Published January 1991 | Version v1
Report

Production of superconductor/carbon bicomponent fibers

Description

Certain materials are unable to be drawn or spun into fiber form due to their improper melting characteristics or brittleness. However, fibrous samples of such materials are often necessary for the fabrication of intricate shapes and composites. In response to this problem, a unique process, referred to as the piggyback process, was developed to prepare fibrous samples of a variety of nonspinnable ceramics. In this technique, specially produced C shaped carbon fibers serve as micromolds to hold the desired materials prior to sintering. Depending on the sintering atmosphere used, bicomponent or single component fibers result. While much has been shown worldwide concerning the YBa2Cu3O(7-x) superconductor, fabrication into unique forms has proven quite difficult. However, a variety of intricate shapes are necessary for rapid commercialization of the superconducting materials. The potential for producing fibrous samples of the YBa2Cu3O(7-x) compound by the piggyback process is being studied. Various organic and acrylic materials were studied to determine suspending ability, reactivity with the YBa2Cu3O(7-x) compound during long term storage, and burn out characteristics. While many questions were answered with respect to the interfacial reactions between YBa2Cu3O(7-x) and carbon, much work is still necessary to improve the quality of the sintered material if the fibers produced are to be incorporated into useful composite or cables

Additional details

Publishing Information

Imprint Title
AMSAHTS 1990: Advances in Materials Science and Applications of High Temperature Superconductors
Imprint Pagination
488 p.
Journal Page Range
p. 37-42.
Report number
N--92-21605

Conference

Title
advances in material science and applications of high temperature superconductors.
Acronym
AMSAHT'S 90
Dates
2-6 Apr 1990.
Place
Greenbelt, MD (United States).

Optional Information