Results 201 to 210 of about 194,174 (266)
Boron Nitride-Modified Hemp Nanofiber Reinforced Slag-Based Geopolymer Composites: Mechanical, Microstructural and Fire Resistance Performance. [PDF]
Filazi A +4 more
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The Effect of Sugarcane Bagasse Fiber on the Fatigue Performance of Recycled Aggregate Concrete. [PDF]
Zhong C, Deng W, Zhou J.
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A Microplane Constitutive Model for SFRC Subjected to High Temperatures. [PDF]
Ripani M, Vrech S, Caggiano A, Folino P.
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A Study on the Influencing Factors of the Mechanical Properties of Steel-Fiber-Reinforced Cement Concrete. [PDF]
Gong F, Yao Y, Li H, Xu Y.
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Mechanical Properties of Basalt-Polypropylene Hybrid Fiber-Reinforced Red Mud-Coal Metakaolin Geopolymer. [PDF]
Zhao J +6 more
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Muscle Strength and Fiber Typing
Clinics in Sports Medicine, 1984The authors discuss fiber typing and morphologic changes resulting from training and how these affect athletic performance. Also considered is the concept of strength, its measurement and development, and how strength affects athletic performance, activity, and injury.
M, Marino, G W, Gleim
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On the Determination of Fiber Strengths by In-Situ Fiber Strength Testing
Journal of Composites Technology and Research, 1991A method is described and experimental results given which demonstrate the feasibility of determining fiber strengths at short gage lengths by monitoring the fiber failure process during the embedded single-fiber fragmentation test. A computerized weakest link fiber model was used to perform data analysis, without making assumptions about the ...
WS Johnson +4 more
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Coating of Carbon Fibers—The Strength of the Fibers
Journal of the American Ceramic Society, 1995The 6k carbon fiber Torayca T800H was coated with pyrolytic carbon by a CVD process. Fiber bundles were tested and evaluated. By this procedure, the whole distribution of the failure probability with respect to the fiber strength is obtained in a single experiment.
Thomas Helmer +2 more
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Polymer Mechanics, 1973
The tensile and flexural strength and elastic properties of continuous boron fibers 95–105 µ in diameter obtained by depositing boron on a tungsten filament 10–12 µ in diameter have been investigated. The strength properties are primarily determined by the defects present at the boron sheath-core interface and for the fibers investigated have a limit ...
G. M. Gunyaev +4 more
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The tensile and flexural strength and elastic properties of continuous boron fibers 95–105 µ in diameter obtained by depositing boron on a tungsten filament 10–12 µ in diameter have been investigated. The strength properties are primarily determined by the defects present at the boron sheath-core interface and for the fibers investigated have a limit ...
G. M. Gunyaev +4 more
openaire +1 more source

