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CLAL-MSX ARCAP Anticorrosion AP1C H14 4/4 hard, Drawn Copper Alloy

Copper Alloy

CLAL-MSX

产品说明

Description: The AP1C grade (used in rods for parts that are to be deformed by torsion, bending, riveting, swaging... and for welding) and the AP1 grade (sheet, strip, wire, tubes) is machineable under the same conditions as carbon steel, in other words without difficulty.

High Corrosion Resistance: ARCAP alloys are very corrosion resistant to the majority of chemical and physical environments. CLAL can provide data for the corrosion resistance of ARCAP alloys. In particular ARCAP alloys have a very high resistance to scaling and clogging of pipes by hard water and the blocking of pipes used for transport powder products such as sodium aluminate, cement, etc.

High Mechanical Properties: In annealed temper ARCAP, alloys have an elongation up to 45 %, which allows deep drawing. In spring temper the ultimate tensile strength is above 800 MPa.

Non-Magnetic: A detector sensitive to 1/10 of nanotesla, placed at less than 1 mm from ARCAP alloys will not show any magnetic interference. This non magnetism is kept even at very low temperatures (measured at 4.2° k).

Stable Resistivity: Temperature variations have almost no effect on the resistivity of ARCAP alloys. The temperature coefficient of the grade AP4 is 4 x 10-5/°C and 25 x 10-5/°C for the other grades.

Excellent Behaviour At Low Temperature: At low temperatures the mechanical properties of ARCAP alloys are improved. A cryogenic application shows that the ultimate tensile strength and the yield strength increase without any diminution of the elongation or the impact strength.

Very Easy To Process: ARCAP alloys are easily processed whether by forging, stamping, deep drawing, machining, welding or brazing. They are also easily plated.

Information provided by CLAL-MSX

物理性能额定值 (公制)额定值 (英制)测试方法
密度 g/cc lb/in³
机械性能额定值 (公制)额定值 (英制)测试方法
极限抗拉强度 MPa psi Rod
MPa psi Wire
弹性模量 GPa ksi
电气性能额定值 (公制)额定值 (英制)测试方法
电阻率 ohm-cm ohm-cm
热性能额定值 (公制)额定值 (英制)测试方法
线性热膨胀系数 µm/m-°C
@Temperature 0.000 - 300 °C
µin/in-°F
@Temperature 32.0 - 572 °F
µm/m-°C
@Temperature 0.000 - 600 °C
µin/in-°F
@Temperature 32.0 - 1110 °F
导热系数 W/m-K
@Temperature <=20.0 °C
BTU-in/hr-ft²-°F
@Temperature <=68.0 °F
W/m-K
@Temperature <=200 °C
BTU-in/hr-ft²-°F
@Temperature <=392 °F
熔融温度 °C °F
固相线 °C °F
液相线 °C °F
光学性能额定值 (公制)额定值 (英制)测试方法
Reflection Coefficient, Visible (0-1) Relative to Silver = 1
构成要素属性额定值 (公制)额定值 (英制)测试方法
Other
材料描述测试方法
颜色Whiteish bluish
Non Magnetism request1E-05OERSTED
Temperature Coefficient0.00025K-1
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