Szewczak Ilona, Snela Malgorzata, Rozylo Patryk
Faculty of Civil Engineering, Lublin University of Technology, 40 Nadbystrzycka Str., 20-618 Lublin, Poland.
Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland.
Materials (Basel). 2023 Apr 6;16(7):2907. doi: 10.3390/ma16072907.
In order to design an optimal reinforcement of steel thin-walled beams with composite materials, it is worth analyzing two important, although often overlooked issues, which are the selection of the appropriate thickness of the adhesive layer and the effective anchoring length of the composite tape. This paper, which is part of a wider laboratory study devoted to the strengthening of thin-walled steel profiles, focuses on the second issue. The paper involves a description of laboratory four-point bending tests during which ten thin-walled steel beams made of a rectangular section with dimensions of 120 × 60 × 3 and a length of 3 m were tested. Two beams were taken as reference beams, and the other eight were reinforced using Sika CarboDur S512 carbon fiber composite tape, assuming four different effective anchorage lengths. The impact of the length of the anchoring of the composite tape on the value of the displacements and strains of the tested beams and on the value of the destructive load that caused tape detachment was analyzed. The following phase was numerical analyses carried out in the Abaqus program, which showed high consistency with the results of laboratory tests. In reference to the conducted tests, it was observed that the increase in the anchoring length of the composite tape has a slight impact on the change in the value of strains and displacements in the tested beams. Nevertheless, the increase in the effective anchorage length has a significant impact on the load value at which the composite tapes are detached from the surface of the steel thin-walled beam.
为了设计出用复合材料对钢薄壁梁进行的最优加固方案,分析两个重要但常被忽视的问题是很有必要的,这两个问题分别是粘结层合适厚度的选择以及复合带材的有效锚固长度。本文作为致力于薄壁钢型材加固的更广泛实验室研究的一部分,聚焦于第二个问题。本文介绍了实验室四点弯曲试验,试验中对10根矩形截面尺寸为120×60×3、长度为3m的薄壁钢梁进行了测试。选取两根梁作为参考梁,另外八根使用西卡CarboDur S512碳纤维复合带材进行加固,设定了四种不同的有效锚固长度。分析了复合带材锚固长度对测试梁位移和应变值以及导致带材脱落的破坏荷载值的影响。接下来的阶段是在Abaqus程序中进行的数值分析,分析结果与实验室测试结果高度一致。参照所进行的试验可以观察到,复合带材锚固长度的增加对测试梁应变和位移值的变化影响较小。然而,有效锚固长度的增加对复合带材从钢薄壁梁表面脱落时的荷载值有显著影响。