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Impact wear of an HVOF-sprayed Cr3C2-NiCr coating

机译:HVOF喷涂CR3C2-NICR涂层的冲击磨损

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In this study, a Cr3C2-NiCr coating was produced by high velocity oxy-fuel (HVOF) spraying and investigated in terms of its behavior under cyclic impact loading using impact test, which is usually established to evaluate PVD and CVD hard coatings. The Cr3C2-NiCr coating was exposed to forces of F = 300 N, F = 500 N, F = 800 N and F = 1000 N with number of cycles varying from n = 1.25 * 10(5) to n = 10 * 10(5). The tested samples were analyzed with confocal laser scanning microscopy, optical light microscopy and electron scanning microscopy on the impacted surfaces as well as on the cross-sections of the selected samples. It is identified that under the forces of F = 300 N, F = 500 N and F = 800 N the coatings are subjected to cohesive failure, which can be attributed to different mechanisms. Under F = 1000 N loading, failure occurs at the interface between coating and substrate as well. The local plastic deformation, tribo-reaction and micro-abrasion cause only marginal change in crater volume generated due to cyclic loading, while rupture of the coating parts result in significantly higher material losses. The significance of the partial coating rupture depends strongly on the applied force. With a loading force of F = 800 N and higher, partial coating rupture and delamination of coating segments are observed. This study shows that the impact testing can be successfully applied on thermally sprayed coatings to evaluate their impact wear.
机译:在本研究中,通过高速氧 - 燃料(HVOF)喷涂产生CR3C2-NICR涂层,并在使用冲击试验的循环冲击载荷下的行为方面进行研究,这通常是为了评估PVD和CVD硬涂层而得到的。将Cr3C2-NiCr涂层暴露于f = 300n,f = 500n,f = 800n和f = 1000n的力,随着n = 1.25 * 10(5)到n = 10 * 10而变化的循环数( 5)。用共聚焦激光扫描显微镜,光学光显微镜和电子扫描显微镜以及所产生的样品的横截面分析测试的样品。鉴定它在f = 300n的力下,F = 500 n和f = 800n,涂层经受粘性破坏,这可以归因于不同的机制。在f = 1000 n下,在涂层和基板之间的界面处发生故障。局部塑性变形,摩擦反应和微磨损仅导致由于循环载荷产生的火山口体积的边缘变化,而涂层部件的破裂导致材料损失显着提高。部分涂层破裂的意义在施加的力上强烈取决于施加的力。对于F = 800 n和更高的装载力,观察到涂层段的部分涂层破裂和分层。本研究表明,可以成功地应用冲击测试,以评估它们的冲击磨损。

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