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Titlebook: Challenges in Mechanics of Time Dependent Materials, Volume 2; Proceedings of the 2 Bonnie Antoun,Alex Arzoumanidis,Hongbing Lu Conference

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Euler Spiral for Shape Completionto viscous loss, and tensile pull-off force, due to the attractive surface interactions. We rationalize the results using the JKR model of viscous contact mechanics. Such experiments are pertinent to the problem of rate dependant damage mechanics in highly-filled particulate composites with viscous matrices.
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Gestalt: From Phenomena to Lawsobserve the strains. The validity of the experimental results is evaluated by comparing with the results obtained from digital image correlation. In addition, the time-temperature superposition principle is verified by comparing the impact and static experiments at the various temperatures.
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Gestalt: From Phenomena to Lawsfor countries. Among these new energy sources, marine tidal turbines are growing considerably. Manufacturers used thick composite material to design most of the tidal turbine blades. To ensure the lifetime of the latter, it is necessary to develop damage models that take into account sea water, and
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https://doi.org/10.1007/978-1-4615-4413-5r temperature dependent strength and crack propagation behavior. Elastic modulus, hardness, creep exponent, creep strain rate and thermal activation volume of the different alloy 617 samples were studied through nanoindentation method. Indentation size effect (ISE) was studied in terms of hardness v
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Gestalt: From Phenomena to Lawsnsile strength increases with increasing strain-rate and decreases with increasing temperature. To understand the impact of both factors simultaneously, a single fiber heater has been fabricated to heat UHMWPE fibers up to the melting temperature (~148 °C) to measure the change in mechanical propert
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https://doi.org/10.1007/978-1-4615-4413-5ic, creep and fatigue strengths of them measured at a short term and various temperatures. First, the time-temperature superposition principle (TTSP) held for the viscoelasticity of matrix resin is explained by using the viscoelastic model. Second, the master curves of these strengths of CFRP lamina
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