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Thermal wear and electrical sliding wear behaviors of the polyimide modified polymer-matrix pantograph contact strip

机译:聚酰亚胺改性的聚合物基受电弓接触片的热磨损和电滑动磨损行为

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摘要

In the present study, the polyimide resin (PI)/cashew-modified resin (YM) polymer-matrix pantograph contact strip (PMPCS) was prepared by using hot repressing, hydro-solidification and dipping treatment processes. The thermal properties of cured resins were studied by thermogravimetry analyzer and differential scanning calorimetry. The thermal wear and electrical sliding wear behaviors of PMPCS against copper were evaluated by a ring block wear tester at elevated temperature under dry sliding conditions and a wear tester which simulated the train motion under laboratory conditions, respectively. Worn surfaces and wear debris of PMPCS were analyzed by scanning electron microscopy and energy dispersive spectrometer, and the wear mechanism was discussed. It has been found that the thermal stability of the PI/YM is superior to that of the YM under the same testing conditions. The results also showed that PI/YM-PMPCS had superior wear resistance than that of YM-PMPCS at elevated temperature and with electrical current. At elevated temperature, the wear mechanism of tribological pair evolved from adhesive wear to oxidative wear with mild delamination wear. Arc erosion wear, oxidative wear, and adhesive wear were the dominant mechanisms of tribological pair during the electrical wearing process.
机译:在本研究中,聚酰亚胺树脂(PI)/腰果改性树脂(YM)聚合物-基质受电弓接触带(PMPCS)是通过使用热压,加氢凝固和浸渍处理工艺制备的。通过热重分析仪和差示扫描量热法研究了固化树脂的热性能。 PMPCS对铜的热磨损和电滑动磨损行为分别由一个环形块磨损测试仪在干燥滑动条件下的高温下评估,并通过一个磨损测试仪模拟了在实验室条件下的列车运动。用扫描电子显微镜和能谱仪分析了PMPCS的磨损表面和磨损碎片,并讨论了磨损机理。已经发现,在相同的测试条件下,PI / YM的热稳定性优于YM。结果还表明,在高温和通电条件下,PI / YM-PMPCS具有比YM-PMPCS更高的耐磨性。在升高的温度下,摩擦副的磨损机理从粘附磨损演变为氧化磨损,并出现了轻度的分层磨损。电弧磨损,氧化磨损和粘着磨损是电气磨损过程中摩擦学对的主要机理。

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