materiali in uporaba
Domen Batagelj (Author), Jaka Tušek (Mentor), Franci Pušavec (Co-mentor)

Abstract

Aditivne tehnologije omogočajo izdelavo prenosnikov toplote, ki jih predtem ni bilo mogoče izdelati zaradi omejitev konvencionalnih izdelovalnih postopkov. Novi tako dobljeni dizajni so tehniško precej boljši od klasičnih konceptov ter hitrejši in enostavnejši za izdelavo. V delu so opisane klasične izvedbe prenosnikov toplote in njihovo dimenzioniranje, opisane so najpomembnejše tehnologije 3D tiskanja, opisane so prednosti in slabosti teh tehnologij na splošnih primerih in primerih izdelave prenosnikov toplote. Teoretičnem delu sledi eksperimentalna analiza in primerjava tlačnih padcev dveh različnih 3D tiskanih prenosnikov toplote, ki imajo pretočne kanale različnih oblik.

Keywords

diplomske naloge;prenosniki toplote;aditivne tehnologije;tlačne izgube;regeneratorji;optimirani prenosniki toplote;

Data

Language: Slovenian
Year of publishing:
Typology: 2.11 - Undergraduate Thesis
Organization: UL FS - Faculty of Mechanical Engineering
Publisher: [D. Batagelj]
UDC: 536.24:004.925.84:621.79(043.2)
COBISS: 76978179 Link will open in a new window
Views: 218
Downloads: 24
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Other data

Secondary language: English
Secondary title: Heat exchangers made with additive manufacturing technologies: Materials and applications
Secondary abstract: Additive manufacturing technologies make it possible to manufacture heat exchanger designs that were impossible to make in the past because of the limitations of conventional manufacturing technologies. Newer designs enabled by additive manufacturing are in some regards technically superior and in some cases cheaper and quicker to manufacture than their classical counterparts. In this work we described the classical heat exchanger designs, and some general methods of sizing. We described the most important types of additive manufacturing technologies along with their advantages and limitations in the manufacturing of heat exchangers. In the experimental part of this work we designed two different designs of a heat exchanger with differently shaped channels and performed a pressure drop analysis.
Secondary keywords: thesis;heat exchangers;additive manufacturing;pressure drop;regenerator;optimized heat exchangers;materials for heat exchangers;
Type (COBISS): Final paper
Study programme: 0
Thesis comment: Univ. v Ljubljani, Fak. za strojništvo
Pages: XVII, 70 f.
ID: 13398424
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