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Characterization of High-Velocity Single Particle Impacts on Plasma-Sprayed Ceramic Coatings

机译:高速单颗粒对等离子喷涂陶瓷涂层的影响

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High-velocity impact wear can have a significant effect on the lifetime of thermally sprayed coatings in multiple applications, e.g., in the process and paper industries. Plasma-sprayed oxide coatings, such as Cr2O3- and TiO2-based coatings, are often used in these industries in wear and corrosion applications. An experimental impact study was performed on thermally sprayed ceramic coatings using the High-Velocity Particle Impactor (HVPI) at oblique angles to investigate the damage, failure, and deformation of the coated structures. The impact site was characterized by profilometry, optical microscopy, and scanning electron microscopy (SEM). Furthermore, the connection between the microstructural details and impact behavior was studied in order to reveal the damage and failure characteristics at a more comprehensive level. Differences in the fracture behavior were found between the thermally sprayed Cr2O3 and TiO2 coatings, and a concept of critical impact energy is presented here. The superior cohesion of the TiO2 coating inhibited interlamellar cracking while the Cr2O3 coating suffered greater damage at high impact energies. The HVPI experiment has proven to be able to produce valuable information about the deformation behavior of coatings under high strain rates and could be utilized further in the development of wear-resistant coatings.
机译:高速冲击磨损会对多种应用(例如在过程和造纸行业中)的热喷涂涂层的寿命产生重大影响。等离子喷涂的氧化物涂层,例如Cr2O3和TiO2基涂层,经常在这些行业的磨损和腐蚀应用中使用。使用高速粒子撞击器(HVPI)以倾斜角度对热喷涂陶瓷涂层进行了实验冲击研究,以研究涂层结构的损坏,破坏和变形。冲击部位通过轮廓仪,光学显微镜和扫描电子显微镜(SEM)表征。此外,研究了微观结构细节与冲击行为之间的联系,以便更全面地揭示损伤和破坏特征。在热喷涂的Cr2O3和TiO2涂层之间发现了断裂行为的差异,并在此提出了临界冲击能的概念。 TiO2涂层的出色内聚力抑制了层间开裂,而Cr2O3涂层在高冲击能量下遭受了更大的破坏。 HVPI实验已被证明能够在高应变速率下产生有关涂层变形行为的有价值的信息,并可进一步用于开发耐磨涂层。

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