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Cyclic behavior of SS316L cylindrical shells under pure torsional load: An experimental investigation

机译:纯扭力作用下SS316L圆柱壳的循环行为:实验研究

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摘要

Ratcheting and softening characteristics of SS316L cylindrical shell under cyclic pure torsional load were studied, experimentally. Experimental tests were performed in torque-control and angle of torsion-control conditions by a Servo-Hydraulic INSTRON 8802 machine and the effect of torque amplitude, history loading, shape of cutout, and angle of torsion on the cyclic behavior of cylindrical shells were examined. Under torque control loading with non-zero mean torque, ratcheting behavior occurred on cylindrical shells. The ratcheting angle and its rate increase with increasing mean torque. Under angle of torsion-control loading, softening behavior was observed and it was shown the reaction of shells can be divided into four stages, i.e. incubation, transition, steady-state and crack propagation. Finally, the numerical analysis was carried out by ABAQUS software using nonlinear isotropic/kinematic (combined) hardening model. The result demonstrated that the cyclic behavior of cylindrical shell under pure torsional load could be numerically simulated with a reasonable accuracy.
机译:实验研究了循环纯扭转载荷作用下SS316L圆柱壳的棘轮和软化特性。使用Servo-Hydraulic INSTRON 8802机器在扭矩控制和扭转角条件下进行了实验测试,并检查了扭矩振幅,历史载荷,切口形状和扭转角对圆柱壳循环行为的影响。在非零平均转矩的转矩控制负载下,圆柱壳发生棘轮行为。棘轮角度及其比率随平均扭矩的增加而增加。在扭转载荷作用下,观察到了软化行为,表明壳的反应可分为四个阶段,即保温,过渡,稳态和裂纹扩展。最后,使用非线性各向同性/运动(组合)硬化模型,通过ABAQUS软件进行了数值分析。结果表明,可以对圆柱壳在纯扭转载荷下的循环行为进行数值模拟,并具有合理的精度。

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