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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Fretting wear behavior of conventional and nanostructured Al{sub}2O{sub}3-13 wt%TiO{sub}2 coatings fabricated by plasma spray
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Fretting wear behavior of conventional and nanostructured Al{sub}2O{sub}3-13 wt%TiO{sub}2 coatings fabricated by plasma spray

机译:等离子喷涂传统和纳米结构Al {sub} 2O {sub} 3-13 wt%TiO {sub} 2涂层的微动磨损行为

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摘要

The fretting wear behavior of conventional and nanostructured Al{sub}2O{sub}3-13 wt%TiO{sub}2 coatings fabricated by plasma spray was studied in this paper. The conventional coatings were deposited with commercial Metco 130 feedstock, and the nanostructured coatings were deposited with agglomerated feedstock with nanos-tructure. There were typical lamellar structures existing in conventional coating, however, those were not obviously observed in nanostructured coating. Amorphous phases, nanosized grains and some submicron grains existed in nanostructured coating. In fretting wear tests, the coatings wear against 52100 steel ball. In all of three conditions tests, the fretting maintained in gross slip regime for both nanostructured and conventional coatings. The coefficient of friction (COF) ranged from 0.7 to 0.9 in the fretting wear test. There was a transfer iron oxide layer formed on the worn coating surface. Fretting cracks propagate along the splat boundary in conventional coatings but propagate at random in nanostructured coatings. Test results showed that nanostructured coatings exhibited much better fretting wear resistance than conventional coating. The improved fretting wear resistance of nanostructured coatings was attributed to the nanosized grains, reduced lamellar structures and amorphous phases.
机译:本文研究了等离子喷涂传统和纳米结构的Al {sub} 2O {sub} 3-13 wt%TiO {sub} 2涂层的微动磨损行为。常规涂层用商业Metco 130原料沉积,而纳米结构涂层则用具有纳米结构的团聚原料沉积。传统涂层中存在典型的层状结构,但是,在纳米结构涂层中没有明显观察到这些。纳米结构涂层中存在非晶相,纳米晶粒和一些亚微米晶粒。在微动磨损测试中,涂层会磨损52100钢球。在所有三个条件下的测试中,对于纳米结构涂料和常规涂料,微动保持在总体滑移状态。在微动磨损试验中,摩擦系数(COF)为0.7至0.9。在磨损的涂层表面上形成了转移氧化铁层。微动裂纹在常规涂层中会沿着splat边界传播,而在纳米结构涂层中会随机传播。测试结果表明,纳米结构涂层比常规涂层具有更好的抗微动磨损性能。纳米结构涂层抗微动磨损性能的提高归因于纳米晶粒,层状结构减少和非晶相。

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