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Scratch resistance and damage mechanism of laser remelted thermally sprayed ceramic coating

机译:激光重熔热喷涂陶瓷涂层的耐刮擦性和损伤机理

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摘要

Scratch resistance of plasma sprayed and laser remelted alumina and chromia coatings were assessed under constant and variable load. Failure load and cohesive strength of the coatings increased up to 65% and 94%, respectively upon laser remelting. The scratch wear resistance increased up to 88%. This is attributed to an improvement in hardness, elastic modulus and indentation fracture toughness of the remelted coatings. Upon laser remelting, lamellar microstructure of thermally sprayed coating was transformed into a columnar microstructure. A phase change from y-alumina to a-alumina also occurred. Principal mechanisms of failure of the coatings were plastic deformation, tensile cracking, and spallation. In both types of coatings, a subsurface crack was found to grow in a direction parallel to the scratch. Propagation of this crack to the surface produced spallation of the coating. In the ball on disc test, the coatings were found to fail by splat delamination and radial cracking. The wear coefficients of the laser remelted chromia and alumina coating, respectively were 80% and 76% lower than those of the as-sprayed coatings.
机译:在恒定和可变载荷下评估等离子体喷涂和激光重熔氧化铝和铬涂层的耐刮擦性。在激光重熔时,涂层的失效负荷和粘性强度分别增加了65%和94%。划痕耐磨性高达88%。这归因于重熔涂层的硬度,弹性模量和压痕断裂韧性的改善。激光重熔时,将热喷涂涂层的层状微观结构转化为柱状微观结构。也发生了来自y-氧化铝到A-氧化铝的相变。涂层失效的主要机制是塑性变形,拉伸裂解和脱晶。在两种类型的涂层中,发现地下裂缝在平行于划痕的方向上生长。这种裂缝将这种裂缝传播到涂层的表面产生的椎间壳。在球盘试验中,发现涂层通过Splat分层和径向裂缝失效。激光雷络铬和氧化铝涂层的磨损系数分别为80%和76%低于喷涂涂层的80%和76%。

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