Citation: Ziberov, M., Silva, M. B. D., Jackson, M., & Hung, W. N. P. (2016). Effect of Cutting Fluid on Micromilling of Ti-6Al-4V Titanium Alloy. Procedia Manufacturing, 5, 332-347. doi:10.1016/j.promfg.2016.08.029This paper studies the micromilling of Ti-6Al-4V titanium alloy. The main objective of this work is to study the performance of micromill tools in terms of burrs, machined surface and tool wear in machining of Ti-6Al-4V titanium alloy and evaluate the effect of the application of cutting fluid. Experimental micromilling tests with 152.4 μm diameter WC tools were made. The tests were carried out on a four axis CNC milling machine with maximum spindle speed of 60,000 rpm and a resolution of 0.1 μm. To measure the burr height, a pro...
Microstructure and chip formation were evaluated during the step shoulder down-milling of Ti-6Al-4V ...
Titanium and its alloys are difficult-to-cut materials, commonly used in several application fields,...
Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex ...
AbstractThis paper studies the micromilling of Ti-6Al-4V titanium alloy. The main objective of this ...
Micro-Machining has gained greater visibility over time, due to the trends that industries are showi...
Short tool life and rapid tool wear in micromachining of hard-to-machine materials remain a barrier ...
The sustainability of a process is the objective of modern industries aiming to reduce waste in prod...
The aim of this work is to characterize the effect of cooling and lubrication conditions on micromil...
Built-up edge (BUE) is generally known to cause surface finish problems in the micro milling process...
With the rapid development of high-precision-device technology, new demands are put forward for micr...
This paper presents a series of experimental investigations of the effects of various machining cond...
International audiencePure titanium is the ideal metallic material to be used for producing dental i...
This work investigates the micro-milling machinability of Ti-6Al-4V alloy produced by a Laser Engine...
In the most recent decades the introduction of unconventional machining processes allowed the develo...
The influence of the cutting edge micro geometry on cutting process and on tool performance is subje...
Microstructure and chip formation were evaluated during the step shoulder down-milling of Ti-6Al-4V ...
Titanium and its alloys are difficult-to-cut materials, commonly used in several application fields,...
Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex ...
AbstractThis paper studies the micromilling of Ti-6Al-4V titanium alloy. The main objective of this ...
Micro-Machining has gained greater visibility over time, due to the trends that industries are showi...
Short tool life and rapid tool wear in micromachining of hard-to-machine materials remain a barrier ...
The sustainability of a process is the objective of modern industries aiming to reduce waste in prod...
The aim of this work is to characterize the effect of cooling and lubrication conditions on micromil...
Built-up edge (BUE) is generally known to cause surface finish problems in the micro milling process...
With the rapid development of high-precision-device technology, new demands are put forward for micr...
This paper presents a series of experimental investigations of the effects of various machining cond...
International audiencePure titanium is the ideal metallic material to be used for producing dental i...
This work investigates the micro-milling machinability of Ti-6Al-4V alloy produced by a Laser Engine...
In the most recent decades the introduction of unconventional machining processes allowed the develo...
The influence of the cutting edge micro geometry on cutting process and on tool performance is subje...
Microstructure and chip formation were evaluated during the step shoulder down-milling of Ti-6Al-4V ...
Titanium and its alloys are difficult-to-cut materials, commonly used in several application fields,...
Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex ...