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Numerical and experimental analysis of coin minting

机译:硬币铸造的数值与实验分析

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This paper describes a numerical and experimental route for application and validation of finite elements in coin minting based on an industrial case study. The numerical work encompasses virtual prototyping of the dies from three-dimensional models prepared by the sculptor and finite element simulation of the coin minting process. The experimental work comprised independent determination of the stress-strain curve of the disk material by means of stack-compression tests, verification of the force values provided by the industrial coin minting press and validation of the numerical estimates of the progressive filling of the relief coin features and of the force vs. die stroke evolution. Results show that finite elements can be successfully applied to predict material flow and filling of the intricate relief coin features as well as to estimate the required coin minting forces before fabricating the actual dies.
机译:本文基于工业案例研究,描述了在铸币中应用和验证有限元的数值和实验途径。数值工作包括由雕刻家准备的三维模型对模具的虚拟原型制作以及硬币铸造过程的有限元模拟。实验工作包括通过叠压试验独立确定圆盘材料的应力-应变曲线,验证工业硬币铸造压机提供的力值以及验证浮雕硬币的逐步填充的数值估计的特征以及力与模头行程的演变。结果表明,有限元可以成功地应用于预测材料的流动和复杂的浮雕硬币特征的填充,以及在制造实际模具之前估算所需的硬币铸造力。

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