AbstractThe heat fluxes generated by cutting processes lead to thermal deformations in the tools. Particularly, in precision machining it is essential to know the amount of the process heat and its distribution of heat fluxes into tool, workpiece and chips. This paper presents an extended methodology for the calculation of these heat fluxes in machining operations. Additionally, by comparison of experimental results with finite element simulations, the thermally caused tool center point (TCP) displacements in turn-milling operations are discussed. Furthermore, the influence of cooled air on TCP displacements is shown
The presented paper describes an experiment dealing with the deformation of a milling tool caused by...
The paper considers the transfer of process heat to the three main-components involved in the cuttin...
Cooling lubricants have a significant influence on the thermal state of a machine tool. The fluid ab...
AbstractThe heat fluxes generated by cutting processes lead to thermal deformations in the tools. Pa...
The trends of machining difficult-to-machine materials and of dry machining or MQL lead to high temp...
AbstractThe trends of machining difficult-to-machine materials and of dry machining or MQL lead to h...
WOS: 000412800400019It is possible to increase the machined workpiece accuracy and productivity duri...
Challenges for machining include greater and greater material removal rates coupled with an increase...
Tool temperature variation in flank milling usually causes excessive tool wear, shortens tool life, ...
AbstractDuring the finishing milling process of thin-walled workpieces, deformations occur due to th...
AbstractImproving performance during fine turn-milling operations including accuracy and productivit...
It is possible to increase the machined workpiece accuracy and productivity during turn-milling oper...
According to an international status report, up to 70% of the errors in cutting production can be tr...
AbstractAccording to an international status report, up to 70% of the errors in cutting production c...
AbstractDuring machining mechanical energy is dissipated into heat by frictional processes and plast...
The presented paper describes an experiment dealing with the deformation of a milling tool caused by...
The paper considers the transfer of process heat to the three main-components involved in the cuttin...
Cooling lubricants have a significant influence on the thermal state of a machine tool. The fluid ab...
AbstractThe heat fluxes generated by cutting processes lead to thermal deformations in the tools. Pa...
The trends of machining difficult-to-machine materials and of dry machining or MQL lead to high temp...
AbstractThe trends of machining difficult-to-machine materials and of dry machining or MQL lead to h...
WOS: 000412800400019It is possible to increase the machined workpiece accuracy and productivity duri...
Challenges for machining include greater and greater material removal rates coupled with an increase...
Tool temperature variation in flank milling usually causes excessive tool wear, shortens tool life, ...
AbstractDuring the finishing milling process of thin-walled workpieces, deformations occur due to th...
AbstractImproving performance during fine turn-milling operations including accuracy and productivit...
It is possible to increase the machined workpiece accuracy and productivity during turn-milling oper...
According to an international status report, up to 70% of the errors in cutting production can be tr...
AbstractAccording to an international status report, up to 70% of the errors in cutting production c...
AbstractDuring machining mechanical energy is dissipated into heat by frictional processes and plast...
The presented paper describes an experiment dealing with the deformation of a milling tool caused by...
The paper considers the transfer of process heat to the three main-components involved in the cuttin...
Cooling lubricants have a significant influence on the thermal state of a machine tool. The fluid ab...