Přístupnostní navigace
E-application
Search Search Close
Publication detail
KUNZ, L. FINTOVÁ, S.
Original Title
Fatigue behaviour of AZ91 magnesium alloy in as-cast and severe plastic deformed conditions
Type
conference paper
Language
English
Original Abstract
Fatigue strength, crack initiation and microstructure were experimentally investigated in an as-cast AZ91 alloy and in ultrafine-grained (UFG) AZ91 alloy processed by equal channel angular pressing (ECAP). The microstructure after ECAP is bimodal, consisting of fine-grained regions and clusters of larger grains with lower density of intermetallic particles. It has been found that the ECAP substantially increases the tensile strength (factor of two), improves ductility (factor of five) and improves the fatigue strength in low-cycle fatigue region. The improvement of the endurance limit based on 107 cycles is weak. The cyclic slip bands, as sites of the fatigue crack initiation on material surface, were investigated. Focussed ion beam technique (FIB) was applied to reveal the surface relief and the microstructure in the vicinity of early fatigue cracks. No grain coarsening was observed in the close vicinity of the initiated cracks. Fatigue cracks in ultrafine-grained structure develop both in the regions of larger grains and also in the fine grained areas. Two types of crack initiation were observed.
Keywords
AZ91, ECAP, microstructure, mechanical properties, cyclic plastic deformation, fatigue crack initiation
Authors
KUNZ, L.; FINTOVÁ, S.
RIV year
2014
Released
12. 3. 2014
Publisher
Trans Tech Publications
Location
Switzerland
ISBN
978-3-03835-008-8
Book
11th International Fatigue Congress
1022-6680
Periodical
Advanced Materials Research
Year of study
891-892
Number
3
State
Swiss Confederation
Pages from
397
Pages to
402
Pages count
6
BibTex
@inproceedings{BUT110648, author="Ludvík {Kunz} and Stanislava {Fintová}", title="Fatigue behaviour of AZ91 magnesium alloy in as-cast and severe plastic deformed conditions", booktitle="11th International Fatigue Congress", year="2014", journal="Advanced Materials Research", volume="891-892", number="3", pages="397--402", publisher="Trans Tech Publications", address="Switzerland", doi="10.4028/www.scientific.net/AMR.891-892.397", isbn="978-3-03835-008-8", issn="1022-6680" }