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首页> 外文期刊>DVS-Berichte >The Influence of Particle Temperature, Particle Velocity and Coating Surface Temperature on the Sliding Wear Performance of TiO_2-Cr_2O_3 Coatings
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The Influence of Particle Temperature, Particle Velocity and Coating Surface Temperature on the Sliding Wear Performance of TiO_2-Cr_2O_3 Coatings

机译:颗粒温度,颗粒速度和涂层表面温度对TiO_2-Cr_2O_3涂层滑动磨损性能的影响

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In this work the sliding wear resistance of HVOF and APS-sprayed coatings from two experimental TiO_2-10-20 wt.%Cr_2O_3 fused and crushed feedstock powders was investigated. During the spraying process the particle temperatures and velocities were mapped in the cross section of the spray jet at different spray distances. In addition, the coating surface temperature was monitored. Coating microstructures and phase composition were studied by SEM and XRD, respectively. The elastic modulus (E) and hardness (H) values were measured via indepth sensing indentation. The unidirectional ball-on-disk sliding wear test was performed at room temperature against a tungsten carbide ball (sliding speed 0.05 m/s, normal force 90 N). The increase of the particle temperature and velocity leads to an increase of hardness and Young's modulus of the coatings, thereby increasing their sliding wear resistance. The sliding wear resistance can be correlated with the H_3/E_2 ratio better than with the hardness alone. The sliding wear resistance was also sensitive to the coating surface temperature reached during deposition.
机译:在这项工作中,研究了由两种实验性TiO_2-10-20 wt。%Cr_2O_3熔融和压碎的原料粉末制成的HVOF和APS喷涂涂层的滑动耐磨性。在喷涂过程中,颗粒温度和速度分别绘制在不同喷射距离的喷射流横截面上。另外,监测涂层表面温度。通过SEM和XRD分别研究了涂层的微观结构和相组成。弹性模量(E)和硬度(H)值通过深度感应压痕测量。在室温下对碳化钨球(滑动速度为0.05 m / s,法向力为90 N)进行了单向磁盘上的滑动磨损试验。颗粒温度和速度的增加导致涂层的硬度和杨氏模量增加,从而提高了涂层的抗滑动磨损性。与单独的硬度相比,可将滑动耐磨性与H_3 / E_2比率更好地关联。滑动耐磨性也对沉积期间达到的涂层表面温度敏感。

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