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Properties and Structure of Concretes Doped with Production Waste of Thermoplastic Elastomers from the Production of Car Floor Mats

机译:掺杂生产浪费汽车地板垫的热塑性弹性体的混凝土的性能和结构

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摘要

This article presents physical and mechanical properties of concrete composites that include waste thermoplastic elastomer (TPE) from the production process of car floor mats. Waste elastomer (2–8 mm fraction) was used as a substitute for fine aggregate in quantities of 2.5, 5.0, 7.5, and 10% of the cement weight. For all series of concrete, the following tests were carried out: compression strength, bending tensile strength, splitting tensile strength, absorbability, density, resistance to water penetration under pressure, frost resistance, and abrasion resistance, according to applicable standards. Moreover, SEM/EDS analysis was carried out on the surface microstructure of synthesized concrete composites. It was proven that the use of production waste from the production process of car floor mats in the quantity of 2.5% does not influence the change of the concrete microstructure and it does not result in the decrease of the mechanical parameters of concrete modified with waste. All concrete modified with the addition of waste meet standards requirements after carrying out 15 cycles of freezing and thawing, and the average decrease in compression strength did not exceed 20%. Adding waste in the quantity of 2.5% allows for limiting the use of aggregate by about 5%, which is beneficial for the natural environment.
机译:本文介绍了混凝土复合材料的物理和机械性能,包括废物热塑性弹性体(TPE)从车地垫的生产过程中。将废弹性体(2-8mm级分)用作2.5,5.0,7.5和10%水泥重量的细聚集体的替代品。对于所有系列混凝土,进行了以下测试:压缩强度,弯曲拉伸强度,分裂拉伸强度,吸收性,密度,耐水性,耐磨损性,耐磨性,耐磨性,可根据适用的标准。此外,在合成的混凝土复合材料的表面微观结构上进行SEM / EDS分析。据证明,生产废物从汽车地板垫的生产过程中的2.5%的影响不会影响混凝土微观结构的变化,并且不会导致混凝土的机械参数减少。在进行15个冷冻和解冻的循环后,所有混凝土都会达到标准要求,并且压缩强度的平均降低不超过20%。添加余量的数量为2.5%,可以限制聚集体的使用约5%,这对自然环境有益。

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