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Modeling fracture toughness of functionally graded steels in crack divider configuration

机译:裂纹分隔器配置中功能梯度钢的断裂韧性建模

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Fracture toughness of functionally graded steels in crack divider configuration has been modeled. By utilizing plain carbon and austenitic stainless steel slices with various thicknesses and arrangements as electroslag remelting electrodes, functionally graded steels were produced. The fracture toughness of the functionally graded steels was found to depend on the type, volume fraction and position of the phases present. According to the area under the stress-strain curve ofeach layerin the functionally graded composites, amathematical model has been presented for fracture toughness prediction using the rule of mixtures. In addition, the fracture toughness of the composites has been simulated by the 3D dynamic finite element method. There is good agreement between experimental results and those acquired from the numerical and mathematical models.
机译:已经对裂纹分隔板配置中功能梯度钢的断裂韧性进行了建模。通过将具有不同厚度和排列方式的普通碳素和奥氏体不锈钢切片用作电渣重熔电极,可生产出功能梯度钢。发现功能梯度钢的断裂韧性取决于存在的相的类型,体积分数和位置。根据功能梯度复合材料中各层应力应变曲线下的面积,建立了基于混合规律的断裂韧性预测数学模型。此外,还通过3D动态有限元方法模拟了复合材料的断裂韧性。实验结果与从数值和数学模型获得的结果之间有很好的一致性。

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