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Mechanically Resistant Composite Material Using Optimal Amount of Pre-Treated Hazardous Waste

机译:使用最佳预处理的危险废物机械耐复合材料

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The utilisation of a relatively high amount of hazardous waste such as neutralising sludge (NS), which is a by-product of galvanic metal plating, as filler in a mechanically resistant composite material with an epoxy matrix, appears to be a progressive approach for improving the environment aspects. Polymer composites containing a filler of pure finely-ground silica sand - silica flour (SF) and fine foam glass waste (FGW) with a particle size of less than 200 um were used for comparison of the achieved mechanical parameters. Considering the required consistency of the composite, related to its intended application in practice, 40% of the epoxy resin fillings was tested. It was shown that the developed, mechanically-resistant composite exhibits very high impact and wear resistance. Based on the assessment of the results obtained, it was found that the composite containing pre-treated hazardous waste achieved only 20% lower compressive strength than the reference composite, which comprised only primary raw materials. It is thus claimed that specific pre-treated hazardous waste can be effectively used for the preparation of special repairing composite material, and also in areas with a significant mechanical load.
机译:利用诸如中和污泥(NS)的诸如中和污泥(NS)的副产物的利用,其作为具有环氧基质的机械耐复合材料中的填料,似乎是改进的渐进方法环境方面。使用粒径小于200μm的颗粒尺寸的纯精细接地二氧化硅砂 - 二氧化硅粉(SF)和细泡沫玻璃废物(FGW)的聚合物复合材料用于比较实现的机械参数。考虑到其在实践中的预期应用相关的复合材料所需的一致性,测试了40%的环氧树脂填充物。结果表明,开发的机械抗性复合材料具有非常高的冲击和耐磨性。基于所得结果的评估,发现含有预处理的危险废物的复合材料仅比参考复合材料降低了20%的抗压强度,其仅包括主要原料。因此,要求细则可以有效地用于制备特殊修复复合材料的特定预处理的危险废物,以及在具有显着机械负荷的区域。

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