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Solenoid Design And Construction


Solenoid Design And Construction
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Solenoid Design And Construction


Solenoid Design And Construction
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Author : Norman Clarke
language : en
Publisher:
Release Date : 2003-12-01

Solenoid Design And Construction written by Norman Clarke and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2003-12-01 with Solenoids categories.




How To Design And Build Solenoids And Plunger Magnets


How To Design And Build Solenoids And Plunger Magnets
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Author : Technical service bureau, inc
language : en
Publisher:
Release Date : 1941

How To Design And Build Solenoids And Plunger Magnets written by Technical service bureau, inc and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1941 with Electromagnets categories.




The Design And Construction Of A Gradient Solenoid For The High Powered Rf Cavity Experiment For The Muon Collider


The Design And Construction Of A Gradient Solenoid For The High Powered Rf Cavity Experiment For The Muon Collider
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Author :
language : en
Publisher:
Release Date : 1999

The Design And Construction Of A Gradient Solenoid For The High Powered Rf Cavity Experiment For The Muon Collider written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1999 with categories.


This report describes the construction and test of a split solenoid that has a warm bore of 440 mm and a cryostat length of 1088 mm. (A 750 mm section contains the magnetic field.) When the coils are hooked so the fields are additive, the central induction is 5.0 T at its design current. When the coils are hooked so that the fields are in opposition, the induction at the center of the solenoid is zero and the peak induction on the solenoid axis is ±3.7 T. The on-axis induction gradient is 25 T per meter when the coils are hooked in opposition. When the coils are operated at their design currents in opposition, the force pushing the two coils apart is about 3 MN. The force pushing the coils apart is carried by the aluminum coil mandrel and a solid aluminum sheath outside of the superconducting winding. The coil was wound as a wet lay-up coil using alumina filled epoxy (Stycast). A layer of hard aluminum wire wound on the outside of the superconducting coil carries some of the hoop forces and limits the strain so that training does not occur. At design current, at both polarities, the peak induction in the windings is about 7 T. This report describes the solenoid magnet system and its construction.



Design And Construction Of A Prototype Solenoid Coil For Mice Coupling Magnets


Design And Construction Of A Prototype Solenoid Coil For Mice Coupling Magnets
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Author :
language : en
Publisher:
Release Date : 2010

Design And Construction Of A Prototype Solenoid Coil For Mice Coupling Magnets written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010 with categories.


A superconducting coupling solenoid mounted around four conventional RF cavities, which produces up to 2.6 T central magnetic field to keep the muons within the cavities, is to be used for the Muon Ionization Cooling Experiment (MICE). The coupling coil made from copper matrix NbTi conductors is the largest of three types of magnets in MICE both in terms of 1.5 m inner diameter and about 13MJ stored magnetic energy at full operation current of 210A. The stress induced inside the coil assembly during cool down and magnet charging is relatively high. In order to validate the design method and develop the coil winding technique with inside-wound SC splices required for the coupling coil, a prototype coil made from the same conductor and with the same diameter and thickness but only one-fourth long as the coupling coil was designed and fabricated by ICST. The prototype coil was designed to be charged to strain conditions that are equivalent or greater than would be encountered in the coupling coil. This paper presents detailed design of the prototype coil as well as developed coil winding skills. The analyses on stress in the coil assembly and quench process were carried out.



The Design And Construction Of The Mice Spectrometer Solenoids


The Design And Construction Of The Mice Spectrometer Solenoids
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Author :
language : en
Publisher:
Release Date : 2008

The Design And Construction Of The Mice Spectrometer Solenoids written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008 with categories.


The purpose of the MICE spectrometer solenoid is to provide a uniform field for a scintillating fiber tracker. The uniform field is produced by a long center coil and two short end coils. Together, they produce 4T field with a uniformity of better than 1% over a detector region of 1000 mm long and 300 mm in diameter. Throughout most of the detector region, the field uniformity is better than 0.3%. In addition to the uniform field coils, we have two match coils. These two coils can be independently adjusted to match uniform field region to the focusing coil field. The coil package length is 2544 mm. We present the spectrometer solenoid cold mass design, the powering and quench protection circuits, and the cryogenic cooling system based on using three cryocoolers with re-condensers.



Solenoid Magnet Design


Solenoid Magnet Design
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Author : Donald Bruce Montgomery
language : en
Publisher:
Release Date : 1969

Solenoid Magnet Design written by Donald Bruce Montgomery and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1969 with Science categories.


Thèse. Ecole polytechnique. Université de Lausanne. 1969



Electromagnets


Electromagnets
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Author : A. N. Mansfield
language : en
Publisher: Watchmaker Publishing
Release Date : 2002-07

Electromagnets written by A. N. Mansfield and has been published by Watchmaker Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2002-07 with Science categories.




Solenoid Control Testing And Servicing


Solenoid Control Testing And Servicing
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Author : Robert M. Haney
language : en
Publisher: McGraw Hill Professional
Release Date : 2013-01-05

Solenoid Control Testing And Servicing written by Robert M. Haney and has been published by McGraw Hill Professional this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-01-05 with Technology & Engineering categories.


A WORKBENCH-READY, FULLY ILLUSTRATED GUIDE TO SOLENOID DEVICES Learn how to design, troubleshoot, and maintain high-performance solenoid-based devices. Featuring photos, diagrams, charts, graphs, and schematics, this convenient handbook combines basic theory with control and testing methods encompassing a wide range of product configurations. Find out how to assess environmental factors, analyze components, maximize efficiency, and implement reliable controls. Solenoid Control, Testing, and Servicing offers extensive details on adding feedback and "smart solenoid control" to your circuits. Coverage includes: Electrical and electromagnetic principles Resistance, inductance, and turns testing Actuator and valve requirements Clutch/brake and contactor/relay tests AC and DC voltage control Coil-back EMF and contact arc suppression Voltage, current, and peak-andhold control Linear and PWM proportional control Feedback and closed-loop techniques



Design And Construction Of Test Coils For The Mice Coupling Solenoid Magnet


Design And Construction Of Test Coils For The Mice Coupling Solenoid Magnet
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Author :
language : en
Publisher:
Release Date : 2008

Design And Construction Of Test Coils For The Mice Coupling Solenoid Magnet written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008 with categories.


The superconducting coupling solenoid to be applied in the Muon Ionization Cooling Experiment (MICE) is made from copper matrix Nb-Ti conductors with inner radius of 750 mm, length of 285 mm and thickness of 102.5 mm at room temperature. The magnetic field up to 2.6 T at the magnet centerline is to keep the muons within the MICE RF cavities. Its self inductance is around 592 H and its magnet stored energy is about 13 MJ at a full current of 210 A for the worst operation case of the MICE channel. The stress induced inside the coil during cool down and charging is relatively high. Two test coils are to build and test in order to validate the design method and develop the fabrication technique required for the coupling coil winding, one is 350 mm inner diameter and full length same as the coupling coil, and the other is one-quarter length and 1.5 m diameter. The 1.5 m diameter coil will be charged to strain conditions that are greater than would be encountered in the coupling coil. This paper presents detailed design of the test coils as well as developed winding skills. The analyses on stress in coil assemblies, AC loss, and quench process are carried out.



Design Construction And Test Results Of A Hts Solenoid For Energy Recovery Linac


Design Construction And Test Results Of A Hts Solenoid For Energy Recovery Linac
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Author :
language : en
Publisher:
Release Date : 2011

Design Construction And Test Results Of A Hts Solenoid For Energy Recovery Linac written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011 with categories.


An innovative feature of the proposed Energy Recovery Linac (ERL) is the use of a solenoid made with High Temperature Superconductor (HTS) with the Superconducting RF cavity. The use of HTS allows solenoid to be placed in close proximity to the cavity and thus provides early focusing of the electron beam. In addition, cryogenic testing at ≈77 K is simpler and cheaper than 4 K testing. This paper will present the design, construction and test results of this HTS solenoid. The HTS solenoid in the proposed ERL will be situated in the transition region between the superconducting cavity at ≈4 K and the cryostat at the room temperature. Solenoid inside the cryogenic structure provides an early focusing and hence low emittance beam. The temperature in the transition region will be too high for a conventional low temperature superconductor and resistive heat load from copper coils will be too high on cryogenic system. HTS coils also allow much higher current density and significant reduction in size as compared to copper coils. Hence HTS solenoid provide a unique and technically superior solution. The use of a HTS solenoid with superconducting cavity offers a unique option as it can be placed in a cold to warm transition region to provide early focussing without using additional space. Construction and test results so far are very encouraging for its use in the ERL project.