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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Finite element simulations of stretch-blow moulding with experimental validation over a broad process window
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Finite element simulations of stretch-blow moulding with experimental validation over a broad process window

机译:广泛工艺窗口实验验证的拉伸吹塑成型有限元模拟

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Injection stretch blow moulding is a well-established method of forming thin-walled containers and has been extensively researched for numerous years. This paper is concerned with validating the finite element analysis of the free-stretch-blow process in an effort to progress the development of injection stretch blow moulding of poly(ethylene terephthalate). Extensive data was obtained experimentally over a wide process window accounting for material temperature and air flow rate, while capturing cavity pressure, stretch-rod reaction force and preform surface strain. This data was then used to assess the accuracy of the correlating FE simulation constructed using ABAQUS/Explicit solver and an appropriate viscoelastic material subroutine. Results reveal that the simulation is able to give good quantitative correlation for conditions where the deformation was predominantly equal biaxial whilst qualitative correlation was achievable when the mode of deformation was predominantly sequential biaxial. Overall the simulation was able to pick up the general trends of how the pressure, reaction force, strain rate and strain vary with the variation in preform temperature and air flow rate. The knowledge gained from these analyses provides insight into the mechanisms of bottle formation, subsequently improving the blow moulding simulation and allowing for reduction in future development costs.
机译:注射拉伸吹塑成型是一种形成薄壁容器的良好方法,并且已广泛研究了多年。本文涉及验证自由拉伸流程的有限元分析,以促进聚(对苯二甲酸乙二醇酯)的注射拉伸吹塑成型的发展。通过实验在宽的过程窗口占材料温度和空气流速的宽处理窗口上进行广泛的数据,同时捕获腔压力,拉伸棒反应力和预成型表面应变。然后使用该数据来评估使用ABAQUS /显式求解器和适当的粘弹性材料子程序构建的相关FE模拟的准确性。结果表明,模拟能够为变形主要相等的条件提供良好的定量相关性,而当变形模式主要是连续的双轴时,可以获得定性相关性。总的来说,模拟能够拿起压力,反作用力,应变率和应变如何随着预制件温度和空气流速的变化而变化的一般趋势。这些分析中获得的知识提供了对瓶形成机制的洞察,随后改善了吹塑模拟并允许降低未来的开发成本。

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