This paper describes the development of a five-axis tool path generation algorithm for the machining of complex shaped parts using flat-end tools. In order to reduce the machining time and to ensure optimal quality, the step-over is optimized in each tool contact point. This step-over calculation is obtained through the integration of a newly developed algorithm for material removal simulation. The latter is performed by calculating swept volumes which represent tool motions interpolated according to the machine kinematics. The developed algorithm has been implemented for contour like (spiral) strategies and validated through the machining of an industrial example. 2012 CIRP.status: publishe
In 5-axis tool path generation the tool axis is usually selected based on the workpiece geometry onl...
AbstractThis paper presents a method to simultaneously increase the accuracy and decrease the calcul...
The paper presents mathematical methods for tool path planning for five-axis ma-chining based on min...
This paper describes the development of a 5-axis milling tool path generation algorithm based on fac...
Although flat-end multi-axis milling has been proven to be more efficient than ball-end machin...
This paper describes the development and validation of a multi-axis tool path generation algorithm w...
This paper describes the development and validation of a multi-axis tool path generation algorithm w...
In this paper, a novel approach for five-axis toolpath planning taking tool swept volume...
Efficient 5-axis milling of free form surfaces required smart parameter selection and tool path gene...
This paper describes an algorithm that predicts the shape of material removed by a flat-end milling ...
This paper presents the algorithms to generate and simulate non-linear tool path of the five-axis mi...
[[abstract]]© 2008 Elsevier - This paper presents a computation scheme that generates optimized tool...
The generation of collision free NC-programs for multi-axis milling operations is a critical task, w...
AbstractThe smoothness tool path is essential in five-axis high speed machining. However, the smooth...
[[abstract]]© 2008 Springer Verlag - This paper proposes a novel computation method for tool path pl...
In 5-axis tool path generation the tool axis is usually selected based on the workpiece geometry onl...
AbstractThis paper presents a method to simultaneously increase the accuracy and decrease the calcul...
The paper presents mathematical methods for tool path planning for five-axis ma-chining based on min...
This paper describes the development of a 5-axis milling tool path generation algorithm based on fac...
Although flat-end multi-axis milling has been proven to be more efficient than ball-end machin...
This paper describes the development and validation of a multi-axis tool path generation algorithm w...
This paper describes the development and validation of a multi-axis tool path generation algorithm w...
In this paper, a novel approach for five-axis toolpath planning taking tool swept volume...
Efficient 5-axis milling of free form surfaces required smart parameter selection and tool path gene...
This paper describes an algorithm that predicts the shape of material removed by a flat-end milling ...
This paper presents the algorithms to generate and simulate non-linear tool path of the five-axis mi...
[[abstract]]© 2008 Elsevier - This paper presents a computation scheme that generates optimized tool...
The generation of collision free NC-programs for multi-axis milling operations is a critical task, w...
AbstractThe smoothness tool path is essential in five-axis high speed machining. However, the smooth...
[[abstract]]© 2008 Springer Verlag - This paper proposes a novel computation method for tool path pl...
In 5-axis tool path generation the tool axis is usually selected based on the workpiece geometry onl...
AbstractThis paper presents a method to simultaneously increase the accuracy and decrease the calcul...
The paper presents mathematical methods for tool path planning for five-axis ma-chining based on min...