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A global limit load solution for plates with surface cracks under combined end force and cross-thickness bending

机译:联合末端力和交叉厚度弯曲下具有表面裂纹的钢板的整体极限载荷解决方案

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摘要

A global limit load solution for rectangular surface cracks in plates under combined end force and crossthickness bending is derived, which allows any combination of positiveegative end force and positiveegative cross-thickness moment. The solution is based on the net-section plastic collapse concept and, therefore, gives limit load values based on the Tresca yielding criterion. Solutions for both cases with and without crack face contact are derived when whole or part of the crack is located in the compressive stress zone. From the solution, particular global limit load solutions for plates with extended surface cracks and through-thickness cracks under the same loading conditions are obtained. The solution is consistent with the limit load solution for surface cracks in plates under combined tension and positive bending due to Goodall & Webster and Lei when both the applied end force and bending moment are positive. The solution reduces to the limit load solution for plain plates under combined end force and cross-thickness bending when the crack vanishes.
机译:得出了在最终力和交叉厚度弯曲共同作用下板矩形表面裂纹的整体极限载荷解决方案,该方案允许正/负端力和正/负交叉厚度矩的任意组合。该解决方案基于净截面塑性倒塌概念,因此根据Tresca屈服准则给出极限载荷值。当裂纹的全部或部分位于压应力区时,可以得出有或没有裂纹面接触的情况的解决方案。从该解中,可以获得在相同载荷条件下具有扩展的表面裂纹和贯穿厚度裂纹的钢板的特定全局极限载荷解决方案。当施加的最终力和弯矩均为正值时,该解决方案与在Goodall&Webster和Lei的共同作用下,由于拉力和正向弯曲而导致的板表面裂纹极限载荷解是一致的。当裂纹消失时,在端力和交叉厚度弯曲共同作用下,该解决方案减小到平板的极限载荷解决方案。

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