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Titlebook: Challenges in Mechanics of Time-Dependent Materials, Volume 2; Proceedings of the 2 H. Jerry Qi,Bonnie Antoun,Joamin Gonzalez-Gutierre Conf

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楼主: palliative
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Effect of UV Exposure on Mechanical Properties of POSS Reinforced Epoxy Nanocomposites,of the neat epoxy and epoxy/POSS nanocomposite has been studied using nanoindentation technique. Elastic modulus of the polymer systems are determined using modified Oliver–Pharr method taking creep rate into account. Creep compliance properties of the studied systems are determined by fitting a sta
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Overcoming Challenges in Material Characterization of Polymers at Intermediate Strain Rates,as nonlinear viscoelastic–viscoplastic. Physical testing at intermediate strain rates creates many challenges because the measurements are susceptible to distortion due to factors including: test specimen variations, fixtures, hydraulic actuator control, instrumentation complexity, data acquisition,
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H. Jerry Qi,Bonnie Antoun,Joamin Gonzalez-Gutierre
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Summary and Concluding Remarks,luated for performance versus actuators of increasing transverse curvature. Digital image correlation was implemented to quantify the out-of-plane deflection of the unimorph composite actuators (UCAs) during the actuation cycle. Experimental results indicate that an actuator with transverse curvatur
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https://doi.org/10.1007/978-3-7908-2197-0rved that under multi-axial loading, yielding is governed by one characteristic property, the yield strain under uniaxial tension. Furthermore, it was found that the yield point varied linearly with the logarithm of strain rate. A general three-dimensional elasto-viscoplastic model was formulated in
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https://doi.org/10.1007/978-3-7908-2197-0temperature change, and (b) the stiffness of LSR appears to change according to temperature history, and (c) the Maxwell stress relaxation model can be used to predict the sealing force only after a correction of the change of material stiffness is implemented into the model.
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Theoretical Perspective and Outline,ls and rates of strain ratcheting over the temperatures range of −50 to 550 °C, with particular attention near the glass transition temperature of 500 °C. Additional experiments were designed to quantify the effects of stress relaxation and reloading. The experimental techniques developed and result
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