By Jan Awrejcewicz
The e-book is the second one quantity of a suite of contributions dedicated to analytical, numerical and experimental concepts of dynamical platforms, offered on the foreign convention "Dynamical structures: idea and Applications," held in Łódź, Poland on December 7-10, 2015.
The reviews supply deep perception into new views in research, simulation, and optimization of dynamical platforms, emphasizing instructions for destiny examine. largely defined themes lined comprise: bifurcation and chaos in dynamical structures, asymptotic tools in nonlinear dynamics, dynamics in lifestyles sciences and bioengineering, unique numerical tools of vibration research, keep an eye on in dynamical platforms, balance of dynamical platforms, vibrations of lumped and non-stop sytems, non-smooth platforms, engineering structures and differential equations, mathematical methods to dynamical structures, and mechatronics.
Read or Download Dynamical Systems: Theoretical and Experimental Analysis: Łódź, Poland, December 7-10, 2015 PDF
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Additional info for Dynamical Systems: Theoretical and Experimental Analysis: Łódź, Poland, December 7-10, 2015
This paper deals with the modelling and dynamic analysis of a driving system of a real car with a sequential manual transmission. A complex computational model of the sequential gearbox was created and after veriﬁcation it allows to study nonlinear behaviour of the whole driving system. Parametric studies can be performed in order to investigate various qualitative eﬀects of chosen design elements, etc. 1 Introduction Car driving systems are very interesting from the viewpoint of its dynamic behaviour that can be related to a gear mesh of wheels, to variable torques during rapidly changing operating conditions or other impacting design elements.
Example of such modiﬁcation is presented in . 3 µm and maximum resonant frequency of about 6,6 MHz. Cantilever with such parameters is suitable for high speed scanning. The main drawbacks of such improvement methods are very complex manufacturing process of cantilever. Such small and precise mechanical part cannot be produced without expensive specialized equipment. In addition, production process of cantilevers with individual speciﬁc parameters is unproﬁtable. The method is similar to our idea as described in .
Numerical investigation of acoustic ﬁeld in enclosures: Evaluation of active and reactive components of sound intensity. Journal of Sound and Vibration 338, 154–168 (2015) 14. , B. R. Sound waves in rooms. Reviews of Modern Physics 16, 69–150 (1994) 15. , I. : Theoretical acoustics. Mc Graw-Hill, New York (1968) 16. : A note on the prediction of sound intensity. Journal of the Acoustical Society of America 93, 1641–1644 (1993) 17. : A second note on the prediction of sound intensity. Journal of the Acoustical Society of America 97, 691–694 (1995) 18.