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Comparison of the mechanical characteristics of engineered and waste steel fiber used as reinforcement for concrete

机译:工程和废钢纤维用于混凝土增强的力学性能比较

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Engineered steel fiber has been used for reinforcing concrete since the mid nineteenth century. The influence of fiber reinforcement on the mechanical characteristics of concrete is commonly known and thoroughly described in literature. The fast growing and vibrant market of engineered steel fiber is increasingly disrupted by waste steel fiber obtained during recycling of tires. The lack of knowledge about properties of the waste steel fiber significantly limits its technically viable use. The main aim of the conducted research program was to test waste steel fiber and to compare its properties with most popular engineered steel fiber. Such properties as tensile strength estimated according to EN ISO 68921- 2009, ductility tested according to EN 10218-1:1994, and tensile strength after ductility test were considered. Waste steel fiber proved to be characterized by much higher tensile strength and ductility than engineered steel fiber. Stress strain characteristics of both the types of fiber also differ significantly. Conducted bends influence the tensile strength and modulus of elasticity of all tested waste and engineered steel fiber. The achieved knowledge would allow to create sustainable steel fiber reinforced concretes in a much more efficient way. (C) 2017 Elsevier Ltd. All rights reserved.
机译:自19世纪中叶以来,工程钢纤维已用于增强混凝土。纤维增强对混凝土力学性能的影响是众所周知的,并在文献中有详尽的描述。工程塑料纤维的快速增长和充满活力的市场越来越受到轮胎回收过程中获得的废钢纤维的干扰。缺乏关于废钢纤维性能的知识大大限制了其在技术上的可行用途。进行的研究计划的主要目的是测试废钢纤维,并将其性能与最受欢迎的工程钢纤维进行比较。考虑了诸如根据EN ISO 68921-2009估算的抗张强度,根据EN 10218-1:1994进行的延性测试以及在延性测试后的抗张强度等性能。事实证明,废钢纤维的拉伸强度和延展性比工程钢纤维高得多。两种类型的纤维的应力应变特性也明显不同。传导弯曲会影响所有测试废料和工程钢纤维的拉伸强度和弹性模量。所获得的知识将允许以更有效的方式创建可持续的钢纤维增强混凝土。 (C)2017 Elsevier Ltd.保留所有权利。

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