Mechanical Strengths of Modified PET Mortar Composites in Aggressive MgSO4 Medium: ACI & B.S Predictions

N. K. Tani, A. Benosman, H. Taïbi, M. Mouli
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引用次数: 1

Abstract

Composites mortars based on plastic aggregates are often considered as an innovative materials of the future because of their potential and the advantages they present. In this paper, a comparative study was carried out on the effect of magnesium sulfate MgSO4 (5%) attack on the durability of composite mortars modified by recycled polyethylene terephthalate (PET). Laboratory tests were accomplished on limestone sand and cement mortars where the blended Portland cement was partially replaced by various volume fractions of PET plastic aggregates. Mechanical properties measured on specimens were used to assess the changes in the compressive strengths of PET-mortar composites exposed to MgSO4 attack at different ages, mainly the Young modulus of elasticity. Based on experimental compressive tests on selected specimens and there densities, the evolution of static Young modulus of elasticity has been discussed in accordance to predicted models proposed by (ACI-318) and (BS-8110) codes of practice. In addition, a comparative analysis has been carried out for corrosion resistance coefficients K of referenced mortar to those modified with plastic aggregates. It can be noted that, the corrosion resistance coefficients decrease as much as composite specimens are exposed to MgSO4 corrosive medium. For the case of modified composites, the values of K based on predicted Young modulus before and after immersion are better than the ones calculated for the unmodified mortar. Therefore, ACI 318 prediction model is recommended code for design and investigation works related to reparation mortars, screeds, pavements…etc. Also, it can be concluded that adding PET plastic aggregates by volume to blend Portland cement act to improve the corrosive resistance of this cement against MgSO4 aggressive medium.
改性PET砂浆复合材料在侵蚀性MgSO4介质中的力学强度:ACI和B.S预测
基于塑料骨料的复合材料砂浆通常被认为是未来的创新材料,因为它们具有潜力和优势。本文比较研究了硫酸镁(5%)对再生聚对苯二甲酸乙二醇酯(PET)改性复合砂浆耐久性的影响。在石灰石砂和水泥砂浆上进行了实验室试验,其中混合硅酸盐水泥被不同体积分数的PET塑料骨料部分取代。在试样上测量的力学性能用于评估暴露于MgSO4侵蚀的PET砂浆复合材料在不同年龄的抗压强度变化,主要是杨氏模量。根据(ACI-318)和(BS-8110)实践规范提出的预测模型,基于选定试样和密度的实验压缩试验,讨论了静态杨氏模量的演变。此外,还对参考砂浆与塑性骨料改性砂浆的耐腐蚀系数K进行了比较分析。值得注意的是,复合材料试样在MgSO4腐蚀介质中的耐蚀性系数下降幅度与复合材料试样相同。对于改性复合材料的情况,基于浸泡前后预测的杨氏模量的K值优于未改性砂浆的计算值。因此,ACI 318预测模型是与修复砂浆、砂浆底层、路面等相关的设计和调查工作的推荐规范。此外,可以得出结论,在硅酸盐水泥中按体积添加PET塑料骨料可以提高该水泥对MgSO4侵蚀介质的耐腐蚀性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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