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"Knee" in stress-strain diagram and crazing of glass fiber reinforced plastics (GFRP); its significance for GFRP structures; laminates with two or more fiber directions often show knee in stress-strain diagram during first loading in tension; it was found by micromechanical investigations that loss of stiffness indicated by knee is caused by crazing which results from local resin or glass/resin interface failures; it was found that liner of highly stressed GFRP pressure vessels and pressure pipe can be protected from being notched and fractured by crazing of walls by means of very soft interlayer as liner protector. (16980)
"Knee" in stress-strain diagram and crazing of glass fiber reinforced plastics (GFRP); its significance for GFRP structures; laminates with two or more fiber directions often show knee in stress-strain diagram during first loading in tension; it was found by micromechanical investigations that loss of stiffness indicated by knee is caused by crazing which results from local resin or glass/resin interface failures; it was found that liner of highly stressed GFRP pressure vessels and pressure pipe can be protected from being notched and fractured by crazing of walls by means of very soft interlayer as liner protector. (16980)
Das "knie" im Spannungs-Dehnungs-diagramm und Rissbildung bei Glasfaser/Kunststoffen
Das "knie" im Spannungs-Dehnungs-diagramm und Rissbildung bei Glasfaser/Kunststoffen
Puck, A. (author)
Kunststoffe ; 58
1968
8 pages
Article (Journal)
German
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