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Advanced Composite Structures for Superconducting Super Collider
Abstract Advanced composite structures are currently being utilized in numerous cryogenic systems. They offer low thermal conductivity, high strength and stiffness, lightweight, low outgassing, integral fittings, and other advantages. Several types of fibers and resins are available to meet extreme structural and thermal requirements. Typical properties for filament wound composite laminates are provided. Design considerations for various configurations, such as straps, tubes, and struts, are discussed. Typical applications are dewars for spacecraft, coolers for satellite instruments, and superconducting magnets for medical imaging and high-energy physics. The cryostat developed by Fermi National Accelerator Laboratory for the SSC dipole magnets has advanced composite support posts and anchor tie bars.
Advanced Composite Structures for Superconducting Super Collider
Abstract Advanced composite structures are currently being utilized in numerous cryogenic systems. They offer low thermal conductivity, high strength and stiffness, lightweight, low outgassing, integral fittings, and other advantages. Several types of fibers and resins are available to meet extreme structural and thermal requirements. Typical properties for filament wound composite laminates are provided. Design considerations for various configurations, such as straps, tubes, and struts, are discussed. Typical applications are dewars for spacecraft, coolers for satellite instruments, and superconducting magnets for medical imaging and high-energy physics. The cryostat developed by Fermi National Accelerator Laboratory for the SSC dipole magnets has advanced composite support posts and anchor tie bars.
Advanced Composite Structures for Superconducting Super Collider
Morris, Vicki Lynn (author)
Supercollider 1 ; 525-535
1989-01-01
11 pages
Article/Chapter (Book)
Electronic Resource
English
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