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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Micromechanical Modelling of the Damage and Toughness Behaviour of Modular Cast Iron Materials
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Micromechanical Modelling of the Damage and Toughness Behaviour of Modular Cast Iron Materials

机译:组合铸铁材料损伤和韧性行为的微力学建模

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摘要

The strength and toughness of nodular cast iron materials is described by a micromechanically based damage model for porous plastic materials. Two ferritic nodular cast iron materials of the type GOG-40 with different graphite morphology are investigated. Quantitative metallurgy and cell model calculations are used to determine the characteristic parameters of the Gurson-Tvergaard-Needleman-model (GTN-model). The stress strain behaviour of the matrix is obtained from tensile tests on a pure ferritic material. The influence of stress triaxiality and void shape on the critical void volume fraction is studied. Tensile tests with smooth and notched specimens are simulated to verify the load-deformation behaviour. The effect of the graphite morphology on fracture toughness is studied by tests and simulations of SE(B)-specimens.. Fracture resistance curves can be well predicted. A correlation between element size and particle distance is found.
机译:球墨铸铁材料的强度和韧性通过基于微机械的多孔塑料材料损伤模型来描述。研究了两种具有不同石墨形态的GOG-40型铁素体球墨铸铁材料。定量冶金和单元模型计算用于确定Gurson-Tvergaard-Needleman模型(GTN模型)的特征参数。基体的应力应变行为是通过对纯铁素体材料进行的拉伸试验获得的。研究了应力三轴性和空隙形状对临界空隙体积分数的影响。模拟了带有光滑且有缺口试样的拉伸试验,以验证载荷-变形行为。通过SE(B)试样的测试和模拟研究了石墨形态对断裂韧性的影响。可以很好地预测抗断裂曲线。发现元素大小和粒子距离之间的相关性。

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