有激发源的光发射光谱仪(GDOES)确定涂层的元素组成,并通过X射线衍射(XRD)进行相分析。在包层的微观结构中可以区分出几个区域:在与衬底的界面处的平面结晶区域,然后是从界面到激光轨道表面的蜂窝状和树枝状结晶,以及轨道之间的重叠区域,其特征在于结构的粗化和层状共晶相的形成。通过在室温下不润滑的情况下通过硬度测量和滑动磨损测试(圆盘上的球和环上的块配置)评估机械性能。观察到,Tribaloy 800激光涂层具有很高的硬度(接近850 HV {sub} 0.3),其磨损系数(k)比基底低一到两个数量级。对包层磨损表面的分析表明,随着施加载荷的增加,从胶粘氧化机制向更严重的塑性变形和裂纹形成磨损过程过渡。

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