首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Transient softening in lubricated sliding contacts due to strain path changes
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Transient softening in lubricated sliding contacts due to strain path changes

机译:由于应变路径变化,润滑滑动触点的瞬态软化

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The present work investigates microstructure evolution in pure aluminium under lubricated contact conditions. The initial wear scars were obtained in unidirectional sliding up to a pre-defined number of cycles N. After this pre-imparted severe plastic deformation, the sliding direction was reversed and the resulting microstructure was characterized using hardness measurements and microscopy techniques. The results show that immediately after reversing the strain path, the material significantly softens, as known in uniaxial tension-compression experiments. After the transient softening stage, the new microstructure becomes established and the polycrystal work-hardens again. The results obtained proof the presence of strain path change effects in metals undergoing sliding contact and highlight the importance to take these effects into account in component design in order to avoid undesired material softening. (C) 2017 Elsevier B.V. All rights reserved.
机译:本作者在润滑接触条件下调查纯铝中的微观结构演化。 在单向滑动中获得初始磨损疤痕,直到预定义数循环N.在该预定赋予的严重塑性变形之后,使用硬度测量和显微镜技术表征了倒置的微观结构。 结果表明,在逆转应变路径后立即,该材料显着软化,如同单轴拉伸 - 压缩实验中已知的。 在瞬态软化阶段之后,新的微观结构成立并再次成为多晶的工作。 结果证明了经历滑动接触的金属中应变路径变化的存在,并突出了在元件设计中考虑了这些效果的重要性,以避免不希望的材料软化。 (c)2017 Elsevier B.v.保留所有权利。

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