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Statements

Subject Item
n2:RIV%2F00216305%3A26210%2F11%3APU92557%21RIV12-MSM-26210___
rdf:type
skos:Concept n9:Vysledek
dcterms:description
An experimental program was carried out to design an after pot cooling section for Continuous Galvanising Line. The cooling system should reduce an initial temperature of 550C down to about 50 C for the shortest possible distance. Reference thickness of a strip is 1 to 2 mm and expected velocity for a strip 1 mm thick is about 3 m/s. The cooling tower has a vertical configuration and the strip is moving upwards in the first cooling section. A test for the quantity of dropping water from the cooled area was done to minimise the amount of coolant which must be removed by air knifes to protect the galvanising pool. Optimal nozzles were selected in the first stage of the project. Water and mist nozzles of various footprints were tested and finally full cone water nozzles were selected to use in a cooling chamber. A great number of laboratory cooling experiments provided a great deal of information about the cooling intensity for the following spray parameters (nozzle size, coolant pressure and flow rate, An experimental program was carried out to design an after pot cooling section for Continuous Galvanising Line. The cooling system should reduce an initial temperature of 550C down to about 50 C for the shortest possible distance. Reference thickness of a strip is 1 to 2 mm and expected velocity for a strip 1 mm thick is about 3 m/s. The cooling tower has a vertical configuration and the strip is moving upwards in the first cooling section. A test for the quantity of dropping water from the cooled area was done to minimise the amount of coolant which must be removed by air knifes to protect the galvanising pool. Optimal nozzles were selected in the first stage of the project. Water and mist nozzles of various footprints were tested and finally full cone water nozzles were selected to use in a cooling chamber. A great number of laboratory cooling experiments provided a great deal of information about the cooling intensity for the following spray parameters (nozzle size, coolant pressure and flow rate,
dcterms:title
Cooling System for Continuous Galvanizing Line Cooling System for Continuous Galvanizing Line
skos:prefLabel
Cooling System for Continuous Galvanizing Line Cooling System for Continuous Galvanizing Line
skos:notation
RIV/00216305:26210/11:PU92557!RIV12-MSM-26210___
n9:predkladatel
n10:orjk%3A26210
n5:aktivita
n14:S
n5:aktivity
S
n5:dodaniDat
n6:2012
n5:domaciTvurceVysledku
n18:6062598 n18:8009333 n18:8752338
n5:druhVysledku
n11:D
n5:duvernostUdaju
n15:S
n5:entitaPredkladatele
n19:predkladatel
n5:idSjednocenehoVysledku
191972
n5:idVysledku
RIV/00216305:26210/11:PU92557
n5:jazykVysledku
n13:eng
n5:klicovaSlova
galvanizing line, cooling unit, heat transfer, spraying
n5:klicoveSlovo
n8:spraying n8:galvanizing%20line n8:cooling%20unit n8:heat%20transfer
n5:kontrolniKodProRIV
[30B0D9DDB8BD]
n5:mistoKonaniAkce
Brno
n5:mistoVydani
Neuveden
n5:nazevZdroje
Sborník konference Metal 2011
n5:obor
n16:JG
n5:pocetDomacichTvurcuVysledku
3
n5:pocetTvurcuVysledku
4
n5:rokUplatneniVysledku
n6:2011
n5:tvurceVysledku
Raudenský, Miroslav Hnízdil, Milan Marmonier, Frederic Horský, Jaroslav
n5:typAkce
n20:WRD
n5:zahajeniAkce
2011-05-18+02:00
s:numberOfPages
6
n17:hasPublisher
Tanger spol. s.r.o.
n3:isbn
978-80-87294-22-2
n21:organizacniJednotka
26210