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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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,Ökologie und sowjetische Reformpolitik,d also influence the evolution of strength and modulus at elevated temperatures. Nylon 6 composites with continuous, aligned fibers retain their mechanical properties after exposure to increased moisture and temperature much better than composites with discontinuous, randomly aligned fibers.
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Analyses of Nanoscale to Microscale Strength and Crack-Tip Stresses Using Nanomechanical Raman Specples with an initial crack to measure crack tip plastic stresses under applied load. A relation between indentation depth and hardness was used to predict strain gradient length scale variation from 1.008 μm at room temperature and to 1.876 μm at 673 K then decreasing to 1.228 μm at 1073 K.
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Life Prediction of CFRP Laminates Based on Accelerated Testing Methodology, curves of CFRP strengths are statistically formulated based on Christensen’s viscoelastic crack kinetic theory. Finally, the applicability of life prediction by ATM is discussed for various CFRP laminates and structures.
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Viscoelastic Properties of Longitudinal Waves in a Hollow Cylinder,ment solid model based on the three dimensional exact theory. As a result, the attenuative and dispersive properties were able to be determined more accurately by taking into account only the first order mode vibration in the low frequency region and both the first and second order mode vibrations in the high frequency region.
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A Theory of Coupled Anisothermal Chemomechanical Degradation for Finitely-Deforming Composite Matert include the evolution of asymmetric material features potentially involving finite-dimensional growth and recession (oxidation of SiC results in a 2.2x local volume increase), leading to local rotations important to the description of failure, and the description of forces between constituents especially near free edges and cut-outs.
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Effect of Temperature and Moisture on the Mechanical Properties of Fiber Reinforced Nylon 6 Composid also influence the evolution of strength and modulus at elevated temperatures. Nylon 6 composites with continuous, aligned fibers retain their mechanical properties after exposure to increased moisture and temperature much better than composites with discontinuous, randomly aligned fibers.
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https://doi.org/10.1007/b116478nce to creep behavior, the more we add Mg, the more difficult for dislocation sliding, then the mechanism of the material become better. As the result, after adding Mg into Al, it can effectively reduce the creep behavior, so Al-Mg films are much better than pure Al films using in capacitance switches.
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