2021
DOI: 10.1007/978-3-030-91327-4_20
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Simulation of an Absorber of Vibration in Turning

Abstract: This paper presents an interest in simulating a dynamic absorber of vibration for turning. A mathematical model of a turning machining system is presented in the form of a single-mass model with one degree of freedom in the direction of cutting depth and the effect of elastic displacement on the cutting width. The dynamic absorber of vibration is presented as one mass rigidly connected to the tool and linear damper. The mathematical model of the machining system with a dynamic absorber of vibration considers t… Show more

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Cited by 1 publication
(2 citation statements)
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“…This approach indicates the importance of applying mathematical methods to create an adequate model of the machining. The best results of applying passive methods using vibration absorbers were obtained with a two-mass model and frequency approaches using numerical methods [6].…”
Section: Problem Status Analysismentioning
confidence: 99%
See 1 more Smart Citation
“…This approach indicates the importance of applying mathematical methods to create an adequate model of the machining. The best results of applying passive methods using vibration absorbers were obtained with a two-mass model and frequency approaches using numerical methods [6].…”
Section: Problem Status Analysismentioning
confidence: 99%
“…When boring, a cutting force arises and its component F y causes an elastic displacement of MS, as a result of which the actual depth of cut H a will differ from the specified one. In addition, during cutting, oscillations occur, which can only be described taking into account the dynamic properties of MS with loops feedback connections, when using a system's approach to representing the cutting process [6]. To compile a mathematical model, it is necessary to use a functional diagram (Fig.…”
Section: Mathematical Model Of Machining For Holes Boringmentioning
confidence: 99%