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Insight into magnetorheological shoc...
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Goldasz, Janusz.
Insight into magnetorheological shock absorbers[electronic resource] /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
620.1064
書名/作者:
Insight into magnetorheological shock absorbers/ by Janusz Goldasz, Bogdan Sapinski.
作者:
Goldasz, Janusz.
其他作者:
Sapinski, Bogdan.
出版者:
Cham : : Springer International Publishing :, 2015.
面頁冊數:
xxvii, 224 p. : : ill. (some col.), digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Magnetorheological fluids.
標題:
Engineering.
標題:
Engineering Fluid Dynamics.
標題:
Machinery and Machine Elements.
標題:
Automotive Engineering.
ISBN:
9783319132334 (electronic bk.)
ISBN:
9783319132327 (paper)
內容註:
Introduction -- MR Fluids -- Configurations of MR Dampers -- Modelling of Control Valves -- Damper Modelling -- CFD Study of the Flow of MR Fluids -- Power Drivers -- Experimental Verification of an MR Monotube Damper Model -- Energy Harvesting MR Dampers -- Concluding Remarks.
摘要、提要註:
This book deals with magnetorheological fluid theory, modeling and applications of automotive magnetorheological dampers. On the theoretical side a review of MR fluid compositions and key factors affecting the characteristics of these fluids is followed by a description of existing applications in the area of vibration isolation and flow-mode shock absorbers in particular. As a majority of existing magnetorheological devices operates in a so-called flow mode a critical review is carried out in that regard. Specifically, the authors highlight common configurations of flow-mode magnetorheological shock absorbers, or so-called MR dampers that have been considered by the automotive industry for controlled chassis applications. The authors focus on single-tube dampers utilizing a piston assembly with one coil or multiple coils and at least one annular flow channel in the piston.
電子資源:
http://dx.doi.org/10.1007/978-3-319-13233-4
Insight into magnetorheological shock absorbers[electronic resource] /
Goldasz, Janusz.
Insight into magnetorheological shock absorbers
[electronic resource] /by Janusz Goldasz, Bogdan Sapinski. - Cham :Springer International Publishing :2015. - xxvii, 224 p. :ill. (some col.), digital ;24 cm.
Introduction -- MR Fluids -- Configurations of MR Dampers -- Modelling of Control Valves -- Damper Modelling -- CFD Study of the Flow of MR Fluids -- Power Drivers -- Experimental Verification of an MR Monotube Damper Model -- Energy Harvesting MR Dampers -- Concluding Remarks.
This book deals with magnetorheological fluid theory, modeling and applications of automotive magnetorheological dampers. On the theoretical side a review of MR fluid compositions and key factors affecting the characteristics of these fluids is followed by a description of existing applications in the area of vibration isolation and flow-mode shock absorbers in particular. As a majority of existing magnetorheological devices operates in a so-called flow mode a critical review is carried out in that regard. Specifically, the authors highlight common configurations of flow-mode magnetorheological shock absorbers, or so-called MR dampers that have been considered by the automotive industry for controlled chassis applications. The authors focus on single-tube dampers utilizing a piston assembly with one coil or multiple coils and at least one annular flow channel in the piston.
ISBN: 9783319132334 (electronic bk.)
Standard No.: 10.1007/978-3-319-13233-4doiSubjects--Topical Terms:
605474
Magnetorheological fluids.
LC Class. No.: QC766.M36
Dewey Class. No.: 620.1064
Insight into magnetorheological shock absorbers[electronic resource] /
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Introduction -- MR Fluids -- Configurations of MR Dampers -- Modelling of Control Valves -- Damper Modelling -- CFD Study of the Flow of MR Fluids -- Power Drivers -- Experimental Verification of an MR Monotube Damper Model -- Energy Harvesting MR Dampers -- Concluding Remarks.
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This book deals with magnetorheological fluid theory, modeling and applications of automotive magnetorheological dampers. On the theoretical side a review of MR fluid compositions and key factors affecting the characteristics of these fluids is followed by a description of existing applications in the area of vibration isolation and flow-mode shock absorbers in particular. As a majority of existing magnetorheological devices operates in a so-called flow mode a critical review is carried out in that regard. Specifically, the authors highlight common configurations of flow-mode magnetorheological shock absorbers, or so-called MR dampers that have been considered by the automotive industry for controlled chassis applications. The authors focus on single-tube dampers utilizing a piston assembly with one coil or multiple coils and at least one annular flow channel in the piston.
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