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Sliding wear behaviors of Nomex fabric/phenolic composite under dry and water-bathed sliding conditions

机译:Nomex织物/酚醛复合材料在干水浴条件下的滑动磨损行为

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摘要

A Nomex fabric/phenolic composite was prepared, and its tribological properties were evaluated under dry and water-bathed sliding conditions by a pin-on-disk tribometer. The resulting size of the friction coefficient for the Nomex fabric/phenolic composite in the study occurred in the following order:dry sliding condition > distilled water-bathed sliding condition > sea water-bathed sliding condition. The fabric composite's wear rate from high to low was as follows:distilled water-bathed sliding condition > sea water-bathed sliding condition > dry sliding condition. Under water-bathed sliding conditions, penetration of water into the cracks accelerated the composite's invalidation process, resulting in a higher wear rate. We also found that the extent of corrosion and transfer film formed on the counterpart pin significantly influenced the wear rate of the Nomex fabric composite. Discussion of the Nomex fabric composite's wear mechanisms under the sliding conditions investigated is provided on the basis of the characterization results.
机译:制备了Nomex织物/酚醛复合材料,并通过针盘式摩擦计在干燥和水浴滑动条件下评估了其摩擦学性能。研究中Nomex织物/酚醛复合材料的摩擦系数的大小按以下顺序发生:干滑条件>蒸馏水沐浴条件>海水浴条件。织物复合材料的磨损率由高到低依次为:蒸馏水浴条件>海水浴条件>干法条件。在水浴滑动条件下,水渗透到裂缝中加速了复合材料的失效过程,从而导致更高的磨损率。我们还发现,在配对销钉上形成的腐蚀和转移膜的程度显着影响了Nomex织物复合材料的磨损率。根据表征结果,讨论了Nomex织物复合材料在所研究的滑动条件下的磨损机理。

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