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MODELLING THE HEAT DURING THE INJECTION STRETCH BLOWING MOULDING: INFRARED HEATING AND BLOWING MODELLING

机译:在注射拉伸吹塑过程中对热量进行建模:红外加热和吹塑过程

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Effects of temperature: initial heating conditions or self heating during the process, are very important during the injection stretch blow moulding (ISBM) process of PET bottles. The mechanical characteristics of the final products, which are mainly controlled by the final thickness and the orientation of the molecular chains, depend strongly on the process temperature. Modelling the heat transfer during the ISBM process is therefore necessary. In the first part of this paper, an experimental study is presented in order to measure the initial temperature distribution and to identify the thermal properties of the PET. An infrared camera has been used to determine the surface temperature distribution of the PET sheets which are heated by infrared (IR) lamps. The Monte Carlo method is used to identify the parameters best fit from the temperature evolution. In the second part, a thermo-viscohyperelastic model is used to predict the PET behaviour, taking into account the strain rate and temperature dependence. A finite element approach implemented in matlab is used to achieve the numerical simulation.
机译:温度的影响:过程的初始加热条件或过程中的自加热,在PET瓶的注射拉伸吹塑(ISBM)过程中非常重要。最终产品的机械特性主要取决于加工温度,而机械特性主要由分子链的最终厚度和方向控制。因此,有必要在ISBM过程中对传热进行建模。在本文的第一部分中,进行了一项实验研究,以测量初始温度分布并确定PET的热性能。红外照相机已经被用于确定由红外(IR)灯加热的PET片材的表面温度分布。蒙特卡罗方法用于根据温度变化确定最适合的参数。在第二部分中,考虑了应变速率和温度依赖性,使用热粘超弹性模型来预测PET的行为。在matlab中实现的有限元方法用于实现数值模拟。

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