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Fatigue Behaviour Study of the Shear Stud Using Crack Box Technology and M Integral Method

机译:裂纹箱技术和M积分法研究剪力柱的疲劳行为

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摘要

Steel and concrete composite structures can give full play to mechanical advantages of the two materials, so it is widely used all over the world. As the key components to ensure the compatibility deformation of two materials, the importance of shear studs to the security of structures is self-evident. However, fatigue research on shear studs is still lagging behind, and there is a potential safety hazard. Thus, based on crack box technique, the M integral and the maximum tangential stress criterion, this paper presents a simulation method for fatigue crack propagation of studs in three-dimensional mixed fracture mode. The crack propagation of Type A fracture in studs is simulated under fatigue load of constant slip between steel and concrete. Results show that the crack deflection angle of stud increases with slip effect. In crack propagation process, the stress intensity factor K-I is the highest and K-III is the smallest, whose effect on the deflection angle during crack propagation can be reasonably ignored. The crack surface inclines slightly to the bottom of welding collar while the crack expands in the stud.
机译:钢和混凝土复合结构可以充分发挥两种材料的机械优势,因此在世界范围内得到了广泛的应用。作为确保两种材料相容变形的关键部件,抗剪栓钉对结构安全性的重要性不言而喻。但是,对剪力钉的疲劳研究仍然滞后,存在潜在的安全隐患。因此,基于裂纹盒技术,M积分和最大切向应力准则,提出了一种三维混合断裂模式下螺栓疲劳裂纹扩展的仿真方法。在钢和混凝土之间恒定滑移的疲劳载荷下,模拟了螺柱A型裂缝的裂纹扩展。结果表明,螺柱的裂纹偏转角随滑移效应而增大。在裂纹扩展过程中,应力强度因子K-I最高,K-III最小,其对裂纹扩展过程中偏转角的影响可以忽略不计。裂纹表面稍微倾斜到焊接环的底部,而裂纹在螺柱中扩展。

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