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Scale effects in abrasive wear of composite sol-gel alumina coated light alloys

机译:溶胶-凝胶氧化铝复合轻合金磨料磨损的尺度效应

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Chemically-bonded composite sol-gel (CB-CSG) coatings have been developed that incorporate calcined ceramic powder particles (filler) dispersed in a sol-gel (SG) matrix (binder). As a result, they have significantly reduced densification strains compared to conventional SG coatings. The CB-CSG coatings, which are several orders of magnitude thicker than typical micron-thick SG films, can be produced easily by spray depositing onto Al and Mg alloys, followed by a short low temperature (300°C) heat treatment. The abrasive wear performance was determined for Al_2O_(3(binder))/Al_2O_(3(filler)), Al_2O_(3(binder))/Al_2O_3-SiC(fillers) and a hybrid Al_2O_(3(binder))/ Al_2O_(3(filler)) + Al_(40 μm particle filler) coatings on commercial Al and Mg alloys. In two-body abrasion tests, the coated alloys were abraded by bonded SiC abrasives of increasing coarseness with comparative experiments also being performed on the uncoated substrate alloys, Coating wear rates exhibited an order of magnitude increase when the scale of indentation increased above a critical depth, whereupon wear rates approached those of the substrate alloy. Similar observations were made in three-body microabrasion experiments using a ball-cratering technique to abrade the coatings with very fine and coarse alumina slurries. The modes and mechanisms of coating damage were characterized by SEM and optical surface profilometry techniques. Normalized parameters for hardness, abrasive wear and indentation depth, were used in interpreting and comparing coating tribological performance.
机译:已开发出化学结合的复合溶胶-凝胶(CB-CSG)涂料,其中包含分散在溶胶-凝胶(SG)基质(粘合剂)中的煅烧陶瓷粉末颗粒(填料)。结果,与常规SG涂层相比,它们的致密化应变显着降低。 CB-CSG涂层的厚度比典型的微米级SG膜厚几个数量级,可以通过喷涂在Al和Mg合金上,然后进行短暂的低温(300°C)热处理来轻松生产。确定了Al_2O_(3(粘结剂))/ Al_2O_(3(填料)),Al_2O_(3(粘结剂))/ Al_2O_3-SiC(填料)和混合Al_2O _((3(粘结剂))/ Al_2O_(在商用Al和Mg合金上的3(填料))+ Al_(40μm颗粒填料)涂层。在两体磨损试验中,涂层合金被粗糙度增加的粘结SiC磨料磨蚀,同时对未涂层的基体合金也进行了对比实验,当压痕尺寸增加到临界深度以上时,涂层的磨损率显示出数量级的增加。 ,因此磨损率接近基体合金的磨损率。在三体微磨损实验中,使用球坑技术对非常细和粗糙的氧化铝浆液进行涂层研磨,得到了类似的观察结果。通过扫描电镜和光学表面轮廓仪技术表征了涂层损伤的方式和机理。硬度,磨料磨损和压痕深度的归一化参数用于解释和比较涂层的摩擦学性能。

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