This paper reports on the activities of a joint research work carried out by two Laboratories: Machining Technology Laboratory at the Fraunhofer Institute for Machine Tools and Forming Technology (IWU), Chemnitz, Germany, and Laboratory for Advanced Production Technology (LAPT) at the Dept. of Materials and Production Engineering, University of Naples Federico II, Italy. The joint research work comprised the generation, detection, and conditioning of cutting force sensor signals obtained during turning of Ti alloys with variable cutting parameters generating different process conditions. Advanced signal processing, feature extraction, and neural network based pattern recognition were carried out with the aim to achieve the reliable and robu...
Machining of titanium alloys is characterised by extremely rapid tool wear due to the high cutting t...
Machining of titanium alloys is characterised by extremely rapid tool wear due to the high cutting t...
Nickel-Titanium (Ni-Ti) alloys are very difficult-to-machine materials causing notable manufacturing...
This paper reports on the activities of a joint research work carried out by two Laboratories: Machi...
This paper focuses on the development and application of sensor monitoring of machining processes ca...
In this paper, sensor monitoring and advanced signal processing are applied for process optimisation...
This paper focuses on the development and application of sensor monitoring of machining processes ca...
The principal roadblocks to the industrial implementation of NiTi alloy products are given by the di...
The principal roadblocks to the industrial implementation of NiTi alloy products are given by the di...
The development and application of sensor monitoring and advanced signal processing during turning o...
In this paper, multiple sensor monitoring applications for process optimisation during machining of ...
Nickel-titanium (Ni-Ti) alloys are characterized by unique mechanical properties including superelas...
In recent years, the utilization of sensor monitoring systems during the machining has been widely a...
AbstractIn the cutting zone of a machining process, several variables are influenced by process cond...
In the cutting zone of a machining process, several variables are influenced by process conditions: ...
Machining of titanium alloys is characterised by extremely rapid tool wear due to the high cutting t...
Machining of titanium alloys is characterised by extremely rapid tool wear due to the high cutting t...
Nickel-Titanium (Ni-Ti) alloys are very difficult-to-machine materials causing notable manufacturing...
This paper reports on the activities of a joint research work carried out by two Laboratories: Machi...
This paper focuses on the development and application of sensor monitoring of machining processes ca...
In this paper, sensor monitoring and advanced signal processing are applied for process optimisation...
This paper focuses on the development and application of sensor monitoring of machining processes ca...
The principal roadblocks to the industrial implementation of NiTi alloy products are given by the di...
The principal roadblocks to the industrial implementation of NiTi alloy products are given by the di...
The development and application of sensor monitoring and advanced signal processing during turning o...
In this paper, multiple sensor monitoring applications for process optimisation during machining of ...
Nickel-titanium (Ni-Ti) alloys are characterized by unique mechanical properties including superelas...
In recent years, the utilization of sensor monitoring systems during the machining has been widely a...
AbstractIn the cutting zone of a machining process, several variables are influenced by process cond...
In the cutting zone of a machining process, several variables are influenced by process conditions: ...
Machining of titanium alloys is characterised by extremely rapid tool wear due to the high cutting t...
Machining of titanium alloys is characterised by extremely rapid tool wear due to the high cutting t...
Nickel-Titanium (Ni-Ti) alloys are very difficult-to-machine materials causing notable manufacturing...