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Development of Composite Materials Based on Ultrahigh-Molecular Weight Polyethylene and Thermally Expanded Graphite1

机译:超高分子量聚乙烯和热膨胀石墨复合材料的开发1

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摘要

In connection with the huge range of ultra-high molecular weight polyethylene (UHMWPE) grades, the choice of a particular brand is a difficult task. Rational choice of the polymer matrix is a necessary condition for the increase in reliability and service life of products, and consequently, for the efficiency of using these composite materials. The given article presents the results of tests on stress-strain properties of GUR-2122, 4113, 4120, 4130, 4150, 4170 and GHR-8020 ultra-high molecular weight polyethylene grades. GUR-4150 UHMWPE is chosen as the polymer matrix on the base of the test results. It is shown that the friction coefficient of the polymer composite material is reduced even with the modification of UHMWPE with nanodispersed thermally expanded graphite (TEG) in amount of 0.001-0.5 mass%. It is established that the rate of mass wear decreases by 3-4.3 while maintaining the stress-strain properties of the composites at the level of the initial UHMWPE. Polymer composite materials with an improved set of performance indicators are developed.
机译:与种类繁多的超高分子量聚乙烯(UHMWPE)牌号有关,选择特定品牌是一项艰巨的任务。合理选择聚合物基质是增加产品可靠性和使用寿命,并因此提高使用这些复合材料效率的必要条件。给定的文章介绍了GUR-2122、4113、4120、4130、4150、4170和GHR-8020超高分子量聚乙烯牌号的应力-应变性能的测试结果。根据测试结果,选择GUR-4150 UHMWPE作为聚合物基质。结果表明,即使用0.001-0.5质量%的纳米分散的热膨胀石墨(TEG)改性UHMWPE,聚合物复合材料的摩擦系数也会降低。已经确定,在将复合材料的应力-应变特性保持在初始UHMWPE的水平的同时,整体磨损率降低了3-4.3。开发了具有改进性能指标集的聚合物复合材料。

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