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Antigalling and low friction properties of a laser processed Co-based material

机译:激光加工的钴基材料的抗磨损和低摩擦性能

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The antigalling and low friction properties of a CO_2-laser processed Co-based material (Stellite 21) was investigated under high-load sliding conditions. Dry sliding tests were carried out at both room temperature and at 250℃. The tests were performed by sliding two identical specimens against each other in a dedicated test. A low and stable friction coefficient at a level of about 0.20, and relatively independent on load and sliding speed, was obtained after a short running-in period. No tendency to galling was observed in any test. During sliding, the superficial face-centered-cubic material transforms to hexagonal-close-packed with the {0001} planes preferentially orientated parallel to the surface of the wear track. Since these planes are easily sheared, and supported by a deformation hardened zone, a surface layer is generated with low friction properties and high resistance to galling. Thus, the laser processed Co-based alloy exhibits the functional ability to generate a surface with unique properties during sliding contact.
机译:在高负荷滑动条件下研究了CO_2激光处理的Co基材料(Stellite 21)的抗磨损和低摩擦性能。在室温和250℃下进行干滑试验。通过在专用测试中使两个相同的样本彼此相对滑动来进行测试。在短暂的磨合期后,获得了较低且稳定的摩擦系数,约为0.20,并且相对独立于负载和滑动速度。在任何测试中均未观察到磨损的趋势。在滑动期间,表面为中心的立面立方材料转换为六边形紧密堆积的{0001}平面,该平面优先平行于磨损轨道的表面定向。由于这些平面易于剪切,并由变形硬化区支撑,因此生成了具有低摩擦性能和高耐磨损性的表面层。因此,激光加工的钴基合金在滑动接触过程中具有产生具有独特性能的表面的功能。

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