The self-propelled rotary tool turning (SPRT) process is an economic and effective solution for machining difficult-to-cut materials. This work optimized SPRT parameters, including the inclination angle (A), depth of cut (D), feed rate (f), and turning speed (V) to decrease the total energy consumption (TE) and surface roughness (SR). The turning experiments of the hardened AISI 4150 steel were executed to obtain the experimental data, while the regression method was applied to develop the TE and SR correlations. The entropy method and quantum-behaved particle swarm optimization (QPSO) were utilized to select the weights and optimal factors. The results indicated that the optimal A, D, f, and V were 34 deg., 0.40 mm, 0.47 mm/rev., and 177 m...
Milling is one of the progressive enhancements of miniaturized technologies which has wide range of ...
The machining of stainless steel is of interest because of its corrosion resistance and high strengt...
In the present work, the approach used for the optimization of the process capabilities for Oil&Gas ...
The self-propelled rotary tool turning (SPRT) process is an economic and effective solution for mach...
AbstractThe purpose of the study is to determine the cutting performance of self-propelled rotary to...
The rotary turning is an effective manufacturing method to machine hardened metals due to longer too...
It is necessary to improve the machinability of difficult-to-cut materials such as hardened steel, n...
This paper presents a systematic procedure for the optimization of machining parameters such as cutt...
AbstractThe paper presents some aspects of turning of difficult to machine materials with self-prope...
poster abstractAbstract Turning is a material removal process, a subtractive form of machining whi...
In this study, several series of experiments on turning process of AISI 12L14 free cutting steel cha...
This work aims to model and investigate the effect of cutting speed, feed rate, depth of cut and the...
In this research work, the machinability of turning Hastelloy X with a PVD Ti-Al-N coated insert too...
An attempt was made to evaluate and improve the machining parameters of micro-turning titanium alloy...
Hard turning of difficult-to-cut materials is an economical method of machining components with high...
Milling is one of the progressive enhancements of miniaturized technologies which has wide range of ...
The machining of stainless steel is of interest because of its corrosion resistance and high strengt...
In the present work, the approach used for the optimization of the process capabilities for Oil&Gas ...
The self-propelled rotary tool turning (SPRT) process is an economic and effective solution for mach...
AbstractThe purpose of the study is to determine the cutting performance of self-propelled rotary to...
The rotary turning is an effective manufacturing method to machine hardened metals due to longer too...
It is necessary to improve the machinability of difficult-to-cut materials such as hardened steel, n...
This paper presents a systematic procedure for the optimization of machining parameters such as cutt...
AbstractThe paper presents some aspects of turning of difficult to machine materials with self-prope...
poster abstractAbstract Turning is a material removal process, a subtractive form of machining whi...
In this study, several series of experiments on turning process of AISI 12L14 free cutting steel cha...
This work aims to model and investigate the effect of cutting speed, feed rate, depth of cut and the...
In this research work, the machinability of turning Hastelloy X with a PVD Ti-Al-N coated insert too...
An attempt was made to evaluate and improve the machining parameters of micro-turning titanium alloy...
Hard turning of difficult-to-cut materials is an economical method of machining components with high...
Milling is one of the progressive enhancements of miniaturized technologies which has wide range of ...
The machining of stainless steel is of interest because of its corrosion resistance and high strengt...
In the present work, the approach used for the optimization of the process capabilities for Oil&Gas ...