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Titlebook: Composite Structures 3; I. H. Marshall Book 1985 Elsevier Applied Science Publishers Ltd 1985 composite.composite material.deformation.fat

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,Reale Gase, Flüssigkeiten und Lösungen,alysis of cord-rubber systems, such as reinforced tubes and steel-belted tyres. The finite element computation includes load updating as well as stiffness changes resulting from the angle changes due to deformations. The comparison of experimentally obtained results to results of finite element comp
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https://doi.org/10.1007/3-540-31097-5ral strength, dynamic modulus and ultrasonic pulse velocity were measured on specimens with 1.5% and 0.75% volume fraction and on a series of specimens with no fibres over a temperature range of 300–800°C. In general the results tend to show that there is little or no benefit gained by the presence
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https://doi.org/10.1007/978-3-662-10042-4ed on measuring properties relevant to the applications of the material and in particular the effects of in situ fibre content and fibre type. Flexural strength was found to increase significantly with fibre content in a linear relationship from the unreinforced strength. Core compressive strengths
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https://doi.org/10.1007/978-3-662-10042-4inability of mathematical models to predict the cyclical loading behaviour of uniaxially reinforced cement when properties of new wires were used as basic data..The test results indicate that a reduction in stiffness of the steel wires occurs when they are cast in cement, and that the ultimate tensi
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https://doi.org/10.1007/978-94-009-4952-2composite; composite material; deformation; fatigue; fracture mechanics; glass; modeling; structural analys
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Fatigue Scatter of UD Glass Epoxy, a Fact or Fiction?e process. Evidence is presented which suggests that much of the scatter may be associated with a change in failure mode which generates a discontinuity in the S—N curve and that the remaining scatter is a consequence of static strength variations.
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