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Shear failures in reinforced concrete members without transverse reinforcement: An analysis of the critical shear crack development on the basis of test results

机译:没有横向钢筋的钢筋混凝土构件的剪切破坏:基于试验结果的临界剪切裂纹发展分析

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Shear in concrete members without transverse reinforcement can be carried by various potential shear-transfer actions, whose activation depends much on the actual cracking pattern and kinematics at failure. Failures can occur in a progressive manner (at the end of a stable propagation of a critical shear crack) or in a sudden manner (by an unstable progression or development of a new crack). In addition, the development and shape of the failure crack may also be very different from case to case. These differences influence which shear-transfer actions may be governing for a given member and loading situation. Despite the large number of specimens tested in shear, almost no information on the actual crack development during the process of failure is yet available. This paper presents the results of an experimental programme consisting of thirteen beams. The tests were designed to investigate different structural systems and loading conditions commonly found in practice (cantilevers with concentrated and distributed loading, single span beams with distributed loading and continuous beams). The cracking patterns and their associated kinematics were tracked in detail by using photogrammetric techniques at high frequencies during testing and particularly during the process of failure, providing data on the actual crack development leading to shear failure. The observations show that very different cracking patterns may be found and that they might be also developed in different manners. The results are interpreted with reference to the measured crack kinematics and related to the various potential shear-transfer actions, with the aim of providing a useful material towards the development of rational approaches for shear design. (C) 2015 Elsevier Ltd. All rights reserved.
机译:没有横向加固的混凝土构件中的剪切力可以通过各种潜在的剪切传递作用来承担,其激活在很大程度上取决于实际的破裂模式和破坏时的运动学。失效可以以渐进的方式(在临界剪切裂纹的稳定传播结束时)或以突然的方式(通过不稳定的新裂纹的发展或发展)发生。此外,故障裂纹的发展和形状也可能因情况而异。这些差异影响对于给定的构件和载荷情况,哪些剪切传递作用可能是支配性的。尽管有大量的试样在剪切中进行了测试,但几乎没有关于破坏过程中实际裂纹发展的信息。本文介绍了由13个光束组成的实验程序的结果。测试旨在研究实际中常见的不同结构系统和荷载条件(具有集中和分散荷载的悬臂,具有分散荷载的单跨梁和连续梁)。在测试过程中,特别是在破坏过程中,通过使用摄影测量技术以高频率详细跟踪了裂纹模式及其相关的运动学,提供了导致剪切破坏的实际裂纹发展数据。观察结果表明,可以发现非常不同的裂纹模式,并且它们也可能以不同的方式发展。参考已测得的裂纹运动学来解释结果,并与各种潜在的剪切传递作用有关,目的是为开发合理的剪切设计方法提供有用的材料。 (C)2015 Elsevier Ltd.保留所有权利。

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