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Dynamics of Machines and Hydraulic Systems

48,14 €*

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Produktnummer: 189fc280f55adc4fe7b99d8424b109a7cc
Autor: Karpenko, Mykola Stosiak, Michal
Themengebiete: damping energy frequency hydraulic mechanics numerical simulation pressure pulsation vibration vibroisolation
Veröffentlichungsdatum: 14.03.2025
EAN: 9783031555275
Sprache: Englisch
Seitenzahl: 179
Produktart: Kartoniert / Broschiert
Verlag: Springer International Publishing
Untertitel: Mechanical Vibrations and Pressure Pulsations
Produktinformationen "Dynamics of Machines and Hydraulic Systems"
The subject of this book is to examine the influence of mechanical vibration on the changes in the pressure pulsation spectrum of hydraulic systems. In book shows that machines and equipment equipped with hydraulic systems are a source of vibration with a wide frequency spectrum. Additionally, hydraulic valves are also exposed to vibration. Vibrations of the substrate on which the hydraulic valve is installed force the control element of the hydraulic valve to vibrate. The control element's vibration produced in this way causes changes in the pressure pulsation spectrum of the hydraulic system. A friction model modified using mixed friction theory can be used for the oscillating motion of the hydraulic directional control spool. Passive vibration isolation methods are proposed to reduce valve vibration. The biomimetic approach can be implemented in hydraulic systems (for pipelines) to reduce mechanical vibration and fluid pulsation. Numerical methods are employed to analyze the effectof changes in the pressure pulsation spectrum on the hydraulic efficiency of the pipelines. Examples are provided for the implementation of numerical methods in the calculation of hydraulic components and systems. Additionally, the effects of energy-saving in hydraulic systems by applying the proposed results overview in the current book. The current book will be interesting for both–scientific and manufacturing staff, since the implementation of knowledge can help to design more substantiable construction of machine hydraulic systems to avoid vibration problems.

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