By Stanislav S. Makhanov
This ebook offers new optimization algorithms designed to enhance the potency of device paths for five-axis NC machining of sculptured surfaces. The ebook covers either the constitution of the SLAM challenge commonly and proposes a brand new tremendous effective strategy. it may be utilized by undergraduate and graduate scholars and researchers within the box of NC machining and CAD/CAM in addition to through company examine teams for complicated optimization of slicing operations.
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Additional info for Advanced Numerical Methods to Optimize Cutting Operations of Five Axis Milling Machines (Springer Series in Advanced Manufacturing)
126] Weck, M. and Ye, G. H. 1990. Sharp corner tracking using the IKF control strategy. Annals CIRP, 39(1):437–441.  Woo, T. C. 1994. Visibility maps and spherical algorithms. ComputerAided Design, 26(1):6–16.  Xu, X. , Zhang, Y. , Loh, H. , and Wong, Y. S. 2002. Tool-path generation for ﬁve-axis machining of free-form surfaces based on accessibility analysis. International Journal of Production Research, 40(14):3253–3274. -C. C. 1996. Automatic cutter selection for ﬁve-axis sculptured surface machining.
The initial tool spindle axis is considered as the initial orientation to determine the cutting tool posture for which the variation of rotational axes of the ﬁve-axis machine tool will be reduced. Hsueh et al.  propose to prevent the collisions using the two stages: the ﬁrst stage is to obtain the tilting and collision-free angle range in the plane that is normal to the tool path obtained. Next, a checking cone generated from this collision-free tool axis range is used for the second collision check.
Journal of manufacturing science and engineering, 120(2):425–432. -C. and Yang, D. C. H. 1993. Nearly arc-length parameterized quintic-spline interpolation for precision machining. Computer-Aided Design, 25(5):281–288. , and Bedi, S. 1998. Intersection approach to multi-point machining of sculptured surfaces. Computer Aided Geometric Design, 15(6):567–584. , and Bedi, S. 2000. Multi-point tool positioning strategy for 5-axis machining of sculptured surfaces. Computer Aided Geometric Design, 17(1):83–100.
Advanced Numerical Methods to Optimize Cutting Operations of Five Axis Milling Machines (Springer Series in Advanced Manufacturing) by Stanislav S. Makhanov