计算机集成制造系统 ›› 2017, Vol. 23 ›› Issue (第4期): 806-814.DOI: 10.13196/j.cims.2017.04.015

• 产品创新开发技术 • 上一篇    下一篇

基于灰色关联分析的叶片砂带抛光参数优化

张军锋,史耀耀+,蔺小军,段继豪,张宏基,李志山   

  1. 西北工业大学现代设计与集成制造技术教育部重点实验室
  • 出版日期:2017-04-30 发布日期:2017-04-30
  • 基金资助:
    国家科技重大专项基金资助项目(2015ZX04001003)。

Parameters optimization in belt polishing process of blade based on grey relational analysis

  • Online:2017-04-30 Published:2017-04-30
  • Supported by:
    Project supported by the National Science and Technology Major Projects,China(No.2015ZX04001003).

摘要: 针对复杂曲面构件抛光过程中表面粗糙度的最小化与材料去除率的最大化等多目标优化问题,采用正交实验方法设计四因素三水平的钛合金试件数控砂带抛光实验;基于灰色关联分析将多目标优化问题转化为单目标优化问题,利用主成分分析法确定表面粗糙度和材料去除率对灰色关联度的影响权重;通过对实验数据的回归分析,建立灰色关联度与主要抛光工艺参数(砂带粒度、砂带线速度、工件进给速度和抛光深度)的二阶预测模型;基于各工艺参数对表面粗糙度、材料去除率和灰色关联度的影响规律进行分析,确定抛光工艺参数优化方案。利用响应曲面求解工艺参数优化问题并进行叶片抛光实验,结果表明:该优化方法获得的工艺参数组合可在满足表面粗糙度要求的基础上大幅度提高抛光材料去除率。

关键词: 叶片, 砂带抛光, 正交实验, 灰色关联分析, 参数优化, 航空发动机

Abstract: In polishing process of blade and blisk,the minimum of Surface Roughness (SR) and the maximization of Material Removal Rate (MRR) were determined by different process parameters,which could not obtain the optimal result under the condition of empirical parameters.To solve this multi-objective optimization problem,4-factor and 3-level orthogonal polishing experiments for titanium specimens were designed.Based on the grey relational analysis,the multi-objective optimization problem was converted to single objective problem,and the influence weight of SR and MRR on Grey Relational Analysis (GRA) were calculated.By means of regression analysis of the experimental data,the second order prediction model of GRA was developed.Accordingly,the variation of SR,MRR and GRA resulted from the various polishing parameters such as abrasive size,belt speed,workpiece feed rate and polishing depth were researched.Furtherly,the optimization scheme of polishing parameters was put forward.The polishing process parameters were optimized with response surface methodology,and the polishing experiments of blade were carried out.The experimental results showed that the MRR could be improved significantly under the condition of meeting the SR request.

Key words: blade, abrasive belt polishing, orthogonal test, grey relational analysis, parameter optimization, aero-engine

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