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The Influence of Zinc Waste Filler on the Tribological and Mechanical Properties of Silicone-Based Composites

机译:锌废液对硅氧烷基复合材料的摩擦力学性能影响

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摘要

Silicones are often used for various types of coatings, but due to their poor mechanical properties, they often require modification to meet specific requirements. At the same time, various production processes throughout the world generate different types of waste, the disposal of which is harmful to the environment. One possible solution is to use production waste as a filler. In this paper, the authors investigated how the use of metallurgical production waste products as fillers changed the mechanical properties of silicone composites prepared by casting. Composite samples were characterized using tensile tests, resilience, pin-on-disc, Schopper–Schlobach abrasion, hardness, and density measurements. Based on the obtained results, the authors assessed the effect of each of the fillers used in different weight proportions. The results showed that the silicone composite filled with 5 wt% zinc dust showed the lowest decrease in tensile strength and Young’s modulus, with a simultaneous significant reduction in abrasion compared with the reference sample. This research shows that zinc waste can be successfully introduced into a silicone matrix in cases where it is important to reduce abrasive wear.
机译:硅氧烷通常用于各种类型的涂层,但由于它们的机械性能差,它们通常需要改性以满足特定要求。与此同时,全世界各种生产过程产生了不同类型的废物,处理对环境有害。一种可能的解决方案是将生产废物作为填料使用。在本文中,作者研究了冶金生产废物作为填料的使用如何改变了通过铸造制备的硅氧烷复合材料的机械性能。使用拉伸试验,弹性,销盘,Schopper-Schlobach磨损,硬度和密度测量来表征复合样品。基于所获得的结果,作者评估了各种重量比例中使用的每种填料的效果。结果表明,填充有5wt%锌粉尘的硅氧烷复合物显示拉伸强度和杨氏模量的最低降低,与参考样品相比,磨损的同时显着降低。该研究表明,在减少磨料磨损的情况下,可以成功地将锌废物成功引入硅氧烷基质中。

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