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不同长度短切碳纤维增强砂浆与混凝土的静态和动态性能

Static and Dynamic Performances of Chopped Carbon-Fiber-Reinforced Mortar and Concrete Incorporated with Disparate Lengths.

作者信息

Li Yeou-Fong, Lee Kun-Fang, Ramanathan Gobinathan Kadagathur, Cheng Ta-Wui, Huang Chih-Hong, Tsai Ying-Kuan

机构信息

Department of Civil Engineering, National Taipei University of Technology, 1, Sec. 3, Chung-Hsiao E. Rd., Taipei 10608, Taiwan.

Institute of Mineral Resources Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.

出版信息

Materials (Basel). 2021 Feb 18;14(4):972. doi: 10.3390/ma14040972.

Abstract

The impact load, such as seismic and shock wave, sometimes causes severe damage to the reinforced concrete structures. This study utilized different lengths of chopped carbon fibers to develop a carbon-fiber-reinforced mortar (CFRM) and carbon-fiber-reinforced concrete (CFRC) with high impact and anti-shockwave resistance. The different lengths (6, 12, and 24 mm) of chopped carbon fibers were pneumatically dispersed and uniformly mixed into the cement with a 1% weight proportion. Then the CFRM and CFRC specimens were made for static and dynamic tests. The compressive and flexural strengths of the specimens were determined by using the standard ASTM C39/C 39M and ASTM C 293-02, respectively. Meanwhile, a free-fall impact test was done according to ACI 544.2R-89, which was used to test the impact resistances of the specimens under different impact energies. The CFRM and CFRC with a length of 6 mm exhibit maximum compressive strength. Both flexural and free-fall impact test results show that the 24 mm CFRM and CFRC enhances their maximum flexural strength and impact numbers more than the other lengths of CFRM, CFRC, and the benchmark specimens. After impact tests, the failure specimens were observed in a high-resolution optical microscope, to identify whether the failure mode is slippage or rupture of the carbon fiber. Finally, a blast wave explosion test was conducted to verify that the blast wave resistance of the 24 mm CFRC specimen was better than the 12 mm CFRC and benchmark specimens.

摘要

地震和冲击波等冲击荷载有时会对钢筋混凝土结构造成严重破坏。本研究利用不同长度的短切碳纤维开发了具有高抗冲击和抗冲击波性能的碳纤维增强砂浆(CFRM)和碳纤维增强混凝土(CFRC)。将不同长度(6、12和24毫米)的短切碳纤维通过气动方式分散,并以1%的重量比例均匀混入水泥中。然后制作CFRM和CFRC试件进行静态和动态试验。试件的抗压强度和抗弯强度分别按照标准ASTM C39/C 39M和ASTM C 293-02测定。同时,根据ACI 544.2R-89进行自由落体冲击试验,用于测试试件在不同冲击能量下的抗冲击性能。长度为6毫米的CFRM和CFRC表现出最大抗压强度。抗弯和自由落体冲击试验结果均表明,24毫米的CFRM和CFRC比其他长度的CFRM、CFRC以及基准试件能提高其最大抗弯强度和冲击次数。冲击试验后,在高分辨率光学显微镜下观察破坏的试件,以确定破坏模式是碳纤维的滑移还是断裂。最后,进行了爆炸波试验,以验证24毫米CFRC试件的抗爆炸波性能优于12毫米CFRC和基准试件。

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