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Novel three-dimensional in-cavity transient temperature measurements in injection molding and fluid-assisted injection molding

机译:注塑和流体辅助注塑中新颖的三维腔内瞬态温度测量

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This report presents novel experimental set-ups which allow the measurement of three-dimensional temperature fields in the depths of injection molding cavities throughout molding cycles. Two specific molds equipped with two types of temperature measuring devices, i.e., a mesh type device consisting of thermocouples mounted on metal wires and a tubular type device consisting of tubular needles guiding embedded micro-thermocouples inside the cavities, have been designed and built. Temperature distributions in both injection molding and fluid assisted injection molding processes, including gas and water assisted injection molding, were measured and recorded by a data acquisition system on a personal computer. It was found that the tubular type device induced much less flow disturbance and provided accurate temperature profiles. Among the processes, the water assisted injection molding process required the least time to cool the parts, followed by gas assisted injection molding and conventional injection molding. In addition, the experimental results also suggested that the shear heating by viscous dissipation in the runners leads to a significant increase in melt temperature. A precise measurement of the in-depth temperature profile can be helpful to better understand the molding phenomena. to validate numerical simulation results, as well as to optimize the parameters for the molding processes. (C) 2008 Elsevier Ltd. All rights reserved.
机译:该报告提出了新颖的实验装置,可以在整个模制周期中测量注射模腔深度内的三维温度场。已经设计并制造了两种配备有两种类型的温度测量装置的特定模具,即由安装在金属线上的热电偶组成的网状装置和由在腔体内引导嵌入式微热电偶的管状针组成的管状装置。通过数据采集系统在个人计算机上测量和记录注塑成型和流体辅助注塑成型工艺(包括气体和水辅助注塑成型)中的温度分布。已经发现,管状装置引起的流动干扰小得多,并且提供了准确的温度分布。在这些过程中,水辅助注射成型过程需要最少的时间来冷却零件,然后是气体辅助注射成型和常规注射成型。另外,实验结果还表明,在流道中由于粘性耗散而产生的剪切加热导致熔体温度显着升高。精确测量深度温度曲线有助于更好地了解成型现象。验证数值模拟结果,以及优化成型工艺的参数。 (C)2008 Elsevier Ltd.保留所有权利。

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