Szczegóły publikacji

Opis bibliograficzny

Finite element analysis of pressure forming of thin-walled aluminum heat exchangers / GRZEBINOGA Justyna, MAMALA Andrzej, KWAŚNIEWSKI Paweł, KIESIEWICZ Grzegorz, ŚCIĘŻOR Wojciech, NOWAK Andrzej, KORDASZEWSKI Szymon, KOWAL Radosław, ZASADZIŃSKA Małgorzata // W: Metal 2017 : 26th international conference on Metallurgy and materials : May 24th–26th 2017, Brno, Czech Republic, EU : abstracts. — Ostrava : TANGER Ltd., cop. 2017. — ISBN: 978-80-87294-73-4. — S. 108. — Pełny tekst na CD-ROM-ie. — S. 427–432. — Wymagania systemowe: Adobe Reader ; napęd CD-ROM. — Bibliogr. s. 432, Abstr. — ISBN 978-80-87294-79-6

Autorzy (9)

Słowa kluczowe

hybrid solar collectorFEA methodheat exchangeraluminium alloyspressure forming

Dane bibliometryczne

ID BaDAP105975
Data dodania do BaDAP2017-07-01
Rok publikacji2017
Typ publikacjimateriały konferencyjne (aut.)
Otwarty dostęptak
Konferencja26th International Conference on Metallurgy and Materials

Abstract

Modern high-efficiency heat exchangers used in renewable energy systems are more and more often based on light metals and their alloys. The reasons for this are both economic and technical. Aluminium alloys show very good properties e.g. low mass density and heat conductivity and the price of the material is advantageous compared to any alternative compounds. The analysed group of heat exchangers is utilized in new generation of compact hybrid solar panels used for cogeneration of electrical energy and heat from sun radiation. The heat exchanger properties are determined by the materials of construction, as well as physical properties, technology and erosion and corrosion susceptibility caused by the exchanger's fluid. The operating parameters of heat exchangers are limited to a great extent by the internal surface condition of the exchanger's pipes. Their morphology is highly dependent on the manufacturing processes. This paper presents the study on stress and strain obtained from the finite element analysis for aluminium pipes at different stages of their pressure forming. © 2017 TANGER Ltd., Ostrava.

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