• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (9): 113-120.

• 论文 • 上一篇    下一篇

面向零件切削性评价的数控机床精度特性重要度耦合识别技术

萨日娜;张树有;刘晓健   

  1. 浙江大学流体动力与机电系统国家重点实验室;内蒙古工业大学机械学院
  • 发布日期:2013-05-05

Identification of Accuracy Characteristics Importance of Machine Tool for Parts Machinability Evaluation

Sarina;ZHANG Shuyou;LIU Xiaojian   

  1. State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University College of Mechanical Engineering, Inner Mongolia University of Technology
  • Published:2013-05-05

摘要: 针对数控机床精度变化过程与零件切削加工过程之间具有关联性特点,提出面向零件切削性评价的数控机床精度特性重要度耦合识别方法。将数控机床精度变化过程与切削加工过程看作一个耦合系统,构建耦合系统隐马尔可夫链(Hidden Markov model, HMM)模型。对零件切削特性参数实测数据进行改进支持矢量机学习(Support vector machine, SVM)与回归拟合,利用各切削特性实测值与拟合值的相对误差,划分各切削特性状态,构造耦合系统状态转移矩阵。以耦合系统最佳切削特性状态为目标,形成零件切削性评价模型,利用改进量子遗传算法(Quantum genetic algorithm, QGA),实现隐马尔可夫模型的参数估计,确定各切削特性重要度。给出零件各切削特性与数控机床各精度特性关联模糊判断矩阵,借助质量功能展开(Quality function deployment, QFD),识别出数控机床精度特性相对重要度。最后以实例验证方法的可行性和有效性。

关键词: 精度特性识别, 切削性评价, 数控机床

Abstract: Motivated by the coupling relationship between the machine tools accuracy variation process and parts cutting process, an identification method is developed, which addresses key accuracy characteristics of machine tools for parts machinability evaluation. Hidden Markov model (HMM) is constructed via regarding the accuracy variation process and cutting process as a coupling system. The coupling system state transition matrix consists of the state transition matrix for each cutting characteristics and their importance vector. The state of each cutting characteristics is given capitalizing on the relative error between the measured data and fitted value calculated from improved support vector machine (SVM). Additionally, parts machinability evaluation model is formulated, proposed to get the optimal cutting characteristic state for coupling system. Cutting characteristic importance vector is determined by the parameters estimation of HMM, taking advantage of improved quantum genetic algorithm (QGA). Meanwhile, accuracy characteristics of machine tools are identified through quality function deployment (QFD), based on the fuzzy associated matrix of coupling system and cutting characteristics importance vector. An example is given to verify the feasible and effectiveness of the method.

Key words: Identification of accuracy characteristic, Machinability evaluation, Machine tool

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