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Investigating the effects of microstructure on the wear mechanisms in lamellar cast irons via microscratch tests

机译:通过微划痕试验研究微观结构对层状铸铁磨损机理的影响

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摘要

This work investigates the effects of microstructure on the wear mechanisms in lamellar cast irons using a microscratch test. Various applied loads and indenter geometries were utilised. The results indicate that the surface damage depends on the indenter geometry, the penetration depth, the orientation and the depth of the graphite flakes. Increasing the applied load and the attack angle increases the friction coefficient, the tangential force and its fluctuation. Beyond a certain load, the friction coefficient remains nearly constant. The proposed schemes explain the role played by both the matrix and graphite in the wear process.
机译:这项工作使用微划痕试验研究了微观结构对层状铸铁磨损机理的影响。利用了各种施加的载荷和压头几何形状。结果表明,表面损伤取决于压头的几何形状,穿透深度,石墨薄片的方向和深度。增加施加的载荷和迎角会增加摩擦系数,切向力及其波动。超过一定的负载,摩擦系数几乎保持恒定。提出的方案解释了基体和石墨在磨损过程中所起的作用。

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