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Titlebook: Challenges in Mechanics of Time-Dependent Materials & Mechanics of Biological Systems and Materials,; Proceedings of the 2 Alireza Amirkhiz

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Conference proceedings 2023esearch in Progress..Cellular Biomechanics and Mechanobiology..Biofilms and Microbe Mechanics..Traumatic Brain Injury..Cardiac and Vascular Biomechanics..Orthopedic and Disease Biomechanics..Time Dependence of Biomaterials..Experimental Techniques in Biological and Biomimetic Systems.
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Evaluating the Effect of the Carbon Black on the Crack Growth Behavior of Natural Rubber Sheets witrrelation (DIC). From this experiment, the relationship between tearing energy and crack growth rate is obtained for NR. It is revealed only the specimen filled the most CB is not broken. This result suggests that the dissipation process at the crack tip differs depending on the amount of CB.
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Experimental Characterization of the Rate-Dependent Tensile Failure Behavior of Photocured Elastomeharacterize the mechanical behavior of the elastomer from quasi-static to moderate strain rates and showed an increase in both fracture strain and stress of TangoPlus with increasing applied strain rate. To further investigate its time-dependent fracture behavior, we conducted relaxation tests under different strain and strain rates.
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https://doi.org/10.1007/978-1-4615-5147-8haracterize the mechanical behavior of the elastomer from quasi-static to moderate strain rates and showed an increase in both fracture strain and stress of TangoPlus with increasing applied strain rate. To further investigate its time-dependent fracture behavior, we conducted relaxation tests under different strain and strain rates.
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Evaluating the Effect of the Carbon Black on the Crack Growth Behavior of Natural Rubber Sheets wite difference in crack growth behavior due to difference of the amount of CB is also evaluated. For this purpose, the crack growth behavior is observed on rubber test specimens with various of the amounts of CB. Then, the images recorded with a high-speed camera are analyzed by using digital image co
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Experimental Characterization of the Rate-Dependent Tensile Failure Behavior of Photocured Elastomer different loading rates remains poorly characterized. Here, we conducted extensive experimental tests to investigate the rate-dependent mechanical behavior of a typical photocured elastomer – TangoPlus FLX 930. We applied thermal analysis to analyze its constituents and uniaxial tension tests to c
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