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Friction behavior of Al-Cu-Fe-B polycrystalline quasicrystals

机译:Al-Cu-Fe-B多晶准晶体的摩擦行为

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摘要

Dry sliding friction between the polycrystalline Al_(59)Cu_(25.5)Fe_(12.5)B_3 quasicrystals (QCs) and coating of the diamond-like carbon(DLC) was carried out by self-made tribometer under different conditions. The influences of four parameters (temperature, sliding velocity, applied load, atmosphere) on friction of quasicrystal surface were studied. Microstructure of quasicrystal, morphology of worn surface, and wear debris were observed by scanning e-lectron microscope(SEM). The results show that for QCs, the friction coefficient and the roughness of worn surface is influenced by the parameters, especially greatly by the temperature. With increasing the applied load and sliding velocity, the friction coefficient decreases. The dominant wear mechanism at 350 deg C is delamination for QCs. The cracks forms on the worn surface during friction. Moreover, phase transformation is not observed on worn surface of QCs at 350 deg C.
机译:采用自制的摩擦计在不同条件下进行了多晶Al_(59)Cu_(25.5)Fe_(12.5)B_3准晶体(QCs)与类金刚石碳(DLC)涂层之间的干式滑动摩擦。研究了四个参数(温度,滑动速度,施加的载荷,气氛)对准晶体表面摩擦的影响。通过扫描电子显微镜观察准晶体的微观结构,磨损表面的形貌和磨损碎片。结果表明,对于QC,摩擦系数和磨损表面的粗糙度受参数的影响,尤其是温度的影响最大。随着施加的载荷和滑动速度的增加,摩擦系数减小。在350摄氏度时,主要的磨损机理是QC的分层。在摩擦过程中,裂纹会在磨损的表面上形成。此外,在350摄氏度的QC磨损表面上未观察到相变。

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