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Titlebook: Magnetic Bearings; Proceedings of the F G. Schweitzer Conference proceedings 1989 Springer-Verlag Berlin Heidelberg 1989 Signal.Vibration.d

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書目名稱Magnetic Bearings
副標題Proceedings of the F
編輯G. Schweitzer
視頻videohttp://file.papertrans.cn/622/621206/621206.mp4
圖書封面Titlebook: Magnetic Bearings; Proceedings of the F G. Schweitzer Conference proceedings 1989 Springer-Verlag Berlin Heidelberg 1989 Signal.Vibration.d
描述Magnetic Bearings are bearings where the suspension forces are generated magnetically without any contact. The advantages to modern machinery are obvious: no mechanical wear, no lubrication, potential for high rotor speed, accuracy, and high dynamic performance, new constructional solutions to a classical problem in machine dynamics. The realization of such bearings is in rapid progress. Examples for application areas are turbomachinery, centrifuges, vacuum techniques, machine tool spindles, chemical industry, medical devices, robotics, high speed drives, spacecraft equipment, con tactless actuators, vibration isolation. The Symposium is demonstrating the current state of the art in this developing field of mechatronics, showing actual research efforts, reporting on applications in the various areas, and discussing open questions. The main purpose of the Symposium has been to establish a common information basis for people working on magnetic bearings. It will point to promising areas, and it will help to facilitate decisions on research and development projects, and on investments for applications.
出版日期Conference proceedings 1989
關(guān)鍵詞Signal; Vibration; design; development; friction; mechatronics; modeling; optimization; physics; robot; roboti
版次1
doihttps://doi.org/10.1007/978-3-642-51724-2
isbn_softcover978-3-642-51726-6
isbn_ebook978-3-642-51724-2
copyrightSpringer-Verlag Berlin Heidelberg 1989
The information of publication is updating

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Radial Shear Force Permanent Magnet Bearing System with Zero-Power Axial Control and Passive Radial contacts, as devised by L.I. Mendelsohn for application in watt hour meters (General Electric Patent, 1953). The Mendelsohn system provides positive radial and, without the stops, negative axial bearing stiffnesses due to magnetic forces acting between cylindrical magnets with axial magnetization.
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High Precision Particle Beam Chopperss between 1 kg and 12 kg are described, which are used in chopper systems. The most important advantages of this bearings are a very low power consumption, a high phase stability and the suitability for high vacuum.
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Wide-Gap, Electro-Permanentmagnetic Bearing System with Radial Transmission of Radial and Axial Forc are non-laminated ferromagnetic steel collars or cylinders; (2) all radial as well as axial forces are transmitted via radial gaps. The stator assembly needs no axially overhanging components that might impose restrictions on the rotor design and axial mobility. Due to the use of flux modulation te
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Ultra-Low-Friction, Zero-Power Magnetic Suspension System of the Spinning Rotor Vacuum Gauge up to ultimate speed. The frictional torque acting on a rotating body when being suspended in a magnetic field with a highly symmetric flux distribution around the vertical axis was found to be many orders of magnitude lower than the torque exerted by gas friction at atmospheric pressure. Consequen
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Magnetic Bearings for Precision Linear Slidesan atomic scale. This could be accomplished by the development of a linear slide having one Angstrom resolution and a one-tenth meter range of travel. Magnetic suspension technology has been proposed as an ideal candidate for the suspension of the linear slide. This technology is attractive since it
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Lift Force Analysis in a Controlled — PM LMS Maglev Carrierl formulas previously proposed by one of the authors and numerical finite-element method (FEM). The proposed theory and the FEM analysis are verified from comparing the calculated results with measured values in the experimental carrier designed on a basis of our analytical formulas.
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