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Modified pullout test for indirect characterization of natural fiber and cementitious matrix interface properties

机译:改进的拉拔试验可间接表征天然纤维和胶结基体的界面特性

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Fiber-matrix interfacial bond characterization using conventional fiber pullout test is unsuitable for natural fiber based cementitious composites. Therefore, a modified pullout test method is proposed in this study for the indirect characterization of interfacial properties of natural fiber and cementitious matrix interface. To this end, a cementitious matrix medium is prepared by mixing Type I Portland cement, clay and water in a specific ratio such that suitable consistency is obtained and setting time is delayed with the purpose of avoiding the formation of adhesive chemical bond between fiber and matrix interface. For experimentation, wheat straw natural fibers are chosen in this study and pullout test specimens are prepared by embedding the fibers in cementitious matrix medium for lengths of 10 and 20 mm. Pullout tests are carried out at 1 mm/min displacement rate, and load-displacement curves are obtained. While the peak pullout load and pullout energy obtained from modified pullout tests are observed to increase by 93.2% and 304% with an increase in embedment length from 10 to 20 mm, the interfacial sliding shear strength remained constant for wheat straw fibers at 2.63 KPa. Slip softening is observed to be the governing pullout mechanism for wheat straw natural fiber in the modified pullout test. For indirect validation of the proposed method, the trends of peak pullout load and interfacial sliding shear strength for polypropylene and steel fibers are obtained from both modified and standard pullout test and are compared. Similar trends are observed for polypropylene and steel fibers in both the tests which to a certain extent confirms the validity of the proposed method. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用常规纤维拉力试验对纤维-基质界面键进行表征不适用于天然纤维基水泥基复合材料。因此,本研究提出了一种改进的拉拔试验方法,用于间接表征天然纤维和胶结基体界面的界面特性。为此,通过将I型波特兰水泥,粘土和水以特定的比例混合来制备水泥基介质,从而获得合适的稠度并延迟凝固时间,目的是避免在纤维和基体之间形成粘合剂化学键。接口。为了进行实验,在本研究中选择了麦草天然纤维,并通过将纤维嵌入长度为10和20 mm的胶结基质介质中来制备拉样样品。以1 mm / min的位移速率进行拉拔测试,并获得载荷-位移曲线。虽然观察到通过改进的拉拔试验获得的峰值拉拔载荷和拉拔能量会随着包埋长度从10 mm增加到20 mm分别增加93.2%和304%,但小麦秸秆纤维的界面滑动剪切强度保持恒定,为2.63 KPa。在改良的拉拔试验中,观察到滑动软化是麦草天然纤维的主要拉拔机理。为了间接验证所提出的方法,通过改进和标准拉拔试验获得了聚丙烯和钢纤维的峰值拉拔载荷和界面滑动剪切强度的趋势,并进行了比较。在两种测试中,聚丙烯和钢纤维都观察到相似的趋势,这在一定程度上证实了所提出方法的有效性。 (C)2019 Elsevier Ltd.保留所有权利。

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