• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (10): 111-117.

• 论文 • 上一篇    下一篇

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基于参考功率曲线的大型工件加工进度状态信息的自动采集新方法

刘飞;刘军;何彦   

  1. 重庆大学机械传动国家重点实验室;重庆大学机械工程学院
  • 发布日期:2009-10-15

Automatic Collection Method of Machining Progress Information for Large-size Workpieces Based on Reference Power Curve

LIU Fei; LIU Jun; HE Yan   

  1. The State Key Laboratory of Mechanical Transmission, Chongqing University School of Mechanical Engineering, Chongqing University
  • Published:2009-10-15

摘要: 大型工件是大型装备制造业生产过程中常见的加工件,管理和调度人员掌握现场大型工件加工进度信息,对加工任务的按时完成,提高加工效率,优化生产过程管理,支持动态优化调度等具有多方面的重要意义。大型工件加工时间长,且许多情况是单件加工,因此加工进度状态信息的自动采集比较困难。基于此,提出一种利用机床主传动系统功率信息进行大型工件加工进度状态信息采集的方法。该方法通过所事先测得的机床主传动系统启动功率和空载功率数据库,以及工件加工工艺所确定的切削用量、加工材料和过程时间等参数,可获得虽不十分精确但足够反映出形状特征的工件加工过程的参考功率曲线;加工中对工件加工过程的机床主传动系统功率曲线进行实时采集,将采集到的功率曲线与参考功率曲线进行形状特征上的定性比较和时间过程的定量比较,可获取该工件的加工进度状态信息。在某冶金装备制造车间大型工件加工过程的应用验证表明,上述方法具有很好的应用前景。

关键词: 功率监控, 机械加工, 进度

Abstract: Large-size workpieces are the common parts in the large equipment manufacturing industry. It is very significant for management staff to know the on-site machining progress information of the large-size workpieces in order to ensure the timely completion of jobs, improve production efficiency, optimize production management and support dynamic optimal schedule. Because the machining period of a large-size workpiece is long and in many cases only a single workpiece is machined, it is difficult to automatically collect the machining progress information. Based on this, the automatic collection method of machining progress information for large-size workpieces is proposed by using the power consumption information of the machine tool’s main transmission system. The reference power curve of the machining workpiece is established based on the starting power database and the idle power database of the spindle transmission system of machine tools, which is obtained in advance, and the relative machining parameters, such as cutting parameters, workpiece material, and process time. Although the reference power curve is not exactly precise, the shape of the curve is enough to reflect the machining process of the workpiece. The machining progress information of the workpiece is collected by comparing the real-time data power curve with the reference power curve. The qualitative information is obtained by comparison of the shape characteristics of the two power curves , and the quantitative progress data is calculated by analyzing the time of the two power curve. The case study of machining the large-size workpiece in a certain metallurgical equipment manufacturing workshop shows the method is practical.

Key words: Machining, Power monitoring, Progress

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