Vaš brskalnik ne omogoča JavaScript!
JavaScript je nujen za pravilno delovanje teh spletnih strani. Omogočite JavaScript ali pa uporabite sodobnejši brskalnik.
Repozitorij Univerze v Ljubljani
Nacionalni portal odprte znanosti
Odprta znanost
DiKUL
slv
|
eng
Iskanje
Brskanje
Novo v RUL
Kaj je RUL
V številkah
Pomoč
Prijava
Podrobno
Vpliv deformacijske hitrosti na mehanske lastnosti jekla PK11SP mikrolegiranega s titanom
ID
Tomažič, Tanja
(
Avtor
),
ID
Fajfar, Peter
(
Mentor
)
Več o mentorju...
,
ID
Šuler, Blaž
(
Komentor
)
PDF - Predstavitvena datoteka,
prenos
(2,48 MB)
MD5: 39498EAD775319AC1C0047FEC7A92AE3
Galerija slik
Izvleček
Namen diplomskega dela z naslovom Vpliv deformacijske hitrosti na mehanske lastnosti jekla PK11SP mikrolegiranega s titanom je bilo ugotoviti kakšen je vpliv deformacijske hitrosti na mehanske lastnosti jekla PK11SP pri enaki kemijski sestavi, začetni temperaturi kovanja/valjanja, stopnji deformacije in enakem postopku toplotne obdelave. Jeklo PK11SP je avstenitno nerjavno jeklo, stabilizirano s titanom. Glavni namen titana je, da se preprečuje vezavo ogljika s kromom v kromov karbid, pri čemer se prepreči nastajanje kromovih karbidov na mejah kristalnih zrn. Glavni cilj je nastajanje titanovega karbida, saj ima titan višjo afiniteto do ogljika kot krom. S tem se poveča odpornost jekla na interkristalno korozijo. Kot vhodni material smo uporabili ingot iste šarže. Iz ingota smo zvaljali gredico in jo razdelili na štiri kose. Vsakega od kosov smo preoblikovali z drugim tehnološkim postopkom: valjanje na srednji progi, kovanje na kovaškem kladivu in kovanje na kovaški stiskalnici. V vseh primerih so bile začetne temperature preoblikovanja enake. Prav tako so bile enake končne dimenzije palic premera 35 mm. Razlika je bila le v končnih temperaturah in deformacijskih hitrostih. Po izdelavi smo polizdelke gasili v vodi. Iz polizdelkov bomo naredili preizkušance za mehanske preizkuse: natezni preizkus (pri sobni temperaturi), test žilavosti ter izmerili trdote po Brinellu. Z metalografskimi raziskavami smo določili velikost kristalnih zrn. Najvišje vrednosti natezne trdnosti dosegamo z hitrostjo deformacije 7 s-1 pri isti hitrosti deformacije pa zabeležimo tudi na splošno najvišje vrednosti žilavosti. Pri hitrosti 5 s-1 pa zabeležimo najvišje vrednosti napetosti tečenja, kontrakcije, raztezka in trdote.
Jezik:
Slovenski jezik
Ključne besede:
avstenitno nerjavno jeklo
,
PK11SP
,
deformacijska hitrost
,
mehanske lastnosti.
Vrsta gradiva:
Diplomsko delo/naloga
Organizacija:
NTF - Naravoslovnotehniška fakulteta
Leto izida:
2020
PID:
20.500.12556/RUL-120909
COBISS.SI-ID:
32974851
Datum objave v RUL:
26.09.2020
Število ogledov:
1584
Število prenosov:
165
Metapodatki:
Citiraj gradivo
Navadno besedilo
BibTeX
EndNote XML
EndNote/Refer
RIS
ABNT
ACM Ref
AMA
APA
Chicago 17th Author-Date
Harvard
IEEE
ISO 690
MLA
Vancouver
:
TOMAŽIČ, Tanja, 2020,
Vpliv deformacijske hitrosti na mehanske lastnosti jekla PK11SP mikrolegiranega s titanom
[na spletu]. Diplomsko delo. [Dostopano 26 marec 2025]. Pridobljeno s: https://repozitorij.uni-lj.si/IzpisGradiva.php?lang=slv&id=120909
Kopiraj citat
Objavi na:
Sekundarni jezik
Jezik:
Angleški jezik
Naslov:
Effect of strain rate on mechanical properties of PK11SP steel microalloyed with titanium
Izvleček:
The purpose of this diploma thesis entitled The Effects of strain rate on mechanical properties of PK11SP steel microalloyed with titanium was to determine the influence of strain rate on mechanical properties of PK11SP steel at the same chemical composition, initial forging/rolling temperature, deformation rate and the same heat treatment. PK11SP is an austenitic stainless steel, stabilized with titanium. The main purpose of titanium as a microalloying element is to prevent the binding of chromium and carbon and the formation of chromium carbides which would if the formation occurred form on the boundaries of the crystal grains and would have caused corrosion on the grain boundaries (intergranular corrosion). As input material we used an ingot of the same batch. We rolled the ingot into a billet and divided it into four pieces. Then every piece was processed with a different technological process. We used rolling (on the middle track), forging with a forging hammer and forging with a forging press. In all cases (all of four pieces) the initial temperature stayed the same. So were the final dimensions of the rods (35 mm in the diameter). The difference was only in the final temperatures and the strain rates. After production, the semi-finished products were quenched in water. From the semi-finished products, the specimens for mechanical tests were produced. The tests that have been performed were tensile test at room temperature, toughness test and Brinell hardness measurements were taken. At the end the grain size measurements were made with the use of metallographic techniques for determination of grain size. After the tests we concluded that the highest tensile strengths were obtained after strain rate 7 s-1. At the same strain rate we also obtained the highest values of toughness. At the strain rate 5 s-1 we obtained the highest values of yield stress, contraction, elongation and hardness.
Ključne besede:
austenitic stainless steel
,
PK11SP
,
strain rate
,
mechanical properties.
Podobna dela
Podobna dela v RUL:
ǂ theǂ effect of different heat treatments on mechanical properties of SIQUAL 7765
effect of process parameters on mechanical properties of VCNMO200 steel
effect of strain rate on mechanical properties of PK11SP steel microalloyed with titanium
Influence of strain rate on mechanical properties of PT955 steel
Mehanske lastnosti zlitine AlCu5,5Nd2,5
Podobna dela v drugih slovenskih zbirkah:
Vpliv gostote na mehanske lastnosti jekla, proizvedenega s prškasto metalurgijo
Tensile test models for low-carbon microalloyed steels with high niobium contents
Effect of surface modification on mechanical properties of hemp fibers
EFFECT OF NICKEL ON PROPERTIES OF ALUMINIUM BRONZES
Numerical analysis of hybrid connecting rod
Nazaj