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Enhancing Damage-Sensing Capacity of Strain-Hardening Macro-Steel Fiber-Reinforced Concrete by Adding Low Amount of Discrete Carbons

机译:通过添加少量的离散碳来增强应变强化宏钢纤维混凝土的损伤感知能力

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摘要

The effects of adding micro-carbon fibers on the electro-mechanical response of macro-steel fiber-reinforced concretes (MSFRCs) under tension were investigated. Two MSFRCs were investigated and they had identical mortar matrix but different fiber contents: MSFRC1 and MSFRC2 contained 1.0 and 1.5 vol.% fibers, respectively. The volume contents of added micro-carbon fibers were 0 to 1.5 vol.% in MSFRC1 and 0 to 0.75 vol.% in MSFRC2, respectively. The addition of 0.5 vol.% micro-carbon fibers, in both MSFRC1 and MSFRC2, produced significantly enhanced damage-sensing capability and still retained their strain-hardening performance together with multiple micro cracks. However, when the content of carbon fibers was more than 0.5 vol.%, the MSFRCs generated tensile strain-softening behavior and reduced damage-sensing capability. Furthermore, the effects of temperature and humidity on the electrical resistivity of MSFRCs were investigated, as were the effects of adding multi-walled carbon nanotubes on the damage-sensing capability of MSFRCs.
机译:研究了添加微碳纤维对宏观钢纤维混凝土在拉伸状态下机电响应的影响。研究了两种MSFRC,它们具有相同的砂浆基质,但纤维含量不同:MSFRC1和MSFRC2分别包含1.0和1.5%(体积)的纤维。添加的微碳纤维的体积含量在MSFRC1中为0〜1.5体积%,在MSFRC2中为0〜0.75体积%。在MSFRC1和MSFRC2中添加0.5%(体积)的微碳纤维可显着增强损伤感测能力,并仍保留其应变硬化性能以及多个微裂纹。然而,当碳纤维的含量大于0.5体积%时,MSFRC产生拉伸应变软化行为并降低损伤感测能力。此外,研究了温度和湿度对MSFRCs电阻率的影响,以及添加多壁碳纳米管对MSFRCs损伤感测能力的影响。

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