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Title:Sodobni inženirski materiali
Authors:ID Anžel, Ivan (Author)
ID Zupanič, Franc (Author)
ID Brunčko, Mihael (Author)
ID Gusel, Leo (Reviewer)
ID Kosec, Borut (Reviewer)
ID Bajić, Marina (Technical editor)
ID Perša, Jan (Technical editor)
Files:URL https://press.um.si/index.php/ump/catalog/book/958
 
.pdf 9789612869557.pdf (22,61 MB)
MD5: 6875A9E26AA0DA858AA42EA403BD3CBB
 
Language:Slovenian
Work type:Higher education textbook
Typology:2.05 - Other Educational Material
Organization:FS - Faculty of Mechanical Engineering
UZUM - University of Maribor Press
Abstract:Skripta, Sodobni inženirski materiali je kot temeljno študijsko gradivo namenjeno pervenstveno študentom 2. stopnje študijskih programov Strojništva, Gospodarskega inženirstva, Mehatronike in študentom Inženirsko oblikovanja izdelkov. Skripta je sestavljena iz treh poglavij: (i) Zgradba in izbira inženirskih materialov; (ii) Lastnosti inženirskih materialov; (iii) Primeri sodobnih inženirskih materialov. V prvem poglavju je obravnavana zgradba kovinskih, keramičnih, polimernih in kompozitnih materialov ter predstavljeni so kriteriji, ki omogočajo inženirjem glede na želeno kombinacijo lastnosti materialov, njihovo ustrezno izbiro za določeno aplikacijo. Drugo poglavje obravnava lastnosti sodobnih inženirskih materialov s poudarkom na poglobljenem študiju razlage korelacij med zgradbo, mikrostrukturo in lastnostmi. V zadnjem najobsežnejšem poglavju so predstavljeni izbrani primeri sodobnih inženirskih materialov, katerih uporaba e v industrijski praksi dandanes zelo aktualna. Če naštejemo samo najbolj zanimive: disperzijsko utrjeni materiali, spominske zlitine, konstrukcijska keramika, materiali za shranjevanje vodika, hitrostrjeni kovinski materiali, sodobne aluminijeve zlitine, biopolimeri in še mnogi drugi.
Keywords:sodobni inženirski materiali, zgradba, izbira materialov, mikrostruktura, lastnosti
Publication status:Published
Publication version:Version of Record
Place of publishing:Maribor
Place of performance:Maribor
Publisher:Univerza v Mariboru, Univerzitetna založba
Year of publishing:2025
Year of performance:2025
PID:20.500.12556/DKUM-91911 New window
ISBN:978-961-286-955-7
UDC:620(075.8)(0.034.23)
COBISS.SI-ID:225301507 New window
DOI:10.18690/um.fs.1.2025 New window
Publication date in DKUM:27.02.2025
Views:221
Downloads:771
Metadata:XML DC-XML DC-RDF
Categories:Misc.
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Licences

License:CC BY 4.0, Creative Commons Attribution 4.0 International
Link:http://creativecommons.org/licenses/by/4.0/
Description:This is the standard Creative Commons license that gives others maximum freedom to do what they want with the work as long as they credit the author.
Licensing start date:27.02.2025

Secondary language

Language:English
Title:Advanced Engineering Materials
Abstract: The script, Advanced Engineering Materials serves as a fundamental literature, primarily intended for students in master's study programs in Mechanical Engineering, Industrial Engineering, Mechatronics, and Product Design. The script is composed of three chapters: (i) Structure and Selection of Engineering Materials; (ii) Properties of Engineering Materials; (iii) Examples of Modern Engineering Materials. In the first chapter, the structure of metallic, ceramic, polymeric and composite materials is discussed, and criteria are presented that enable engineers to select appropriate materials for a specific application based on the desired combination of material properties. The second chapter addresses the properties of modern engineering materials with an emphasis on an in-depth study of the correlations between structure, microstructure, and properties. In the final and most extensive chapter, selected examples of modern engineering materials, whose application is currently very relevant in industrial practice, are presented. To name just the most interesting: dispersion-strengthened materials, shape memory alloys, engineering ceramics, hydrogen storage materials, rapidly solidified metallic materials, modern aluminium alloys, biopolymers, and many others.
Keywords:advanced engineering materials, structure, microstructure, properties, material selection


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