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Improving tribological properties of cast Al-Si alloys through application of wear-resistant thermal spray coatings

机译:通过使用耐磨的热喷涂涂层改善铸铝硅合金的摩擦学性能

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摘要

Flame Spray Thermal Spray coatings are low-cost, high-wear surface-treatment technologies. However, little has been reported on their potential effects on cast automotive aluminum alloys. The aim of this research was to investigate the tribological properties of as-sprayed NiCrBSi and WC/12Co Flame Spray coatings applied to two cast aluminum alloys: high-copper LM24 (AlSi8Cu3Fe), and low-copper LM25 (AlSi7Mg). Potential interactions between the mechanical properties of the substrate and the deposited coatings were deemed to be significant. Microstructural, microhardness, friction, and wear (pin-on-disk, microabrasion, Taber abrasion, etc.) results are reported, and the performance differences between coatings on the different substrates were noted. The coefficient of friction was reduced from 0.69-0.72 to 0.12-0.35. Wear (pin-on-disk) was reduced by a factor of 103-104, which was related to the high surface roughness of the coatings. Microabrasion wear was dependent on coating hardness and applied load. Taber abrasion results showed a strong dependency on the substrate, coating morphology, and homogeneity.
机译:火焰喷涂热喷涂涂层是低成本,高磨损的表面处理技术。然而,关于它们对铸造汽车铝合金的潜在影响的报道很少。这项研究的目的是研究喷涂在两种铸造铝合金上的NiCrBSi和WC / 12Co火焰喷涂涂层的摩擦学性能:高铜LM24(AlSi8Cu3Fe)和低铜LM25(AlSi7Mg)。基材和沉积涂层的机械性能之间的潜在相互作用被认为是重要的。报告了微观结构,显微硬度,摩擦和磨损(销盘磨损,微磨损,泰伯磨损等)的结果,并记录了不同基材上涂层之间的性能差异。摩擦系数从0.69-0.72降低到0.12-0.35。磨损(针盘磨损)减少了103-104倍,这与涂层的高表面粗糙度有关。微磨损取决于涂层硬度和施加的载荷。泰伯磨损结果显示出对底材,涂层形态和均匀性的强烈依赖性。

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