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Selection of Aluminum Alloy Materials

 

ST60A High-Performance Aluminum Alloy

 

ST60A High-Performance Aluminum Alloy - Chemical Properties and Material Properties

ST60A Chemical Properties

 

ST60A Material Properties

 

ST60A High-Performance Aluminum Alloy - Thermal Conductivity Comparison

ST60A Thermal Conductivity Comparison

 

ST60A Thermal Conductivity Test Method

 

ST60A High-Performance Aluminum Alloy - Thermal Conductivity Characteristics

ST60A Thermal Conductivity Characteristics

 
 

ST60A High-Performance Aluminum Alloy - Color Tone

ST60A Color Tone

 

Aluminum Alloy Material - TX61

 

TX61 vs AL5052 Comparison

TX61 V.S AL5052

♦ At the same strength, thickness is reduced by 20%, and the cost decreases accordingly.
♦ Can be applied to forging processes to make the joint contact stronger.
♦ Ensures the anode material has far fewer impurities and sand holes than conventional aluminum alloys, improving yield by 15%-20%.
♦ Total cost can decrease by 35%-40%.
 

Aluminum Alloy Material - TX61 Material Properties

 

Aluminum Alloy Material - TX61 Chemical Composition and Mechanical Properties

Chemical Composition

 

Alloy

Si

Fe

Cu

Mn

Mg

Cr

Zn

Ti

Al

A6061P
TX61

0.4~0.8

≦0.7

0.15~0.4

≦0.15

0.8~1.2

0.04~0.35

≦0.25

≦0.15

Re.

(wt %)

Mechanical Properties (Standard)

 

Alloy

Condition

Compressive Strength (N/mm²)

Yield Strength (N/mm²)

Elongation %

A6061P

O

125

55

25

T4

240

145

22

T6

310

260

14

TX61

T6

300

225

20

Aluminum Alloy Material - TX61 Mechanical Properties Comparison

 

Nippon Light Metal TX61 Grain Characteristics

The grains are dense and fine; therefore, it has good formability.
 

High-Strength Factors of the 6 Series

Mainly forms Mg and Si (precipitates smaller than 1 μm).Promotes, and the above precipitates suppress the motion of dislocations., Thereby increasing the strength of the material.

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