This paper focuses on burr formation in micro-end milling of two Nickel-Titanium shape memory alloys (SMA), an austenitic and a martensitic NiTi. Phase transformation during machining was also examined. The experimental design approach was used to study the effect of cutting parameters on burr formation. The studied parameters were cutting speed, feed per tooth, depth and width of cut, 20 machining strategy and initial material phase of the NiTi alloy. Different types of burrs were formed during micro-end milling of NiTi alloys; it was observed that top burrs are the most important. The height of top burrs can reach values close to those of the depth of cut. Burrs were observed and characterized using a Scanning Electron Microscope (SEM), ...
AbstractNiTi alloys are extensively used in many industries due to their unique properties such as s...
The recent technological progressions in industries have offered ascent to the continually growing r...
Superalloys with burr-free parts are most preferably used in biomedical, aerospace, marine and autom...
This paper focuses on burr formation in micro-end milling of two Nickel-Titanium shape memory alloys...
Micro-milling can be defined as milling with end mills smaller than 1 mm of diameter. The top-down a...
Shape memory alloys (SMA) are widely used in the biomedical field due to their unique properties. Am...
AbstractNiTi shape memory alloys have gained increased interest in various industries, including bio...
The existence of burrs may deteriorate the dimensional accuracy and surface finish, decrease the fit...
This paper discussed the investigation of the burr formation in micro end milling process on stainle...
Abstract: Nickel Titanium (NiTi) shape memory alloy is a prominent material for biomedical implants....
AbstractThis paper presents the results on the analysis of micro-burr formation for slot milling of ...
Abstract-This paper presents the burr formation characteristics of workpieces when milled using cutt...
NiTi shape memory alloys have gained increased interest in various industries, including biomedical ...
NiTi alloys have been the focus of Shape Memory Alloys (SMA) research and applications due their exc...
The effects of cutting speed in cryogenic and dry machining on the surface integrity characteristics...
AbstractNiTi alloys are extensively used in many industries due to their unique properties such as s...
The recent technological progressions in industries have offered ascent to the continually growing r...
Superalloys with burr-free parts are most preferably used in biomedical, aerospace, marine and autom...
This paper focuses on burr formation in micro-end milling of two Nickel-Titanium shape memory alloys...
Micro-milling can be defined as milling with end mills smaller than 1 mm of diameter. The top-down a...
Shape memory alloys (SMA) are widely used in the biomedical field due to their unique properties. Am...
AbstractNiTi shape memory alloys have gained increased interest in various industries, including bio...
The existence of burrs may deteriorate the dimensional accuracy and surface finish, decrease the fit...
This paper discussed the investigation of the burr formation in micro end milling process on stainle...
Abstract: Nickel Titanium (NiTi) shape memory alloy is a prominent material for biomedical implants....
AbstractThis paper presents the results on the analysis of micro-burr formation for slot milling of ...
Abstract-This paper presents the burr formation characteristics of workpieces when milled using cutt...
NiTi shape memory alloys have gained increased interest in various industries, including biomedical ...
NiTi alloys have been the focus of Shape Memory Alloys (SMA) research and applications due their exc...
The effects of cutting speed in cryogenic and dry machining on the surface integrity characteristics...
AbstractNiTi alloys are extensively used in many industries due to their unique properties such as s...
The recent technological progressions in industries have offered ascent to the continually growing r...
Superalloys with burr-free parts are most preferably used in biomedical, aerospace, marine and autom...