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采用真空辅助树脂传递模塑成型的可预成型碳纤维布对钢螺栓连接进行加固方法的试点示范。

Pilot Demonstration of a Strengthening Method for Steel-Bolted Connections Using Pre-Formable Carbon Fiber Cloth with VaRTM.

作者信息

Matsui Takahiro, Suzuki Kohei, Sato Sota, Kubokawa Yuki, Nakamoto Daiki, Davaakhishig Shijir, Matsumoto Yukihiro

机构信息

ACM Technology Department, Toray Industries, Inc., 2-1-1 Nihonbashimuromachi, Chuo-ku, Tokyo 103-8666, Japan.

Technical Development Headquarters, Constec Engi, Co., Ltd., 6-1-1 Heiwajima, Ota-ku, Tokyo 143-0006, Japan.

出版信息

Materials (Basel). 2021 Apr 24;14(9):2184. doi: 10.3390/ma14092184.

Abstract

In recent years, many seismic retrofitting methods have been performed to improve the structural performance and prevent the brittle failure of structural members. In the case of steel structures, slender seismic braces have been widely used for buildings, towers, and bridges. The brace connections should resist the full plastic axial tension load to ensure adequate plastic deformation performance for vibration energy absorption. However, certain connections do not satisfy these requirements. Recently, carbon fiber reinforced plastic (CFRP) has been used extensively to strengthen existing structures because of its high-strength, high elastic modulus, and light-weight characteristics. In this paper, we investigate the applicability of CFRP strengthening for brace connections and gusset plates with stepped surfaces using the vacuum-assisted resin transfer molding technique as a pilot demonstration. Stepped surfaces can be eliminated by using alternative CFRP layers to straighten the structural CFRP layers in order to effectively transfer the axial stress. Eventually, it is shown that CFRP strengthening can improve the connection strength and plastic deformation with 3% elongation, even if the CFRP is molded on the stepped surface.

摘要

近年来,人们采用了许多抗震加固方法来提高结构性能,防止结构构件发生脆性破坏。对于钢结构而言,细长的抗震支撑已广泛应用于建筑物、塔楼和桥梁。支撑连接应能承受全塑性轴向拉力荷载,以确保具有足够的塑性变形性能来吸收振动能量。然而,某些连接并不满足这些要求。近来,碳纤维增强塑料(CFRP)因其高强度、高弹性模量和轻质的特性而被广泛用于加固现有结构。在本文中,我们以真空辅助树脂传递模塑技术为试点示范,研究了CFRP加固支撑连接和带有阶梯表面的节点板的适用性。通过使用替代的CFRP层来校直结构CFRP层,从而消除阶梯表面,以便有效地传递轴向应力。最终结果表明,即使CFRP是在阶梯表面上成型的,CFRP加固也能提高连接强度和塑性变形,伸长率可达3%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9d8/8123189/3e6f0874cb6c/materials-14-02184-g001.jpg

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