TY - JOUR
T1 - Kinematics characteristic analysis for typical turn-mill parts machining
AU - Chen, Xiao Hua
AU - Liu, Zhi Bing
AU - Wang, Xi Bin
AU - Li, Zhong Xin
AU - Wu, Yi
PY - 2013/7
Y1 - 2013/7
N2 - To determine the tool position relative to the workpiece in machining of typical turn-mill parts, an analysis method for kinematics characteristic of typical turn-mill parts machining was presented. Based on analyzing the configuration of the turn-mill machine tool, the kinematics chain was determined, and the kinematics model was found according to the modified D-H notation. The form-shaping function matrixes were derived based on forward kinematics and inverse kinematics. Through the transformation of homogeneous coordinates, the tool position relative to the workpiece in different feature machining of turn-mill parts was described, and the kinematics functions of each axis were obtained by combining with the form-shaping function matrixes. Thus, the kinematics characteristic in turn-mill machining was analyzed by proposed function. Through an example of kinematics characteristic analysis of non-coaxial turn-mill part, the effectiveness of this methodology was proved to analyze the tool position relative to the workpiece and the movement of each axis in turn-mill machining.
AB - To determine the tool position relative to the workpiece in machining of typical turn-mill parts, an analysis method for kinematics characteristic of typical turn-mill parts machining was presented. Based on analyzing the configuration of the turn-mill machine tool, the kinematics chain was determined, and the kinematics model was found according to the modified D-H notation. The form-shaping function matrixes were derived based on forward kinematics and inverse kinematics. Through the transformation of homogeneous coordinates, the tool position relative to the workpiece in different feature machining of turn-mill parts was described, and the kinematics functions of each axis were obtained by combining with the form-shaping function matrixes. Thus, the kinematics characteristic in turn-mill machining was analyzed by proposed function. Through an example of kinematics characteristic analysis of non-coaxial turn-mill part, the effectiveness of this methodology was proved to analyze the tool position relative to the workpiece and the movement of each axis in turn-mill machining.
KW - Form-shaping function matrixes
KW - Homogeneous coordinate transformation
KW - Kinematics characteristic analysis
KW - Modified D-H notation
KW - Turn-mill parts
UR - http://www.scopus.com/inward/record.url?scp=84882737981&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:84882737981
SN - 1006-5911
VL - 19
SP - 1569
EP - 1576
JO - Jisuanji Jicheng Zhizao Xitong/Computer Integrated Manufacturing Systems, CIMS
JF - Jisuanji Jicheng Zhizao Xitong/Computer Integrated Manufacturing Systems, CIMS
IS - 7
ER -