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基于PC-PLC通信的摩擦焊机网络控制系统 被引量:1

Networked control system of friction welding machine based on PC-PLC communication
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摘要 为适应目前工业控制系统网络化的发展,降低控制系统成本,建立了一种摩擦焊机网络控制系统,并进行串口通信实时性和稳定性的研究。主控制站采用工业控制计算机(IPC),从控制站采用三菱FX系列可编程控制器(PLC),计算机闭环控制过程中的开关量信号通过串口通信在两站间实时传送。测试结果表明:网络性能与串口通信程序的优化程度、PLC性能和通信速率密切相关。若采用FX3U PLC,通信速率115.2 kbps,通信过程约在5.8 ms完成。现场应用表明,采用此网络控制系统,摩擦焊机系统的运行速度高、投资小、系统运行稳定可靠。 To accommodate the developing of the networked industrial control system ,and to reduce the cost of hardware of the control system ,networked control system of friction welding machine was set up ,then real-time and stability of serial port communication was researched.The main control station is the industrial control computer,and the subordinate control station is Mitsubish FX Programmable I^gic Controller.The digitalsignals in the process of computer closed-loop control system are transmitted through serial communication between two stations in real-time.Data statistical analysis showed that networked performance is closely related with optimization degree of serial port communication program, PLC performance and communication rata.The communication process can be completed in 5.8 milliseconds using FX3U PLC and 115.2 kbps communication rata.The actual production showed that using networked control system, the friction welding system has high running speed,small investment,running tably and reliably.
出处 《电焊机》 北大核心 2012年第6期35-38,共4页 Electric Welding Machine
基金 国家自然科学基金资助项目(51175430)
关键词 摩擦焊机 网络控制 串口通信 实时性 friction welding machine network control serial port communication real-time
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  • 1王喜锋,杜随更,龚城,燕南飞.摩擦焊机液压施力系统压力特性对比分析[J].焊接学报,2006,27(12):37-41. 被引量:7
  • 2杜随更,王喜锋,燕南飞,龚城.摩擦焊机电液比例减压施力系统压力特性分析[J].机械科学与技术,2007,26(1):31-34. 被引量:3
  • 3徐淑华 程退安 姚万生.单片微型机原理及应用[M].哈尔滨:哈尔滨工业大学出版社,1999..
  • 4Drews P,Schmidt J.Freedback Control in Friction Welding Operation of Computer and Micro processor Units to Enlargen[J]. The Field of Application, 1980(5) : 1-9.
  • 5Donohue J J.The friction welding advantage[J].Welding Journal, 2001,80(5) : 30-34.
  • 6Draugelates U, Schram A, Kettler C.Welding of magnesium alloys[J].Magnesium Industry, 2000,1 (3) : 41-45.
  • 7Bayindir R,Ates H.Comparison of the constructed control methods for a friction-welding machine[J].Materials and Manufacturing Processes, 2005,20(2) : 131-146.
  • 8Ed Brinksma,Angelika Mader, Ansgar Fehnker.Verification and optimization of a PLC control schedule[J].International Journal on Software Tools for Technology Transfer (STTT), 2004(2) :21-33.
  • 9林谦.摩擦焊接计算机闭环控制技术研究[J].西北工业大学学报,1993,11:147-151.
  • 10John G Searle.Friction welding apparatus.United States Patent [P].US005853119A. 1998:54-68.

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