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Flexural toughness and calculation model of super-fine stainless wire reinforced reactive powder concrete

机译:超细不锈钢钢筋混凝土抗抗韧性和计算模型

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摘要

As a type of excellent reinforcing filler, super-fine stainless wire (SSW) can form widely distributed network in reactive powder concrete (RPC) to transfer crack tip stresses as well as inhibit the initiation and propagation of cracks, leading to significant improvement of flexural toughness of RPC. In this paper, the flexural toughness of RPC beams and plates reinforced with 1% and 1.5% by vol. of SSWs was investigated, and its calculation model was established according to the composite material theory. Experimental results showed that the flexural toughness of unnotched beams fabricated with RPC containing 1.5% SSWs is 146.5% higher than that of control RPC without SSWs according to load-deflection relationships. The equivalent flexural strength of notched RPC beams is enhanced by 80.0% as SSW content increases from 1% to 1.5%. The limitation ability of SSWs on crack mouth opening can be used to evaluate the flexural toughness of composites. An addition of 1.5% SSWs leads to 201.9% increase of flexural toughness of RPC plates in accordance with load-deflection relationships. The calculation model based on the composite material theory can accurately describe the toughening effect of SSWs on RPC beams and plates. The enhancement of flexural toughness of RPC caused by SSWs is beneficial for improving the safety of structures as well as broadening the engineering applications of composites.
机译:作为一种优异的增强填料,超细不锈钢线(SSW)可以在反应性粉末混凝土(RPC)中形成广泛分布的网络,以转移裂纹尖端应力,并抑制裂缝的启动和传播,导致弯曲的显着改善RPC的韧性。本文中,RPC梁的弯曲韧性和平板增强1%和1.5%vol。研究了SSW,并根据复合材料理论建立其计算模型。实验结果表明,由于载荷偏转关系,含有1.5%SSW的RPC制备的RPC的不排出梁的抗伤韧性比控制RPC的RPC高146.5%。由于SSW含量从1%增加到1.5%,缺口RPC梁的等效弯曲强度增强了80.0%。 SSWS对裂缝口开口的限制能力可用于评估复合材料的抗弯韧性。添加1.5%SSWS导致201.9%,根据载荷偏转关系增加RPC板的抗弯韧性。基于复合材料理论的计算模型可以准确地描述SSWS对RPC梁和板的增韧效果。由SSWS引起的RPC的抗弯韧性的增强是有利于提高结构的安全性以及扩大复合材料的工程应用。

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