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Brand Name : | Winner |
Model Number : | Winner-B2 |
Certification : | ISO 9001, ISO 14001, or RoHS |
Price : | Please inquiry jojo@winner-sc.com |
Payment Terms : | L/C, Western Union, T/T |
Delivery Time : | 3~7 working days |
Beryllium Copper wire is an outstanding material as it combines excellent formability with extremely high strength properties once it undergoes the aging process. During aging, the internal structure of the wire is modified, leading to enhanced mechanical characteristics.
When it comes to applications, Beryllium Copper wire is widely used
in various industries. In the field of springs, it provides the
necessary elasticity and durability. Springs made from this wire
can withstand repeated compression and extension without losing
their shape or mechanical integrity. For connectors, its high
strength ensures a stable and reliable connection between different
electrical components. This is crucial in applications where a
continuous and efficient electrical flow is required, such as in
complex electronic devices. In switches, the wire's properties
enable smooth operation over numerous cycles. It can endure the
mechanical stress caused by repeated on - off actions. In the
automotive industry, it is used in parts where a combination of
strength and formability is essential. These parts can include
components within the engine compartment that are subject to
mechanical forces and temperature variations.
Moreover, special heat treating of the wire at the mill gives rise
to a “Mill Hardened” (HM) tempered Beryllium Copper wire. This
unique manufacturing process imparts specific mechanical properties
to the wire. Once in this state, the wire can be easily formed into
the desired shape through processes like bending, coiling, etc.
What's more, it can be directly used in applications without the
need for any additional heat treatment. This not only saves time
and cost in the production process but also ensures consistent
quality of the final products made from this wire.
Annealing Range (Min) | 1425 °F |
Annealing Range (Max) | 1475 °F |
Density | 0.298 lb/in³ |
Electrical Resistivity (Annealed) | 47.1 Ω·cir-mil/ft @ 68 °F |
Electrical Conductivity (Annealed) | 22% IACS @ 68 °F |
Thermal Conductivity | 62 Btu/ft²/ft·hr/°F @ 68 °F |
Coefficient of Thermal Expansion | 9.9 per °F (68-572 °F) |
Modulus of Elasticity (Tension) | 19 ksi |
Modulus of Rigidity (Tension) | 7 ksi |
Melting Point (Solidus) | 1,700 °F |
Melting Point (Liquidus) | 1,900 °F |
Application:
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