This paper investigates the machining mechanism of titanium alloys and analyses those understandings systematically to give a solid understanding with latest developments on machining of titanium alloys. The chip formation mechanism and wear of different cutting tools have been analyzed thoroughly based on the available literature. It is found that the deformation mechanism during machining of titanium alloys is complex and it takes place through several processes. Abrasion, attrition, diffusion–dissolution, thermal crack and plastic deformation are main tool wear mechanisms.Alokesh Pramanik, M.N. Islam, Animesh Basak, Guy Littlefai
International audienceAn experimental investigation was conducted in this work to analyze the effect...
International audienceNear-beta titanium alloys like Ti555.3 are increasingly being used in aeronaut...
Titanium alloys like the modern alloy Ti 6Al 2Sn 4Zr 6Mo (Ti-6246) combine excellent specific mechan...
This paper investigates the machining mechanism of titanium alloys and analyses those understandings...
This paper investigates the machining mechanism of titanium alloys and analyses those understandings...
The current work deals with the analysis of mechanisms involved during the machining process of tita...
The current work deals with the analysis of mechanisms involved during the machining process of tita...
International audienceThe current work deals with the analysis of mechanisms involved during the mac...
This article correlates laboratory-based understanding in machining of titanium alloys with the indu...
When machining titanium alloys at cutting speeds higher than 60 m/min using cemented carbide cutting...
Nowadays, titanium has become an important material mainly used in engineering application because o...
The attached document may provide the author's accepted version of a published work. See Citati...
Excessive tool wear and poor machinability is observed in the machining of high strength, near-β tit...
Titanium alloy is widely used in fuselage and gas turbines of aircraft with its high specific streng...
Excessive tool wear and poor machinability is observed in the machining of high strength, near-β tit...
International audienceAn experimental investigation was conducted in this work to analyze the effect...
International audienceNear-beta titanium alloys like Ti555.3 are increasingly being used in aeronaut...
Titanium alloys like the modern alloy Ti 6Al 2Sn 4Zr 6Mo (Ti-6246) combine excellent specific mechan...
This paper investigates the machining mechanism of titanium alloys and analyses those understandings...
This paper investigates the machining mechanism of titanium alloys and analyses those understandings...
The current work deals with the analysis of mechanisms involved during the machining process of tita...
The current work deals with the analysis of mechanisms involved during the machining process of tita...
International audienceThe current work deals with the analysis of mechanisms involved during the mac...
This article correlates laboratory-based understanding in machining of titanium alloys with the indu...
When machining titanium alloys at cutting speeds higher than 60 m/min using cemented carbide cutting...
Nowadays, titanium has become an important material mainly used in engineering application because o...
The attached document may provide the author's accepted version of a published work. See Citati...
Excessive tool wear and poor machinability is observed in the machining of high strength, near-β tit...
Titanium alloy is widely used in fuselage and gas turbines of aircraft with its high specific streng...
Excessive tool wear and poor machinability is observed in the machining of high strength, near-β tit...
International audienceAn experimental investigation was conducted in this work to analyze the effect...
International audienceNear-beta titanium alloys like Ti555.3 are increasingly being used in aeronaut...
Titanium alloys like the modern alloy Ti 6Al 2Sn 4Zr 6Mo (Ti-6246) combine excellent specific mechan...