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Determination of critical material parameters for numerical simulation of acrylic sheet forming

机译:确定用于丙烯酸板成型的数值模拟的关键材料参数

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摘要

In order to accurately demonstrate the material behavior during numerical simulation of thermoforming, the critical material parameters of any specific polymeric material need to be determined properly. In this study, acrylic sheets (Poly(methyl methacrylate), PMMA) of both opaque and transparent nature were chosen as the sample materials due to their widespread usage for the manufacturing of bathwares and kitchen appliances. Hyperelastic theory (e.g., Mooney-Rivlin and Ogden models) was employed with experimental verification to obtain the critical material parameters of PMMA. By conducting uniaxial tensile tests at elevated temperatures between 150 and 190°C and utilising the least square method (LSM), the major material parametric functions were derived in terms of forming temperature. Preliminary application on simulation of free inflation of a bubble profile resulted in promising agreement with the experimental data validating the developed parameters.
机译:为了在热成型的数值模拟过程中准确显示材料性能,需要适当确定任何特定聚合物材料的关键材料参数。在这项研究中,不透明和透明的丙烯酸片材(聚甲基丙烯酸甲酯,PMMA)被选为样本材料,因为它们广泛用于制造浴室和厨房用具。采用超弹性理论(例如Mooney-Rivlin和Ogden模型)进行实验验证,以获取PMMA的关键材料参数。通过在150至190°C的高温下进行单轴拉伸测试,并利用最小二乘法(LSM),得出了主要的材料参数函数,即成形温度。在气泡轮廓的自由膨胀模拟中的初步应用导致与验证开发参数的实验数据有希望的协议。

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  • 来源
    《Journal of Materials Science 》 |2005年第2期| 399-410| 共12页
  • 作者单位

    Centre for Advanced Composite Materials (CACM) Department of Mechanical Engineering University of Auckland;

    Centre for Advanced Composite Materials (CACM) Department of Mechanical Engineering University of Auckland;

    Centre for Advanced Composite Materials (CACM) Department of Mechanical Engineering University of Auckland;

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