Beryllium Chromium Copper Bars and Rods

Chuck Metals is a well-respected manufacturer and supplier based in Singapore, Pulau Ujong, specializing in top-notch Beryllium Chromium Copper Bars and Rods. These products are crafted for outstanding strength, durability, and conductivity. Each bar and rod is made with meticulous attention to detail, adhering to strict industry standards to guarantee a superb surface finish, precise dimensions, and reliable performance. Renowned for their remarkable wear resistance and high thermal conductivity, Beryllium Chromium Copper products from Chuck Metals are essential in sectors like aerospace, electrical, automotive, and defense, where dependability is a must.

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Beryllium Chromium Copper CR Bars

Beryllium Chromium Copper Bright Rods

Beryllium Chromium Copper HR Rods

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What is Beryllium Chromium Copper Bar?

The Beryllium Chromium Copper Bars and Rods are primarily made of copper, enhanced with beryllium and chromium to boost their mechanical and physical characteristics. This unique blend results in exceptional hardness, impressive tensile and yield strength, and superior wear resistance. The alloy maintains excellent thermal and electrical conductivity while also providing great corrosion resistance across various environments. It performs admirably under stress, making it perfect for heavy-duty industrial applications and high-temperature situations without compromising its structural integrity.

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Beryllium Chromium Copper Bars Specification

Standard & Material
CDA 110 ETP, ASTM B124, ASTM B152, ASTM B187, ASTM B188, ASTM B272
HOLLOW RODS
Min Bore Size 20 mm and Max OD 100 mm
ROUND RODS
8mm To 100 mm
HEX
10mm To 60mm
SQUARE
10mm To 60mm
FLAT
10mm Min Thickness and max Width 120mm
BILLETS
Up to 200 mm
INGOTS
As per Specification

Chemical Compositions of Beryllium Chromium Copper Rods

Cu
O
Min/Max
99.90 min
Nominals
0.04

Beryllium Chromium Copper Rods Physical Properties

Product Property
US Customary
Metric
Coefficient of Thermal Expansion
9.4 · 10 6? per °F (68-212 F)
16.9 · 10 6? per °C (20-100 C)
Coefficient of Thermal Expansion
9.6 · 10 6? per °F (68-392 F)
17.3 · 10 6? per °C (20-200 C)
Coefficient of Thermal Expansion
9.8 · 10 6? per °F (68-572 F)
17.6 · 10 6? per °C (20-300 C)
Density
0.322 lb/in3 @ 68 F
8.91 gm/cm3 @ 20 C
Electrical Conductivity
101%IACS @ 68 F
0.591 MegaSiemens/cm @ 20 C
Electrical Resistivity
10.3 ohms-cmil/ft @ 68 F
1.71 microhm-cm @ 20 C
Melting Point Liquid US
1981 F
1083 C
Melting Point Solid US
1949 F
1065 C
Modulas of Elasticity in Tension
17000 ksi
117000 MPa
Modulas of Rigidity
6400 ksi
44130 MPa
Specific Gravity
8.91
8.91
Specific Heat Capacity
0.092 Btu/lb/ °F at 68 F
393.5 J/kg · °K at 293 K
Thermal Conductivity
226.0 Btu · ft/(hr · Ft2 · °F) at 68 F
391.1W/m · °K at 20 C

Beryllium Chromium Copper Bars Equivalent Grades

End Product
Specification
Bar
ASME SB133, ASTM B152, SAE J461, J463
Bar, Bus
ASTM B187
Bar, Forging
ASTM B124
Rod
ASME SB133, MILITARY MIL-C-12166, SAE J461, J463
Rod, Bus
ASTM B187

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Why Chuck Metals?

Packaging

Modern Equipments

Expert Engineers

Well Maintained

Efficient Factories

Beryllium Chromium Copper Round Bar Types

Beryllium Chromium Copper Square Bar
Beryllium Chromium Copper Flat Bar
Beryllium Chromium Copper Hex Rods
Beryllium Chromium Copper Bright Bar
Beryllium Chromium Copper Rectangular Bar
Beryllium Chromium Copper Round Rods

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Frequently Asked Questions (FAQ)

Yes, Beryllium Chromium Copper bars and rods can be used at high temperatures due to their excellent thermal conductivity, strength, and stability.

Choose the right Beryllium Chromium Copper bars by considering application needs, grade, temperature tolerance, dimensions, corrosion resistance, and supplier quality.

Yes, Beryllium Chromium Copper bars are recyclable and retain their properties effectively after recycling.

Beryllium Chromium Copper Round Bar Uses

These Bars and Rods find extensive use in creating resistance welding electrodes, high-performance electrical connectors, aerospace engine components, marine hardware, and industrial tooling. Their unique combination of conductivity and strength makes them ideal for applications that require durability, precision, and effective heat dissipation. They are particularly favored in industries like oil and gas, defense, and power generation, where components face extreme wear, pressure, and temperature changes while ensuring a long service life and reliability.

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