Thermal Performance of Various Multilayer Insulation Systems Below 80K

Author:

Boroski W. N.,Nicol T. H.,Schoo C. J.

Publisher

Springer US

Reference6 articles.

1. T.H. Nicol, Design development for the 50 mm Superconducting Super Collider dipole cryostat, in: “Supercollider 3,” Plenum Press, New York (1991), p. 1029.

2. J.D. Gonczy, W.N. Boroski, and R.C. Niemann, Thermal performance measurements of a 100 percent polyester MLI system for the Superconducting Super Collider: Part II, Laboratory Results (300K-80K), in: “Advances in Cryogenic Engineering,” Vol. 35, Plenum Press, New York (1989), p. 497.

3. E.M.W. Leung, et al., Techniques for reducing radiation heat transfer between 77K and 4.2K, in: “Advances in Cryogenic Engineering,” Vol. 25, Plenum Press, New York (1980), p. 489.

4. W.N. Boroski, R.J. Kunzelman, M.K. Ruschman, and C.J. Schoo, Design and calibration of a test facility for MLI thermal performance measurements below 80K, presented at the Cryogenic Engineering Conference, June 11–14, 1991, Huntsville, Alabama.

5. W.N. Boroski, T.H. Nicol, and C.J. Schoo, Design of the multilayer insulation system for the Superconducting Super Collider 50 mm dipole cryostat, in: “Supercollider 3,” Plenum Press, New York (1991), p. 849.

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1. Modeling Transmission Effects on Multilayer Insulation;Journal of Thermal Science and Engineering Applications;2015-06-01

2. Experimental study of the influences of degraded vacuum on multilayer insulation blankets;Cryogenics;2009-12

3. Thermal Performance of Multilayer Insulation Down to 4.2 K;Advances in Cryogenic Engineering;2000

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