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基于模外传感器的热流道薄壁注塑成型零件工艺参数优化与自适应工艺质量控制

Out-of-Mold Sensor-Based Process Parameter Optimization and Adaptive Process Quality Control for Hot Runner Thin-Walled Injection-Molded Parts.

作者信息

Cheng Feng-Jung, Chang Chen-Hsiang, Wen Chien-Hung, Hwang Sheng-Jye, Peng Hsin-Shu, Chu Hsiao-Yeh

机构信息

Department of Mechanical Engineering, National Cheng Kung University, Tainan 701401, Taiwan.

Department of Mechanical and Computer-Aided Engineering, Feng Chia University, Taichung 407102, Taiwan.

出版信息

Polymers (Basel). 2024 Apr 11;16(8):1057. doi: 10.3390/polym16081057.

Abstract

Injection molding is a highly nonlinear procedure that is easily influenced by various external factors, thereby affecting the stability of the product's quality. High-speed injection molding is required for production due to the rapid cooling characteristics of thin-walled parts, leading to increased manufacturing complexity. Consequently, establishing appropriate process parameters for maintaining quality stability in long-term production is challenging. This study selected a hot runner mold with a thin wall fitted with two external sensors, a nozzle pressure sensor and a tie-bar strain gauge, to collect data regarding the nozzle peak pressure, the timing of peak pressure, the viscosity index, and the clamping force difference value. The product weight was defined as the quality indicator, and a standardized parameter optimization process was constructed, including injection speed, / switchover point, packing, and clamping force. Finally, the optimized process parameters were applied to the adaptive process control experiments using the developed control system operated within the micro-controller unit (MCU). The results revealed that the control system effectively stabilized the product weight variation and standard deviation of 0.677% and 0.0178 g, respectively.

摘要

注塑成型是一个高度非线性的过程,很容易受到各种外部因素的影响,从而影响产品质量的稳定性。由于薄壁零件的快速冷却特性,生产需要高速注塑成型,这导致制造复杂性增加。因此,为长期生产中保持质量稳定性建立合适的工艺参数具有挑战性。本研究选择了一个带有薄壁的热流道模具,该模具配备了两个外部传感器,一个喷嘴压力传感器和一个拉杆应变仪,以收集有关喷嘴峰值压力、峰值压力出现时间、粘度指数和锁模力差值的数据。将产品重量定义为质量指标,并构建了一个标准化的参数优化过程,包括注射速度、/切换点、保压和锁模力。最后,使用在微控制器单元(MCU)内运行的开发控制系统,将优化后的工艺参数应用于自适应过程控制实验。结果表明,该控制系统有效地稳定了产品重量变化,其标准偏差分别为0.677%和0.0178克。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf10/11053825/aca833939ffb/polymers-16-01057-g001.jpg

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