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Modelling and numerical simulation of the anode compaction process at laboratory scale

机译:实验室规模的阳极压实过程的建模和数值模拟

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This work deals with the modelling and numerical simulation of the anode compaction process at laboratory scale.For this purpose, a finite-strain viscoplastic constitutive law was developed and implemented in Abaqus software.It was based on the thermodynamic framework and the multiplicative decomposition of the deformation gradient into its elastic and irreversible deformation parts.The permanent deformation was characterized using a dissipation potential.The state of stress was defined through a Helmholtz free energy.To characterize the mechanical behaviour of the anode paste, compaction tests using a thin mould wall were carried out at 150℃.An inverse identification procedure using finite element method showed that the proposed constitutive model reproduces experimental trends.Compaction tests using complex geometries such as slots and stub holes were carried out in order to evaluate model predictive capabilities.Numerical simulations show that the model predicts quite successfully the density distribution of the anode paste obtained through the CT scan.
机译:这项工作涉及实验室规模的阳极压实过程的建模和数值模拟,为此目的,在Abaqus软件的基础上开发并实现了有限应变粘塑性本构定律,该定律是基于热力学框架和乘积分解的结果。变形梯度分为弹性和不可逆的变形部分,利用耗散电势表征永久变形,通过亥姆霍兹自由能定义应力状态,为表征阳极浆料的机械性能,使用薄模具壁进行压实测试在150℃进行了有限元法的逆向识别,结果表明所提出的本构模型再现了实验趋势。利用狭缝和短孔等复杂几何形状进行了压缩试验,以评价模型的预测能力。该模型预测成功通过CT扫描获得的阳极浆料的密度分布。

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