In the present work, an explicit finite element (FE) model was developed for predicting cutting forces and chip morphologies of polymers from the true stress–strain curve. A dual fracture process was used to simulate the cutting chip formation, incorporating both the shear damage failure criterion and the yield failure criterion, and considering the strain rate effect based on the Johnson–Cook formulation. The frictional behaviour between the cutting tool and specimen was defined by Coulomb’s law. Further, the estimated cutting forces and chip thicknesses at different nominal cutting depths were utilized to determine the fracture toughness of the polymer, using an existing mechanics method. It was found that the fracture toughness, cutting ...
International audienceA finite element method has been developed to simulate the cutting process of ...
The purpose of this thesis is to study and evaluate orthogonal cutting as a novel testing method for...
Mechanical properties of the work material are required inputs for any numerical and analytical mode...
In the present investigation, numerical models that accurately predict the chip formation and stress...
International audienceA finite element model has been developed to analyze the chip formation proces...
An experimental campaign has been carried out with the aim of providing an insight into the fracture...
The commercial success of a new product is influenced by the time to market. Shorter product lead-ti...
The prediction of cutting forces is essential to plan machining operations without unstable vibratio...
Carbon fiber reinforced polymer (CFRP) composites possess high specific strength, high specific elas...
An experimental campaign has been carried out with the aim of providing an insight into the fracture...
Carbon fibre reinforced plastics (CFRPs) are susceptible to various cutting damages. An accurate mod...
Prediction of chip form produced during machining process is an important work when considering work...
Cutting processes in machining involves the elastic and plastic formation where a layer of material ...
AbstractCutting analyses incorporating chip bending in addition to shear yielding and fracture tough...
This paper addresses problems of predicting chip formation in high strain machining conditions. A co...
International audienceA finite element method has been developed to simulate the cutting process of ...
The purpose of this thesis is to study and evaluate orthogonal cutting as a novel testing method for...
Mechanical properties of the work material are required inputs for any numerical and analytical mode...
In the present investigation, numerical models that accurately predict the chip formation and stress...
International audienceA finite element model has been developed to analyze the chip formation proces...
An experimental campaign has been carried out with the aim of providing an insight into the fracture...
The commercial success of a new product is influenced by the time to market. Shorter product lead-ti...
The prediction of cutting forces is essential to plan machining operations without unstable vibratio...
Carbon fiber reinforced polymer (CFRP) composites possess high specific strength, high specific elas...
An experimental campaign has been carried out with the aim of providing an insight into the fracture...
Carbon fibre reinforced plastics (CFRPs) are susceptible to various cutting damages. An accurate mod...
Prediction of chip form produced during machining process is an important work when considering work...
Cutting processes in machining involves the elastic and plastic formation where a layer of material ...
AbstractCutting analyses incorporating chip bending in addition to shear yielding and fracture tough...
This paper addresses problems of predicting chip formation in high strain machining conditions. A co...
International audienceA finite element method has been developed to simulate the cutting process of ...
The purpose of this thesis is to study and evaluate orthogonal cutting as a novel testing method for...
Mechanical properties of the work material are required inputs for any numerical and analytical mode...