Copper Alloy Products

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Newzel Industries is India’s leading producer of copper alloys. Alloys mainly made of copper are known as copper alloys. They are extremely resistant to rust. The two traditional types that are well-known are bronze, which has a greater portion of tin, and brass, which has zinc. These are both unclear concepts that were formerly referred to as latten. The basic characteristics of copper alloys are greatly impacted by copper’s individual qualities. The ideal technical material for bearing applications is copper because of its special characteristics. These include excellent ductility and toughness over a wide temperature range, high thermal conductivity, and strong corrosion resistance in a variety of conditions.

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Copper Alloy Specification

ISO

British

CEN

ASTM

Description

Designation

Standard

Number

Equivalent

Cu-ETP1

C100

CW003A

 

Electrolytically refined higher purity copper

Cu-ETP

C101

CW003A

C11000

Electrolytic, tough pitch high conductivity

CuAg(0.04)

C101

CW011A

 

Silver bearing copper

CuAg(0.07)

 

CW012A

 

Silver bearing copper

CuAg(0.10)

 

CW013A

 

Silver bearing copper

Cu-FRHC

C102

CW005A

C11020

Fire refined, tough pitch, high-conductivity

Cu-HCP

 

CW021A

 

High conductivity phosphorus deoxidised

Cu-DLP

 

CW023A

C12000

Low phosphorus deoxidised copper

Cu-FRTP

C104

CW006A

C12500

Tough pitch, non-arsenical copper

CuAs

C105

 

 

Tough pitch arsenical copper

Cu-DHP

C106

CW024A

C12200

Phosphorus deoxidised non-arsenical

CuAsP

C107

 

C14200

Phosphorus deoxidised arsenical copper

CuAg(0.04P)

 

CW014A

 

Silver bearing deoxidised copper

CuAg(0.07P)

 

CW015A

 

Silver bearing deoxidised copper

CuAg(0.10P)

 

CW016A

 

Silver bearing deoxidised copper

Cu-OF

C103

CW008A

C10200

Oxygen free, high conductivity copper

Cu-OFE

C110

CW009A

C10100

Oxygen free, high conductivity copper,

CuCd1

C108

 

C16200

Copper-cadmium

CuCr1

CC101

CW105C

C18200

Copper-chromium

CuCr1Zr

CC102

CW106C

 

Copper-chromium-zirconium

CuNi1Si

 

CW109C

C191010

Copper-nickel-silicon

CuNi2Si

CC102

CW111C

C70250

Copper-nickel-silicon

CuNi3Si

 

CW112C

C70320

Copper-nickel-silicon

CuNi4AlSi

 

 

 

Copper-nickel aluminum silicon

CuNiP

C113

CW108C

 

Copper-nickel-phosphorus

CuBe2

CB101

CW101C

C17200

Copper-beryllium

CuBe2Pb

 

CW102C

C17300

Leaded copper-beryllium

CuNi2Be

 

CW110C

C17510

Copper-nickel-beryllium

CuCo2Be

C112

CW104C

C17500

Copper-cobalt-beryllium

CuCo1Ni1Be

 

CW103C

 

Copper-cobalt-beryllium

CuZr

 

CW120C

C15000

Copper-zirconium

CuSi2Mn

 

CW115C

C65100

Copper-silicon

CuSi3Mn1

CS101

CW116C

C65500

Copper-silicon

CuTeP

C109

CW118C

C14500

Copper-tellurium

CuSP

C111

CW114C

C14700

Copper-sulfur

CuPb1P

 

CW113C

C18700

Copper-lead

CuZn0.5

 

CW119C

 

Copper-zinc

Cu-G

HCC1

CS040A

 

High conductivity copper

G-CuSn

 

 

 

Copper with small additions

CuCr1-G

CC1-TF

CS140C

 

Copper-chromium

 

 

CP140C

 

 

G-CuNiP

 

 

 

Copper-nickel-phosphorus

G-CuNi2Si

 

 

 

Copper-nickel -silicon

G-CuCo2Be

 

 

 

Copper-cobalt-beryllium

G-CuBe

 

 

 

Copper-beryllium

Copper Alloy Mechanical Composition

Family

CDA

Tensile strength [ksi]

Yield strength [ksi]

Elongation (typ.) [%]

Hardness

[Brinell 10 mm-500 kg]

Machinability [YB = 100]

Min.

Typ.

Min.

Typ.

Manganese bronze

862

90

95

45

48

20

170–195

30

863

110

119

60

83

18

225

8

865

65

71

25

28

30

130

26

Aluminum bronze

952

65

80

25

27

35

110–140

50

953

65

75

25

27

25

140

55

954

75

85

30

35

18

140–170

60

955

90

100

40

44

12

180–200

50

958

85

95

35

38

25

150-170

50

Silicon bronze

878

80

83

30

37

29

115

40

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