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碳纤维增强混凝土动态劈裂特性的试验研究

Experimental Study on Dynamic Splitting Characteristics of Carbon Fiber Reinforced Concrete.

作者信息

Chen Zhan-Yang, Yang Jun

机构信息

State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Materials (Basel). 2020 Dec 28;14(1):94. doi: 10.3390/ma14010094.

Abstract

Due to the non-uniform tension and compression strength of concrete, carbon fiber can be added to concrete to improve its static tensile behavior and increase the tension-compression ratio. In view of the destructive consequences of impacts and explosions, it is necessary to study the dynamic responses of carbon fiber reinforced concrete (CFRC) structures. Therefore, the effects of the stress rates and carbon fiber contents on the dynamic tension behavior of CFRC were investigated in this paper. The dynamic splitting tests of concrete with the fiber contents of 0, 0.1, 0.2, and 0.3% were carried out by using a split Hopkinson pressure bar (SHPB) device with a diameter of 74 mm. We found that with the increase of fiber content, the static tensile strength of CFRC increases obviously, but the increased amplitude tends to decrease. The dynamic tensile strength and dynamic increase factor (DIF) both increase with the increase of stress rate, but the growth rate slows down, showing an obvious rate effect. The rate sensitivity of ordinary concrete is higher than CFRC. There are significant differences in the influence of carbon fiber on the dynamic and static strength of concrete. In the design of concrete mixing proportion, the content of carbon fiber should be appropriately selected to meet the requirements of dynamic and static mechanical properties.

摘要

由于混凝土的抗拉和抗压强度不均匀,可在混凝土中添加碳纤维以改善其静态拉伸性能并提高拉压比。鉴于冲击和爆炸的破坏性后果,有必要研究碳纤维增强混凝土(CFRC)结构的动态响应。因此,本文研究了应力率和碳纤维含量对CFRC动态拉伸性能的影响。采用直径74mm的分离式霍普金森压杆(SHPB)装置对纤维含量分别为0、0.1、0.2和0.3%的混凝土进行了动态劈裂试验。研究发现,随着纤维含量的增加,CFRC的静态抗拉强度明显提高,但增幅趋于减小。动态抗拉强度和动态增强系数(DIF)均随应力率的增加而增大,但增长率减缓,呈现明显的率效应。普通混凝土的率敏感性高于CFRC。碳纤维对混凝土动态和静态强度的影响存在显著差异。在混凝土配合比设计中,应适当选择碳纤维含量以满足动态和静态力学性能的要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22dc/7795014/64e1e90415eb/materials-14-00094-g001.jpg

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