VIBRATION ANALYSIS OF THE TOOL BEARING SPINDLE IN CASE OF SUPERFINISHING TECHNOLOGIAL PROCESSES ESTABLISHMENT OF THE GENERAL MOVEMENT EQUATIONS

Author:

Popescu Daniel

Abstract

The paper presents a mathematical model for determining the general movement equations that describe the vibration movement of the tool bearer spindle at superfinishing operations. There are presented the specific problems and the work schematics. The mathematical model uses the axioms of kinetic impulse and moment derivatives. At superfinishing, the spindle is eccentric and its working position is vertical. A series of simplifying assumptions are used, such as: Bernoulli’s hypothesis, the movement is without shocks, there are no remnant tensions, the strains are of elastic nature only. There are emphasized the components of the movement equations under restricted matrix form. The effect of transversal contraction and the torsion vibrations are neglected.

Publisher

Granthaalayah Publications and Printers

Subject

Ocean Engineering

Reference5 articles.

1. Bolcu, D., Rizescu, S., La deduction du modelemathematique pour la mouvement spatial des bares composites l’aide du principevariational de Hamilton, Annals of Craiova University, Mechanics II, 1995, pp. 88-89.

2. An Integrated Approach Toward the Dynamic Analysis of High-Speed Spindles: Part I—System Model

3. An Integrated Approach Toward the Dynamic Analysis of High-Speed Spindles: Part 2—Dynamics Under Moving End Load

4. Moraru, V., Ispas, C., Vibrations and Machine Tools Stability, EDP, 1982.

5. Popescu, D., Bolcu, D., Establishment of The Movement Equations Which Define the Vibrations Of The Spindle At Internal Grinding, 10th International DAAAM Symposium, Vienna, Austria, 1999, pp. 445-447.

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