Shape memory alloys (SMA) are widely used in the biomedical field due to their unique properties. Among these alloys, NiTi alloys are the most widely used. Machining process is one of the techniques to form these materials. If the NiTi alloys are mechanically forced to be cut, the crystal lattice structure can change and thus phase transformation can occur. Phase transformation naturally affects cutting forces and tool life. In this study, the milling of NiTi alloy under micro-cutting conditions was investigated experimentally. For this, an experimental setup with high precision and cutting at high cutting speeds was used. A wide range of depth of cut and feed per tooth were used in the study. Thefore, it was tried to determine the chip thi...
AbstractNiTi alloys are extensively used in many industries due to their unique properties such as s...
High-speed milling (HSM) has many advantages over conventional machining. Among these advantages, th...
To optimize the machining process, finding the minimum uncut chip thickness is of paramount importan...
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...
The effects of cutting speed in cryogenic and dry machining on the surface integrity characteristics...
Phase transformation and shape memory response of NiTi alloys are sensitive to the variation of temp...
NiTi shape memory alloys have gained increased interest in various industries, including biomedical ...
AbstractNiTi shape memory alloys have gained increased interest in various industries, including bio...
The NiTi shape memory alloy is attracting more and more attention in the fabrication of micro-electr...
A high-energy ball milling technique was used for production of the equiatomic NiTi alloy. The grind...
This experimental work reports the results of a study addressing tool wear, surface topography, and ...
NiTi alloys are extensively used in many industries due to their unique properties such as super ela...
This study focuses on the effects of various cutting speeds and cutting conditions including dry, CO...
Abstract: Nickel Titanium (NiTi) shape memory alloy is a prominent material for biomedical implants....
AbstractNiTi alloys are extensively used in many industries due to their unique properties such as s...
High-speed milling (HSM) has many advantages over conventional machining. Among these advantages, th...
To optimize the machining process, finding the minimum uncut chip thickness is of paramount importan...
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...
The effects of cutting speed in cryogenic and dry machining on the surface integrity characteristics...
Phase transformation and shape memory response of NiTi alloys are sensitive to the variation of temp...
NiTi shape memory alloys have gained increased interest in various industries, including biomedical ...
AbstractNiTi shape memory alloys have gained increased interest in various industries, including bio...
The NiTi shape memory alloy is attracting more and more attention in the fabrication of micro-electr...
A high-energy ball milling technique was used for production of the equiatomic NiTi alloy. The grind...
This experimental work reports the results of a study addressing tool wear, surface topography, and ...
NiTi alloys are extensively used in many industries due to their unique properties such as super ela...
This study focuses on the effects of various cutting speeds and cutting conditions including dry, CO...
Abstract: Nickel Titanium (NiTi) shape memory alloy is a prominent material for biomedical implants....
AbstractNiTi alloys are extensively used in many industries due to their unique properties such as s...
High-speed milling (HSM) has many advantages over conventional machining. Among these advantages, th...
To optimize the machining process, finding the minimum uncut chip thickness is of paramount importan...