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Effects of the interaction of hardness, resilience, and fatigue properties on the abrasion properties of rubber blends

机译:硬度,回弹力和疲劳性能之间的相互作用对橡胶共混物耐磨性的影响

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The establishment of prediction model for abrasion properties of vulcanizates, based on their simple physio-mechanical properties, is a hot research field in tribology. The hardness (H), resilience (R), and dynamic fatigue fracture parameters (m) of rubber vulcanizates were combined together in this article, named as hardness-resilience product (H~mR), and its relationships with the abrasion loss for various vulcanizates [natural rubber (NR), styrene-butadiene rubber (SBR), butadiene rubber (BR), and their blends] was investigated by using Akron and DIN abrader. The results showed that, for NR/SBR blends with different SBR content, compared with log(H~4R), the abrasion loss had much better linear relationship with log(H~mR) for both Akron and DIN abrasion. This good linear relationship, for both Akron and DIN abrasion, also appeared in the SBR/BR blends with different BR content. Furthermore, for both blending systems (NR/SBR and SBR/BR), when all the data above were put together, the abrasion loss also had good linear relationships with its log(HmR) no matter for Akron or DIN abrasion, which indicated that this linear relationship had some universality.
机译:基于简单硫化物的物理力学性能,建立硫化物磨损性能预测模型是摩擦学领域的研究热点。本文将橡胶硫化胶的硬度(H),回弹性(R)和动态疲劳断裂参数(m)组合在一起,称为硬度回弹性积(H〜mR),并且它与各种磨损损耗之间的关系硫化橡胶[天然橡胶(NR),丁苯橡胶(SBR),丁二烯橡胶(BR)及其共混物]使用Akron和DIN研磨剂进行了研究。结果表明,对于不同SBR含量的NR / SBR共混物,与log(H〜4R)相比,Akron和DIN磨损的磨损量与log(H〜mR)的线性关系更好。对于Akron和DIN磨损,这种良好的线性关系也出现在具有不同BR含量的SBR / BR共混物中。此外,对于两种共混体系(NR / SBR和SBR / BR),将以上所有数据汇总在一起,无论Akron还是DIN磨损,其磨损量都与log(HmR)有着良好的线性关系,这表明这种线性关系具有普遍性。

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