Design of a Miniature Explosive Isentropic Compression Experiment

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Release : 2010
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Design of a Miniature Explosive Isentropic Compression Experiment - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Design of a Miniature Explosive Isentropic Compression Experiment write by . This book was released on 2010. Design of a Miniature Explosive Isentropic Compression Experiment available in PDF, EPUB and Kindle. The purpose of this design study is to adapt the High Explosive Pulsed Power Isentropic Compression Experiment (HEPP-ICE) to milligram quantities of materials at stresses of ≈100 GPa. For this miniature application we assume that a parallel plate stripline of ≈2.5 mm width is needed to compress the samples. In any parallel plate load, the rising currents flow preferentially along the outside edges of the load where the specific impedance is a minimum [1]. Therefore, the peak current must be between 1 and 2 MA to reach a stress of 100 GPa in the center of a 2.5 mm wide parallel plate load; these are small relative to typical HEPP-ICE currents. We show that a capacitor bank alone exceeds the requirements of this miniature ICE experiment and a flux compression generator (FCG) is not necessary. The proposed circuit will comprise one half of the 2.4-MJ bank, i.e., the 6-mF, 20-kV, 1.2 MJ capacitor bank used in the original HEPP-ICE circuit. Explosive opening and closing switches will still be required because the rise time of the capacitor circuit would be of the order of 30 [mu]s without them. For isentropic loading in these small samples, stress rise times of ≈200 ns are required.

Recent Progress with High Explosive Pulsed Power Isentropic Compression Experiments

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Release : 2008
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Recent Progress with High Explosive Pulsed Power Isentropic Compression Experiments - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Recent Progress with High Explosive Pulsed Power Isentropic Compression Experiments write by . This book was released on 2008. Recent Progress with High Explosive Pulsed Power Isentropic Compression Experiments available in PDF, EPUB and Kindle.

Design and Analysis of Isentropic Compression Experiments

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Release : 1979
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Design and Analysis of Isentropic Compression Experiments - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Design and Analysis of Isentropic Compression Experiments write by . This book was released on 1979. Design and Analysis of Isentropic Compression Experiments available in PDF, EPUB and Kindle. The use of magnetic flux compression to isentropically compress matter is summarized. Details of the process used to extract boundary data from the flash radiographs and the design criteria for the containment of very compressible material are discussed. Finally, suggestions for improvement of the next generation of experiments are made.

Isentropic Compression of High Explosives with the Z Accelerator

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Release : 2002
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Isentropic Compression of High Explosives with the Z Accelerator - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Isentropic Compression of High Explosives with the Z Accelerator write by . This book was released on 2002. Isentropic Compression of High Explosives with the Z Accelerator available in PDF, EPUB and Kindle. Isentropic compression experiments (ICE) were performed on a variety of high explosives. The samples were dynamically loaded by Sandia's Z-accelerator with a ramp compression wave of 300 ns rise time and peak stress of 100-350 kbar. Sample/window interface velocities were recorded with VISAR. Experiments were performed on LX04 to obtain the stress-strain relation using a backward integration technique. Experiments were similarly performed on LX17 and the results compared to hydrodynamics calculations that used a reactive flow equation of state. Recent experiments were also conducted on single crystal HMX with the aim of detecting the phase transition believed to occur at 270 kbar.

Technical Abstract Bulletin

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Genre : Science
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