Uniaxial and Biaxial Tensioning Effects on Thin Membrane Materials
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Published: 1980
Total Pages: 30
ISBN-13:
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Author:
Publisher:
Published: 1980
Total Pages: 30
ISBN-13:
DOWNLOAD EBOOKAuthor:
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Published: 1979
Total Pages: 540
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DOWNLOAD EBOOKAuthor: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Published: 2018-08-14
Total Pages: 32
ISBN-13: 9781725544482
DOWNLOAD EBOOKThin laminated membranes are being considered for various surface applications on future large space structural systems. Some of the thin membranes would be stretched across or between structural members with the requirement that the membrane be maintained within specified limits of smoothness which would be dictated by the particular applications such as antenna reflector requirements. The multiaxial tensile force required to maintain the smoothness in the membrane needs to be determined for use in the structure design. Therefore, several types of thicknesses of thin membrane materials have been subjected to varied levels of uniaxial and biaxial tensile loads. During the biaxial tests, deviations of the material surface smoothness were measured by a noncontacting capacitance probe. Basic materials consisted of composites of vacuum deposited aluminum on Mylar and Kapton ranging in thickness from 0.00025 in (0.000635 cm) to 0.002 in (0.00508 cm). Some of the material was reinforced with Kevlar and Nomex scrim. The uniaxial tests determined the material elongation and tensile forces up to ultimate conditions. Biaxial tests indicated that a relatively smooth material surface could be achieved with tensile force of approximately 1 to 15 Newtons per centimeter, depending upon the material thickness and/or reinforcement. Hinson, W. F. and Goslee, J. W. Langley Research Center NASA-TM-81812 RTOP 542-01-13-15...
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Published: 1980
Total Pages: 758
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DOWNLOAD EBOOKLists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.
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Published: 1977
Total Pages: 836
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DOWNLOAD EBOOKAuthor:
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Published: 1980
Total Pages: 1050
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DOWNLOAD EBOOKAuthor: John L. Sewall
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Published: 1983
Total Pages: 56
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DOWNLOAD EBOOKAuthor: Robert L. Wright
Publisher:
Published: 1981
Total Pages: 262
ISBN-13:
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