Bi-Metal Lug 300mm2-Std12mm Friction Welded Aluminium & Copper Cabac
The Bi-Metal Lug 300mm2-Std12mm is designed for reliable electrical power connectivity, featuring a friction welded joint for a strong and electrically sound
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- Conductive Material: Aluminium Sleeve 99.6% pure, Copper Palm 99.9% pure
- Tensile Strength: 110 MPa
- Ductile Rating: 28%
- Final Metal State: Fully Annealed including joint
- Joining Method: Friction Welding (IEC standard)
- Resistivity: Aluminium max 2.6 micro-ohm cm, Copper 1.738 micro-ohm cm
- Conductivity: Aluminium minimum 61.8% IACS, Copper 99.7% IACS
- Operating Temperature Range: -40°C to 100°C
- Tooling: Interchangeable with CABAC, Utilux, and Burndy tooling
- Dimensions (H x L x W): 15mm x 120mm x 40mm
- Weight: 0.15 kg
- Manufactured using friction welding process producing a very strong electrically sound joint
- Suitable for aluminium conductor and copper terminals or busbar
- Crimp from palm end to force compound into conductor strands
- Crimping compound in barrel and sealed with cap
- Crimping positions, AF, clearly marked on barrel
- Should be installed by a qualified electrician using standard Australian aluminium hexagonal crimping dies to ensure proper crimping and electrical connection.
- Electrical power connectivity for stranded sector and circular stranded aluminium conductors
- Suitable for use with copper terminals or busbars in electrical installations
- Ideal for industrial and commercial electrical wiring and power distribution
- Complies with AS/NZS 4325 Part 1 for electrical lugs and connectors
- Friction welding process reduces the need for additional materials and enhances durability, minimizing waste
- High-quality materials ensure long service life, reducing replacement frequency and environmental impact
Standard manufacturer warranty applies; please refer to Cabac for specific warranty terms.
The Cabac Bi-Metal Lug 300mm2-Std12mm is available for immediate purchase, ideal for electrical power connectivity applications requiring reliable aluminium to copper connections.
