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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Minimizing tribolayer damage by strength-ductility matching in dual-scale structured Al-Sn alloys: A mechanism for improving wear performance
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Minimizing tribolayer damage by strength-ductility matching in dual-scale structured Al-Sn alloys: A mechanism for improving wear performance

机译:通过在双尺度结构Al-Sn合金中进行强度-延展性匹配来最大程度地减少摩擦磨损层:一种改善磨损性能的机制

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摘要

A mechanism for significant improvement of wear properties has been investigated. This operates by inducing a dual-scale structure consisting of coarse-grains (CG) and ultrafine-grains (UFG) in Al-12 wt% Sn alloys, in comparison with uniform UFG or CG structured alloys. It has been found that a dynamic steady tribolayer consisting of fine crystalline oxides plays a dominant role in improving the wear properties of both the UFG and dual-scale alloys. For the CG alloys, poor wear properties, caused by delamination wear of the tribolayer, could not be maintained on the worn surface. The tribolayer is formed on the worn surface by compacting and tribo-sintering of fine loose particles produced by sliding wear. However, the damage of the dynamic steady tribolayer is governed by the matching between ductility and strength of the matrix. The low ductility of the UFG alloy substrate causes the tribolayer to suffer crack damage rather easily, which limits any further improvement of its wear resistance. In contrast, for the CG alloys, the tribolayer is broken up and extruded into the matrix as a result of its low strength and a stable tribolayer could not be formed. The dual-scale structured alloy has excellent ductility-strength matching, and therefore a dynamic stable tribolayer can easily be maintained on the worn surface, leading to excellent wear performance.
机译:已经研究了显着改善磨损性能的机理。与均匀的UFG或CG结构的合金相比,这通过在Al-12 wt%Sn合金中诱导出由粗晶粒(CG)和超细晶粒(UFG)组成的双尺度结构来实现。已经发现由细晶氧化物组成的动态稳定的摩擦层在改善UFG和双尺度合金的磨损性能中起着主导作用。对于CG合金,由于摩擦层的分层磨损而导致的磨损性能无法维持在磨损的表面上。摩擦层是通过压缩和摩擦烧结由滑动磨损产生的细小颗粒而形成在磨损表面上的。但是,动态稳定摩擦层的损坏取决于延性和基体强度之间的匹配。 UFG合金基材的低延展性使摩擦层很容易遭受裂纹破坏,这限制了其耐磨性的任何进一步提高。相反,对于CG合金,由于其低强度,摩擦层破裂并挤出到基体中,并且不能形成稳定的摩擦层。该双尺度结构合金具有优异的延展性-强度匹配性,因此可以容易地在磨损表面上保持动态稳定的摩擦层,从而获得优异的磨损性能。

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