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Advanced techniques for the study of shrinkage-induced cracking of concrete with recycled aggregates at early age

机译:研究早期使用再生骨料的混凝土收缩诱导开裂的先进技术

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The present work analyses the impact of the substitution of natural coarse gravel and sand by recycled gravel and sand on the concrete behavior under free and restrained condition since setting. The methodology presented in this paper associates a Temperature Stress Testing Machine (TSTM) with free shrinkage tests and other experimental advanced techniques, such as direct tensile testing and the monitoring of elastic properties using repeated loading testing. It is observed that the cracking sensitivity decreased with recycled concrete content in spite of lower tensile strength. This is due to the major influence of relaxation, but also damage and coupling effects. These phenomena contributed to a decrease of the stresses with different magnitude and kinetics. For concretes with recycled gravels, the major stress reduction was attributed to relaxation. The reduction of elastic modulus due to damage appeared from the first 24 h while creep seemed to develop later, as tensile stress to strength ratio became higher. Concrete with recycled sand had a different behavior with earlier creep development and lower damage. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本工作分析了凝结后自由和受约束条件下用再生的砾石和沙子代替天然粗砾石和沙子对混凝土性能的影响。本文介绍的方法将温度应力测试机(TSTM)与自由收缩测试和其他实验性先进技术(例如直接拉伸测试和使用重复载荷测试的弹性特性监控)相关联。可以看出,尽管抗拉强度较低,但开裂敏感性随再生混凝土含量而降低。这是由于松弛的主要影响,也是由于损坏和耦合作用。这些现象有助于降低具有不同幅度和动力学的应力。对于具有再生碎石的混凝土,主要的应力降低归因于松弛。由于损伤引起的弹性模量的降低从最初的24小时开始出现,而随着拉伸应力与强度之比变高,蠕变似乎随后出现。含再生砂的混凝土具有不同的行为,蠕变发展更早且破坏程度更低。 (C)2019 Elsevier Ltd.保留所有权利。

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