AbstractMilling is the one of most common cutting operations in industry. Interrupted nature of the milling process allows use of higher speeds which in turn improves productivity. Cutting temperature is one of the key factors to be investigated in process optimization. In milling, cutting temperature analysis is harder compared to turning due to experimentation difficulties and transient characteristics. In this study, a new experimental technique is proposed to measure the face milling temperatures which are used to verify the analytical model developed. Results indicate a good agreement between the model predictions and dry cutting experiments at different cutting speeds
The paper presents a studyof the effect of operating variable parameter; cutting speed, feed rate, d...
In any cutting process, plastic deformation involved in chip formation and friction between the tool...
In service, milling tools have to cope with severe levels of thermal and mechanical load. Especially...
AbstractMilling is the one of most common cutting operations in industry. Interrupted nature of the ...
Milling is the one of most common cutting operations in industry. Interrupted nature of the milling ...
AbstractThis paper presents a new procedure to evaluate the cutting temperature milling.in HSM. The ...
Cutting temperatures in milling operations have a significant impact on tool wear, size and shape to...
AbstractDramatic tool temperature variation in end milling can cause excessive tool wear and shorten...
The power consumed in metal cutting is largely converted into beat. Several attempts have been made ...
A thermal model has been developed that predicts machining induced workpiece temperatures for periph...
Cutting temperature is very important parameter of cutting process. Around 90% of heat generated dur...
In the paper results of maximum temperatures generated in the cutting zone during milling are prese...
The paper considers one output parameter average temperature as a function of process cutting parame...
This research examines the amount of heat transmitted to the workpiece during the end milling of alu...
AbstractImproving performance during fine turn-milling operations including accuracy and productivit...
The paper presents a studyof the effect of operating variable parameter; cutting speed, feed rate, d...
In any cutting process, plastic deformation involved in chip formation and friction between the tool...
In service, milling tools have to cope with severe levels of thermal and mechanical load. Especially...
AbstractMilling is the one of most common cutting operations in industry. Interrupted nature of the ...
Milling is the one of most common cutting operations in industry. Interrupted nature of the milling ...
AbstractThis paper presents a new procedure to evaluate the cutting temperature milling.in HSM. The ...
Cutting temperatures in milling operations have a significant impact on tool wear, size and shape to...
AbstractDramatic tool temperature variation in end milling can cause excessive tool wear and shorten...
The power consumed in metal cutting is largely converted into beat. Several attempts have been made ...
A thermal model has been developed that predicts machining induced workpiece temperatures for periph...
Cutting temperature is very important parameter of cutting process. Around 90% of heat generated dur...
In the paper results of maximum temperatures generated in the cutting zone during milling are prese...
The paper considers one output parameter average temperature as a function of process cutting parame...
This research examines the amount of heat transmitted to the workpiece during the end milling of alu...
AbstractImproving performance during fine turn-milling operations including accuracy and productivit...
The paper presents a studyof the effect of operating variable parameter; cutting speed, feed rate, d...
In any cutting process, plastic deformation involved in chip formation and friction between the tool...
In service, milling tools have to cope with severe levels of thermal and mechanical load. Especially...