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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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https://doi.org/10.1007/978-1-4615-5147-8so increases with heating rate, as has been observed in our experiments and by other authors. Our research has established a clear relationship between heating rates in thermal experiments and strain rates in mechanical experiments, by considering thermal expansion and mechanical strain to be equiva
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Parallel Performance Visualization,terial cell wall, such as thickness or elastic modulus, may contribute to the ability of a bacterial cell to resist antibiotics. Techniques like atomic force microscopy (AFM) are used to quantify bacterial cell mechanical properties and image cell structures at nanoscale resolutions. An additional b
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https://doi.org/10.1007/978-1-4615-5147-8vior under different loading conditions. Glass beads are often used as a model granular material in simulations due to their regular geometries. In this study, we focus on understanding the incipient failure of confined glass beads assembly and a glass bead/epoxy composite under quasi-static compres
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Parallel Performance Visualization,electronic device, aerospace, and automotive industries. Due to the viscoelastic mechanical behavior of PSAs, it is necessary to characterize these materials using strain rates and temperatures that are relevant to the intended application. This often proves challenging as the application design typ
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The Ultimate Limits of Information Densityrcentage of different elements in AA6063-T6 was also obtained using spectroscopy. The quasi-static tests at different strain rates from room temperature to higher temperatures were performed on a universal testing machine. Notched tensile specimens of notch radii 1 mm, 2 mm, and 3 mm were used to fi
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