Theoretical Evaluation of the Break Off Test for Concrete

M. Wecharatana, A. Ranasinghe
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Abstract

THEORETICAL EVALUATION OF THE BREAK OFF TEST FOR CONCRETE by Arjuna Priyara Ranasinghe Strength of concrete is normally m easured using the standard cylinder or cube. The m easured s treng th is used for design. The accuracy of concre te strength is frequently challenged, particularly in large concrete s truc tures where size effect of the te s t specim ens is attributed for the differences. Many nondestructive te s ts were developed to evaluate concrete s treng ths . In recent years, it w as obvious th a t th ese te s ts are unreliable. As the infrastructure decays , more nondestructive te s ts are required to evaluate the existing s truc tures . The Break Off Test is a recently developed nondestructive test. Although substantial am ount of experimental investigations have been carried out on this te s t, no in-depth theoretical evaluation has yet been done to date . In this study the behavior of the break off te s t specim en was investigated and the potential theoretical basis of this te s t explored. Based on linear elastic fracture m echanics, a model to predict the com pressive strength of concrete-m anom eter reading relationship of the break off te s te r w as proposed and com pared with experimental results with good correlation. Both flexural and shear failure m odes were considered and the effect of aggregate interlock w as investigated. The s tress distribution of the deep-beam cantilever core was obtained using finite elements. It also confirmed the experimentally established minimum thickness of structural m em bers for which this te s t m ethod could be used. The study also found th a t the American Concrete Institute 's recom mendation on the modulus of rupture is an extremely conservative value, especially for m em bers with widths less than 6". The modulus of rupture of a rectangular beam is different from that observed from a circular cross section such as the break off te s t specim en. These findings s trengthen the concerns over the size effects on various recom mended concrete strength param eters. In this study, new modulus of rupture values were suggested for small rectangular beam s and m em bers with circular cross sections. The study confirmed the existence of a theoretical basis for the break off te s t and show ed th a t it can be a simple and reliable nondestructive te s t for measuring the com pressive strength of concrete . THEORETICAL EVALUATION OF THE BREAK OFF TEST FOR CONCRETE by Arjuna Priyara Ranasinghe A Dissertation Submitted to the Faculty of New Je rsey Institute of Technology in Partial Fulfillment of the Requirements for the Degree of Doctor of Philosophy Departm ent of Civil and Environmental Engineering January 1 9 9 4 Copyright© 1993 by Arjuna Priyara Ranasinghe ALL RIGHTS RESERVED
混凝土断裂试验的理论评价
混凝土的强度通常是用标准的圆柱体或立方体来测量的。所测得的强度用于设计。混凝土强度的准确性经常受到挑战,特别是在大型混凝土结构中,试件的尺寸效应是造成这种差异的原因。人们开发了许多无损检测方法来评估混凝土的强度。近年来,很明显,这些数据是不可靠的。随着基础设施的老化,需要更多的非破坏性测试来评估现有的结构。断裂试验是近年来发展起来的一种无损检测方法。虽然在这方面已经进行了大量的实验研究,但迄今为止还没有进行深入的理论评估。本研究研究了岩石试样的断裂行为,并探讨了这一现象的潜在理论基础。基于线弹性断裂力学,提出了一种预测混凝土抗压强度的模型-断裂强度的表读关系,并与试验结果进行了比较,具有较好的相关性。考虑了受弯破坏模式和受剪破坏模式,并对骨料互锁的影响进行了研究。利用有限元方法得到了深梁悬臂芯的应力分布。它还证实了实验建立的结构构件的最小厚度,可以使用这种方法。研究还发现,美国混凝土协会关于断裂模量的建议值是一个极其保守的值,特别是对于宽度小于6英寸的混凝土构件。矩形梁的断裂模量不同于从圆形截面上观察到的断裂模量。这些发现加强了对各种推荐混凝土强度参数的尺寸效应的关注。在本研究中,提出了圆形截面的小矩形梁的断裂模量的新值。研究证实了断裂法存在一定的理论基础,表明它可以作为一种简单可靠的无损检测混凝土抗压强度的方法。Arjuna Priyara Ranasinghe对混凝土断裂试验的理论评价一篇部分满足哲学博士学位要求的论文提交给新耶西理工学院土木与环境工程系1994年1月1日版权©1993年由Arjuna Priyara Ranasinghe保留所有权利
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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