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基于气压传动和触摸屏的智能烫印机研发

Research and Development of Intelligent Hot Stamping Machine Based on Pneumatic Transmission and Touch Screen
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摘要 针对当前烫印机采用薄膜轻触面板型人机界面交互性差、无网络功能、信息化和自动化水平低等问题,设计开发了一种新型智能烫印机。采用基于T5内核的串口电容触摸屏,实现了烫印工艺多模式交叉配置,提升了设备适应当前小批量定制化生产需求的能力。基于T5触摸屏集成的网络接口,实现了远程监控、算法升级、网络化生产管理。嵌入式控制系统以STM32F10系列32位高性能微控制器为核心,集成了烫印胶头温度测控模块和伺服电机驱动模块。采用UL2068达林顿管全数字化驱动气缸,高速全自动完成移印过程。实践应用表明:所开发的烫印机性能稳定,实现了烫印工艺、烫头恒温、伺服电机、高速气缸高性能一体化全自动控制。该烫印机集成度高,触摸屏显示界面友好,能够实现网络化控制与管理,具有广阔的工程应用前景。 The current hot stamping machine with thin film touch panel is imperfect,for which the poor human-machine interface is equipped.As being short and/or meagre of network function and information and automation level,a new type of intelligent hot stamping machine is designed and developed.In view of serial port capacitive touch screen with T5 kernel to realize multi-mode cross configuration of hot stamping process,the ability satisfying the current needs of small batch customized production is enhanced.Based on the integrated network interface of T5 touch screen,the remote monitoring,algorithm upgrade and network production management functions of the hot stamping machine are realized.The embedded control system takes STM32F10 series 32-bit high-performance microcontroller as the core,integrates the temperature measurement and control module of hot stamping glue head and the servo motor drive module,the fully automatic printing process with high speed is realized,at which UL2068 Darlington tube is adopted to drive the cylinder fully digitized.The practical application shows that the developed hot stamping machine possesses stable performance to realize the hot stamping process.With hot head constant temperature,servo motor,high-speed cylinder and high-performance integrated automatic control,the system combines many advantages in one.The touch screen display interface is friendly to realize networked control and management.This system possesses broad engineering application prospects.
作者 任雯 赖森财 曾显杰 张宗铄 REN Wen;LAI Sencai;ZENG Xianjie;ZHANG Zongshuo(Key Laboratory of Equipment Intelligence Control,Sanming 365004,China;School of Mechanical & Electronic Engineering,Sanming University,Sanming 365004,China;Sanming Hengshun Printing Machinery Co. ,Ltd. ,Sanming 365001,China)
出处 《自动化仪表》 CAS 2020年第5期79-83,87,共6页 Process Automation Instrumentation
基金 福建省工业引导性重点基金资助项目(2019H0034)。
关键词 烫印机 气压传动 触摸屏 网络化控制 恒温控制 伺服控制 Hot stamping machine Pneumatic drive Touch screen Networked control Thermostatic control Servo control
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  • 1蒋高明.经编针织物生产技术[M].北京:中国纺织出版社,2010:711-713.
  • 2王文进,蒋高明.经编多速电子送经系统控制过程与控制算法[J].纺织学报,2007,28(9):110-113. 被引量:7
  • 3蒋高明.现代经鳊工艺与设备[M].北京:中国纺织出版社,2001.
  • 4KARL MAYER. Documentation of electric equipment for RSE- 5EL[M]. KARL MAYER Co., 2010.
  • 5Akyildiz I F, Su W, Sankarasubramaniam Y, et al. Wireless sensor networks: A survey[J]. Computer Networks, 2002, 38(4): 393-442.
  • 6IEC/PAS 62591Ed. 1. WirelessHART(HART7.1)[S].
  • 7ISA100 Committee. ISA100, Wireless systems for automation[EB/OL]. [2014-12-22]. http://www.isa.org/isal00.
  • 8Wei L, Zhang X, Xiao Y, et al. Survey and experiments of WlA-PA specification of industrial wireless network[J]. Wireless Communications and Mobile Computing, 2011, 11(8): 1197-1212.
  • 9Garone E, Sinopoli B, Goldsmith A, et al. LQG control for MIMO systems over multiple erasure channels with perfect acknowledgment[J]. IEEE Trans on Automatic Control, 2012, 57(2): 450-455.
  • 10Imer O C, Yiiksel S, Basar T. Optimal control of LTI systems over unreliable communication links[J]. Automatica, 2006, 42(9): 1429-1439.

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