Application of strain gradient plasticity in coining simulations of commemorative coins
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Application of strain gradient plasticity in coining simulations of commemorative coins

机译:应变梯度可塑性在纪念硬币划线下的应用

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Highlights?Size effect in coining processes of commemorative coins is investigated.?A constitutive model is established based on the strain gradient plasticity.?A novel method is proposed to obtain the plastic strain gradient in reduced integrated hexahedral elements.?A nanoindentation test is used to obtain the material mechanical properties concerning size effect.AbstractSize effect plays an important role in coining processes of commemorative coins. To deal with the size effect and improve the simulation accuracy, a constitutive model incorporating the conventional mechanism-based strain gradient (CMSG) plasticity theory was established in this study, with the nonlinear coupling between the statistically stored dislocation (SSD) density and the geometrically necessary dislocation (GND) density determined experimentally. Via the least square method, a bilinear equivalent plastic strain field was constructed for the evaluation of equivalent plastic strain gradient. In this way, the proposed constitutive model was implemented within a home-developed explicit finite element code for coining analyses. Uniaxial tensile tests and a nanoindentation test were conducted to obtain the mechanical properties of the Ag999 material, which was selected to verify the performance of the proposed constitutive model. By simulating the nanoindentation test and the coining process of a typical commemorative coin, it was demonstrated that the proposed constitutive model could provide accurate results in applications involving size effect, outperforming the classical plasticity constitutive model. Therefore, the proposed constitutive model based on strain gradient plasticity theory is suitable for coining simulations of commemorative coins.Graphical abstractDisplay Omitted]]>
机译:<![cdata [ 突出显示 调查纪念硬币的压印过程中的尺寸效果。 基于应变梯度可塑性建立一个本构模型。 提出了一种新的方法,以获得减少的六面体元素中的塑性应变梯度。 ?< / ce:标签> 使用纳米凸缘测试来获得尺寸效应的材料机械性能。 抽象 尺寸效果在纪念硬币的压印过程中起重要作用。为了处理尺寸效应并提高模拟精度,在本研究中建立了一种结合传统机构的应变梯度(CMSG)塑性理论的本构体模型,在统计上存储的位错(SSD)密度和几何上的非线性耦合实验确定必要的位错(GND)密度。通过最小二乘法,构建了双线性等同塑料应变场,用于评估等效塑性应变梯度。以这种方式,所提出的本构模型是在家庭开发的明确有限元代码中实现的,以进行分析。进行单轴拉伸试验和纳米肾脏试验以获得AG999材料的机械性能,选择验证所提出的本构模型的性能。通过模拟纳米狭窄试验和典型纪念硬币的压印过程,证明所提出的本构模型可以提供涉及尺寸效应的应用的准确结果,优于经典塑性本构模型。因此,基于应变梯度塑性理论的所提出的本构模型适用于纪念币的模拟。 图形抽象 显示省略 ]]>

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