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Mechanical and Electrical Characterization of Self-sensing Carbon Black ECC

机译:自感炭黑ECC的机械和电气特性

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摘要

In this paper, the development of a new variation of Engineered Cementitious Composite (ECC) that aims to combine tensile ductility with self-sensing ability is described. ECC is a new type of high-performance fiber reinforced cementitious composite that exhibits strain-hardening under applied tensile load while resisting fracture localization. The self-sensing ability is achieved by incorporating a small dosage of carbon black (CB) into the ECC system (hereafter known as CB-ECC) to enhance its piezoresistive behavior while maintaining its tensile strain-hardening behavior. The tensile stress-strain response of CB-ECC is studied with an emphasis on its tensile stress and strain capacity, as well as its cracking pattern. In addition, the piezoresistive behavior of CB-ECC under uniaxial tension is investigated. Specifically, the effect of carbon black content on the electrical properties of ECC including the sensitivity of changes in its bulk conductivity under applied tensile strain are explored in detail.
机译:在本文中,描述了工程胶凝复合材料(ECC)的新变体的开发,该变体旨在将拉伸延展性与自感应能力相结合。 ECC是一种新型的高性能纤维增强水泥基复合材料,它在施加的拉伸载荷下表现出应变硬化,同时还能抵抗断裂局部化。通过将少量的炭黑(CB)掺入ECC系统(以下称为CB-ECC)中,以增强其压阻性能,同时保持其拉伸应变硬化性能,可以实现自感应功能。研究了CB-ECC的拉伸应力-应变响应,重点是其拉伸应力和应变能力,以及其开裂模式。另外,研究了CB-ECC在单轴张力下的压阻行为。具体而言,详细研究了炭黑含量对ECC电学性能的影响,包括在施加拉伸应变下其体相电导率变化的敏感性。

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