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Numerical Simulations of Residual Stresses and Warpage in Injection Molding

机译:注塑成型残余应力和翘曲的数值模拟

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摘要

The dimension stability and mechanical performance of injection molded products can be improved by predicting and optimizing residual stresses and warpage during processing. Numerical simulations of residual stresses and warpage were undertaken upon the characteristics of injection molding. A linear thermoviscoelastic model was adopted to simulate thermally and pressure induced residual stresses in amorphous polymer parts. The numerical calculation was carried out by the finite difference method in the time and layer discretization in the thickness direction, combined with multiple boundary conditions during different molding stages. A finite element model formed by combining the membrane element and a bending element was employed in the warpage simulation. A modified flat model was proposed based on surface mesh, which avoided the deficiencies of traditional flat models. Simulation results were compared with experimental data for validation of the developed program. It was found that the numerical simulations and corresponding software could be effective in enhancing the quality of products and productivity.
机译:通过预测和优化加工过程中的残余应力和翘曲,可以改善注塑产品的尺寸稳定性和机械性能。根据注塑成型的特性进行了残余应力和翘曲的数值模拟。采用线性热粘弹性模型来模拟热和压力引起的非晶态聚合物零件中的残余应力。通过有限差分法在厚度方向上的时间和层离散化中进行了数值计算,并结合了不同成型阶段的多个边界条件。在翘曲模拟中采用了由膜单元和弯曲单元组合而成的有限元模型。提出了一种基于曲面网格的改进平面模型,避免了传统平面模型的不足。仿真结果与实验数据进行了比较,以验证开发的程序。发现数值模拟和相应的软件可以有效地提高产品质量和生产率。

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