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  • MATERIALS, NONMETALLIC  (16)
  • 1970-1974  (16)
  • 1
    facet.materialart.
    Unknown
    In:  CASI
    Publication Date: 2016-03-01
    Description: A study was made of the behavior of polyisobutylene under motion at a constant stretch history for both strip biaxial extensional flow and simple extensional flow. Steady-state non-Newtonian viscosities were observed at various constant stretch histories. Newtonian viscosities for both strip biaxial and simple extensional flow were found to be in agreement with the classical theory. The results of the study provide an essential part of the experimental background necessary for the development of a new general stress-strain-time relation for uncrosslinked and lightly crosslinked polymers.
    Keywords: MATERIALS, NONMETALLIC
    Type: JPL Quart. Tech. Rev.; Vol. 2; No. 3; p 40-45
    Format: application/pdf
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  • 2
    Publication Date: 2019-06-27
    Description: An investigation to determine the effects of pavement surface condition on the cornering forces developed by a group of 6.50x13 automobile tires of different tread design was conducted at the Langley aircraft landing loads and traction facility. The tests were made at fixed yaw angles of 3,4.5, and 6 deg at forward speeds up to 80 knots on two concrete surfaces of different texture under dry, damp, and flooded conditions. The results showed that the cornering forces were extremely sensitive to tread pattern and runway surface texture under all conditions and that under flooded conditions tire hydroplaning and complete loss of cornering force occurred at a forward velocity predicted from an existing formula based on tire inflation pressure. Futher, tests on the damp concrete with a smooth tire and a four-groove tire showed higher cornering forces at a yaw angle of 3 deg than at 4.5 deg; this indicated that maximum cornering forces are developed at extremely small steering angles under these conditions.
    Keywords: MATERIALS, NONMETALLIC
    Type: NASA-TN-D-6964 , L-8351
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  • 3
    facet.materialart.
    Unknown
    In:  CASI
    Publication Date: 2019-06-27
    Description: The purpose of the test program was to evaluate the performance of different epoxy systems as replacements for existing epoxy systems in the SBASI. The three areas of investigation were the connector shell potting, the epoxy tape under the charge cup, and the epoxy impregnated fiberglass over the output charge. Factors considered, in addition to performance, were availability, shelf life, pot life, and effect on producibility and cost.
    Keywords: MATERIALS, NONMETALLIC
    Type: NASA-CR-115270 , SOS-DOC-7827
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  • 4
    Publication Date: 2019-06-27
    Description: Glass fiber tubing for cryogenic rocket propellant system
    Keywords: MATERIALS, NONMETALLIC
    Type: NASA-CR-72797
    Format: application/pdf
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  • 5
    Publication Date: 2019-07-13
    Description: Low thermal flux lightweight glass fiber composite tubing for cryogenic propulsion plumbing systems
    Keywords: MATERIALS, NONMETALLIC
    Type: ANNUAL SOLID MECHANICS SYMPOSIUM; May 07, 1971; COLORADO SPRINGS, CO
    Format: text
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  • 6
    Publication Date: 2019-07-13
    Description: A series of coatings was developed for the space shuttle type silica fiber insulation system and characterized for optical and physical properties. Reentry simulation tests were run using a radiant panel and also using a hypersonic plasma arc. The coatings produced had improved physical and optical properties as well as greater reuse capability over the GE version of the JSC-0042 coating.
    Keywords: MATERIALS, NONMETALLIC
    Type: NASA-CR-134653
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  • 7
    facet.materialart.
    Unknown
    In:  Other Sources
    Publication Date: 2019-07-13
    Description: Refractive index changes by shock compression metamorphism of tektite, soda lime and silica glasses
    Keywords: MATERIALS, NONMETALLIC
    Type: MEETING ON METEORITE IMPACT AND VOLCANISM; Oct 19, 1970 - Oct 23, 1970; HOUSTON, TX|; YAL SOCIETY (
    Format: text
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  • 8
    Publication Date: 2019-07-13
    Description: The potential of polyphenylquinoxaline (PPQ)/graphite composites to serve as structural material at 316 C (600 F)has been demonstrated using a block copolymer, BlCo(13), PPQ derivative. Initially, thirteen polyphenylquinoxalines were evaluated. From this work, four candidate polymers were selected for preliminary evaluation as matrices for HMS graphite fiber reinforced composites. The preliminary composite evaluation enabled selection of one of the four polymers for advanced composite preparation and testing. Using an experimentally established cure schedule for each of the four polymers, preliminary laminates of 50% resin volume content, prepared without postcure, were tested for flexure strength and modulus, interlaminar shear strength (short beam), and tensile strength and modulus at ambient temperature. A block copolymer (Bl Co 13) derived from one mole p-bis (phenylglyoxalyl) benzene, one fourth mole 3,3'-diaminobenzidine and three-fourths mole 3,3', 4,4'-tetraminobenzophenone was selected for extensive study. Tensile, flexural, and interlaminar shear values were obtained after aging and testing postcured BlCo(13) laminates at 316 C (600 F). The potential of PPQ/graphite laminates to serve as short term structural materials at temperatures up to 371 C (700 F) was demonstrated through weight loss experiments.
    Keywords: MATERIALS, NONMETALLIC
    Type: NASA-CR-121109 , BAC-2-5540
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  • 9
    Publication Date: 2019-07-13
    Description: Various flexible polyurethane structures containing halogen were synthesized from polyesters derived from aliphatic or aromatic polyols and dibasic acids. Aliphatic halide structures could not be used because they are unstable at the required reaction temperatures, giving of hydrogen halide which hydrolyzes the ester linkages. In contract, halogen-containing aromatic polyols were stable and satisfactory products were made. The most promising composition, a brominated neopentyl glycol capped with toluene disocyanate, was used as a conventional diisocyanate, in conjunction with hydroxy-terminated polyethers or polyesters to form elastomeric urethanes containing about 10% bromine with weight. Products made in this manner will not burn in air, have an oxygen index value of about 25, and have tensile strength values of about 5,000 psi at 450% elongation. The most efficient additives for imparting flame retardancy to Spandex urethanes are aromatic halides and the most effective of these are the bromide compounds. Various levels of flame retardancy have been achieved depending on the levels of additives used.
    Keywords: MATERIALS, NONMETALLIC
    Type: NASA-CR-115227 , ADL-72210
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  • 10
    Publication Date: 2019-06-27
    Description: Prolonged electrical test of bonded alumina trilayer at 1325 K in vacuum environment
    Keywords: MATERIALS, NONMETALLIC
    Type: NASA-TM-X-2303 , E-6139
    Format: application/pdf
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