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An Investigation of Softening Laws and Fracture Toughness of Slag-Based Geopolymer Concrete and Mortar

机译:矿渣岩土聚合物混凝土和砂浆软化定律及断裂韧性的研究

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摘要

This paper aimed to determine the softening laws and fracture toughness of slag-based geopolymer (SG) concrete and mortar (SGC and SGM) as compared to those of Portland cement (PC) concrete and mortar (PCC and PCM). Using three-point bending (TPB) tests, the load vs. mid-span displacement, crack mouth opening displacement, and crack tip opening displacement curves (P-d, P-CMOD, and P-CTOD curves) were all recorded. Bilinear softening laws of the PC and SG series were determined by inverse analysis. Furthermore, the cohesive toughness was predicted using an analytical fracture model. The cohesive toughness obtained by experimental study was consistent with that predicted by analytical method, proving the correctness of the tension softening law obtained from inverse analysis. In addition, both initial and unstable fracture toughness values of SG mortar were lower than those of PC mortar given the same compressive strength. Moreover, the initial fracture toughness of SG concrete was generally lower than that of PC concrete, whereas the unstable fracture toughness exhibited an opposite trend.
机译:本文旨在确定与波特兰水泥(PC)混凝土(PC)混凝土和砂浆(PCC和PCM)相比的矿渣基地质聚合物(SG)混凝土和砂浆(SGC和SGM)的柔软定律和断裂韧性。使用三点弯曲(TPB)测试,负载与中间跨度位移,裂缝口开口位移和裂缝尖端打开位移曲线(P-D,P-CMOD和P-CTOD曲线)都被记录。通过逆分析确定PC和SG系列的双线性软化定律。此外,使用分析骨折模型预测内聚韧性。通过实验研究获得的粘性韧性与通过分析方法预测的粘性韧性,证明了从逆分析中获得的张力软化法的正确性。此外,鉴于相同的抗压强度,SG砂浆的初始和不稳定断裂韧性值低于PC砂浆的抗断裂值。此外,SG混凝土的初始断裂韧性通常低于PC混凝土,而不稳定的断裂韧性表现出相反的趋势。

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