Modern trends in production of brazed heat exchangers for automotive industry
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Abstract
The article has presented the latest trends in the production of aluminum heat exchangers used in the automotive industry. Presented changes mainly pertain to tightening requirements for currently manufactured heat exchangers. The effect of factors on the heat exchanger design and brazing technology which is commonly used in their production has been given.
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How to Cite
[1]
Z. Mirski and J. Pabian, “Modern trends in production of brazed heat exchangers for automotive industry”, Weld. Tech. Rev., vol. 89, no. 8, Aug. 2017.
Section
Original Articles
References
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Materiały firrmy Solvay Flux GmbH: The NOCOLOK® Flux Brazing Process,http://www.solvay.com/en/binaries/NOCOLOK_Brazing_Process-en-de-179520.pdf
Mirski Z., Granat K., Misiek A.: Lutowanie twarde aluminiowych wymienników ciepła w przemyśle motoryzacyjnym, Spajanie materiałów konstrukcyjnych , 2/2015, s. 32-34.
Swiderski H.W., Lauzon D: Myths about Aluminium Brazing with Non-Corrosive Fluxes NOCOLOK® Flux Brazing Technology, Materiały rmy Solvay Flux GmbH, http://www.aluminium-brazing.com/sponsor/nocolok/ Files/PDFs/31390.pdf
Melander M., Oskarsson A., Haller S.: Next generation multilayer – MUL- TICLAD: Material for brazed heat exchanger applications, 8th International Congress Aluminum Brazing, 2014, s. 45-49.
Hawksworth D.K., Westergard R., Nillson P.: Brazing properties of Trillium composite, 8th International Congress Aluminum Brazing, 2014, s. 84-88.
Eckhard K., Janssen H. : CleanBraze: uxless brazing of aluminum heat exchangers, 8th International Congress Aluminum Brazing, 2014, s. 50-51.
Orman L., Swiderski H.W., Lauzon D. : Brazing of Aluminium Alloys with Higher Magnesium Content using Non-Corrosive Fluxes, Aluminum Brazing - News, Knowledge and Technology, http://www.aluminium-brazing. com, 3-7/2014.
Garcia J., Massoulier C., Faille P. : Brazeability of Aluminum Alloys Containing Magnesium by CAB Process Using Cesium Flux, SAE Technical Paper 2001-01-1763, 2001, http://www.aluminium-brazing.com/sponsor/nocolok/Files/PDFs/VTMS5_Garcia_NOCOLOK_Cs_Flux.pdf
Frąckowiak E., Mroziński W.: Zastosowanie lutowania płomieniowego w produkcji aluminiowych samochodowych wymienników ciepła, Przegląd Spawalnictwa, 9/2007, s. 57-62.
Materiały firrmy Solvay Flux GmbH: The NOCOLOK® Flux Brazing Process,http://www.solvay.com/en/binaries/NOCOLOK_Brazing_Process-en-de-179520.pdf
Mirski Z., Granat K., Misiek A.: Lutowanie twarde aluminiowych wymienników ciepła w przemyśle motoryzacyjnym, Spajanie materiałów konstrukcyjnych , 2/2015, s. 32-34.
Swiderski H.W., Lauzon D: Myths about Aluminium Brazing with Non-Corrosive Fluxes NOCOLOK® Flux Brazing Technology, Materiały rmy Solvay Flux GmbH, http://www.aluminium-brazing.com/sponsor/nocolok/ Files/PDFs/31390.pdf
Melander M., Oskarsson A., Haller S.: Next generation multilayer – MUL- TICLAD: Material for brazed heat exchanger applications, 8th International Congress Aluminum Brazing, 2014, s. 45-49.
Hawksworth D.K., Westergard R., Nillson P.: Brazing properties of Trillium composite, 8th International Congress Aluminum Brazing, 2014, s. 84-88.
Eckhard K., Janssen H. : CleanBraze: uxless brazing of aluminum heat exchangers, 8th International Congress Aluminum Brazing, 2014, s. 50-51.
Orman L., Swiderski H.W., Lauzon D. : Brazing of Aluminium Alloys with Higher Magnesium Content using Non-Corrosive Fluxes, Aluminum Brazing - News, Knowledge and Technology, http://www.aluminium-brazing. com, 3-7/2014.
Garcia J., Massoulier C., Faille P. : Brazeability of Aluminum Alloys Containing Magnesium by CAB Process Using Cesium Flux, SAE Technical Paper 2001-01-1763, 2001, http://www.aluminium-brazing.com/sponsor/nocolok/Files/PDFs/VTMS5_Garcia_NOCOLOK_Cs_Flux.pdf