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Estimation of fracture properties for high strength and ultra high strength concrete beams and size effect

机译:高强度和超高强度混凝土梁的断裂性能评估和尺寸效应

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This article presents the details of estimation of fracture parameters for high strength concrete (HSC, HSCI) and ultra high strength concrete (UHSC). Brief details about characterization of ingredients of HSC, HSCI and UHSC have been provided. Experiments have been carried out on beams made up of HSC, HSCI and UHSC considering various sizes and notch depths. Fracture characteristics such as size independent fracture energy (G_f), size of fracture process zone (C_f), fracture toughness (K_(IC)) and crack tip opening displacement (CTODc) have been estimated based on the experimental observations. From the studies, it is observed that (i) UHSC has high fracture energy and ductility inspite of having a very low value of C_f; (ii) relatively much more homogeneous than other concretes, because of absence of coarse aggregates and well-graded smaller size particles; (iii) the critical SIF (K_(IC)) values are increasing with increase of beam depth and decreasing with increase of notch depth. Generally, it can be noted that there is significant increase in fracture toughness and CTODc. They are about 7 times in HSCI and about 10 times in UHSC compared to those in HSC; (iv) for notch-to-depth ratio 0.1, Bazant's size effect model slightly overestimates the maximum failure loads compared to experimental observations and Karihaloo's model slightly underestimates the maximum failure loads. For the notch-to-depth ratio ranging from 0.2 to 0.4 for the case of UHSC, it can be observed that, both the size effect models predict more or less similar maximum failure loads compared to corresponding experimental values.
机译:本文介绍了估算高强度混凝土(HSC,HSCI)和超高强度混凝土(UHSC)断裂参数的详细信息。提供了有关HSC,HSCI和UHSC成分表征的简短详细信息。考虑到各种尺寸和切口深度,已经对由HSC,HSCI和UHSC组成的梁进行了实验。基于实验观察,已估算出诸如尺寸独立的断裂能(G_f),断裂过程区的尺寸(C_f),断裂韧性(K_(IC))和裂纹尖端张开位移(CTODc)等断裂特征。从研究中观察到:(i)尽管C_f值非常低,但UHSC具有较高的断裂能和延展性; (ii)由于没有粗骨料和良好分级的较小尺寸颗粒,因此比其他混凝土要均匀得多; (iii)临界SIF(K_(IC))值随着波束深度的增加而增加,而随着陷波深度的增加而减小。通常,应该指出的是,断裂韧性和CTODc显着提高。与HSC相比,它们在HSCI中约为7倍,在UHSC中约为10倍; (iv)对于凹口深度比0.1,与实验观察相比,Bazant的尺寸效应模型稍微高估了最大破坏载荷,而Karihaloo模型则稍微低估了最大破坏载荷。对于UHSC,陷波深度比在0.2到0.4范围内,可以观察到,两种尺寸效应模型与相应的实验值相比,都或多或少地预测了相似的最大破坏载荷。

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