TY - GEN
T1 - A localization model for snubber machining of precision forging blade
AU - Yang, Jian Hua
AU - Zhang, Ding Hua
AU - Wu, Bao Hai
AU - Zhang, Ying
PY - 2014
Y1 - 2014
N2 - The compressor blades of aero-engines are usually produced with precision forging technology to get net-shape free-form surface of the blades. Due to the complex shape of blade snubber, it's very difficult to get net-shape for it. While, there are still lots of raw material around it, further multi-axis machining is needed. However, without raw material left on blade surfaces, it is very difficult and skill-dependent to design special fixture to localize the blade with its net-shape free-form surface for multi-axis milling. In order to mill blade snubber with high accuracy, a mathematical model for localization precision forging blade with snubber is proposed in this paper. According to the processing characteristic of precision forging blades, a point set selection method based on the CAD model is proposed. In this method, localization transform parameter is obtained by using SVD (Singular Value Decomlocalizing), and solving process is completed by employing iterative nearest point (ICP) algorithm. Finally, a machining simulation experiment is carried out to validate the effectiveness of the proposed method.
AB - The compressor blades of aero-engines are usually produced with precision forging technology to get net-shape free-form surface of the blades. Due to the complex shape of blade snubber, it's very difficult to get net-shape for it. While, there are still lots of raw material around it, further multi-axis machining is needed. However, without raw material left on blade surfaces, it is very difficult and skill-dependent to design special fixture to localize the blade with its net-shape free-form surface for multi-axis milling. In order to mill blade snubber with high accuracy, a mathematical model for localization precision forging blade with snubber is proposed in this paper. According to the processing characteristic of precision forging blades, a point set selection method based on the CAD model is proposed. In this method, localization transform parameter is obtained by using SVD (Singular Value Decomlocalizing), and solving process is completed by employing iterative nearest point (ICP) algorithm. Finally, a machining simulation experiment is carried out to validate the effectiveness of the proposed method.
KW - Iterative nearest point (ICP)
KW - Localization model
KW - Point set selection method
KW - Snubber machining
UR - http://www.scopus.com/inward/record.url?scp=84896293353&partnerID=8YFLogxK
U2 - 10.4028/www.scientific.net/AMR.875-877.1127
DO - 10.4028/www.scientific.net/AMR.875-877.1127
M3 - 会议稿件
AN - SCOPUS:84896293353
SN - 9783037859933
T3 - Advanced Materials Research
SP - 1127
EP - 1132
BT - Material Research and Applications
PB - Trans Tech Publications
T2 - 2012 International Conference on Advanced Material and Manufacturing Science, ICAMMS 2012
Y2 - 20 December 2012 through 21 December 2012
ER -