The dynamics of a milling robot have a significant impact on machining efficiency and quality. Traditional experimental modal analysis (EMA) is used to study the dynamics of milling robots in the static state. However, the dynamic properties of milling robots change when they are in the operational state. To investigate the dynamics of milling robots during cutting, operational modal analysis (OMA) is used. During normal cutting, milling robots are primarily excited by cutting forces that are dominated by amplitude and frequency-modulated (AM-FM) harmonic components that are caused by the fluctuation of cutting loads and spindle speeds. Such cutting forces make the dynamic parameters identified by OMA inaccurate. To address this issue, the ...
Prediction of process stability in milling is usually based on experimental frequency response funct...
Operational modal analysis (OMA) makes possible a characterisation of the dynamic behaviour during o...
The demand for the usage of industrial robots for milling applications has surged owing to their sup...
L’identification des paramètres modaux des machines-outils et des robots d’usinage, en service, cons...
A common approach for the experimentally estimation of modal parameters is the Experimental Modal An...
The identification of the modal parameters of machining robots in service has a significant adverse ...
The operational modal analysis (OMA) can be employed in the field of machine tools to measure the dy...
International audienceThe requirement of high performance in the industry have led to the introducti...
The operational modal analysis, OMA, allows estimating the dynamic properties of a structure, natura...
AbstractDynamic properties of machine-tool structures are likely to change under machining condition...
The prediction of modal parameters of a machine-tool structure is important for an accurate knowledg...
Chatter vibrations encountered in machining can degrade surface finish and damage the machining hard...
Operational Modal Analysis (OMA) is widely employed and became an industrial standard technique for ...
Prediction of process stability in milling is usually based on experimental frequency response funct...
Conventional material removal systems, like CNC milling machines, have proven to be very effective a...
Prediction of process stability in milling is usually based on experimental frequency response funct...
Operational modal analysis (OMA) makes possible a characterisation of the dynamic behaviour during o...
The demand for the usage of industrial robots for milling applications has surged owing to their sup...
L’identification des paramètres modaux des machines-outils et des robots d’usinage, en service, cons...
A common approach for the experimentally estimation of modal parameters is the Experimental Modal An...
The identification of the modal parameters of machining robots in service has a significant adverse ...
The operational modal analysis (OMA) can be employed in the field of machine tools to measure the dy...
International audienceThe requirement of high performance in the industry have led to the introducti...
The operational modal analysis, OMA, allows estimating the dynamic properties of a structure, natura...
AbstractDynamic properties of machine-tool structures are likely to change under machining condition...
The prediction of modal parameters of a machine-tool structure is important for an accurate knowledg...
Chatter vibrations encountered in machining can degrade surface finish and damage the machining hard...
Operational Modal Analysis (OMA) is widely employed and became an industrial standard technique for ...
Prediction of process stability in milling is usually based on experimental frequency response funct...
Conventional material removal systems, like CNC milling machines, have proven to be very effective a...
Prediction of process stability in milling is usually based on experimental frequency response funct...
Operational modal analysis (OMA) makes possible a characterisation of the dynamic behaviour during o...
The demand for the usage of industrial robots for milling applications has surged owing to their sup...