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Accurate evaluation of free-form surface profile error based on quasi particle swarm optimization algorithm and surface subdivision

Authors :
Xiaoqiang Xue
Xiulan Wen
Xiaochu Zhu
Dong-xia Wang
Yibing Zhao
Source :
Chinese Journal of Mechanical Engineering. 26:406-413
Publication Year :
2013
Publisher :
Chinese Journal of Mechanical Engineering, 2013.

Abstract

Although significant progress has been made in precision machining of free-form surfaces recently, inspection of such surfaces remains a difficult problem. In order to solve the problem that no specific standards for the verification of free-form surface profile are available, the profile parameters of free-form surface are proposed by referring to ISO standards regarding form tolerances and considering its complexity and non-rotational symmetry. Non-uniform rational basis spline(NURBS) for describing free-form surface is formulated. Crucial issues in surface inspection and profile error verification are localization between the design coordinate system(DCS) and measurement coordinate system(MCS) for searching the closest points on the design model corresponding to measured points. A quasi particle swarm optimization(QPSO) is proposed to search the transformation parameters to implement localization between DCS and MCS. Surface subdivide method which does the searching in a recursively reduced range of the parameters u and v of the NURBS design model is developed to find the closest points. In order to verify the effectiveness of the proposed methods, the design model is generated by NURBS and the measurement data of simulation example are generated by transforming the design model to arbitrary position and orientation, and the parts are machined based on the design model and are measured on CMM. The profile errors of simulation example and actual parts are calculated by the proposed method. The results verify that the evaluation precision of freeform surface profile error by the proposed method is higher 10%–22% than that by CMM software. The proposed method deals with the hard problem that it has a lower precision in profile error evaluation of free-form surface.

Details

ISSN :
21928258 and 10009345
Volume :
26
Database :
OpenAIRE
Journal :
Chinese Journal of Mechanical Engineering
Accession number :
edsair.doi...........c979c9fb5ffb947579720040e3d12295
Full Text :
https://doi.org/10.3901/cjme.2013.02.406