Abstract: This paper investigates and evaluates the chip area in horizontal path strategy (upward and downward) in ball nose end milling, for different workpiece inclination angle, using 3D-CAD software. A minimum workpiece inclination angle to avoid cutting at the tip of the cutter is defined such the angle between cutter axis and surface normal. The result of analysis between the chip area and the inclination angle has been shown in graphics, for one cutting edge rotation. The cutting force on the tool edge is in proportion with the chip area and using this study, can be predicted the inclination angle and direction of milling to improve the cutting performance
International audienceIn order to obtain desired surface quality, the machining parameters such as f...
International audienceThe determination of the chip thickness in 5-axis ball end milling is most fun...
© Published under licence by IOP Publishing Ltd. There investigated the direction of chip flow on th...
Abstract: Vertical cutter path orientations strategy is investigated and evaluated in this 3D-CAD st...
In this paper, the chip area by a ball end milling for an inclined surface with a contour path metho...
Computer-Aided Manufacturing (CAM) occupies an increasingly important role in engineering with all i...
This paper deals with the cutting mechanism and cutting performance by oval end milling of an inclin...
Abstract: The objective of this study is to give emphasis about some aspects in geometric analysis o...
International audienceComputer-Aided Manufacturing (CAM) occupies an increasingly important role in ...
Most often contoured surfaces inclined at several inclinations are generated using ball-end milling ...
This paper clarifies the geometric generating mechanism of chip and machined surface in consideratio...
This paper presents the method to calculate the geometries of instantaneous chip in five-axis millin...
Summarization: In the cutting process with ball end milling tools, especially for free-formed surfac...
This work deals with problems of tool axis inclination angles in ball-end milling. Tool axis inclina...
This study demonstrates theoretical approaches useful for practical determination of machining condi...
International audienceIn order to obtain desired surface quality, the machining parameters such as f...
International audienceThe determination of the chip thickness in 5-axis ball end milling is most fun...
© Published under licence by IOP Publishing Ltd. There investigated the direction of chip flow on th...
Abstract: Vertical cutter path orientations strategy is investigated and evaluated in this 3D-CAD st...
In this paper, the chip area by a ball end milling for an inclined surface with a contour path metho...
Computer-Aided Manufacturing (CAM) occupies an increasingly important role in engineering with all i...
This paper deals with the cutting mechanism and cutting performance by oval end milling of an inclin...
Abstract: The objective of this study is to give emphasis about some aspects in geometric analysis o...
International audienceComputer-Aided Manufacturing (CAM) occupies an increasingly important role in ...
Most often contoured surfaces inclined at several inclinations are generated using ball-end milling ...
This paper clarifies the geometric generating mechanism of chip and machined surface in consideratio...
This paper presents the method to calculate the geometries of instantaneous chip in five-axis millin...
Summarization: In the cutting process with ball end milling tools, especially for free-formed surfac...
This work deals with problems of tool axis inclination angles in ball-end milling. Tool axis inclina...
This study demonstrates theoretical approaches useful for practical determination of machining condi...
International audienceIn order to obtain desired surface quality, the machining parameters such as f...
International audienceThe determination of the chip thickness in 5-axis ball end milling is most fun...
© Published under licence by IOP Publishing Ltd. There investigated the direction of chip flow on th...