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聂春戈, 魏鸿亮, 董平沙, 兆文忠. 基于结构应力方法的正面角焊缝抗剪强度分析[J]. 焊接学报, 2015, 36(1): 70-74.
引用本文: 聂春戈, 魏鸿亮, 董平沙, 兆文忠. 基于结构应力方法的正面角焊缝抗剪强度分析[J]. 焊接学报, 2015, 36(1): 70-74.
NIE Chunge, WEI Hongliang, DONG Pingsha, ZHAO Wenzhong. Shear strength analysis of transverse fillet welds based on structural stress method[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2015, 36(1): 70-74.
Citation: NIE Chunge, WEI Hongliang, DONG Pingsha, ZHAO Wenzhong. Shear strength analysis of transverse fillet welds based on structural stress method[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2015, 36(1): 70-74.

基于结构应力方法的正面角焊缝抗剪强度分析

Shear strength analysis of transverse fillet welds based on structural stress method

  • 摘要: 建立了基于结构应力定义的正面角焊缝抗剪强度理论,给出了新的焊缝抗剪强度计算公式,并基于该理论对焊缝抗剪强度相关问题进行了分析.结果表明,单向受剪等焊脚正面角焊缝的断裂角度理论值为22.5°,焊趾角度和受力状态均会影响断裂角度.另外焊趾角度为30°的单向受剪焊缝具有最大的承载能力,而双向受剪焊缝的承载能力比单向受力时的承载能力也明显提高.试验数据证明了该理论的正确性,该理论也为焊缝尺寸设计提供了理论基础.

     

    Abstract: A structural stress based shear strength theory was established for transverse fillet welds in this paper, the new equations for calculating shear strength of fillet welds were provided, and some problems about shear strength of fillet welds were investigated. The results show that, theoretical failure angle of welds subjected unidirectional shear force is 22.5°, and both weld toe angle and load condition could also affect failure angle. In addition, the weld with 30° weld toe angle subjected unidirectional shear force possesses maximum load capacity, and the load capacity of weld in biaxial loading is higher than which in unidirectional loading. The theory in this paper was verified by test data, and theoretical bases were provided for weld sizing.

     

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