Advanced Numerical Methods to Optimize Cutting Operations of by Stanislav S. Makhanov

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.

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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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C. H. 1994. Constant scallop-height machining of free-form surfaces. ASME Journal of Engineering for Industry, 116(2):253–259. [113] Takata, S. 1989. A cutting simulation system for machinability evaluation using a workpiece model. Anals CIRP, 38(1):417–420. , and Ito, T. 1990. 5-axis control machining based on solid model. Journal of the Japan Society for Precision Engineering, 56(1):111–116. , and Aziz, N. 1998. Efficient slicing for layered manufacturing. Rapid Prototyping Journal, 4(4):151–167.

NURBS: From Projective Geometry to Practical Use. A. K. , Natick, MA, USA. [32] Farouki, R. T. and Neff, C. A. 1995. Hermite interpolation by Pythagorean hodograph quintics. Mathematics of Computation, 64(212):1589– 1609. 18 1 Introduction [33] Farouki, R. T. and Sakkalis, T. 1994. Pythagorean-hodograph space curves. Advances in Computational Mathematics, 2(1):41–66. [34] 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. [13] Blasquez, I. -F. 2004. Undo facilities for the extended z-buffer in NC machining simulation. Computers in Industry, 53(2):193–204. [14] 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. [15] Bohez, E. L. , Makhanov, S. , and Sonthipermpoon, K. 2000b. Adaptive nonlinear tool path optimization for 5-axis machining.

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