By Stanislav S. Makhanov
This e-book provides new optimization algorithms designed to enhance the potency of software paths for five-axis NC machining of sculptured surfaces. The e-book covers either the constitution of the SLAM challenge generally and proposes a brand new super 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 via company learn teams for complicated optimization of slicing operations.
Read Online or Download Advanced Numerical Methods to Optimize Cutting Operations of Five Axis Milling Machines (Springer Series in Advanced Manufacturing) PDF
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Additional info for Advanced Numerical Methods to Optimize Cutting Operations of Five Axis Milling Machines (Springer Series in Advanced Manufacturing)
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NURBS: From Projective Geometry to Practical Use. A. K. , Natick, MA, USA.  Farouki, R. T. and Neﬀ, C. A. 1995. Hermite interpolation by Pythagorean hodograph quintics. Mathematics of Computation, 64(212):1589– 1609. 18 1 Introduction  Farouki, R. T. and Sakkalis, T. 1994. Pythagorean-hodograph space curves. Advances in Computational Mathematics, 2(1):41–66.  Farouki, R. , and Wilson, C. S. 2000. Physical constraints on feedrates and feed accelerations along curved tool paths. Computer Aided Geometric Design, 17(4):337–359.
Journal of Materials Processing Technology, 125(4):709–715.  Blasquez, I. -F. 2004. Undo facilities for the extended z-buﬀer in NC machining simulation. Computers in Industry, 53(2):193–204.  Bohez, E. L. , Makhanov, S. , and Sonthipermpoon, K. 2000a. Adaptive non-linear grid tool path optimization for 5-axis machining. International Journal of Production Research, 38(17):4329–4343.  Bohez, E. L. , Makhanov, S. , and Sonthipermpoon, K. 2000b. Adaptive nonlinear tool path optimization for 5-axis machining.