An intelligent control system for drying aluminum foil composite paper semi-finished products and a control method thereof

By dividing the aluminum foil composite paper drying process into functional zones and combining it with an intelligent control system, the problems of low efficiency and unstable quality in traditional drying technology have been solved. This has enabled precise drying control with high efficiency and low energy consumption, thereby improving product quality and production stability.

CN122411084APending Publication Date: 2026-07-17HUZHOU JINJIE IND CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HUZHOU JINJIE IND CO LTD
Filing Date
2026-06-17
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional aluminum foil composite paper drying technology is difficult to dynamically adjust according to the material state, resulting in low drying efficiency, unstable product quality, high energy consumption, and a lack of self-diagnosis and self-adaptive adjustment capabilities, which affects the continuity and stability of production.

Method used

The drying chamber is divided into a preheating zone, a constant temperature curing zone, and a gradient cooling equilibrium zone. Combined with a multi-source sensor acquisition unit and a central intelligent control unit, it achieves precise control. It is equipped with an independent air supply and return system and a temperature control system, and has a heat recovery mechanism and self-diagnosis and adaptive adjustment capabilities. The drying parameters are dynamically adjusted through a multi-objective collaborative optimization model.

Benefits of technology

It enables precise drying of aluminum foil composite paper, improves physical and mechanical properties and safety, reduces energy consumption, and increases production efficiency and product quality stability.

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Abstract

本发明公开了一种铝箔复合纸半成品烘干智能化调控系统及其调控方法,涉及铝箔复合纸生产制造技术领域,本发明通过划分预热升温区、恒温固化区、梯度降温平衡区,并设置独立的送风回风子系统与温控子系统,实现了对烘干过程的精准控制;同时,结合多源传感采集单元实时采集的工况参数与物料在线状态参数,以及中央智能调控单元内置的多目标协同优化调控模型,能够根据预设的产品质量阈值动态调整烘干参数,确保胶黏剂充分交联固化、有害溶剂彻底挥发、纸基含水率精准控制,进而使铝箔复合纸具有更好的物理机械性能和安全性;此外,该系统还具备热能回收机制和自诊断、自适应调节能力,有效降低了能耗和运行成本,提高了生产效率和产品质量稳定性。
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