Ключевые слова: HTS, REBCO, tapes, Roebel conductors, coils, accelerator magnets, cold mass, design, design parameters, fabrication, review, France
Felice H., Perez J.C., Manil P., Durante M., Rochepault E., Calvelli V., Mallon P., PERRAUD S., MINIER G.
Ключевые слова: high field magnets, colliders, LTS, Nb3Sn, magnets dipole, coils racetrack, design, design parameters
Felice H., Perez J.C., Manil P., Durante M., Rochepault E., Calvelli V., Mallon P., Rifflet J., MINIER G.
Felice H., Manil P., Durante M., Rochepault E., Calvelli V., Bermudez S.I., Mallon P., MINIER G., Millot J.
Ключевые слова: FCC, coils model, magnets dipole, design, LTS, Nb3Sn, design parameters, mechanical properties, stress effects, loads, modeling, numerical analysis
Ключевые слова: FCC, magnets dipole, design, LTS, Nb3Sn, Rutherford cables, design parameters, modeling, mechanical properties, stress distribution
Bottura L., Ferracin P., Willering G., Bajko M., Rifflet J.M., Feuvrier J., Rijk G.d., Bajas H., Perez J.C., Manil P., Durante M., Rochepault E., Rondeaux F., Bourcey N., Duda M., Petrone C., Grosclaude P., Bortot L., Mangiarotti F., Araujo D.M., Turi D., Arnestad H.
Ключевые слова: high field magnets, magnets dipole, hybrid systems, LTS, Nb3Sn, HTS, coils insert, REBCO, coated conductors, fabrication, test results, design parameters, coils racetrack
Tommasini D., Arbelaez D.*11, Auchmann B., Bajas H., Bajko M., Ballarino A., Barzi E.*10, Bellomo G., Benedikt M., Bermudez S.I., Bordini B., Bottura L., Brower L.*11, Buzio M., Caiffi B., Caspi S.*11, Dhalle M., Durante M., DeRijk G., Fabbricatore P., Farinon S., Ferracin P., Gao P., Gourlay S.*11, Juchno M.*11, Kashikhin V.*10, Lackner F., Lorin C., Marchevsky M.*11, Marinozzi V., Martinez T., Munilla J., Novitski I.*10, Ogitsu T., Ortwein R., Perez J.C., Petrone C., Prestemon S.*11, Prioli M., Rifflet J., Rochepault E., Russenschuck S., Salmi T., Savary F., Schoerling D., Segreti M., Senatore C., Sorbi M., Stenvall A., Todesco E., Toral F., Verweij A.P., Wessel S., Wolf F., Zlobin A.V.*10
Nugteren J.v., Kirby G., Bajas H., Bajko M., Ballarino A., Bottura L., Chiuchiolo A., Contat P., Dhalle M., Durante M., Fazilleau P., Fontalva A., Gao P., Goldacker W., Kate H.t., Kario A., Lahtinen V., Lorin C., Markelov A., Mazet J., MOLODYK A., Murtomaki J., Long N., Perez J., Petrone C., Pincot F., Rijk G.d., Rossi L., Russenschuck S., Ruuskanen J., Schmitz K., Stenvall A., Usoskin A., Willering G., Yang Y.
Ключевые слова: accelerator magnets, magnets dipole, coils insert, HTS, GdBCO, coated conductors, helium gas, Roebel conductors, cables, cooling technology, design parameters, quench detection, RRR parameter, training effect, degradation studies, critical caracteristics, current-voltage characteristics, n-value, temperature dependence, magnetic field distribution, quench current, current decay, joint resistances, test results
Broggi F., Chiuchiolo A., Dhalle M., Durante M., Fazilleau P., Fleiter J., Gao P., Goldacker W., Kario A., Kirby G., Haro E., Himbele J., Lorin C., Nugteren J.v., Petrone C., Rijk G.d., Ruuskanen J., Senatore C., Statera M., Stenvall A., Tixador P., Yang Y., Usoskin A., Zangenberg N.*10, Murtomaki J., Rossi L., Badel A., Bajas H., Bajko M., Ballarino A., Barth C., Betz U., Bottura L.
Ключевые слова: accelerator magnets, high field magnets, magnets dipole, modeling, numerical analysis, review, plans, HTS, coated conductors, REBCO, Roebel conductors, stacked blocks, coils model, YBCO, PLD process, IBAD process, critical caracteristics, critical current density, deposition setup, uniformity, critical current, ac losses, quench current, temperature dependence, test results
Ключевые слова: FCC, magnets dipole, high field magnets, LTS, Nb3Sn, Rutherford cables, design, design parameters, flux density, distribution, modeling, loads, mechanical properties, stress distribution
Bottura L., Ferracin P., Bordini B., Willering G., Bajko M., Rifflet J.M., Feuvrier J., Rijk G.d., Bajas H., Perez J.C., Manil P., Durante M., Rochepault E., Rondeaux F., Bourcey N., Duda M., Petrone C., Grosclaude P., Mangiarotti F.
Ключевые слова: LTS, Nb3Sn, Rutherford cables, magnets dipole, cooling technology, quench protection, high field magnets, training effect, hot spots, test results
Ferracin P., Rijk G., Perez J.C., Manil P., Durante M., Rochepault E., Rondeaux F., Bourcey N., Gauthier R., Pincot F.O., Rifflet J., Grosclaude P., Peray N., Ferradas J., Zurita A.C.
Ключевые слова: LTS, Nb3Sn, magnets dipole, fabrication, high field magnets, coils
Tommasini D., Auchmann B., Bajas H., Bajko M., Ballarino A., Bellomo G., Benedikt M., Bermudez S.I., Bordini B., Bottura L., Buzio M., Dhalle M., Durante M., Rijk G.d., Fabbricatore P., Farinon S., Ferracin P., Gao P., Lackner F., Lorin C., Marinozzi V., Martinez T., Munilla J., Ogitsu T., Ortwein R., Perez J., Prioli M., Rifflet J., Rochepault E., Russenschuck S., Salmi T., Savary F., Schoerling D., Segreti M., Senatore C., Sorbi M., Stenvall A., Todesco E., Toral F., Verweij A.P., Volpini G., Wessel S., Wolf F.
Ключевые слова: FCC, magnets dipole, LTS, Nb3Sn, coils racetrack, model small-scale, design parameters
Fabbricatore P., Farinon S., Sorbi M., Toral F., Verweij A., Tommasini D., Auchmann B., Stenvall A., Lorin C., Salmi T., Schoerling D., Durante M., Marinozzi V., Ruuskanen J., Munilla J., Prioli M.
Ключевые слова: FCC, quench protection, design, magnets dipole, LTS, Nb3Sn, quench detection, hot spots, modeling, numerical analysis, temperature distribution
Sorbi M., Toral F., Tommasini D., Lorin C., Salmi T., Schoerling D., Durante M., Martinez T., Ruuskanen J.
Ключевые слова: FCC, high field magnets, modeling, economic analysis, magnets dipole, LTS, Nb3Sn, wires multifilamentary, design, comparison, arc
Volpini G., Bottura L., Usoskin A., Goldacker W., Rossi L., Bajko M., Fazilleau P., Stenvall A., Ballarino A., Lorin C., Kario A., Rijk G.d., Bajas H., Perez J.C., Kirby G.A., Durante M., Nugteren J.v., Chiuchiolo A., Benda V., Gentini L., Rijllart A., Mazet J., Broekens K., Canale M., Peray N., Murtomaeki J., Pincot F.
Ferracin P., Rijk G.d., Perez J.C., Manil P., Durante M., Rochepault E., Rondeaux F., Gauthier R., Tavares S.S., *1 Garcia J.E., Rifflet J.-M.
Ключевые слова: LTS, Nb3Sn, coils pancake, fabrication, magnets dipole, accelerator magnets, coils wind-and-react, impregnation, winding techniques, heat treatment
Tixador P., Volpini G., Dhalle M., Bottura L., Usoskin A., Goldacker W., Rossi L., Senatore C., Bajko M., Rijk G., Fazilleau P., Fleiter J., Stenvall A., Ballarino A., Lorin C., Kario A., Badel A., Salmi T., Kirby G., Durante M., Himbele J., Haro E., Nugteren J., Langeslag S., Murtzomaki J., Yang Y.*10, Zangenberg N.*11
Ключевые слова: LTS, Nb3Sn, Rutherford cables, heat treatment, geometry effects, PIT process, RRP process, coils, comparison
Ключевые слова: HTS, YBCO, coated conductors, coils insert, magnets dipole, status, prototype, design parameters, magnetic field distribution
Bottura L., Rossi L., Fazilleau P., Fleiter J., Ballarino A., Lorin C., Kirby G., Pes C., Durante M., Segreti M., Nugteren J., Rifflet J.
Haro E., Stenvall A., Caspi S., Marchevsky M., Goldacker W., Kario A., Kirby G.A., Nugteren J.v., Ballarino A., Bottura L., Chouika N., Clement S., Datskov V., Fajardo L., Fleiter J., Gauthier R., Gentini L., Lambert L., Lopes M., Perez J.C., Rijk G.d., Rijllart A., Rossi L., Kate H.t., Durante M., Fazilleau P., Lorin C.
Tixador P., Volpini G., Bottura L., Usoskin A., Yang Y., Goldacker W., Rossi L., Senatore C., Bajko M., Rijk G., Fazilleau P., Fleiter J., Stenvall A., Ballarino A., Lorin C., Kario A., Dhalle M.M., Badel A., Salmi T., Kirby G., Durante M., Zangenberg N., Haro E., Nugteren J.
Ferracin P., Bajko M., Rijk G., Rifflet J.M., Bajas H., Perez J.C., Manil P., Guinchard M., Durante M., Rondeaux F., Datskov V.I., Charrondiere M., Ziemianski D.T., Garcia M.
Ключевые слова: HTS, colliders, magnetic systems, design parameters, YBCO, coated conductors, critical caracteristics, Jc/B curves, angular dependence, mechanical properties, stacked blocks, Roebel conductors, Bi2212, Rutherford cables, quench detection, bending process, impregnation, winding configurations, twist-pitch, quench properties, current distribution, current sharing, review, presentation
Ferracin P., Fessia P., Rijk G., Todesco E., Oberli L., Fazilleau P., Baudouy B., Rifflet J.M., Perez J.C., Pietrowicz S., Devaux M., Manil P., Durante M., Rondeaux F., Munoz Garcia J.E., Clement S., Garcia L., Gauthier R.
Ключевые слова: accelerator magnets, magnets dipole, LTS, Nb3Sn, fabrication, winding techniques, heat treatment, prototype, high field magnets
Granieri P.P., Willering G., Bajko M., Fessia P., Todesco E., Auchmann B., Russenschuck S., Rifflet J.M., Feuvrier J., Perez J.C., Sahner T., Giloux C., Manil P., Guinchard M., Kirby G.A., Durante M., Segreti M., Ravaioli E., Datskov V.I.
Ferracin P., Bajko M., Fessia P., Rijk G., Rifflet J.M., Bajas H., Perez J.C., Giloux C., Devaux M., Manil P., Guinchard M., Durante M., Rondeaux F., Garcia J.E., Charrondiere M., Ziemianski D.T.
Ключевые слова: accelerator magnets, LTS, Nb3Sn, loads, fabrication, supporting structure, cooling technology, design, high field magnets
Tixador P., Volpini G., Chaud X., Sorbi M., Bertinelli F., Fazilleau P., Stenvall A., Debray F., Mayri C., Lecrevisse T., Pottier F., Rey J.-M., Devaux M., Pes C., Durante M., Favre G., Tudela J.-M., Tardy T.
Ключевые слова: HTS, magnets dipole, YBCO, coated conductors, coils insert, LTS, Nb3Sn, accelerator magnets, design, test results, prototype, high field magnets
Ferracin P., Fessia P., Rijk G., Todesco E., Oberli L., Fazilleau P., Rifflet J.M., Perez J.C., Milanese A., Devaux M., Manil P., Durante M., Rondeaux F., Garcia J.E.
Fessia P., Auchmann B., Russenschuck S., Lorin C., Perez J.C., Karppinen M., Sahner T., Bielert E., Smekens D., Kirby G.A., Durante M., Lepoittevin B., Luzieux S., Segreti M.
Ключевые слова: magnets quadrupole, accelerator magnets, LTS, NbTi, mechanical properties, stress effects, deformation, pressure dependence, quench, high field magnets
Ключевые слова: magnets dipole, LTS, Nb3Sn, Rutherford cables, design, accelerator magnets, mechanical properties, high field magnets
Ferracin P., Fessia P., Rijk G., Todesco E., Oberli L., Fazilleau P., Rifflet J.M., Perez J.C., Milanese A., Devaux M., Manil P., Durante M., Rondeaux F., Munoz Garcia J.E.
Ключевые слова: LTS, Nb3Sn, magnets dipole, accelerator magnets, cables, design parameters, strands, critical caracteristics, critical current, magnetic field dependence, design, fabrication, supporting structure, mechanical properties, stress effects, numerical analysis, quench protection, high field magnets
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