Cobalt C17500 Beryllium Copper Coils Wires Thickness 3mm
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C17500 Cobalt Beryllium Copper Wires Thickness 3mm (+0/-0.05mm) In Coils Product Description: Name: Cobalt beryllium copper wires Grade: C17500 Specification: Thickness 3mm (+/-0.05mm) Surface: Bright State: A(TB00), H(TD04), AT(TF00), HT(TH04) Features: High conductivity Application: For Electronic connectors
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.
Fabrication of C17500 Colbalt Beryllium Copper Alloy: UNS C17500 copper-cobalt-beryllium alloys comprise moderate strength and about 50% IACS conductivity. These alloys are available in mill hardened tempers and heat treatable and ductile tempers.
Chemical Composition of C17500 Cobalt Beryllium Copper Alloy:
Note: Copper plus additions equal 99.5% Min.
Typical Physical Properties of C17500 Cobalt Beryllium Copper Alloy:
Mechanical and Electrical Properties of C17500 Cobalt Beryllium Copper Wires:
Related Material Specifications of C17500 Cobalt Beryllium Copper Alloy: Wires: ASTM B441 Rods/Bars/Tubes: ASTM B441, SAE J461, 463; RWMA Class 3 Strips: ASTM B534 Sheets: ASTM B534 Plates: ASTM B534, SAE J461, RWMA Class 3 European Standards: CuCo2Be, CuCoBe, UNS. C17500, Alloy 10, DIN 2.1285, CW104C to EN
Note: ASTM: American Society for Testing and Materials SAE: Society of Automotive Engineers AMS: Aerospace Materials Specification(Published by SEA) RWMA: Resistance Welder Manufacturers' Association Note: Unless otherwise specified, material will be produced by ASTM.
Typical Applications of C17500 Cobalt Beryllium Copper Alloy:
Product Photo:
Key Technology of Beryllium Copper(Heat treatment) 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.
FAQ: Q1:Could you produce Beryllium Copper strip by Mill Hardened
process. Q2: What’s the advantages the Beryllium Copper of CUBERYLLIUM®. 2:We are the only one who melting by Vacuum semi-Continuous Furnace. 3:Surface further polishing for top clients. Q3: Why you melting by Vacuum semi-Continuous Furnace. Q4: What's the payment terms? |
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Product Tags: C17500 Beryllium Copper Coils Beryllium Copper Coils Thickness 3mm C17500 beryllium in copper alloy |
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