Crimp Link Bimetal Standard 50mm² Aluminium to 50mm² Copper | 99.6% Aluminium & 99.9% Copper | High Tensile Strength | by Wattmaster
The Crimp Link Bimetal Standard 50mm² Aluminium to 50mm² Copper is designed for reliable electrical connections, featuring a 99.6% pure aluminium sleeve and a 99.9% pure copper palm. With a high tensile strength of 110 MPa and a ductile rating of 28%, this connector is perfect for flexible and stranded copper conductors in industrial and commercial applications, ensuring efficient conductivity and durability.
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- Suitable for flexible and stranded copper conductors and winding conductors
- Aluminium sleeve purity: 99.6%
- Copper palm purity: 99.9%
- Tensile strength: 110 MPa
- Ductile rating: 28%
- Final metal state: Fully annealed including joint
- Joining method: Friction welding
- Dimensions (H x L x W): 15mm x 100mm x 60mm
- Weight: 0.1 kg
- Aluminium sleeve made from 99.6% pure aluminium
- Copper palm made from 99.9% pure copper
- High tensile strength of 110 MPa
- Ductile rating of 28%
- Fully annealed final metal state including the joint
- Joining method uses friction welding for reliable connection
- Complies with AS/NZS 4325.1:1995 (cl7) for conductors greater than 10mm²
- Installation should be performed by a qualified electrician using appropriate crimping tools to ensure secure and compliant connections.
- Electrical connections for flexible and stranded copper conductors
- Winding conductors in electrical equipment
- Industrial and commercial electrical installations requiring bimetallic links
- Complies with AS/NZS 4325.1:1995 (cl7) for conductors greater than 10mm²
- Use of high purity metals ensures efficient conductivity reducing energy loss
- Durable construction extends product life reducing waste and replacement frequency
Warranty details available upon request from the manufacturer.
The Wattmaster Crimp Link Bimetal Standard 50mm² Aluminium to 50mm² Copper is available for immediate purchase, ideal for electrical and industrial applications requiring reliable bimetallic connections.
