Zobrazeno 1 - 10
of 23
pro vyhledávání: '"J.M. Rudys"'
Autor:
Steven F. Glover, R.J. Hickman, M. E. Sceiford, Jane M. Lehr, F. E. White, G. E. Pena, L.X. Schneider, Dillon H. McDaniel, C.A. Hall, D.M. Van De Valde, K.W. Reed, K.C. Hodge, S.J. Tullar, D. J. Lucero, R.W. Lemke, J.M. Rudys, Jean-Paul Davis, J. G. Puissant, P. J. Foster
Publikováno v:
IEEE Transactions on Plasma Science. 40:2629-2636
Genesis is a compact pulsed power platform designed by Sandia National Laboratories to generate precision shaped multi-MA current waves with a rise time of 200-500 ns. In this system, two hundred and forty, 200 kV, 80 kA modules are selectively trigg
Autor:
F. E. White, R.J. Hickman, M. E. Sceiford, Jean-Paul Davis, K.W. Reed, J. G. Puissant, S.J. Tullar, D.M. Van De Valde, Dillon H. McDaniel, Steven F. Glover, Jane M. Lehr, William A. Johnson, Larry K. Warne, C.A. Hall, J.M. Rudys, K.C. Hodge, D. J. Lucero, R.W. Lemke, Heath L. Hanshaw, Rebecca S. Coats, L.X. Schneider, G. E. Pena
Publikováno v:
IEEE Transactions on Plasma Science. 40:2588-2596
The success of dynamic materials properties research at Sandia National Laboratories has led to research into ultralow impedance, compact pulsed power systems capable of multi-MA shaped current pulses with rise times ranging from 220 to 500 ns. The G
Autor:
Jane M. Lehr, R.J. Hickman, Jean-Paul Davis, J. G. Puissant, K.C. Hodge, D. J. Lucero, G. E. Pena, J.M. Rudys, Steven F. Glover, M. E. Sceiford, C.A. Hall, L.X. Schneider, K.W. Reed, S.J. Tullar, Dillon H. McDaniel, D.M. Van De Valde, F.E. White
Publikováno v:
IEEE Transactions on Plasma Science. 38:2620-2626
Enabling technologies are being developed at Sandia National Laboratories to improve the performance and flexibility of compact pulsed-power drivers for magnetically driven dynamic materials properties research. We have designed a modular system that
Publikováno v:
2013 19th IEEE Pulsed Power Conference (PPC).
Summary form only given. Dielectric materials are a critical component of pulsed power systems. Often times these materials are the limiting factor in system design and operation. To aid in the understanding and prediction of the breakdown of polypro
The use of electron beam accelerator systems is prevalent in industrial processing applications including cross-linking of polymers such as wire and cable insulation, curing of inks and coatings, food packaging, medical product sterilization and wast
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5955b17e16c70ffe17f37e162c83087c
https://zenodo.org/record/1278954
https://zenodo.org/record/1278954
Publikováno v:
2013 Abstracts IEEE International Conference on Plasma Science (ICOPS).
The need for ground based missile-scale and air-breathing propulsion test capabilities above Mach 7 led to the reconstruction of the HAWK electron beam accelerator approximately a decade ago. Electron beams were chosen as a source for adding thermal
Publikováno v:
2013 19th IEEE Pulsed Power Conference (PPC).
Summary form only given. Ferroelectric materials exhibit a hysteretic response similar to the B-H curve of magnetic materials. With ferroelectric materials the polarization-electric field (P-E) hysteretic loop is typically measured at low frequencies
Autor:
S.J. Tullar, R.J. Hickman, Steven F. Glover, Jean-Paul Davis, Jane M. Lehr, J. G. Puissant, K.C. Hodge, F. E. White, C.A. Hall, Dillon H. McDaniel, J.M. Rudys, M. E. Sceiford, D. J. Lucero, R.W. Lemke, L.X. Schneider, D.M. Van De Valde, G. E. Pena, K.W. Reed, P. J. Foster
Publikováno v:
2011 IEEE Pulsed Power Conference.
Genesis is a compact pulsed power platform designed by Sandia National Laboratories to generate precision shaped multi-MA current waves with a rise time of 200–500 ns. In this system, two hundred and forty, 200 kV, 80 kA modules are selectively tri
Fast electrical energy storage or Voltage-Driven Technology (VDT) has dominated fast, high-voltage pulsed power systems for the past six decades. Fast magnetic energy storage or Current-Driven Technology (CDT) is characterized by 10,000 X higher ener
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::82a0c43fe48a0b4e5a61c4c8b22c64b1
https://doi.org/10.2172/973361
https://doi.org/10.2172/973361
Autor:
Jane M. Lehr, R.J. Hickman, D. J. Lucero, L.X. Schneider, K.W. Reed, M. E. Sceiford, D.M. Van De Valde, Steven F. Glover, Jean-Paul Davis, J. G. Puissant, C.A. Hall, J.M. Rudys, F.E. White, S.J. Tullar, Dillon H. McDaniel, K.C. Hodge, G. E. Pena
Publikováno v:
2009 IEEE Pulsed Power Conference.
Enabling technologies are being developed at Sandia National Laboratories to improve the performance and flexibility of compact pulsed power drivers for magnetically driven dynamic materials properties research. We have designed a modular system capa