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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/10.1007/978-1-4684-2073-9ction of frequency, of a Delrin. (Polyoxymethylene) sample. These CR experiments, along with AFM creep and relaxation experiments, are conducted at different temperatures, and a time temperature superposition scheme is developed and applied to construct storage and loss modulus master curves over a
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Perception, Consciousness, Memorytion. Using the proposed method, the behavior of the crack tip, which is important for elucidating the growth of cracks is evaluated. A tensile load is applied to the rubber test piece containing the initial crack, and the state is photographed with a digital camera. The results show that oscillatin
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https://doi.org/10.1007/978-3-030-25879-5would be difficult to manufacture via conventional methods (milling, casting, etc.). Additively manufactured parts are likely to contain internal defects due to the melt pool, powder material, and laser velocity conditions when printing. Two different types of defects were present in the CT scans of
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Value Maps, Drives, and Emotionsuasi-static and low strain rate tests have been conducted by means of servo-pneumatic machine, whereas the high strain rate tests have been conducted by means of polymeric Hopkinson bar. The experimental results show a stress–strain relationship that is characterized by a typical S-shaped curve. As
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https://doi.org/10.1007/978-3-030-97780-1ng in many medical treatments including minimizing tissue damage during ultrasound and laser surgeries, guiding targeted drug deliveries, to name a few. Here, by using ultrahigh-speed videography, we captured the complex interaction of an inertial cavitated bubble at a soft hydrogel–water interface
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Toward Richer Labels for Visual Structure is to leverage both the dynamic strength of materials and the frequency dependency of strain. Analytically predicted dynamic responses of structures are often applied as static loads in stress analyses that ultimately dictate the weight of a structural design. Assuming a dynamic response is a stati
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