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The effect of feldspar and kaolin on mechanical performance of SBR/LDPE composites

机译:长石和高岭土对SBR / LDPE复合材料力学性能的影响

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BackgroundFeldspar and kaolin was ball milled at 320 rpm for hours with the aid of a dry grinding agent. Both minerals were combined with inorganic salt namely sodium chloride as a grinding agent. The grinding agent and mineral were mixed at the ratio of 1:1.ResultsThe application of such grinding agent led to effectively reduce the particle size in a short time. The mineral materials were viewed under a scanning electron microscope (SEM) before and after grinding. SEM graphs revealed that a significant reduction in average particle size was recorded for both minerals. The reduction percentage for kaolin was about 82%, and in the case of feldspar, it was about 93%. The BET surface area of both minerals increased after milling. The potential of the ground filler on the tensile properties of low-density polyethylene/styrene butadiene rubber (LDPE/SBR) composites has been reported.ConclusionsThe ball milling of the raw fillers in the presence of inorganic salt was found to be able to reduce the particle size of the fillers significantly in a short time. The application of dry grinding agent did not display any agglomeration or cold welding between the mineral particles as evidenced by the SEM images. The incorporation of the ground filler into LDPE/SBR composites showed a positive impact on the tensile strength at the cost of elongation at break except for the feldspar.
机译:背景长石和高岭土在干磨剂的辅助下以320 rpm的速度球磨数小时。两种矿物都与无机盐即氯化钠混合作为研磨剂。研磨剂和矿物以1:1的比例混合。结果使用这种研磨剂可在短时间内有效减小粒径。在研磨之前和之后,在扫描电子显微镜(SEM)下观察矿物材料。 SEM图表明,两种矿物的平均粒径均显着降低。高岭土的还原百分比约为82%,而长石的还原百分比约为93%。研磨后两种矿物的BET表面积均增加。据报道,研磨填料对低密度聚乙烯/丁苯橡胶(LDPE / SBR)复合材料的拉伸性能具有潜在的影响。填料的粒径在短时间内显着提高。 SEM图像证明,干磨剂的应用在矿物颗粒之间没有任何聚集或冷焊。 LDPE / SBR复合材料中掺入磨碎的填料对长材的拉伸强度有积极影响,但长石除外。

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