CW101C TD01 TB00 C17200 Beryllium Wire With Corrosion Resistance
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CW101C (UNS.C17200) Copper Round Wire With Excellent Corrosion Resistance Product Description: Name: Copper round wire Grade: CW101C (UNS.C17200) Specification: Diameter 0.1-0.8mm Surface: Bright State: A(TB00), 1/4H(TD01), 1/2H(TD02), 3/4H(TD03, H(TD04) Features: High strength and elestivity Application: For springs
CUBERYLLIUM® is a specialized innovative beryllium copper alloy manufacturer with professional research and development team, modern production line, and rigorous quality management system. CUBERYLLIUM® 's main products are beryllium copper alloys, including C17200 beryllium copper, C17300 free cutting beryllium copper, C17500 cobalt beryllium copper, C17510 nickel beryllium copper, CuCo1Ni1Be cobalt nickel beryllium copper, C17410 beryllium copper, C17000 beryllium copper, QBe1.9 and Qbe2.0.
Application Beryllium copper typical uses include electrical/electronic connectors, current-carrying springs, precision screw machined parts, welding electrodes, bearings, plastic molds and corrosion resistant components.
Chemical Composition of CW101C (UNS.C17200) Copper Alloy:
Copper plus additions equal 99.5% Min.
Mechanical and Electrical Properties of CW101C (UNS.C17200) Copper Round Wire:
International Specification of CW101C (UNS.C17200) Copper Alloy:
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.
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.
Fabrication
Product Photo:
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: CW101C TB00 C17200 beryllium wire CW101C TD01 C17200 beryllium wire beryllium bronze Wire |
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