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CuBe2Pb Leaded Beryllium Copper Wires 1/2 Hard 0.05-0.3mm

Hangzhou Cuberyllium Metal Technology Co.,Ltd.

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CuBe2Pb Leaded Beryllium Copper Wires 1/2 Hard 0.05-0.3mm

Country/Region china
City & Province hangzhou zhejiang
Categories Electrical Wires
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Product Details

CuBe2Pb Leaded Beryllium Copper Alloys Wires Diameter 0.05-0.3mm Used In Electrical Industry

Product Description:

Product Name: Leaded beryllium copper alloys wires

Grade: CuBe2Pb

State: A(TB00),1/4 H(TD01),1/2 H(TD02),3/4H(TD03),H(TD04)

Available Products(Forms): round wires, flat wires, coils

Diameter: 0.05-0.3mm

Brand: CUBERYLLIUM®

 

CuBe2Pb Leaded Beryllium Copper Alloys Wire International Specification:

Wires: ASTM B197, QQ-C-530

European Standards: CuBe2Pb, Alloy M25, UNS.C17300, DIN.2.1248, CW102C to EN

 

 

CUBERYLLIUM® manufactures copper beryllium in several distinct compositions. These fall into two categories: alloys selected for high strength (Alloys 172,173,170) and alloys selected for high conductivity (Alloys 751,750,741). And Gost standard QBe2,QBe1.9Ti for Russia Market. Also Supply Master alloy : CuBeryllium-200; CuBeryllium-275);CuBeryllium-350 and Cuberyllium-400 to global factory.

 

CUBERYLLIUM ®-173 also named -C17300 (CDA 173) offers the strength properties of C17300 with the added benefit of being “free machining”. C17300 rod and wire contain a small amount of lead to provide an alloy tailored for automatic machining operations. Lead promotes formation of finely divided chips thus extending cutting tool life.

 

Chemical Composition of CuBe2Pb Leaded Beryllium Copper Alloys:

CUBERYLLIUM® BrandUNS-NumberBerylliumCobalt
+ Nickel
Cobalt
+ Nickel
+ Iron
PbCopper
Cuberyllium-C173C173001.80-2.000.20 min0.6 max0.2~0.6Balance

Note: Copper plus additions equal 99.5% minimum.


Typical Physical Properties of CuBe2Pb Leaded Beryllium Copper Alloys:

CUBERYLLIUM®US CustomaryMetric
Melting Point - Liquidus1800 F982 C
Melting Point - Solidus1590 F866 C
Density0.298 lb/in3 at 68 F8.25 gm/cm3 @ 20 C
Specific Gravity8.268.26
Electrical Resistivity46.20 ohms-cmil/ft @ 68 F7.68 microhm-cm @ 20 C
Electrical Conductivity22 %IACS @ 68 F0.129 MegaSiemens/cm @ 20 C
Thermal Conductivity62 Btu . ft/(hr . ft2 . oF)at 68F107.3 W/m . oK at 20 C
Modulas of Elasticity in Tension18500 ksi128000 MPa
Modulus of Rigidity7300 ksi50330 MPa
Specific Heat Capacity0.090 Btu/lb/å¡F at 68 F377.1 J/kg . å¡K at 293 K

 

 

Mechanical and Electrical Properties of CuBe2Pb Leaded Beryllium Copper Wires:

AlloyTemper (*)Heat TreatmentTensile Strength ksiElongation percentElectrical Conductivity percent IACS
CUBERYLLIUM
173
A/400~58030-6015-19
(TB00)
1/4 H/570~7953~2515-19
(TD01)
1/2 H/710~9302~1515-19
(TD02)
3/4 H/840~10702~815-19
(TD03)
H/915~11401~615-19
(TD04)
CUBERYLLIUM
173
AT3 hr 3151050~13803 min22-28
(TF00)
1/4 HT2 hr 3151150~14502 min22-28
(TH01)
1/2 HT1.5hr 3151200~14802 min22-28
(TH02)
3/4 HT1.0 hr 3151250~15852 min22-28
(TH03)
HT1.0hr 3151300~15851 min22-28
(TH04)

 

 

Service We Can Offer You:

  • Quick Response
Your inquiry will be replied within 24 hours.
  • High Quality
Well-trained workers and more than 10 years' experience.
  • Competitive Price
Directly from factory to save your money.
  • Short Delivery Time
Being efficient: 3-7 days for samples and 10-20 days for quantity orders.
  • Flexibility
Small orders are acceptable for quick delivery and to help you reduce stock cost.
  • OEM
Custom fabrication according to your drawings, samples or designs.

 

Product Photo:

 

Key Technology of Beryllium Copper(Heat treatment)

Heat treatment is the most important process for this alloy system. While all copper alloys are hardenable by cold working, beryllium copper is unique in being hardenable by a simple low temperature thermal treatment. It involves two basic steps. The first is called solution annealing and the second, precipitation or age hardening.

Solution Annealing

For the typical alloy CuBe2Pb) the alloy is heated between 720°C and 860°C. At this point the contained beryllium is essentially “dissolved” in the copper matrix (alpha phase). By rapidly quenching to room temperature this solid solution structure is retained. The material at this stage is very soft and ductile and can be readily cold worked by drawing, forming rolling, or cold heading. The solution annealing operation is part of the process at the mill and is not typically used by the customer. Temperature, time at temperature, quench rate, grain size, and hardness are all very critical parameters and are tightly controlled by ohmalloy.

Age Hardening

Age hardening significantly enhances the material’s strength. This reaction is generally carried out at temperatures between 260°C and 540°C depending on alloy and desired characteristics. This cycle causes the dissolved beryllium to precipitate as a beryllium rich (gamma) phase in the matrix and at the grain boundaries. It is the formation of this precipitate which causes the large increase in material strength. The level of mechanical properties attained is determined by the temperature and time at temperature. It should be recognized that beryllium copper has no room temperature aging characteristics.

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