نتایج جستجو برای: az91 magnesium alloy

تعداد نتایج: 87382  

2015
Y. ISHIBASHI M. NOSE M. HATAKEYAMA S. SUNADA

The corrosion resistance of a Magnesium alloy is low and needs to be improved. This research aimed at corrosion-resistance improvement by supatterd deposition aluminium film, which is formed on the surface of AZ91 Magnesium-alloy. Corrosion resistance performed polarization curve measurement, was evaluated in quest of the corrosion rate using the Tafel extrapolation method, and conducted surfac...

2008
G. Cao H. Konishi

Magnesium based metal matrix composites (MMCs) have been extensively studied as an attractive choice for automotive and aerospace applications due to their low density and superior specific properties including strength, stiffness and creep resistance. Xi et al [1] studied the Ti6Al-4V particulate (TAp) reinforced magnesium matrix composite which is fabricated by powder metallurgy route. The te...

Journal: :Powder Metallurgy 2021

AZ91 magnesium alloy parts were successfully produced using a novel extrusion-based additive manufacturing process. The green built in two different orientations and subjected to debindi...

Journal: :Journal of Alloys and Compounds 2021

Magnesium alloys are commonly melted and held in steel or cast iron crucibles small but important amounts of Fe C can dissolve into Mg-rich melts. Here, carbide formation is studied during interface reactions between solid Fe-xC (x = 0–3.6 wt%) liquid Mg-9Al-0.7Zn-0.2Mn (wt.%, AZ91) at temperatures from 700 to 800 °C. Two ternary carbides, AlFe3C Al2MgC2, formed the reaction layers Fe-C AZ91, T...

1999
Y. Cai D. Taplin M. J. Tan W. Zhou

Metal matrix composite (MMC) technology can improve the service performance of matrix metals and alloys. Most magnesium alloy based MMCs are produced via a casting process, therefore the casting microstructures are of vital importance to their performance in service. The formation of microstructure during solidification of MMCs is mainly influenced by four factors: nucleation (or its absence) o...

2017
Bo Song Chunpeng Wang Ning Guo Hucheng Pan Renlong Xin

In this study, AZ91 magnesium alloy rods were used to investigate the effects of torsion deformation on microstructure and subsequent aging behavior. Extruded AZ91 rod has a uniform microstructure and typical fiber texture. Torsion deformation can generate a gradient microstructure on the cross-section of the rod. After torsion, from the center to the edge in the cross-section of the rod, both ...

2008
Liang Wang Hongjoo Rhee Sergio D. Felicelli Adrian S. Sabau John T. Berry

Porosity is a major concern in the production of light metal parts. This work aims to identify some of the mechanisms of microporosity formation in magnesium alloy AZ91. Microstructure analysis was performed on several samples obtained from gravity-poured ingots in graphite plate molds. Temperature data during cooling was acquired with type K thermocouples at 60 Hz at three locations of each ca...

Journal: :Journal of Japan Institute of Light Metals 2001

2014
S Fintová L Kunz

Mechanism of fatigue crack initiation was investigated in ultrafine-grained (UFG) magnesium alloy AZ91 processed by equal channel angular pressing (ECAP). Fatigue behaviour of UFG material was compared to the behaviour of material in an initial as-cast state. Focused ion beam technique (FIB) was applied to reveal the surface relief and early fatigue cracks. Two substantially different mechanism...

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