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Effect of curing relative humidity on mechanical properties of engineered cementitious composites at multiple scales

机译:固化相对湿度对多尺度工程水泥复合材料力学性能的影响

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摘要

In recent years, broad interests in ductile Engineered Cementitious Composites (ECC) have been accompanied by increasing amount of laboratory investigations of this material. Both wet and air curing have been applied in the preparation of specimens. However, the effect of curing condition on mechanical properties of ECC has yet to be elucidated. This research attempts to fill this knowledge gap. Specifically, experiments were conducted to investigate property changes at different length scales under three curing relative humidity (RH) levels. Macroscopic properties including composite first crack strength, ultimate tensile strength and strain capacity, and crack pattern of ECC reinforced with PVA fibers were recorded. As well, matrix fracture toughness and fiber/matrix interface properties were measured. Correlation of macro-properties and micromechanical parameters was interpreted using a previously developed micromechanical model. The changes of tensile properties and crack pattern were found traceable to RH effects on the matrix and fiber/matrix interface properties. The findings of this study reveal the underlying mechanisms of property differences in specimens cured under different RH. The knowledge gained provides a better understanding of the effects of curing conditions on ECC specimens used in property characterization, and is particularly relevant to maintaining consistency in standardized testing of ECC.(c) 2021 Elsevier Ltd. All rights reserved.
机译:近年来,扩展韧性化水泥复合材料(ECC)的广泛兴趣已伴随着增加这种材料的实验室调查量。湿润和空气固化都已应用于制备标本。然而,固化条件对ECC机械性能的影响尚未阐明。这项研究试图填补这种知识差距。具体地,进行实验以在三种固化相对湿度(RH)水平下对不同长度尺度的性能变化进行研究。记录了宏观性质,包括复合第一裂纹强度,最终拉伸强度和应变能力,并用PVA纤维增强ECC的裂纹图案。同样,测量基质断裂韧性和纤维/基质界面性质。使用先前显影的微机械模型解释了宏观性和微机械参数的相关性。发现拉伸性能和裂纹图案的变化可追溯到对基质和纤维/基质界面性质的RH影响。本研究的调查结果揭示了在不同RH下固化的标本差异的潜在机制。所获得的知识提供了更好地理解性质表征中使用的ECC标本对固化条件的影响,并且与维持ECC标准化测试的一致性特别相关。(c)2021 Elsevier Ltd.保留所有权利。

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