Results 271 to 280 of about 830,623 (326)
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A New High-Temperature Furnace Chamber
Materials Science Forum, 1998E.B. Fantner +4 more
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Multiple Chamber Vacuum Furnaces vs. Single-Chamber Vacuum Furnaces—A Review
Heat Treating Conference, 2017Abstract A review of vacuum processing in a multiple-chamber vs. single-chamber vacuum furnace and the advantages and disadvantages of both design concepts will be presented. Cycle calculations will be shown to illustrate the differences in the floor-to-floor time, heating energy required to process and cooling power to quench a ...
Benjamin T. Bernard, William J. Bernard
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Crystallization in a chamber furnace
Journal of Applied Crystallography, 1997A model of an air cooler (`cold finger') in a laboratory chamber furnace, for simultaneous regulation of different crystallization rates in a series of Tamman test tubes with the purpose of obtaining crystals, is given.
B. Cabrić, M. Kovacević, T. Pavlović
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Modernization of Chamber Furnace Electric Equipment
2020 International Multi-Conference on Industrial Engineering and Modern Technologies (FarEastCon), 2020As part of the electrical equipment modernization, we propose a continuous temperature control system for a chamber resistance furnace. A furnace model is developed in the VisSim software package, which takes into account the heterogeneity of the furnace as a control object and includes 3 heat transfer circuits. System delays caused mainly by the delay
S.A. Panishev +2 more
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3.11.7 FURNACES AND COMBUSTION CHAMBERS: ADVANCED FURNACE MODELS
Heat Exchanger Design Updates, 2006Replace the existing Sections 3.11.1-3.11.7 in the folder for Part 3 with the new Sections.
J. S. Truelove, R. J. Tucker
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3.11.6 FURNACES AND COMBUSTION CHAMBERS: THE MULTIZONE FURNACE MODEL
Heat Exchanger Design Updates, 2006Replace the existing Sections 3.11.1-3.11.7 in the folder for Part 3 with the new Sections.
J. S. Truelove, R. J. Tucker
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Crystallization in a laboratory chamber furnace
Journal of Applied Crystallography, 1994An apparatus for crystal growth from the melt, based on Stober's method and realized in our laboratory, is described.
B. Čabrić, T. Pavlović, B. Žižić
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3.11.3 FURNACES AND COMBUSTION CHAMBERS: HEAT TRANSFER IN FURNACES
Heat Exchanger Design Updates, 2006Replace the existing Sections 3.11.1-3.11.7 in the folder for Part 3 with the new Sections.
J. M. Rhine +2 more
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3.11.4 FURNACES AND COMBUSTION CHAMBERS: THE STIRRED-REACTOR FURNACE MODEL
Heat Exchanger Design Updates, 2006Replace the existing Sections 3.11.1-3.11.7 in the folder for Part 3 with the new Sections.
R. J. Tucker, J. S. Truelove
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3.11.2 FURNACES AND COMBUSTION CHAMBERS: PROCESS HEATERS, BOILERS AND FURNACES
Heat Exchanger Design Updates, 2006Replace the existing Sections 3.11.1-3.11.7 in the folder for Part 3 with the new Sections.
J. M. Rhine, J. S. Truelove
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