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首页> 外文期刊>Polymers for advanced technologies >A new family of low wear, low coefficient of friction polymer blend based on polytetrafluoroethylene and an aromatic thermosetting polyester
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A new family of low wear, low coefficient of friction polymer blend based on polytetrafluoroethylene and an aromatic thermosetting polyester

机译:基于聚四氟乙烯和芳族热固性聚酯的低磨损,低摩擦系数聚合物共混物新系列

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摘要

To improve the wear resistance of polytetrafluoroethylene (PTFE), a crosslinked aromatic thermosetting polyester (ATSP) has been blended directly with PTFE. Cured ATSP powder which was directly synthesized as a cured powder form was used for this application. Because of the similar processing temperature range of cured ATSP and PTFE, composites within the entire composition range were successfully prepared by blending these two powders using a hot press. Tribological pin-on-disk tests (composite pins sliding against gray cast iron disks) showed improvement on friction coefficient of all composites and much less wear than pure PTFE. The composites survived at contact pressures of 7 MPa, which is higher than either pure PTFE or pure ATSP could sustain. With an increase in the amount of ATSP in the composites, storage modulus, and glass transition temperature were higher, and the wear resistance was enhanced. SEM images helped provide explanations for the unusually low mean wear rates that were observed for these composite samples.
机译:为了提高聚四氟乙烯(PTFE)的耐磨性,已将交联的芳族热固性聚酯(ATSP)直接与PTFE共混。直接合成为固化粉末形式的固化ATSP粉末用于此应用。由于固化的ATSP和PTFE的加工温度范围相似,因此可以通过使用热压机将这两种粉末共混来成功制备整个组成范围内的复合材料。摩擦销钉盘试验(复合销钉在灰口铸铁盘上滑动)显示,所有复合材料的摩擦系数均有所改善,且磨损远小于纯PTFE。该复合材料可以在7 MPa的接触压力下存活,该压力高于纯PTFE或纯ATSP所能承受的压力。随着复合材料中ATSP含量的增加,储能模量和玻璃化转变温度更高,耐磨性得到提高。 SEM图像有助于解释这些复合材料样品的平均磨损率异常低。

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