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. Composite materials often exhibit low fracture toughness values, yet various experimental techniques can enhance the toughness of thermoset and thermoplastic composites. Typical approaches include surface
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of computational methods for analysing plastic flow and fracture across various scales. These efforts will be complemented by experimental studies aimed at characterizing the material's microstructure and mechanical
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through advanced electron microscopy and mechanical testing, including tensile strength, fracture toughness, and thermal creep. Samples will undergo high-heat flux (HHF) testing for thermal fatigue and
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timber buildings, timber bridges with long spans, development of high-performance connections based on threaded rods, static and dynamic testing of timber components and investigation of fracture and high
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and Environmental Engineering (CEE) and Mechanical and Materials Engineering (MME) seek to hire a research assistant professor who will be closely affiliated with the Midwest Roadside Safety Facility
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to study corrosion, cracking and mechanical degradation, develop advanced computational models using modern C++ and high-performance computing to simulate material behaviour over a 100+ year timespan. This
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timber buildings, timber bridges with long spans, development of high-performance connections based on threaded rods, static and dynamic testing of timber components and investigation of fracture and high
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on the damage and fracture properties of metallic materials, considering the underlying failure mechanisms. Meanwhile, you will employ experimental approaches, including mechanical testing (in-situ damage