Machining of difficult-to-cut materials like Ti6Al4V titanium alloy leads to significant flank wear on the cutting tool. In order to ensure the respect of final part specifications, flank wear has to be controlled. In literature, predictive models had been developed. However, these models can be enhanced by taking into account new parameters depending on the part geometry. This study deals with the analysis of the contact radius effect on flank wear. Results highlight that the contact radius favors the flank wear. Afterwards, a phenomenological model is proposed and improves flank wear modelling.Thèse CIFRE avec Safra
The application of titanium alloys are increasingly seen at aerospace, marine, bio-medical and preci...
AbstractIn machining, wear formation changes the effective geometry of the cutting edge which direct...
Classical orthogonal and oblique cutting are the fundamental material removal or machining processes...
Machining of difficult-to-cut materials like Ti6Al4V titanium alloy leads to significant flank wear ...
AbstractMachining of difficult-to-cut materials like Ti6Al4V titanium alloy leads to significant fla...
Cutting forces are representative data to characterize machining operations.They have to be known to...
Current constraints on aeronautical parts have led to the introduction of materials like titanium al...
AbstractCutting forces are representative data to characterize machining operations.They have to be ...
In order to control complex parts industrialization, cutting forces can be relevant data. Although c...
In this paper, contact conditions between a tool and a workpiece material for wear-simulating turnin...
Machining wear models are useful for the prediction of tool life and the estimation of machining pro...
Owing to its ultra-hardness, polycrystalline diamond (PCD) is ideal for the machining of difficult-t...
The paper describes one teaching unit - tool wear, which is studied at laboratory classes in the Met...
This paper reports a fundamental investigation consisting of systematic trials into the response of ...
Understanding the effects of tool wear is critical to predicting tool life, the point at which tool ...
The application of titanium alloys are increasingly seen at aerospace, marine, bio-medical and preci...
AbstractIn machining, wear formation changes the effective geometry of the cutting edge which direct...
Classical orthogonal and oblique cutting are the fundamental material removal or machining processes...
Machining of difficult-to-cut materials like Ti6Al4V titanium alloy leads to significant flank wear ...
AbstractMachining of difficult-to-cut materials like Ti6Al4V titanium alloy leads to significant fla...
Cutting forces are representative data to characterize machining operations.They have to be known to...
Current constraints on aeronautical parts have led to the introduction of materials like titanium al...
AbstractCutting forces are representative data to characterize machining operations.They have to be ...
In order to control complex parts industrialization, cutting forces can be relevant data. Although c...
In this paper, contact conditions between a tool and a workpiece material for wear-simulating turnin...
Machining wear models are useful for the prediction of tool life and the estimation of machining pro...
Owing to its ultra-hardness, polycrystalline diamond (PCD) is ideal for the machining of difficult-t...
The paper describes one teaching unit - tool wear, which is studied at laboratory classes in the Met...
This paper reports a fundamental investigation consisting of systematic trials into the response of ...
Understanding the effects of tool wear is critical to predicting tool life, the point at which tool ...
The application of titanium alloys are increasingly seen at aerospace, marine, bio-medical and preci...
AbstractIn machining, wear formation changes the effective geometry of the cutting edge which direct...
Classical orthogonal and oblique cutting are the fundamental material removal or machining processes...