首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Wear mecahnisms and wear rate in a high temperature dry friction of AISI H11 tool steel: Influence of debris circulation
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Wear mecahnisms and wear rate in a high temperature dry friction of AISI H11 tool steel: Influence of debris circulation

机译:AISI H11工具钢在高温干摩擦下的磨损机理和磨损率:碎屑循环的影响

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摘要

The wear rate of sliding materials seems impossible to predict. It is clearly a function of substrate material, but we are learning that many surface events are also important In particular, studies on the last 20 years have shown that substances develop between two sliding bodies have a strong influence on both friction and wear. These substances had become known as "third bodies". Whereas third bodies have been proven to be important, they have not been completely characterized. The third bodies have been studied, but it appears that the geometries of the sliding pairs are also important. This paper describes some experiments in which the composition of third-body materials are controlled by temperatures and in which the durability of third-body films are influenced by the geometry of contact between sliding bodies.
机译:滑动材料的磨损率似乎无法预测。显然,这是基材的一种功能,但是我们正在学习许多表面事件也很重要。特别是,最近20年的研究表明,在两个滑动体之间产生的物质对摩擦和磨损都有很大影响。这些物质被称为“第三体”。尽管已证明第三实体很重要,但尚未完全对其进行表征。已经研究了第三体,但是滑动对的几何形状似乎也很重要。本文介绍了一些实验,其中第三体材料的成分受温度控制,而第三体膜的耐用性受滑动体之间接触的几何形状影响。

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