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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Interfacial Evaluation and Self-Sensing of Single Micro-Carbon Fiber/CNF-Brittle-Cement Composites using Electro-Micromechanical Tests and Acoustic Emission
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Interfacial Evaluation and Self-Sensing of Single Micro-Carbon Fiber/CNF-Brittle-Cement Composites using Electro-Micromechanical Tests and Acoustic Emission

机译:微微机械测试和声发射对单微碳纤维/ CNF-脆性水泥复合材料的界面评估和自我感知

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摘要

Interfacial evaluation and self-sensing were investigated for single carbon fiber/carbon nanofiber (CNF)-brittle-cement composites by electro-micromechanical techniques and acoustic emission (AE) under cyclic loading/subsequent unloading. During the curing process, the volumetric resistivity decreased dramatically, during the initial stage, due to increased contact points between the cement matrix and the CNF. The apparent modulus and electrical contact resistivity of micro-carbon fiber/CNF-cement composites were also evaluated as a function of CNF concentration. As the CNF concentration increased, the maximum stress increased, whereas the change in resistance Ap decreased gradually and the contact resistivity sensitivity increased as well. Micro-damage sensing of micro-carbon fiber/CNF-cement composites was also investigated by electrical resistivity and AE. When the first fracture of micro-carbon fiber occurred, the electrical resistivity increased 'infinitely' with increasing lower CNF concentrations. For high 5 wt% CNF, however, the fracture of micro-carbon fiber could be detected just in one large step increment change in the electrical resistivity as well as consistent AE events. The percolation structure of CNF is not well formed in the cement matrix due to relatively-low electrical conductivity. The chosen CNF-cement composites are not suitable for conductive and sensing applications because of their many vertical microcracks.
机译:在循环加载/后续卸载的情况下,通过电微机械技术和声发射(AE)研究了单碳纤维/碳纳米纤维(CNF)-脆性水泥复合材料的界面评价和自感。在固化过程中,由于水泥基体与CNF之间的接触点增加,在初始阶段,体积电阻率急剧下降。还评价了微碳纤维/ CNF-水泥复合材料的表观模量和电接触电阻率与CNF浓度的关系。随着CNF浓度的增加,最大应力增加,而电阻Ap的变化逐渐减小,并且接触电阻率灵敏度也增加。还通过电阻率和AE研究了微碳纤维/ CNF-水泥复合材料的微损伤传感。当发生微碳纤维的第一次断裂时,电阻率随着CNF浓度的降低而“无限地”增加。但是,对于高5 wt%的CNF,微碳纤维的断裂可以在电阻率以及一致的AE事件中以一个较大的增量变化来检测。由于相对较低的电导率,在水泥基体中不能很好地形成CNF的渗透结构。所选的CNF水泥复合材料因其许多垂直微裂纹而不适用于导电和传感应用。

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