Machining processes are characterized by high dynamic and states of deformation. With the use of simulation technology different machining processes have been analyzed and have shown reliable results. However, the simulation of sawing process has been carried out in very few cases. In order to analyze the saw processes and identify process optimization potentials, the present work contains the results of finite-element (FE) simulations of circular saw processes designed in LS-Dyna. The effects of the variation of the cutting speed and tooth feed on the process forces, temperature development and the chip formation, are shown by the results of these simulations
Despite crucial efforts invested into computational methods, explicit dynamics simulation of cutting...
Simulation of the machining process is a widespread technique to predict the optimal parameters for ...
The circular saw blade is widely applied in rock processingits cutting performance significantly imp...
The commercial success of a new product is influenced by the time to market. Shorter product lead-ti...
The commercial success of a new product is influenced by the time to market. Shorter product lead-ti...
In this paper, Finite Element Analysis (FEA) used DEFORMTM 3D to construct 6061 aluminum sawing simu...
In this paper, Finite Element Analysis (FEA) used DEFORMTM 3D to construct 6061 aluminum sawing simu...
The paper deals with the evaluation of the static stiffness and strength, which are critical paramet...
The operating speed of circular saws is limited by the natural frequencies of the saw. Current me...
This Master’s thesis process list of different finite element programs, which allows us to simulate ...
To improve the static and dynamic properties of circular saw blades, residual stresses in the steel ...
Finite element simulations are intended to predict the effects of the technological parameters on th...
The circular saw blade is widely applied in rock processingits cutting performance significantly imp...
The circular saw blade is widely applied in rock processingits cutting performance significantly imp...
This project deals with modelling and simulation of side milling using Finite Element Analysis. The ...
Despite crucial efforts invested into computational methods, explicit dynamics simulation of cutting...
Simulation of the machining process is a widespread technique to predict the optimal parameters for ...
The circular saw blade is widely applied in rock processingits cutting performance significantly imp...
The commercial success of a new product is influenced by the time to market. Shorter product lead-ti...
The commercial success of a new product is influenced by the time to market. Shorter product lead-ti...
In this paper, Finite Element Analysis (FEA) used DEFORMTM 3D to construct 6061 aluminum sawing simu...
In this paper, Finite Element Analysis (FEA) used DEFORMTM 3D to construct 6061 aluminum sawing simu...
The paper deals with the evaluation of the static stiffness and strength, which are critical paramet...
The operating speed of circular saws is limited by the natural frequencies of the saw. Current me...
This Master’s thesis process list of different finite element programs, which allows us to simulate ...
To improve the static and dynamic properties of circular saw blades, residual stresses in the steel ...
Finite element simulations are intended to predict the effects of the technological parameters on th...
The circular saw blade is widely applied in rock processingits cutting performance significantly imp...
The circular saw blade is widely applied in rock processingits cutting performance significantly imp...
This project deals with modelling and simulation of side milling using Finite Element Analysis. The ...
Despite crucial efforts invested into computational methods, explicit dynamics simulation of cutting...
Simulation of the machining process is a widespread technique to predict the optimal parameters for ...
The circular saw blade is widely applied in rock processingits cutting performance significantly imp...