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Performance-based criteria to assess the suitability of geopolymer concrete in marine environments using modified ASTM C1202 and ASTM C1556 methods

机译:基于性能的标准,使用改良的ASTM C1202和ASTM C1556方法评估地质聚合物在海洋环境中的适用性

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In marine or coastal zones, the most harmful exposure for reinforced concrete structures to chloride ions. The ASTM C1556 chloride diffusion test (or its European equivalent NT BUILD 443) has been widely used as the most reliable testing method to assess the performance of concrete against chloride penetration. However, this test is time demanding and labour intensive. As a result, accelerated test ASTM C1202 (RCPT) is often preferred, providing fast and acceptable assessment of chloride penetrability of Ordinary Portland Cement Concrete. This study aimed to investigate the suitability of RCPT to assess the performance of Geopolymer Concrete (GPC) in chloride environment. The correlation between several GPC properties [i.e. compressive strength, volume of permeable voids (VPV) and sorptivity] and the chloride diffusion coefficient are examined. Results indicate that the compressive strength, the VPV and the sorptivity coefficient are not suitable indicators of the GPC performance. The ASTM C1202 standard RCPT failed to measure the charges passed through most of the GPCs tested. A modified version of RCPT using 10V (as opposed to 60V specified by standard ASTM C1202) is proposed in this paper, allowing to successfully measure the charges passed through all GPC samples using a wide range of binders. A good correlation was observed between modified ASTM C1202 and Standard ASTM C1556 test results. Performance-based recommendations are proposed in this paper. Both experimental results from this study and appropriate reference concretes from the literature were used to calibrate the modified ASTM C1202 and ASTM C1556 performance-based requirements for GPCs.
机译:在海洋或沿海地区,钢筋混凝土结构接触氯离子的危害最大。 ASTM C1556氯化物扩散测试(或其欧洲等效NT BUILD 443)已被广泛用作评估混凝土抗氯化物渗透性能的最可靠测试方法。然而,该测试是费时且费力的。因此,通常优选采用加速试验ASTM C1202(RCPT),以提供对普通波特兰水泥混凝土的氯离子渗透性的快速且可接受的评估。这项研究旨在调查RCPT在评估氯化物环境中地聚合物混凝土(GPC)性能方面的适用性。几个GPC属性之间的相关性[即检验抗压强度,可渗透空隙的体积(VPV)和吸收率]以及氯化物的扩散系数。结果表明,抗压强度,V​​PV和吸附系数不是GPC性能的合适指标。 ASTM C1202标准RCPT无法测量通过大多数测试的GPC的电荷。本文提出了使用10V(而不是标准ASTM C1202指定的60V)的RCPT的改进版本,从而可以使用各种粘合剂成功地测量通过所有GPC样品的电荷。在修改后的ASTM C1202和标准ASTM C1556测试结果之间观察到良好的相关性。本文提出了基于绩效的建议。这项研究的实验结果和文献中的适当参考混凝土都用于校准GPC的改进的基于ASTM C1202和ASTM C1556性能的要求。

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