Detail publikace
CYCLIC FATIGUE RESISTANCE OF AZ91 MAGNESIUM ALLOY
NĚMCOVÁ, A. ZAPLETAL, J. JULIŠ, M. PODRÁBSKÝ, T.
Anglický název
CYCLIC FATIGUE RESISTANCE OF AZ91 MAGNESIUM ALLOY
Typ
Článek recenzovaný mimo WoS a Scopus
Jazyk
en
Originální abstrakt
The paper deals with determination of principal mechanical properties and the investigation of fatigue behaviour of AZ91 magnesium alloy. The experimental material was made by squeeze casting technique and heat treated to obtain T4 state (solution annealing), when hard, brittle Mg17Al12 intermetallic phase is dissolved. The basic mechanical properties (Young's modulus, ultimate tensile strength, yield strength, elongation to fracture and reduction of area) were determined by static tensile test. Furthermore, fatigue parameters were investigated. The S-N curve on the basis of smooth test bars tested under symmetrical push-pull loading at room temperature was evaluated. The measured data were subsequently used for fitting with suitable regression functions (Kohout & Věchet and Stromeyer) for determination of the fatigue parameters. Fatigue limit ?C of the studied alloy for 108 cycles is approaching 50 MPa. In addition, the fracture surfaces were observed by scanning electron microscopy. The failure analysis proved that the striations were observed in fatigue crack propagation area and in the area of static fracture was observed the transgranular ductile fracture. The structure of the studied alloy in the basic state and after heat treatment was observed by light and scanning electron microscopy.
Klíčová slova anglicky
Magnesium alloy, solution annealing, mechanical properties, fatigue properties, fractography
Vydáno
2009-11-09
Místo
Žilina
ISSN
1335-0803
Časopis
Materiálové inžinierstvo
Ročník
XVI
Číslo
4/2009
Strany od–do
5–10
Počet stran
6
BIBTEX
@article{BUT47152,
author="Aneta {Němcová} and Josef {Zapletal} and Martin {Juliš} and Tomáš {Podrábský}",
title="CYCLIC FATIGUE RESISTANCE OF AZ91 MAGNESIUM ALLOY",
journal="Materiálové inžinierstvo",
year="2009",
volume="XVI",
number="4/2009",
pages="5--10",
issn="1335-0803"
}