TY - GEN
T1 - The quantitative assessment of the fracture profile of magnesium alloy qe22 welded joint
AU - Adamiec, Janusz
PY - 2013
Y1 - 2013
N2 - Magnesium alloys are a part of a group of lightweight and ultra-lightweight alloys, which are important in practical use in constructions. QE22 casting magnesium alloy containing silver, rare earth elements and zirconium is characterized by creep resistance up to the temperature of 200 °C, while during a short exposure it can resist up to the temperature of 250°C. Nowadays, QE22 magnesium alloy are used for casting into sand moulds. In castings of magnesium alloys defects or inconsistencies (such as casting misruns, porosities and cracks) often appear, particularly in huge dimensional castings. Such defects are repaired with the use of padding and welding. Welded joints must ensure suitable operational properties, mainly in terms of creep, so that the repaired casting can work under the same conditions as the correct cast. The basic source of information about the cause and cracking propagation is fracture after creep test. The quantitative fractography, in particular profilomety, allows to describe the fracture and basis on it conclude the causes of destruction. In this paper quantitative procedure for assessing the fracture profile of QE22 welded joints after creep test was worked out. Base on its analysis result, it was found that creep resistant of the QE22 joints is determined by eutectic areas, therefore they must be heat treated after welding joints.
AB - Magnesium alloys are a part of a group of lightweight and ultra-lightweight alloys, which are important in practical use in constructions. QE22 casting magnesium alloy containing silver, rare earth elements and zirconium is characterized by creep resistance up to the temperature of 200 °C, while during a short exposure it can resist up to the temperature of 250°C. Nowadays, QE22 magnesium alloy are used for casting into sand moulds. In castings of magnesium alloys defects or inconsistencies (such as casting misruns, porosities and cracks) often appear, particularly in huge dimensional castings. Such defects are repaired with the use of padding and welding. Welded joints must ensure suitable operational properties, mainly in terms of creep, so that the repaired casting can work under the same conditions as the correct cast. The basic source of information about the cause and cracking propagation is fracture after creep test. The quantitative fractography, in particular profilomety, allows to describe the fracture and basis on it conclude the causes of destruction. In this paper quantitative procedure for assessing the fracture profile of QE22 welded joints after creep test was worked out. Base on its analysis result, it was found that creep resistant of the QE22 joints is determined by eutectic areas, therefore they must be heat treated after welding joints.
KW - Magnesium alloy
KW - Profilometry
KW - QE22
KW - Quantitative assessment of welding structure
KW - Welding of magnesium alloy
UR - https://www.scopus.com/pages/publications/84875186931
U2 - 10.4028/www.scientific.net/SSP.197.215
DO - 10.4028/www.scientific.net/SSP.197.215
M3 - Conference contribution
AN - SCOPUS:84875186931
SN - 9783037856116
T3 - Solid State Phenomena
SP - 215
EP - 220
BT - Stereology and Image Analysis in Materials Science
PB - Trans Tech Publications Ltd.
T2 - 9th International Conference on Stereology and Image Analysis in Materials Science, STERMAT 2012
Y2 - 3 September 2012 through 6 September 2012
ER -