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Obratovalna trdnost magnezijeve zlitine AZ31 pri večosnem obremenjevanju s spremenljivo amplitudo
ID Litrop, Aljaž (Author), ID Šeruga, Domen (Mentor) More about this mentor... This link opens in a new window, ID Klemenc, Jernej (Comentor)

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Abstract
Negativni vplivi transporta na okolje spodbujajo razvoj lahkih konstrukcijskih materialov, ki omogočajo zmanjšanje mase vozil in posledično emisij škodljivih plinov. Magnezijeva zlitina AZ31 je zaradi nizke gostote obetaven material, vendar njena uporaba zahteva natančno poznavanje mehanskega odziva pri kompleksnih obremenitvah. Namen raziskave je bil razvoj numeričnega modela za napovedovanje večosnega napetostno-deformacijskega odziva zlitine AZ31 pri cikličnem obremenjevanju s spremenljivo amplitudo. Raziskava je vključevala eksperimentalni in numerični del. V eksperimentalnem delu je bila razvita nova oblika strižnega preizkušanca ter izboljšana konstrukcija prijemal, kar je omogočilo zanesljivo izvedbo cikličnih preizkusov. Numerični del je zajemal nadgradnjo obstoječega konstitutivnega modela z implementacijo stabilnega algoritma za posodobitev napetostnega tenzorja in poenostavljeno določanje materialnih parametrov. Razviti model je bil validiran z lastnimi eksperimentalnimi rezultati in rezultati iz literature ter je izkazal dobro skladnost pri enoosnih, strižnih in proporcionalnih večosnih obremenjevanjih. Predlagani pristop predstavlja pomemben korak k fizikalno utemeljenemu modeliranju cikličnega obnašanja zlitin z heksagonalno gosto zloženo kristalno rešetko kot je AZ31.

Language:Slovenian
Keywords:magnezijeve zlitine, AZ31, večosno ciklično obremenjevanje, konstitutivno modeliranje, strižni preizkušanci, optimizacija prijemal, numerični modeli
Work type:Doctoral dissertation
Typology:2.08 - Doctoral Dissertation
Organization:FS - Faculty of Mechanical Engineering
Publisher:A. Litrop
Year:2026
Number of pages:XXII, 112 str.
PID:20.500.12556/RUL-178893 This link opens in a new window
UDC:539.43:669.721.5:519.254(043.3)
COBISS.SI-ID:267099907 This link opens in a new window
Publication date in RUL:31.01.2026
Views:498
Downloads:235
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Secondary language

Language:English
Title:Operational strength of magnesium alloy AZ31 under multiaxial loading with variable amplitude
Abstract:
The negative environmental impacts of transportation are driving the development of lightweight structural materials that enable vehicle mass reduction and consequently lower emissions of harmful gases. Magnesium alloy AZ31 is a promising material due to its low density; however, its practical application requires a precise understanding of the mechanical response under complex loading conditions. The aim of this research was to develop a numerical model capable of predicting the multiaxial stress–strain response of the AZ31 alloy under cyclic loading with variable amplitude. The study consisted of both experimental and numerical parts. In the experimental part, a new design of a shear specimen and an improved shear testing fixtures were developed, enabling reliable cyclic testing. The numerical part involved an enhancement of an existing constitutive model through the implementation of a stable stress tensor update algorithm and a simplified procedure for determining material parameters. The developed model was validated using both original experimental results and data from the literature, demonstrating good agreement under uniaxial, shear, and proportional multiaxial loading conditions. The proposed approach represents a significant step toward physically grounded modelling of the cyclic behaviour of hexagonal close-packed alloys such as AZ31.

Keywords:magnesium alloys, AZ31, multiaxial cyclic loading, constitutive modelling, shear specimens, shear testing fixtures, numerical models

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