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Mechanical and Physical Properties of Polyester Polymer Concrete Using Recycled Aggregates from Concrete Sleepers

机译:使用混凝土枕木的再生骨料的聚酯聚合物混凝土的机械和物理性能

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摘要

Currently, reuse of solid waste from disused infrastructures is an important environmental issue to study. In this research, polymer concrete was developed by mixing orthophthalic unsaturated polyester resin, artificial microfillers (calcium carbonate), and waste aggregates (basalt and limestone) coming from the recycling process of concrete sleepers. The variation of the mechanical and physical properties of the polymer concrete (compressive strength, flexural strength, modulus of elasticity, density, and water absorption) was analyzed based on the modification of different variables: nature of the recycled aggregates, resin contents (11 wt%, 12 wt%, and 13 wt%), and particle-size distributions of microfillers used. The results show the influence of these variables on mechanical performance of polymer concrete. Compressive and flexural strength of recycled polymer concrete were improved by increasing amount of polyester resin and by optimizing the particle-size distribution of the microfillers. Besides, the results show the feasibility of developing a polymer concrete with excellent mechanical behavior.
机译:当前,废弃基础设施中固体废物的再利用是研究的重要环境问题。在这项研究中,聚合物混凝土是通过混合邻苯二甲酸不饱和聚酯树脂,人造微填料(碳酸钙)和混凝土枕木回收过程中产生的废料(玄武岩和石灰石)而开发的。基于不同变量的修改,分析了聚合物混凝土的机械和物理性能(抗压强度,弯曲强度,弹性模量,密度和吸水率)的变化:再生骨料的性质,树脂含量(11 wt%) %,12wt%和13wt%),以及所用的微填料的粒度分布。结果表明这些变量对聚合物混凝土力学性能的影响。通过增加聚酯树脂的用量和优化微填料的粒径分布,可以提高再生聚合物混凝土的抗压强度和抗折强度。此外,结果表明开发具有优异机械性能的聚合物混凝土的可行性。

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