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Magnesium Zinc Aluminum Alloy Solid Appearance With 1.9 G/Cm3 Density

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Magnesium Zinc Aluminum Alloy Solid Appearance With 1.9 G/Cm3 Density

China Magnesium Zinc Aluminum Alloy Solid Appearance With 1.9 G/Cm3 Density supplier

Large Image :  Magnesium Zinc Aluminum Alloy Solid Appearance With 1.9 G/Cm3 Density

Product Details:

Place of Origin: Hunan,China
Brand Name: High Broad
Certification: ISO ASTM
Model Number: MgZn10 MgZn20 MgZn30

Payment & Shipping Terms:

Minimum Order Quantity: 1 kg
Price: negotiable
Packaging Details: in steel drums on pallet
Delivery Time: 100 kgs 10 days
Payment Terms: D/P, Western Union, D/P, L/C
Supply Ability: 10MT per month
Detailed Product Description
Name: Magnesium Aluminum Zinc Alloy Properties (Theoretical) Other Alloy: MgZN10 MGZN20 MGZN30%
Type: MAGNESIUM ZINC MASTER ALLOY Other Grade: MgMn10 MgCa25 MgY30 MgNd30 MgGd30 MgSc30
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sacrificial anode protection

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magnesium aluminum alloy

Magnesium Aluminum Zinc Alloy Properties (Theoretical)

Appearance Solid
Melting Point 530 °C (990 °F)
Boiling Point N/A
Density 1.9 g/cm3
Electrical Resistivity -7 10x Ω-m
Poisson's Ratio 0.29
Specific Heat 1030 J/kg-K
Tensile Strength 280 MPa (Ultimate)/ 160 MPa (Yield)
Thermal Conductivity 53 W/m-K
Thermal Expansion 27 µm/m-K
Young's Modulus 46 GPa

Due to the increasing demand to reduce greenhouse gas emissions, magnesium (Mg) alloys have received renewed attention as a means to reduce the weight of vehicles. However, the cast products account for most of Mg alloy usage and the most intensively studied wrought Mg alloys are those based on AZ31 alloy. Obviously, the lack of choice limits the scope of applications of wrought Mg alloy. Mg-Zn-based alloys show a pronounced age hardening response; and many alloying elements have been added into the system to improve its mechanical performance. However, the application of Mg-Zn alloys is still limited due to the high cost of rare earth alloying elements and processing technologies. Therefore, it has been a challenge to develop high strength Mg alloys with improved ductility. Previous studies at the University of Auckland have discovered a new alloy system containing a small amount of tin (Sn), lead (Pb) and zirconium (Zr), which shows very high ductility. Motivated by this discovery, the thesis project investigates the effect of alloying elements Pb and Sn addition on the microstructure and mechanical properties of Mg-Zn alloy.

 

 

1. Magnesium master alloys:

Magnesium Yttrium MgY25/30 alloy , Magnesium Manganese MgMn3/5/10 alloy , Magnesium Calcium MgCa15/20 alloy, Magnesium Cerium MgCe20/25/30 alloy, Magnesium Neodymium MgNd20/25/30 alloy, Magnesium Scandium MgSc2/5/10/30 alloy, Magnesium Gadolinium MgGd20/25/30 alloy, Magnesium Strontium MgSr10/20 alloy, Magnesium Lanthanum MgLa20/25/30 alloy,Magnesium Zirconium MgZr25/30 alloy,Magnesium Erbium MgEr20 alloy, Magnesium Aluminum MgAl50/68 alloy ,Magnesium Copper MgCu15 alloy , Magnesium Lithium MgLi10 alloy , Magnesium Silicon MgSi3 alloy , Magnesium Barium MgBa20 alloy ,Nicle Magnesium NiMg alloy etc.

 

High performance Magnesium alloys:

ZK60, ZM2,ZM3,ZM6,ZM21,ZM31,WE43,WE57,WE94,MnE21 etc.

 

 

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