TY - GEN
T1 - Research on the adaptive machining technology of blisk
AU - Zhang, D. H.
AU - Zhang, Y.
AU - Wu, B. H.
PY - 2009
Y1 - 2009
N2 - Due to different datum position and inevitable distortion from the linear friction welding process, the nominal CAD model from the design stage is no longer suitable for the use of the final NC machining, and that is the main problem for precisely machining complex blisk. In this paper, an adaptive machining approach based on adaptive process model for high precision manufacturing of blisk is proposed and developed. Comparing the nominal model with the inspection result, adaptive process model is reconstructed to describe workpiece localization, allowance distribution and composite error compensation for NC machining of blisk accurately. Firstly, the transformation matrix for allowance optimization is searched fleetly by genetic algorithm with constraint conditions. Secondly, using the cross-section curve blending and deformation compensation method, adaptive model for shape distortion is constructed to solve the part-to-part variation machining problem and to realize precision machining for complex geometry blisk. Finally, based on the adaptive process model, tool paths used for the last NC machining process can then be adaptively generated to implement the different processes work. Example shows that the adaptive machining technology of blisk is feasible and the result is of high precision and efficiency.
AB - Due to different datum position and inevitable distortion from the linear friction welding process, the nominal CAD model from the design stage is no longer suitable for the use of the final NC machining, and that is the main problem for precisely machining complex blisk. In this paper, an adaptive machining approach based on adaptive process model for high precision manufacturing of blisk is proposed and developed. Comparing the nominal model with the inspection result, adaptive process model is reconstructed to describe workpiece localization, allowance distribution and composite error compensation for NC machining of blisk accurately. Firstly, the transformation matrix for allowance optimization is searched fleetly by genetic algorithm with constraint conditions. Secondly, using the cross-section curve blending and deformation compensation method, adaptive model for shape distortion is constructed to solve the part-to-part variation machining problem and to realize precision machining for complex geometry blisk. Finally, based on the adaptive process model, tool paths used for the last NC machining process can then be adaptively generated to implement the different processes work. Example shows that the adaptive machining technology of blisk is feasible and the result is of high precision and efficiency.
KW - Adaptive machining
KW - Adaptive process model
KW - Blisk
KW - Cross-section curve blending
KW - Linear friction welding
UR - http://www.scopus.com/inward/record.url?scp=70350509327&partnerID=8YFLogxK
U2 - 10.4028/www.scientific.net/AMR.69-70.446
DO - 10.4028/www.scientific.net/AMR.69-70.446
M3 - 会议稿件
AN - SCOPUS:70350509327
SN - 0878493263
SN - 9780878493265
T3 - Advanced Materials Research
SP - 446
EP - 450
BT - 8th CHINA-JAPAN International Conference on Ultra-Precision Machining, CJICUPM2008
T2 - CHINA-JAPAN International Conference on Ultra-Precision Machining, CJICUPM2008
Y2 - 24 November 2008 through 25 November 2008
ER -