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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Poly (vinyl alcohol) fiber reinforced concrete: investigation of strain rate dependent interphase behavior with single fiber pullout test under quasi-static and high rate loading
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Poly (vinyl alcohol) fiber reinforced concrete: investigation of strain rate dependent interphase behavior with single fiber pullout test under quasi-static and high rate loading

机译:聚乙烯醇纤维增强混凝土:准静态和高速率载荷下单纤维拉拔试验研究应变率相关的相行为

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摘要

A new single fiber pullout device was used to investigate interfacial debonding in the poly (vinyl alcohol) (PVA) fiber-cementitious matrix system under impact loading. For comparison, PVA fibers with two different surface states were used - as-received and after fiber finish removal by extraction in solvents. The indirect method was employed to determine the interfacial strength parameters, namely, the local interfacial shear strength, τ_d , and the critical energy release rate, G_(ic), from the peak load values reached in the pullout test. For both fiber surface states, the τ_d and G_(ic) values for high loading rates appeared to be considerably greater than the corresponding parameters determined by means of a quasi-static pullout test. This can be explained using a model based on Zhurkov's kinetic (thermal fluctuation) theory of the strength of solids, which also enabled to estimate the apparent activation energy for interfacial debonding. Its values (1.3 eV for both as-received and treated fibers) evidenced formation of strong bonds between PVA fiber and the concrete matrix and the identity of debonding mechanisms for both fiber types. Finish removal decreased interfacial adhesion due to smoothing the fiber surface and reducing interfacial mechanical bonding.
机译:一种新的单纤维拉出装置用于研究冲击载荷下聚乙烯醇(PVA)纤维水泥基基质体系中的界面剥离。为了进行比较,使用了两种具有不同表面状态的PVA纤维-原样以及通过在溶剂中萃取完成纤维整理后使用。根据在拉拔试验中达到的峰值载荷值,采用间接方法确定界面强度参数,即局部界面剪切强度τ_d和临界能量释放率G_(ic)。对于两种纤维表面状态,高加载速率的τ_d和G_(ic)值似乎都比通过准静态拉拔测试确定的相应参数大。可以使用基于朱尔科夫固体强度动力学(热涨落)理论的模型对此进行解释,该模型还可以估计界面脱粘的表观活化能。其值(原样和处理后的纤维均为1.3 eV)证明了PVA纤维与混凝土基质之间形成了牢固的结合力,并且两种纤维均具有脱粘机理。整理剂的去除由于平滑纤维表面并减少了界面机械粘合而降低了界面粘附力。

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