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Strait, J.; Bleadon, M.; Brown, B.C.
Fermi National Accelerator Lab., Batavia, IL (USA)1989
Fermi National Accelerator Lab., Batavia, IL (USA)1989
AbstractAbstract
[en] Four full scale SSC development dipole magnets have been tested for mechanical and quench behavior. Two are of a design similar to previous magnets but contain a number of improvements, including more uniform coil size, higher pre-stress and a redesigned inner-outer coil splice. One exceeds the SSC operating current on the second quench but the other appears to be limited by damaged superconductor to a lower current. The other two magnets are of alternate designs. One trains erratically and fails to reach a plateau and the other reaches plateau after four quenches. 12 refs., 4 figs
Primary Subject
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Mar 1989; 5 p; 13. particle accelerator conference; Chicago, IL (USA); 20-23 Mar 1989; CONF-890335--121; Available from NTIS, PC A02 - OSTI; 3 as DE89011290; Paper copy only, copy does not permit microfiche production.
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AbstractAbstract
[en] Several 40 mm aperture, 17 m long dipoles have been built by Fermilab as developmental prototypes for the Superconducting Super Collider. These magnets differ from those manufactured at Brookhaven National Laboratory in that they have an external inner-outer coil splice design, a collet style end clamp assembly, a new, analytically designed minimum stress coil end design, and a new insulation system which does not employ shims or shoes. In addition, the magnets were built using production-style tooling. The magnets were tested at the Fermilab Magnet Testing Facility. In this paper quench testing and mechanical measurement results are presented and analyzed with emphasis on the design and fabrication features of these magnets
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12. international conference on magnet technology; Leningrad (USSR); 23-28 Jun 1991; CONF-910662--
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Strait, J.; Bleadon, M.; Hanft, R.; Lamm, M.; McGuire, K.; Mantsch, P.; Mazur, P.O.; Orris, D.; Pachnik, J.
Fermi National Accelerator Lab., Batavia, IL (USA)1989
Fermi National Accelerator Lab., Batavia, IL (USA)1989
AbstractAbstract
[en] The test facility used for R and D testing of full scale development dipole magnets for the SSC is described. The Fermilab Magnet Test Facility, originally built for production testing of Tevatron magnets, has been substantially modified to allow testing also of SSC magnets. Two of the original six test stands have been rebuilt to accommodate testing of SSC magnets at pressures between 1.3 Atm and 4 Atm and at temperatures between 1.8 K and 4.8 K and the power system has been modified to allow operation to at least 8 kA. Recent magnets have been heavily instrumented with voltage taps to allow detailed study of quench location and propagation and with strain gage based stress, force and motion transducers. A data acquisition system has been built with a capacity to read from each SSC test stand up to 220 electrical quench signals, 32 dynamic pressure, temperature and mechanical transducer signals during quench and up to 200 high precision, low time resolution, pressure, temperature and mechanical transducer signals. The quench detection and protection systems is also described. 23 refs., 4 figs., 2 tabs
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Feb 1989; 14 p; International industrial symposium on the super collider; New Orleans, LA (USA); 8-10 Feb 1989; CONF-890270--10; Available from NTIS, PC A03/MF A01 - OSTI; 1 as DE89011266; Portions of this document are illegible in microfiche products.
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AbstractAbstract
[en] The test facility used for R and D testing of full scale development dipole magnets for the SSC is described. The Fermilab Magnet Test Facility, originally built for production testing of Tevatron magnets, has been substantially modified to allow testing also of SSC magnets. Two of the original six test stands have been rebuilt to accommodate testing of SSC magnets at pressures between 1.3 Atm and 4 Atm and at temperatures between 1.8 K and 4.8 K and the power system has been modified to allow operation to at least 8 kA. Recent magnets have been heavily instrumented with voltage taps to allow detailed study of quench location and propagation and with strain gage based stress, force and motion transducers. A data acquisition system has been built with a capacity to read from each SSC test stand up to 220 electrical quench signals, 32 dynamic pressure, temperature and mechanical transducer signals during quench and up to 200 high precision, low time resolution, pressure, temperature and mechanical transducer signals. The quench detection and protection systems is also described. 23 refs., 4 figs. 2 tabs
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McAshan, M. (ed.); Superconducting Supercollider Lab., Dallas, TX (USA); 837 p; 1989; p. 561-572; Plenum Press; New York, NY (USA); International industrial symposium on the super collider; New Orleans, LA (USA); 8-10 Feb 1989; CONF-890270--; Plenum Publishing Corporation, 233 Spring Street, New York, NY 10013
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CAMAC SYSTEM, DATA ACQUISITION SYSTEMS, DEC COMPUTERS, FERMILAB TEVATRON, MEASURING INSTRUMENTS, MODIFICATIONS, NATIONAL ORGANIZATIONS, POWER SYSTEMS, QUENCHING, RESEARCH PROGRAMS, STRAIN GAGES, SUPERCONDUCTING MAGNETS, SUPERCONDUCTING SUPER COLLIDER, TEST FACILITIES, TRANSDUCERS, ULTRALOW TEMPERATURE
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AbstractAbstract
[en] Magnetic field measurements have been performed at Fermilab on 1.5 m magnetic length model dipoles for the Superconducting Supercollider. harmonic measurements are recorded at room temperature before and after the collared coil is assembled into the yoke and at liquid helium temperature. In this paper measurements are made as a function of longitudinal position and excitation current. High field data are compared with room temperature measurements of both the collared coil and the completed yoked magnet and with the predicted fields for both the body of the magnet and the coil ends
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12. international conference on magnet technology; Leningrad (USSR); 23-28 Jun 1991; CONF-910662--
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AbstractAbstract
[en] At several stages in the production of the SSC collider dipole magnets and their final installation (as well as for beam orbit calculations) the magnetic field angle needs to be known. A simple device using a permanent magnet which aligns itself with the magnetic field (the Vertical Field Angle Probe, FAP) had been developed at FNAL to survey the direction of the magnetic dipole field with respect to the vertical (as determined by gravity) along the magnet axis. The determination of the dipole field angle was part of the field quality characterization of a series of thirteen full-length 50mm-aperture SSC Collider Dipole Magnet Prototypes (DCA311-DCA323) which were built for R ampersand D purposes at FNAL (for design specification)
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Hale, P. (ed.); 965 p; 1994; p. 695-698; Plenum Press; New York, NY (United States); 5. annual international industrial symposium on the Super Collider and exhibition; San Francisco, CA (United States); 6-8 May 1993; Plenum Press, 233 Spring Street, New York, NY 10013-1578
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Lamm, M.J.; Bleadon, M.; Coulter, K.J.; Delchamps, S.; Hanft, R.; Jaffery, T.S.; Kinney, W.; Koska, W.; Ozelis, J.P.; Strait, J.; Wake, M.; DiMarco, J.
Fermi National Accelerator Lab., Batavia, IL (United States). Funding organisation: USDOE, Washington, DC (United States)1991
Fermi National Accelerator Lab., Batavia, IL (United States). Funding organisation: USDOE, Washington, DC (United States)1991
AbstractAbstract
[en] Magnetic field measurements have been performed at Fermilab on 1.5 m magnetic length model dipoles for the Superconducting Supercollider. Harmonic measurements are recorded at room temperature before and after the collared coil is assembled into the yoke and at liquid helium temperature. Measurements are made as a function of longitudinal position and excitation current. High field data are compared with room temperature measurements of both the collared coil and the completed yoked magnet and with the predicted fields for both the body of the magnet and the coil ends
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Sep 1991; 4 p; 12. international conference on magnet technology; Leningrad (USSR); 23-28 Jun 1991; SSCL--541; CONF-910662--16; CONTRACT AC02-76CH03000; OSTI as DE92004530; NTIS; INIS; US Govt. Printing Office Dep
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Marks, J.; DiMarco, J.; Kuzminski, J.; Ogitsu, T.; Zheng, H.; Bleadon, M.; Kuchnir, M.; Schmidt, E.E.; Yu, Y.
Superconducting Super Collider Lab., Dallas, TX (United States). Funding organisation: USDOE, Washington, DC (United States)1993
Superconducting Super Collider Lab., Dallas, TX (United States). Funding organisation: USDOE, Washington, DC (United States)1993
AbstractAbstract
[en] At several stages in the production of the SSC collider dipole magnets and their final installation the magnetic field angle needs to be known. A simple device using a permanent magnet which aligns itself with the magnetic field had been developed at FNAL to survey the direction of the magnetic dipole field with respect to the vertical (as determined by gravity) along the magnet axis. The determination of the dipole field angle was part of the field quality characterization of a series of thirteen full-length 50mm-aperture SSC Collider Dipole Magnet Prototypes which were built for R ampersand D purposes at FNAL. Measurements with the first developed FAP system were performed on a regular basis through several stages of the magnet production process with the intention of fabrication quality control. Part of these included measurements performed before and after cryogenic testing: these data are summarized here. The performance of a second system with an improved probe and data acquisition system was tested on part of the DCA series as well. This paper includes a presentation of time stability, noise and angular resolution data of this second probe. Another alternative instrument to determine the dipole field angle is the ''mole'' rotating coil system developed at BNL used mainly to measure the multipole components of the magnetic field. In the case of magnet DCA320, a comparison is made between the field angle as determined by the mole and those determined by both of the FAPS
Primary Subject
Source
May 1993; 5 p; 5. annual international industrial symposium on the Super Collider and exhibition; San Francisco, CA (United States); 6-8 May 1993; CONF-930537--80; CONTRACT AC35-89ER40486; Also available from OSTI as DE93016887; NTIS; US Govt. Printing Office Dep
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Strait, J.; Orris, D.; Mazur, P.O.; Bleadon, M.; Bossert, R.; Carson, J.; Delchamps, S.W.; Gourlay, S.; Hanft, R.; Koska, W.; Kuchnir, M.; Lamm, M.J.; Ozelis, J.; Wake, M.; Devred, A.; DiMarco, J.; Kuzminski, J.; Nah, W.; Ogitsu, T.; Puglisi, M.; Tompkins, J.C.; Yu, Y.; Zhao, Y.; Zheng, H.
Supercollider 41992
Supercollider 41992
AbstractAbstract
[en] In this paper we present results of quench testing of full length SSC dipole magnets at Fermilab. The data are from the first six of a series of thirteen 15 m long, 50 mm aperture SSC dipole magnets which are being built and tested at Fermilab. These magnets were designed jointly by Fermilab, Brookhaven Laboratory, Lawrence Berkeley Laboratory and the SSC Laboratory. Among the major goals for this series of magnets are to transfer magnet production technology to the lead vendor for the Collider Dipole Magnet, the General Dynamics Corporation, and to demonstrate industrial production by the vendor. The first magnet in the series, DCA311, was built by Fermilab technicians to establish assembly procedures. The second magnet, DCA312, was the technology transfer magnet and was built jointly by Fermilab and General Dynamics technicians. The next seven, DCA313-319 are being built by General Dynamics personnel using Fermilab facilities and procedures. However, Fermilab personnel still operate the major tooling, provide the welders, perform assembly of items that would not be part of production magnets (e.g. voltage taps), and oversee the QA program. Five of these 7 GD-built magnets will be used in the Accelerator Systems String Test (ASST) to be carried out in Dallas later this year. The last four magnets, DCA320-323, are being built by Fermilab alone
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Nonte, J. (ed.) (Superconducting Super Collider Lab., Dallas, TX (United States)); 1273 p; 1992; p. 365-372; Plenum Press; New York, NY (United States); 4. international industrial symposium on the super collider; New Orleans, LA (United States); 4-6 Mar 1992; Plenum Press, 233 Spring Street, New York, NY 10013 (United States)
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Kuchnir, M.; Bleadon, M.; Delchamps, S.W.; Schmidt, E.; Bossert, R.; Carson, J.; Gourlay, S.; Hanft, R.; Koska, W.; Lamm, M.J.; Mazur, P.O.; Orris, D.; Ozelis, J.; Strait, J.; Wake, M.; Devred, A.; DiMarco, J.; Kuzminski, J.; Ogitsu, T.; Yu, Y.; Zheng, H.
Fermi National Accelerator Lab., Batavia, IL (United States). Funding organisation: USDOE, Washington, DC (United States)1992
Fermi National Accelerator Lab., Batavia, IL (United States). Funding organisation: USDOE, Washington, DC (United States)1992
AbstractAbstract
[en] Measurements of the magnetic field angle along the length of collider dipole magnets are discussed. These superconducting magnets were built at Fermilab for the Superconducting Super Collider (SSC) by Fermilab and General Dynamics personnel. These measurements were made at four stages in the assembly and test sequence. The data show-that changes can occur both during installation in the cryostat and as a result of cold testing. Most of the changes during installation are correlated with the welding of the tie bar restraints. But the changes observed as a result of the cold testing can be attributed to changes in the magnetization of the iron laminations
Primary Subject
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Oct 1992; 5 p; Applied superconductivity conference; Chicago, IL (United States); 23-28 Aug 1992; CONF-920802--40; CONTRACT AC02-76CH03000; OSTI as DE93004422; NTIS; INIS; US Govt. Printing Office Dep
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