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An efficient NC tool path planning approach [PDF]

open access: yesSixth International Conference on Computational Intelligence and Multimedia Applications (ICCIMA'05), 2005
One major problem encountered in NC machining is that cutting load fluctuates in twisty tool paths and increases momentarily when milling concave corners where stock material concentrates.
Chan, KW, Tsui, KS
core   +3 more sources

Instructional planning and new technologies in teacher education: the initial phase of a research project [PDF]

open access: yesItalian Journal of Educational Technology, 2018
The purpose of this work is to present the initial phase of a research project focused on the integration of technologies in the education of kindergarten and primary school student teachers through instructional planning.
Laura Messina   +3 more
doaj   +4 more sources

Elastic-contact-based tool-path planning for free-form surface in belt grinding

open access: yesAdvances in Mechanical Engineering, 2019
As for the fact that the majority of current researches take the technology of tool-path planning for free-form surface only as a geometrical problem, which is not suitable for belt grinding because of the elastic deformation of the grinding belt that ...
Junde Qi, Bing Chen
doaj   +2 more sources

Iso-level tool path planning for free-form surfaces [PDF]

open access: yesCAD Computer Aided Design, 2014
The aim of tool path planning is to maximize the efficiency against some given precision criteria. In practice, scallop height should be kept constant to avoid unnecessary cutting, while the tool path should be smooth enough to maintain a high feed rate. However, iso-scallop and smoothness often conflict with each other.
Bailin Deng
exaly   +4 more sources

A Robotic Deburring Methodology for Tool Path Planning and Process Parameter Control of a Five-Degree-of-Freedom Robot Manipulator

open access: yesApplied Sciences, 2019
Industrial robotics is a continuously developing domain, as industrial robots have demonstrated to possess benefits with regard to robotic automation solutions in the industrial automation field.
Wanjin Guo   +5 more
doaj   +3 more sources

AMMap tool for additive manufacturing design, alloy discovery, and path planning

open access: yesJPhys Materials
Compositionally complex materials (CCMs), such as functionally graded materials (FGMs) made by additive manufacturing (AM) often form undesired phases or cracks, negatively affecting the build.
Alexander M Richter   +4 more
doaj   +2 more sources

Iso-parametric tool-path planning for point clouds [PDF]

open access: yesComputer-Aided Design, 2013
16 pages, 12 ...
Qiang Zou, Jibin Zhao
openaire   +2 more sources

Investigation on Tool Path Planning Algorithm of Propeller Blade Double-Sided Collaborative Machining

open access: yesApplied Sciences, 2023
The concomitant vibration and deformation produced by propeller blades in single-sided machining seriously affect the surface machining precision. Double-sided symmetrical machining can improve system rigidity through mutual shoring on both sides which ...
Rui Wang, Yuhao Ge, Xiangyu Guo
doaj   +1 more source

A High-Efficiency Impeller Channel Quasi-Triangular Tool Path Planning Method Based on Template Trajectory Mapping [PDF]

open access: yesXibei Gongye Daxue Xuebao, 2018
The manufacturing technology of an integral impeller is an important indicator for measuring the manufacturing capability of a country. Its manufacturing process involves complex free-form surface machining, a time consuming and error-prone process, and ...

doaj   +1 more source

An energy saving approach for rough milling tool path planning [PDF]

open access: yesComputer-Aided Design and Applications, 2015
AbstractFor a specific machine configuration, energy consumption in a rough milling process is strongly affected by three parameters: axial depth of cut, radial depth of cut and feed rate. On the other hand, feed rate is also physically constrained by a critical cutting force value. Based on these concerns, we establish an energy consumption formula as
Xue, Ke, Tang, Kai
openaire   +5 more sources

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