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自由锻造液压机锻造工艺参数监测系统开发
英文标题:Development of forging process parameters monitoring system for free forging hydraulic press
作者:苏铁明 张建业 
单位:兰州兰石重工有限公司 
关键词:锻造液压机 锻造工艺 数据采集 Modbus TCP 监测管理 
分类号:TG248
出版年,卷(期):页码:2019,44(1):123-127
摘要:

锻件是装备制造行业的基础构件,其成形质量的优劣直接影响零部件的使用性能及寿命。借助于传感设备对自由锻件成形过程工艺参数进行实时监控,并据此开发了一套工艺参数监测系统,实施工艺调整。重点阐述了系统网络通信结构及软件的开发方法。该系统采用Modbus TCP协议网关传输锻件锻造过程中的生产工艺参数,为工艺人员分析变形速度、成形温度、成形力对锻件质量的影响提供了技术支持,并为相应的工艺改进提供理论依据。本系统可实时动态显示锻件生产过程中的温度、压力、位移、变形量、变形力等参数,并通过Oracle数据库实现历史数据存储检索与导出等功能。本系统可在锻造生产线上进行推广使用。
 

Forging is the basic component of equipment manufacturing industry, and its forming quality directly affects the service performance and life of parts. Based on this, a monitoring system of process parameters was developed by means of sensor equipment to monitor technological parameters during forming process of free forgings in realtime, and the relevant process adjustment was realized. Then, the structure of system network communication and the development method of software were mainly introduced. Furthermore, this system transmits the production process parameters during forging by Modbus TCP protocol gateway to provide technical support for technologists to analyze the influence of deformation speed, forming temperature and forming force on the forging quality and also provides theoretical basis for corresponding process improvement. Thus, this system displayes the parameters of temperature, pressure, displacement, deformation and deformation force during forging production process in real time and dynamically, and realizes the functions of storage, retrieving and exporting historical data through Oracle database. Finally, this system can be widely promoted in the forging production line.

基金项目:
作者简介:
苏铁明(1963-),男,大专,高级工程师,E-mail:13893611401@163.com
参考文献:

[1]赵升吨,张鹏,范淑琴,等. 智能锻压设备及其实施途径的探讨[J].锻压技术,2018,43(7):32-48.


Zhao S D, Zhang P, Fan S Q, et al. Discussion on intelligent forging equipment and approaches of its implementation [J]. Forging & Stamping Technology2018,43(7):32-48.


[2]董蓓蓓,李国俊,张治民,等. 不同工艺参数对某薄板多筋类零件成形的影响及优化[J].锻压技术,2018,43(4):42-46.


Dong B B, Li G J, Zhang Z M, et al. Influence and optimization of different process parameters on forming of a thinplate and multiribbed part [J]. Forging & Stamping Technology2018,43(4):42-46.


[3]陈宇,吕文兵,陆新江. 模锻过程结合机理与数据的智能控制方法[J]. 锻压技术,2017,42(4)170-178.


Chen Y, Lyu W B, Lu X J. Intelligent control method combining mechanism and data in the die forging process[J]. Forging & Stamping Technology, 2017424):170-178.


[4]郑钦,张真真,唐宏芬.基于Modbus/TCP的风机数据采集方案设计[J].网络安全技术与应用,2018, (10):112-120.


Zheng Q, Zhang Z Z, Tang H F. Design of wind turbine data acquisition scheme based on Modbus/TCP [J]. Network Security Technology & Application, 2018, (10):112-120.


[5]李祥琴,罗传军.基于Visual C#Oracle数据库访问方法[J].信息与电脑, 2016, (14):119-120.


Li X Q, Luo C J. Oracle database access method based on Visual C#[J]. China Computer & Communication, 2016, (14):119-120.


[6]杨伟杰.基于ZedGraph的在线动态数据图表绘制[J].软件导刊,2014,13(1):128-130.


Yang W J. Draw online dynamic data charts with ZedGraph[J]. Software Guide, 2014, 13(1):128-130.


[7]甘绪桐,张厚武,何勇,.一种智能环境监测系统的设计与实现[J].计算机技术与发展,2018,(7):1-9.


Gan X T, Zhang H W, He Y, et al. Design and realization of an intelligent environmental monitoring system [J]. Computer Technology and Development, 2018, (7):1-9.


[8]陈德运,高明,李伟,.新型ECT数据采集系统设计与实现[J]. 电机与控制学报, 2013, 17(5):87-92.


Chen D Y, Gao M, Li W, et al. Design and implementation of data acquisition system for the electrical capacitance tomography [J]. Electric Machines and Control, 2013, 17(5):87-92.


[9]杨玉霞,汤金金.太阳能农机发动机监测系统设计——基于智慧农业物联网信息采集[J]. 农机化研究, 2018,40(5):259-263.


Yang Y X, Tang J J. Design of monitoring system for solar energy agricultural machinery engine based on intelligent agriculture information collection [J]. Journal of Agricultural Mechanization Research, 2018, 40(5):259-263.


[10]王云峰.计量数据采集与监测系统的改造及应用[J].自动化与仪器仪表,2015,(11):43-45.


Wang Y F. Modification and application of measurement data acquisition and monitoring system [J]. Automation & Instrumentation, 2015, (11):43-45.

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