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Constitutive Model of Thin Metal Sheet in Bulging Test Considering Strain Gradient Hardening

机译:考虑应变梯度硬化的凸起试验中薄金属板本构模型

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The study of the size effect was one of the most important subjects in the field of micro-forming. To investigate the stress of the thin sheet in the bulging test with the second order size effect, a constitutive equation considering the strain gradient hardening was proposed. Based on the equation, the stress of the thin sheet during the bulging test was calculated by the finite element method. The bulging tests with various thicknesses of brass sheets and radiuses of punching balls were performed to verify the proposed equation. The results showed that the constitutive equation could capture the stress variations, while the simulation using the constitutive equation from the conventional theory of plasticity showed the results with large deviation from those of the experiment. It was found that the stress was sensitive to the thickness of the sheet and the radius of the punching ball in bulging test of thin brass sheet. The bulging of the thin brass sheet with a thickness below ten times of its material intrinsic length would cause the generation of the geometrically necessary dislocations, which induced the strain gradient hardening. Besides that, the decrement of the punching ball radius would also increase the inhomogeneous deformation and enhance the strain gradient hardening during the thin sheet bulging process. The strain gradient hardening during the thin sheet bulging test was related to the strain of the sheet. The hardening effect of the strain gradient was obvious when the strain was small. The strain gradient hardening should be considered in the thin sheet bulging test with the second order size effect.
机译:对大小效应的研究是微观形成领域中最重要的科目之一。为了探讨薄板在凸起测试中的应力与二阶尺寸效应,提出了考虑应变梯度硬化的本构体方程。基于等式,通过有限元法计算凸起测试期间薄板的应力。进行具有各种厚度的黄铜板和冲压球半径的凸出测试以验证所提出的方程。结果表明,本构体方程可以捕获应力变化,而使用来自传统塑性理论的本构式方程的模拟显示了与实验的偏差大的结果。发现应力对薄黄铜板的凸出测试中的片材的厚度和冲压球的半径敏感。厚度低于其材料内在长度的十倍的薄黄铜板的凸出将导致几何必要脱位产生,其诱导应变梯度硬化。除此之外,冲压球半径的减小还将增加不均匀变形,并在薄板凸起过程中增强应变梯度硬化。薄板凸出试验期间的应变梯度硬化与片材的菌株有关。当菌株小时,应变梯度的硬化效果显而易见。应在薄板凸起试验中考虑应变梯度硬化,其二阶尺寸效应。

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