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Primerjava popuščnih diagramov jekla 34CrAiNi7-10 iz odkovka na različnih globinah : diplomsko delo
ID Zečić, Denis (Author), ID Nagode, Aleš (Mentor) More about this mentor... This link opens in a new window, ID Lečnik, Miha (Comentor), ID Naglič, Iztok (Member of the commission for defense), ID Knap, Matjaž (Member of the commission for defense)

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Abstract
V diplomskem delu so bili izdelani popuščni diagrami jekla 34CrAlNi7-10 iz industrijskega odkovka premera 340 mm. Odkovek je bil toplotno obdelan s poboljšanjem, kaljenje je potekalo s temperature 890 °C, popuščanje pa na 400 °C. Vzorci za preiskave so bili odvzeti iz treh globin preseka, in sicer 12,5 mm, 85 mm (D/4) in 170 mm (jedra), ter popuščani pri različnih temperaturah med 400 °C in 650 °C. Namen raziskave je bil primerjati vpliv različne ohlajevalne hitrosti in mikrostrukture na mehanske lastnosti ter potek popuščnih diagramov glede na globino preseka. Analize so vključevale meritve trdote, natezne preizkuse, določitev udarne žilavosti in metalografsko karakterizacijo. Rezultati so pokazali, da imajo vsi popuščni diagrami značilen potek za malolegirana jekla, da se s povečevanjem temperature popuščanja trdnostne lastnosti zmanjšujejo, žilavost pa raste, vendar se med posameznimi globinami pojavijo izrazite razlike: površina, ki ima popolnoma martenzitno strukturo, dosega največje trdnostne lastnosti in udarno žilavost, medtem ko jedro zaradi več ferita in perlita kaže nižje vrednosti. Območje D/4 predstavlja prehodno cono z vmesnimi mehanskimi lastnostmi, učinek popuščanja pa je manjši. Rezultati potrjujejo, da zaradi ohlajevalnih hitrosti in mikrostrukturne nehomogenosti mehanske lastnosti industrijskih odkovkov pogosto odstopajo, zato laboratorijski popuščni diagrami niso vedno reprezentativni za masivne industrijske izdelke. Ključne besede: konstrukcijsko jeklo 34CrAlNi7-10, popuščni diagram, toplotna obdelava, mikrostruktura, mehanske lastnosti, odkovek.

Language:Slovenian
Keywords:Ključne besede: konstrukcijsko jeklo 34CrAlNi7-10, popuščni diagram, toplotna obdelava, mikrostruktura, mehanske lastnosti, odkovek.
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:NTF - Faculty of Natural Sciences and Engineering
Place of publishing:Ljubljana
Publisher:D. Zečić
Year:2026
Number of pages:XII, 36 f.
PID:20.500.12556/RUL-183170 This link opens in a new window
UDC:669
COBISS.SI-ID:281318659 This link opens in a new window
Publication date in RUL:06.06.2026
Views:49
Downloads:29
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Secondary language

Language:English
Title:Comparison of tempering diagrams of 34CralNi7-10 steel at various depths in forging : diploma work
Abstract:
In this thesis, tempering diagrams of 34CrAlNi7-10 steel were created from an industrial forging with a diameter of 340 mm. The forging was heat treated by quenching and tempering: quenching was carried out from 890 °C, followed by tempering at 400 °C. Samples for investigation were taken from three depths of the cross-section, namely 12.5 mm, 85 mm (D/4), and 170 mm (core), and tempered at different temperatures between 400 °C and 650 °C. The purpose of the research was to compare the influence of different cooling rates and microstructures on the mechanical properties and the course of tempering diagrams with respect to the cross sectional depth. The analyses included hardness measurements, tensile tests, determination of impact toughness, and metallographic characterization. The results showed that all tempering diagrams exhibit a characteristic course for low-alloy steels, with increasing tempering temperature leading to a decrease in strength properties and an increase in toughness. However, significant differences occur between the individual depths: the surface, which has a fully martensitic structure, achieves the highest strength properties and impact toughness, while the core, due to a higher content of ferrite and pearlite, shows lower values. The D/4 region represents a transitional zone with intermediate mechanical properties, and the tempering effect is less pronounced. The results confirm that, due to cooling rates and microstructural heterogeneity, the mechanical properties of industrial forgings often deviate, and therefore laboratory tempering diagrams are not always representative of massive industrial products. Keywords: structural steel 34CrAlNi7-10, tempering diagram, heat treatment, microstructure, mechanical properties, forging.

Keywords:Keywords: structural steel 34CrAlNi7-10, tempering diagram, heat treatment, microstructure, mechanical properties, forging.

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