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Fabrication of PTFE/Nomex fabric/phenolic composites using a layer-by-layer self-assembly method for tribology field application

机译:使用逐层自组装方法制造PTFE / NOMEX织物/酚醛复合材料,用于摩擦学现场应用

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Fabric composites are widely applied as self-lubricating liner for radial spherical plain bearings owing to their excellent mechanical and tribological properties. Nevertheless, the poor interfacial strength between fibers and the resin matrix limits the performance of composites utilized as tribo-materials. To overcome this drawback, a mild layer-by-layer (LbL) self-assembly method was successfully used to construct hybrid fabric composites in the present work. In addition, this investigation addressed the effect of self-assembly cycles on the friction and wear behaviors of hybrid fabric composites under dry sliding condition. The results demonstrate that fabric composites with three or more self-assembly cycles have significantly enhanced surface activities and anti-wear performances. The results obtained in this work can provide guidance in the preparation of selflubricating liner composites and highlight how the LbL self-assembly techniques could influence the properties of hybrid fabric composites.
机译:由于其优异的机械和摩擦学特性,织物复合材料被广泛应用于用于径向球形滑动轴承的自润滑衬垫。然而,纤维和树脂基质之间的差相强度差限制了作为摩擦材料的复合材料的性能。为了克服该缺点,成功地用于构建本作工作中的混合织物复合材料的温和层次层(LBL)自组装方法。此外,本研究还解决了自组装循环对干滑动条件下杂交织物复合材料的摩擦和磨损行为的影响。结果表明,具有三个或更多个自组装循环的织物复合材料具有显着增强的表面活性和抗磨损性能。在该工作中获得的结果可以在制备自润滑衬垫复合材料方面提供指导,并突出LBL自组装技术如何影响混合织物复合材料的性质。

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