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- W2247328110 abstract "Research in the fields of impact science and penetration mechanics is often focused on the acceleration of projectiles during launch and penetration. In recent studies, various researchers have started using the Hopkinson bar to evaluate the performance of shock accelerometers for 10,000–100,000 g (1 g = 9.81 m/s2) accelerations. However, very little work has focused on shock environments below 10,000 g using the Hopkinson bar setup, although it has been reported that there may exist the peak amplitudes of sub 10,000 g acceleration during the penetration of concrete targets. Consequently, the presence of these acceleration levels in projectile penetration yields a definite need to create well-controlled accelerations below 10,000 g in a laboratory setting. In this study, two types of experimental techniques were investigated for accelerometer performance evaluation. The first was to modify the Hopkinson bar setup to test shock accelerometers with special attention to the acceleration level below 10,000 g. The second was to investigate a drop tower tester for the evaluation of shock accelerometers below 1,000 g." @default.
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- W2247328110 date "2013-08-22" @default.
- W2247328110 modified "2023-09-26" @default.
- W2247328110 title "Testing Techniques for Shock Accelerometers below 10,000 g" @default.
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- W2247328110 doi "https://doi.org/10.1007/978-3-319-00771-7_41" @default.
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