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首页> 外文期刊>International Journal of Damage Mechanics >Predictions of fracture load, crack initiation angle, and trajectory for V-notched Brazilian disk specimens under mixed mode I/II loading with negative mode I contributions
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Predictions of fracture load, crack initiation angle, and trajectory for V-notched Brazilian disk specimens under mixed mode I/II loading with negative mode I contributions

机译:在混合模式I / II负载下的裂缝载荷,裂纹启动角度和V型缺口巴西盘样本的轨迹的预测,负载负载I / II贡献

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摘要

In this paper, first the fracture load, the crack initiation angle and the crack trajectory are experimentally measured for the round-tip V-notched Brazilian disk specimen made of polymethyl-methacrylate under compressive-shear loading. Then, the fracture load and the crack initiation angle are predicted by using the extended finite element method on the basis of the linear cohesive crack criterion. The fracture trajectory of the round-tip V-notched Brazilian disk specimens is also estimated by means of the extended finite element method and the incremental methods. Both the experimental observations and the theoretical fracture models indicate that although the notch bisector line is under compressive-shear loading, one half of the notch border still sustains tensile stresses and fracture takes place from this half. A very good agreement is shown to exist between the theoretical predictions and the experimental results for various notch opening angles and different notch radii.
机译:本文首先,在压缩剪切载荷下对由聚甲基 - 甲基丙烯酸甲酯制成的圆尖V型缺口巴西盘样本进行实验测量裂缝载荷,裂纹启动角度和裂缝轨迹。 然后,通过基于线性粘性裂纹标准使用延长的有限元方法来预测断裂载荷和裂缝启动角度。 通过扩展有限元方法和增量方法,还估计了圆尖V型缺口巴西盘样本的断裂轨迹。 实验观察和理论骨折模型都表明,虽然凹口分流线处于压缩剪切载荷,但凹口边界的一半仍然维持拉伸应力,从而从这一半发生裂缝。 在理论上的预测和各种凹口开口角度和不同陷波半径的实验结果之间存在非常好的协议。

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