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SILICA-RICH FILLER FOR THE REINFORCEMENT IN NATURAL RUBBER

机译:用于天然橡胶增强的富硅填料

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The aim of the study was to determine the reinforcing efficacy of a silica-rich tiller, pottery stone (PS), in natural rubber (NR). The effects of amount and particle size of PS on curing and mechanical properties of the NR compounds were determined. The PS was first divided into four groups. Two of these were raw PS without grinding, which were sieved to particle sizes of less than 106 pm (PS(<106)) and less than 38 μm (PS(<38)). The other two were ground PS, one by current jet milling to obtain PS(JM), and the other by wet ball milling to obtain PS(BM). The particle size distribution of the four different PS prior to ultrasonication was in the ranked order (largest to smallest size), based upon their d(0.5) and d(0.9), of PS(BM), PS(< 106), PS(<38), and PS(JM). However, after ultrasonication for 10 min, PS(BM) had the smallest d(0.5) at less than a micron, while the remaining three PS groups showed nearly the same d(0.5) being within the range of 3-5 /μm. The presence of PS shortened the cure time, with PS(BM) inducing the greatest decrease in the cure time, while this was somewhat dose independent for at least PS(JM) and PS(< 106). For all four PS groups, when present at 20 phr or more, the delta torque of the PS filled NR was higher than that of the unfilled one. However, the addition of PS had no significant effect on the number of crosslinks. With respect to the mechanical properties of the NR filled with PS, it was generally observed that NE filled with PS(BM) at 20-50 phr gave a higher tear and tensile strength, abrasion resistance, and hardness than both the unfilled NR and also the NR filled with the other three PS groups. The optimum PS(BM) loading was at 30 phr.
机译:该研究的目的是确定天然橡胶(NR)中富含二氧化硅的分till,陶石(PS)的增强效果。确定了PS的量和粒径对NR化合物固化和机械性能的影响。 PS首先分为四组。其中两个是未经研磨的未加工PS,将其筛分到小于106 pm(PS(<106))和小于38μm(PS(<38))的粒度。另两种是PS​​研磨的,一种通过电流喷射研磨获得PS(JM),另一种通过湿式球磨获得PS(BM)。超声处理之前,四种不同PS的粒度分布按其d(0.5)和d(0.9),PS(BM),PS(<106),PS的排名顺序(从最大到最小) (<38)和PS(JM)。但是,超声处理10分钟后,PS(BM)在小于一微米的情况下具有最小的d(0.5),而其余三个PS组在3-5 /μm的范围内显示出几乎相同的d(0.5)。 PS的存在缩短了固化时间,而PS(BM)引起了最大的固化时间减少,而至少PS(JM)和PS(<106)与剂量无关。对于所有四个PS组,当存在20 phr或更多时,PS填充的NR的增量扭矩要高于未填充的NR。但是,添加PS对交联数没有明显影响。关于填充有PS的NR的机械性能,通常观察到,填充有PS(BM)的NE在20-50 phr时比未填充的NR和未填充的NR都具有更高的撕裂强度和拉伸强度,耐磨性和硬度。 NR充满了其他三个PS组。最佳PS(BM)负载为30 phr。

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