蒋田勇, 徐沐鑫, 耿森, 王磊. 考虑腹板焊缝损伤的正六边形蜂窝梁变形性能与挠度计算研究[J]. 工程力学, 2024, 41(4): 199-209. DOI: 10.6052/j.issn.1000-4750.2022.04.0382
引用本文: 蒋田勇, 徐沐鑫, 耿森, 王磊. 考虑腹板焊缝损伤的正六边形蜂窝梁变形性能与挠度计算研究[J]. 工程力学, 2024, 41(4): 199-209. DOI: 10.6052/j.issn.1000-4750.2022.04.0382
JIANG Tian-yong, XU Mu-xin, GENG Sen, WANG Lei. CALCULATION OF DEFORMATION BEHAVIOR AND DEFLECTION OF REGULAR HEXAGONAL CASTELLATED BEAMS CONSIDERING WEB WELD DAMAGE[J]. Engineering Mechanics, 2024, 41(4): 199-209. DOI: 10.6052/j.issn.1000-4750.2022.04.0382
Citation: JIANG Tian-yong, XU Mu-xin, GENG Sen, WANG Lei. CALCULATION OF DEFORMATION BEHAVIOR AND DEFLECTION OF REGULAR HEXAGONAL CASTELLATED BEAMS CONSIDERING WEB WELD DAMAGE[J]. Engineering Mechanics, 2024, 41(4): 199-209. DOI: 10.6052/j.issn.1000-4750.2022.04.0382

考虑腹板焊缝损伤的正六边形蜂窝梁变形性能与挠度计算研究

CALCULATION OF DEFORMATION BEHAVIOR AND DEFLECTION OF REGULAR HEXAGONAL CASTELLATED BEAMS CONSIDERING WEB WELD DAMAGE

  • 摘要: 试验设计并制作了焊缝具有裂纹损伤的正六边形蜂窝梁,研究了不同参数下正六边形蜂窝梁的力学性能,其中试验参数包括焊缝裂纹的位置和长度,分析了试验梁的应变以及挠度随参数变化的规律,建立了考虑焊缝裂纹损伤正六边形蜂窝梁的抗弯挠曲线计算方法。结果表明:具有焊缝裂纹损伤的正六边形蜂窝梁破坏形式为压弯屈曲破坏,其结构孔角开始出现屈服,当孔角屈服数目达到一定数量时,结构整体发生屈曲破坏;在重复加载阶段内,裂纹长度变化对焊缝附近孔角应变的影响在±20 με内,关键截面位置挠度的影响在0.05 mm内;通过等效刚度法推导了在腹板焊缝裂纹状态下蜂窝梁的抗弯刚度,研究了蜂窝梁腹板焊缝裂纹对跨中挠度的影响;通过引入挠度放大系数,得到了在特定荷载作用下蜂窝梁的跨中挠度计算式;对比研究了蜂窝梁跨中挠度的不同公式计算结果,其中日本规范估算法和费氏简化分析法与试验值相比差值均较大,在50%左右;该文建议公式与试验值吻合较好,差值绝大部分在10%以内。

     

    Abstract: A hexagonal castellated beam with cracks was designed and fabricated, of which the mechanical properties, including the location and length of cracks at the weld, were examined under different parameters. The experimental also devised a method to calculate the flexural resistance of hexagonal castellated beams damaged by weld cracks and further assessed how the strain and deflection of the test beam with crack varied as the parameters altered. The findings indicate that the failure mode of the hexagonal castellated beam with weld crack damage is the buckling failure with structural hole angles initiating to yield. Once a specific amount of hole angle yield has been achieved, the castellated beam will start experiencing damage. During the repeated loading phase, the effect of crack length on the angular strain of the hole near the weld is within ±20 με and the deflection of the critical section position is within 0.05 mm. The flexural stiffness of the castellated beam with the web weld crack was calculated by equivalent stiffness method and the effect of web weld crack on the mid-span deflection was investigated. By incorporating the deflection amplification factor, the formula for determining the mid-span deflection of the castellated beam under a particular load is obtained. By calculating the mid-span deflection of castellated beams with various formulas and contrasting the outcomes, we can observe that there is a significant disparity of around 50% between the test results and the results from the Japanese standard estimation approach as well as the simplified method. The proposed results are in accordance with the experimental results, and most of the discrepancy is within 10%.

     

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