压铸过程模糊PID热控制系统

Tiebao Yang, Xiang Chen, Henry Hu
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引用次数: 11

摘要

在高压压铸工艺中,适当控制模具温度是生产高质量零件和高生产率的关键。然而,模具温度分布取决于各种模具设计和工艺变量,通常很难获得准确的模型。本文提出了一种新的模具热管理智能控制方案。在该方案中,由泵和电磁阀控制的额外冷却水管连接到每个已建立的冷却通道。设计了模糊PID控制器,使通道间的温度差最小化。讨论了一些实现问题,如延迟。在实验室压铸过程模拟器上的实验结果表明,所开发的控制系统能够将所需的冷却水供应调节到多个冷却线,从而使模具局部温度分布更加均匀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fuzzy PID Thermal Control System for Die Casting Processes
In high-pressure die casting processes, proper control of die temperature is essential for producing superior quality components and yielding high production rates. However, die temperature distribution depends on various die design and process variables for which accurate models are normally very difficult to obtain. In this paper, a new intelligent control scheme is proposed for die thermal management. In this scheme, extra cooling water lines controlled by a pump and solenoid valves are attached to each established cooling channel. A fuzzy PID controller is designed to minimize the temperature differences between channels. Some implementation issues such as latency have been discussed. The experimental results obtained from a laboratory die casting process simulator indicate that the developed control system is capable of adjusting the desired supply of cooling water into multiple cooling lines so that the local temperature distribution of the die insert may become more homogeneous.
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