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首页> 外文期刊>Journal of Materials Processing Technology >Modelling the constitutive behavior of thin metal sheet using strain gradient theory
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Modelling the constitutive behavior of thin metal sheet using strain gradient theory

机译:使用应变梯度理论对薄金属板的本构行为建模

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The classical local continuum theory is not well adapted to represent the size effects in metal forming processes because there is no dependence on length or size intrinsic parameters. To simulate the material behaviour for sheet metal forming of very thin components the strain gradient plasticity theory is applied. A length intrinsic parameter associated to the gradient of the effective plastic strain is used. The gradient is computed at each integration point through the thickness using a interpolation matrix that only depends on the co-ordinates of the integration points. The effective plastic strain is obtained by solving a consistent iterative scheme. The flow chart of the algorithm in a finite element framework is presented so that two numerical examples of sheet metal forming.
机译:由于不依赖于长度或尺寸固有参数,因此经典的局部连续体理论不适用于表示金属成型过程中的尺寸效应。为了模拟非常薄的零件的钣金成形的材料行为,应用了应变梯度可塑性理论。使用与有效塑性应变的梯度相关的长度固有参数。使用仅取决于积分点坐标的插值矩阵,通过厚度在每个积分点处计算梯度。有效塑性应变是通过求解一致的迭代方案获得的。给出了该算法在有限元框架中的流程图,从而给出了钣金成形的两个数值示例。

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