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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A new method to investigate the sliding wear behaviour of materials based on energy dissipation: W-25 wt%Cu composite
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A new method to investigate the sliding wear behaviour of materials based on energy dissipation: W-25 wt%Cu composite

机译:一种基于能量耗散研究材料滑动磨损行为的新方法:W-25 wt%Cu复合材料

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摘要

A new method is proposed to explain and monitor wear behaviour based on energy dissipation. The wear of a W-25 wt%Cu composite against 52100 steel was used to demonstrate this approach with pin-on-disc tests conducted under three normal loads. An energy-dependent criterion, namely, specific wear volume (wear volume/dissipated energy (mm~3/J)), was defined to evaluate the wear of the composite. The specific wear volume can be used as a substitute for the traditional wear rate due to the simultaneous expression of several wear parameters and because of its strong dependence on the wear mode. The specific wear volume appears to be constant in any particular "wear mode" regardless of the active "wear processes". In the wear of this composite, processes such as particle pull-out, mechanically mixed layer (MML) formation, crack propagation and delamination were observed. But, combination of these processes in each test had identical specific wear volumes. Thus, all of these wear processes were considered to be consecutive stages of the same wear mode: fatigue wear. The amount of dissipated energy and the volumetric loss increased with increasing normal load. Also, changing the normal load changed the rate of energy dissipation per unit sliding distance.
机译:提出了一种基于能量耗散的解释和监测磨损行为的新方法。使用W-25 wt%Cu复合材料相对于52100钢的磨损,通过在三个法向载荷下进行的针盘试验来证明这种方法。定义了能量相关的标准,即比磨损量(磨损量/耗散能量(mm〜3 / J))来评估复合材料的磨损。由于多个磨损参数的同时表达以及对磨损模式的强烈依赖,因此特定磨损量可以替代传统磨损率。在任何特定的“磨损模式”下,特定的磨损量似乎都是恒定的,而与活动的“磨损过程”无关。在这种复合材料的磨损中,观察到诸如颗粒拉出,机械混合层(MML)形成,裂纹扩展和分层的过程。但是,在每个测试中这些过程的组合具有相同的特定磨损量。因此,所有这些磨损过程都被认为是相同磨损模式的连续阶段:疲劳磨损。耗散的能量和体积损失随正常负载的增加而增加。同样,改变法向负载会改变单位滑动距离的能量耗散率。

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