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Induction heating with the ring effect for injection molding plates

机译:感应加热具有环形效果的注塑板

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摘要

Induction heating in injection molding has the advantages of rapid heating, reduced cycle time, and improved product quality. In this research, using both experiment and simulation, externally wrapped coil induction heating was applied to verify the heating capacity of a pair of mold plates. By applying different coil designs and mold gap, the effect of the externally wrapped coil induction heating was evaluated. Results showed that when a serial coil was used as an inductor, the heating rate reached 8.0 ℃/s. From an initial mold temperature of 40 ℃, after 15 s heating, the mold surface temperature reached 159.9 ℃ with the serial coil. The parallel coil shows a better heating uniformity but its heating rate is far lower than the serial coil. For the serial coil, the temperature distribution between the core and cavity plate are almost the same. The heating rate increases from 4.9 ℃/s to 10.6 ℃/s when the inductor design is changed from 5 turns to 7 turns. After 15 s heating, the temperature at point T2 increases from 40 ℃ to 166.7 ℃ and 106.1 ℃ with a mold gap of 1 mm, and 6 mm, respectively.
机译:注射成型中的感应加热具有快速加热,缩短循环时间和提高产品质量的优点。在这项研究中,通过实验和模拟,采用外部包裹的线圈感应加热来验证一对模板的加热能力。通过应用不同的线圈设计和模具间隙,评估了外包装线圈感应加热的效果。结果表明,当使用串联线圈作为电感器时,加热速率达到8.0℃/ s。从40℃的初始模具温度开始,经过15 s的加热,串联线圈使模具表面温度达到159.9℃。并联线圈显示出更好的加热均匀性,但其加热速率远低于串联线圈。对于串联线圈,铁芯和空腔板之间的温度分布几乎相同。当电感器设计从5匝变为7匝时,加热速率从4.9℃/ s增加到10.6℃/ s。加热15 s后,T2点的温度从40℃升高到166.7℃和106.1℃,模具间隙分别为1 mm和6 mm。

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  • 作者单位

    Department of Mechanical Engineering, National Central University, Taiwan, ROC;

    Department of Mechanical Engineering, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC,R&D Center for Membrane Technology, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC,R&D Center for Mold and Molding Technology, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC;

    Department of Mechanical Engineering, National Central University, Taiwan, ROC;

    Department of Mechanical Engineering, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC,R&D Center for Membrane Technology, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC,R&D Center for Mold and Molding Technology, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC;

    Department of Mechanical Engineering, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC,R&D Center for Membrane Technology, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC,R&D Center for Mold and Molding Technology, Chung Yuan Christian University, Chung-Li 32023, Taiwan, ROC;

    Department of Mechanical Engineering, National Central University, Taiwan, ROC;

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

    dynamic mold temperature control; induction heating; inductor design;

    机译:动态模具温度控制;感应加热电感设计;

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