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Measurement and Estimation of Temperature Distribution inside Core and Cavity of the Mold Using Virtual Micro sensors

机译:使用虚拟微传感器测量和芯片内芯和空腔温度分布的测量和估计

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The objective of this paper is to research to use a few MEMS (Micro Electron Mechanical System) temperature sensors for measurement and estimation of temperature distribution in the core and cavity of the mold during injection molding process. Decreasing the number of MEMS temperature sensors inside the core and cavity will reduce the cost for making product and still calibrate precisely. In this study, we describe the injection molding process equation with Hele-Shaw theory. And then we use simulation software to find the temperature values of the plastic flow in the mold wall. Using heat transfer and experimental error correction, we can deduce the actual temperature distribution inside core and cavity of the mold. Finally, account for comparing with deduction and experimental results from embedded micro temperature sensors, correct simulative data can verify our system as indicated above.
机译:本文的目的是研究使用一些MEMS(微电子机械系统)温度传感器,用于在注射成型过程中测量和估计模具芯和腔中的温度分布。减少芯和腔内的MEMS温度传感器的数量将降低制造产品的成本,并且仍然精确校准。在这项研究中,我们描述了具有Hele-Shaw理论的注射成型过程方程。然后我们使用仿真软件找到模具墙壁中塑料流动的温度值。使用传热和实验误差校正,我们可以推导芯和模具腔内的实际温度分布。最后,考虑到与嵌入式微温传感器的扣除和实验结果进行比较,正确的模拟数据可以如上所述验证我们的系统。

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