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Pull-out response of macro synthetic fibre from concrete matrix: Effect of loading rate and embedment length

机译:宏观合成纤维从混凝土基质中的拉出响应:加载速率和包埋长度的影响

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The single fibre pull-out response of macro synthetic fibre from concrete matrix has been investigated and reported in this study. Particular attention has been given to the response of the interfacial shear resistance between the matrix and fibre to loading rate at different fibre embedment length. One mix design and one fibre type have been used throughout the experiment while four orders of magnitude of loading rate and three embedment lengths are the variables evaluated. The effect of loading rate on the tensile strength of the macro synthetic fibre under four order of magnitude of loading rates is also reported. All tests were conducted in a controlled climate room at a temperature of 23 +/- 1 degrees C and a relative humidity of 65 +/- 5%. Experimental test results have shown that the ultimate tensile strength of the fibres is dependent on the loading rates. Pull-out behaviour from concrete matrix is shown to be slip softening and sensitive to loading rate and embedment length. All fibres pulled out of the concrete matrix without fracturing. Pull-out load increases as the loading rate and the embedment length increases. (C) 2017 Elsevier Ltd. All rights reserved.
机译:宏观合成纤维从混凝土基体中的单纤维拔出响应已被研究并在本研究中报道。在不同的纤维包埋长度下,基体与纤维之间的界面剪切阻力对加载速率的响应已得到特别关注。在整个实验过程中,使用了一种混合设计和一种纤维类型,同时评估了四个数量级的加载速率和三个包埋长度。还报道了在四个数量级的加载速率下加载速率对宏观合成纤维的拉伸强度的影响。所有测试均在温度为23 +/- 1摄氏度,相对湿度为65 +/- 5%的可控气候室内进行。实验测试结果表明,纤维的极限拉伸强度取决于加载速率。从混凝土基体中拉出的行为显示出滑移软化并且对加载速率和嵌入长度敏感。所有纤维均从混凝土基体中拉出而不会破裂。拉出载荷随着加载速率和嵌入长度的增加而增加。 (C)2017 Elsevier Ltd.保留所有权利。

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