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Simulation of mixed-mode fracture(I-II)on PFRC specimens with various fibre proportions using an embedded cohesive crack model

机译:使用嵌入式粘性裂纹模型模拟各种纤维比例的PFRC样本对PFRC标本的模拟

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The study of fibre-reinforced concrete(FRC)has become of increasing interest in the last decades.Although it is not a new technology,it has experienced a remarkable progress with the appearance of some recommendations in the standards.More specifically,the use of polyolefin fibres has proved to increase the tensile strength of concrete without the problems usually found with steel fibres,especially those related to corrosion.This type of fibres have been studied in depth and its fracture behaviour has been successfully simulated in the past by means of an embedded crack model using a trilinear softening function.Nevertheless,these simulations have been always focused on cases where fracture took place under pure mode I conditions,namely using the classical three-point bending test on notched specimens.In this study,such embedded crack model is used to reproduce the fracture behaviour on notched specimens subjected to a modified three-point bending test that induces fracture under a combination of modes I and II.Three PFRC mixes are analysed,all of them with the same proportions of concrete components but different proportions of polyolefin fibres.The experimental and numerical diagrams properly agree and allow identifying how the increasing proportion of fibres can be reflected in the trilinear softening function that numerically drives the damage evolution.
机译:对纤维增强混凝土(FRC)的研究在过去几年的兴趣日益越来越多。虽然它不是一种新技术,但它在标准中的一些建议的外观上存在了显着进展。更多,使用已证明聚烯烃纤维在没有钢纤维的情况下增加混凝土的拉伸强度,尤其是与腐蚀有关的问题。本型纤维已经深入研究了深入的,并且其骨折行为已经过去成功模拟了过去模拟嵌入式裂缝模型使用三线性软化功能。无论如何,这些模拟始终专注于骨折在纯模式I条件下发生骨折,即使用缺口样本的经典三点弯曲试验。本研究,这种嵌入式裂纹模型用于在经过修饰的三点弯曲试验的缺口样本上再现裂缝行为,该试验在COM下诱导骨折分析了模式I和II.HCRC混合物的间隔,所有这些都具有相同的混凝土组件比例,但多烯烃纤维的比例不同。实验和数值图恰当地同意并识别纤维的增加程度如何反映出来的纤维的增加程度在数值上驱动损伤进化的三线性软化功能。

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