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(107008)Crack-tip-opening-displacement-based description of three- dimensional elastic-plastic crack border fields

机译:(107008)三维弹性塑料裂纹边界基于裂缝的基于尖端开放的位移。

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摘要

Characterization of elastic-plastic crack-tip fields has been great developed in the framework of the classical dominating parameter J-integral, which has a limit of the basic assumptions of small deformation and simple proportional loading. A stable and effective parameter is still a challenge for three-dimensional (3D) elastic-plastic fracture problems. Based on the crack-tip-opening-displacement (CTOD) conception and out-of-plane stress constraint factor T_z a new elastic-plastic stress intensity factor K_(δ-Tz) is proposed to dominate the 3D elastic-plastic crack border fields. Detailed 3D finite element simulations are performed for four typical testing specimens, which are the centre-cracked tension specimens, compact specimens, single-edge cracked tension specimens and single-edge-notched bending specimens under three-point bending. It is shown that for specimens with different geometries and thicknesses, K_(δ-Tz) is proven to be more stable than the classical J-integral via the experiment data and simulation results, in which the maximum change in J-integral can be over 340% while the change in K_(δ-Tz) is within 7.78%. Good agreements are obtained between the CTOD-based K_(δ-Tz) description and simulation results for the 3D elastic-plastic crack border stress fields under all the simulated conditions.
机译:弹性塑料裂缝尖端的特征在经典主导参数J-Integral的框架中已经很大,这具有小变形的基本假设和简单的比例负载的限制。稳定且有效的参数仍然是三维(3D)弹性塑料断裂问题的挑战。基于裂缝开口位移(CTOD)构想和外平面压力约束因子T_Z,提出了一种新的弹性塑性应力强度因子K_(Δ-TZ)来支配3D弹性塑料裂纹边界领域。对四种典型测试标本进行了详细的3D有限元模拟,该试样是中心裂纹的张力试样,紧凑型试样,单边缘破裂的张力标本和三点弯曲下的单边缘缺口弯曲试样。结果表明,对于具有不同几何形状和厚度的标本,经由实验数据和仿真结果被证明是比经典J-Integral的更稳定,其中J-Intional的最大变化可以结束K_(Δ-TZ)的变化在7.78%内,340%。在所有模拟条件下,基于CTOD的基于K_(Δ-TZ)描述和模拟结果,在基于CTOD的K_(Δ-TZ)描述和模拟结果之间获得了良好的协议。

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