In the most recent decades the introduction of unconventional machining processes allowed the development of micromachining techniques. In this work, the influence of material microstructures on the micromilling process was investigated. Ti6Al4V alloy was selected as workpiece material since it is a very common material for micro applications and because its duplex microstructure can be easily changed by proper thermal treatments. Four different microstructures (namely bimodal, fully equiaxed, fully lamellar and mill annealed) were obtained through recrystallization annealing treatments carried out at different times and temperatures. The mechanical properties of the samples were assessed by microhardness measurements. Nano-indentations wer...
Titanium alloys are known to produce shear-localized chips during machining, resulting in cyclic var...
The formation of serrated chips is an important feature during machining of difficult-to-cut materia...
peer reviewedAdditive manufacturing (AMing) is an expanding technique that enables producing complex...
In the most recent decades the introduction of unconventional machining processes allowed the develo...
This study investigates the influence of materials' microstructural characteristics, including grain...
The aim of this paper is to study the influence of a Ti6Al4V microstructure on cutting forces during...
AbstractThis paper studies the micromilling of Ti-6Al-4V titanium alloy. The main objective of this ...
Micromilling is one of the technologies that is currently widely used for the production of microcom...
Machining of aerospace and biomedical grade titanium alloys has always been a challenge because of t...
Micromilling is one of the technologies that is currently widely used for the production of microcom...
The paper deals with micro mechanical machining process of Ti6Al4V alloy. A comparison between addit...
Dry machining was conducted on Ti-6Al-4V alloy with three different types of microstructure: globula...
Current mechanical forming processes used in the production of surgical Ti6Al-4V ELI devices create ...
International audienceThe current work deals with the analysis of mechanisms involved during the mac...
Micro-Machining has gained greater visibility over time, due to the trends that industries are showi...
Titanium alloys are known to produce shear-localized chips during machining, resulting in cyclic var...
The formation of serrated chips is an important feature during machining of difficult-to-cut materia...
peer reviewedAdditive manufacturing (AMing) is an expanding technique that enables producing complex...
In the most recent decades the introduction of unconventional machining processes allowed the develo...
This study investigates the influence of materials' microstructural characteristics, including grain...
The aim of this paper is to study the influence of a Ti6Al4V microstructure on cutting forces during...
AbstractThis paper studies the micromilling of Ti-6Al-4V titanium alloy. The main objective of this ...
Micromilling is one of the technologies that is currently widely used for the production of microcom...
Machining of aerospace and biomedical grade titanium alloys has always been a challenge because of t...
Micromilling is one of the technologies that is currently widely used for the production of microcom...
The paper deals with micro mechanical machining process of Ti6Al4V alloy. A comparison between addit...
Dry machining was conducted on Ti-6Al-4V alloy with three different types of microstructure: globula...
Current mechanical forming processes used in the production of surgical Ti6Al-4V ELI devices create ...
International audienceThe current work deals with the analysis of mechanisms involved during the mac...
Micro-Machining has gained greater visibility over time, due to the trends that industries are showi...
Titanium alloys are known to produce shear-localized chips during machining, resulting in cyclic var...
The formation of serrated chips is an important feature during machining of difficult-to-cut materia...
peer reviewedAdditive manufacturing (AMing) is an expanding technique that enables producing complex...