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首页> 外文期刊>International Journal of Material Forming >Modelling of the Injection Stretch Blow Moulding of PET Containers via a Pressure-Volume-time (PV-t) Thermodynamic Relationship
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Modelling of the Injection Stretch Blow Moulding of PET Containers via a Pressure-Volume-time (PV-t) Thermodynamic Relationship

机译:通过压力-时间-时间(PV-t)热力学关系对PET容器的注射拉伸吹塑成型进行建模

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摘要

A 2-D isothermal finite element simulation of the injection stretch-blow moulding (ISBM) process for polyethylene terephthalate (PET) containers has been developed via the commercial finite element package ABAQUS/standard. In this work, the blowing air to inflate the PET preform was modelled via two different approaches; a direct pressure input (as measured in the blowing machine) and a constant mass flow rate input (based on a Pressure-Volume-time relationship). These two methods were tested with a simplified stretch blow moulding process where a preform was blown with and without a stretch rod in free air (no mould). The results clearly show that simulation with a constant mass flow rate as input gave an excellent prediction of volume vs. time curve and preform shape evolution when compared with the direct pressure approach. In addition to this, rapid inflation of the PET preform (∼0.03s) was found to occur in the direct pressure approach which was not observed in reality. This result reveals that the constant mass flow rate approach is more appropriate in modelling the blowing stage in ISBM process.
机译:通过商业有限元程序包ABAQUS / standard,已开发出了用于聚对苯二甲酸乙二醇酯(PET)容器的注拉吹塑(ISBM)工艺的二维等温有限元模拟。在这项工作中,通过两种不同的方法对吹塑PET瓶坯的吹气进行了建模。直接压力输入(在吹瓶机中测量)和恒定质量流量输入(基于压力-体积-时间关系)。通过简化的拉伸吹塑工艺对这两种​​方法进行了测试,其中在有和没有拉伸杆的情况下,在自由空气中吹塑预成型坯(无模具)。结果清楚地表明,与直接压力方法相比,以恒定质量流量作为输入进行的模拟可以很好地预测体积与时间的关系曲线以及瓶坯的形状演变。除此之外,发现在直接加压方法中发生了PET瓶坯的快速充气(〜0.03s),这在实际中是没有发现的。该结果表明,恒定质量流率方法更适合于在ISBM工艺中对吹塑阶段进行建模。

著录项

  • 来源
    《International Journal of Material Forming》 |2008年第s1期|799-802|共4页
  • 作者单位

    Queen’s University of Belfast Ashby Building Stranmillis Road Belfast BT9 5AH Ireland;

    Queen’s University of Belfast Ashby Building Stranmillis Road Belfast BT9 5AH Ireland;

    Queen’s University of Belfast Ashby Building Stranmillis Road Belfast BT9 5AH Ireland;

    Queen’s University of Belfast Ashby Building Stranmillis Road Belfast BT9 5AH Ireland;

    Ecole de Mines de Paris CEMEF – UMR CNRS 7635 06904 Sophia Antipolis France;

    Ecole de Mines de Paris CEMEF – UMR CNRS 7635 06904 Sophia Antipolis France;

    Queen’s University of Belfast Ashby Building Stranmillis Road Belfast BT9 5AH Ireland;

    Queen’s University of Belfast Ashby Building Stranmillis Road Belfast BT9 5AH Ireland;

    Queen’s University of Belfast Ashby Building Stranmillis Road Belfast BT9 5AH Ireland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PET; blow moulding; material model;

    机译:PET;吹塑;材料模型;

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