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Construction and Building Materials, 2017
Abstract This work emphasizes obtaining and validating experimental test results of ultra-high performance concrete (UHPC) under compressive impact loading at high strain rates (30–200 S−1). Cylindrical specimens of 9.2 mm in height and 23.8 mm in diameter were used for compression tests under dynamic and static conditions.
Mostafa Hassan, Kay Wille
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Abstract This work emphasizes obtaining and validating experimental test results of ultra-high performance concrete (UHPC) under compressive impact loading at high strain rates (30–200 S−1). Cylindrical specimens of 9.2 mm in height and 23.8 mm in diameter were used for compression tests under dynamic and static conditions.
Mostafa Hassan, Kay Wille
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Proceedings of the 9th International Symposium on Earth Resources Management & Environment
Predicting short-term precursors of underground structural failures is essential for minimizing human and economic losses. Among various sensing techniques, electromagnetic radiation (EMR) has shown potential as a non-contact method for detecting precursors to rock failure.
G. Min +6 more
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Predicting short-term precursors of underground structural failures is essential for minimizing human and economic losses. Among various sensing techniques, electromagnetic radiation (EMR) has shown potential as a non-contact method for detecting precursors to rock failure.
G. Min +6 more
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Solid State Phenomena
Glass fiber reinforced polymers (GFRPs) are becoming increasingly important in aerospace, construction, and automotive industries due to their potential for weight reduction, high strength, and excellent fatigue resistance. The failure mechanisms of GFRPs are influenced by factors such as strain-rate, frequency, stress state, and temperature.
Nojeem A. Yusuf +3 more
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Glass fiber reinforced polymers (GFRPs) are becoming increasingly important in aerospace, construction, and automotive industries due to their potential for weight reduction, high strength, and excellent fatigue resistance. The failure mechanisms of GFRPs are influenced by factors such as strain-rate, frequency, stress state, and temperature.
Nojeem A. Yusuf +3 more
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Dynamic testing by split Hopkinson pressure bars (SHPB)
2010In recent days there are lots of engineering applications, the design of armor system, highspeed transportation vehicles, aerospace industry, nuclear power plants and high-speed machinery, where materials are subjected to high strain loading. Therefore a comprehensive understanding of behaviour of materials under high strain rate loading is essential ...
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Strain rate effect of concrete based on split Hopkinson pressure bar (SHPB) test
Journal of Building EngineeringRuiyuan Huang +4 more
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