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The Influence of Amorphous Nanosized Mo and M0O2 Fillers on the Tribological Properties of Polymer-based Composite Materials

机译:无定形纳米钼和M0O2填料对聚合物基复合材料摩擦学性质的影响

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The problems of the creation of composite polymer-based materials with the use of amorphous nanosized molybdenum and molybdenum dioxide fillers with the particle size of less than 5 nm are considered. The copolymer of formaldehyde and dioxolane (CFD) and the polyphenylene sulphide (PPS) are chosen as polymeric matrixes. A comparative analysis of the tribological properties of composite materials with amorphous nanosized fillers and crystalline microsized analogues is made. It is determined that the use of isotropic nanosized amorphous fillers leads to improved wear-resistance up to three times for CFD-based composites and up to an order for PPS-based ones.
机译:考虑了使用无定形纳米钼和二氧化钼填料的基于复合聚合物基材料的问题被认为是粒径小于5nm的颗粒尺寸。选择甲醛和二氧戊烷(CFD)的共聚物和聚苯硫化物(PPS)作为聚合物基质。制备了具有无定形纳米填料和结晶微态类似物的复合材料的摩擦学性质的对比分析。确定各向同性纳米型无定形填料的使用导致CFD基复合材料的耐磨性高达三次,并最多为基于PPS的PPS的顺序。

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