Copper Sledge Hammer | 3.72kg | Pinned Steel Core & Fibreglass Handle | Non-Sparking Design | by Wattmaster
The Copper Sledge Hammer is designed for non-sparking environments, featuring a 3.72kg weight and a pinned steel core for added safety. Ideal for delicate applications where minimizing damage is crucial, this hammer's fibreglass handle includes a tether hole for secure use at heights, making it perfect for professionals in safety-critical workspaces.
Sign in
Please login to continue to your account.
Product Name/Title: Copper Sledge Hammer | 3.72kg | Pinned Steel Core & Fibreglass Handle | Non-Sparking Design | by Wattmaster
Brand: Wattmaster
SKU: 5HCFRH06900
Alternatively Known As: Copper Head Sledge Hammer, Non-Sparking Sledge Hammer, Fibreglass Handle Hammer, 6lb Copper Hammer
- Weight: 3.72kg (6lb)
- Head Material: Copper
- Handle Material: Fibreglass with pinned steel core
- Safety Features: Steel core immersed in glue, pin in blind hole to avoid sparking
- Includes tether hole for safety when working at heights
- Dimensions (H x L x W): 400mm x 600mm x 100mm
- Weight: 3.72 kg
- Copper heads reduce damage to threads and are softer than brass
- Pinned hammer heads through steel core for added safety
- Steel core immersed in glue with pin in a blind hole to avoid sparking
- Fibreglass black handle with tether hole for working at heights
- No professional installation required. Use by trained personnel in appropriate environments is recommended.
- Non-sparking environments
- Worksites requiring minimised risk of chipping
- Applications involving delicate threads to avoid damage
- Working at heights with tether hole for safety
- Complies with AS/NZS 4801 – Occupational Health & Safety Management Systems
- Copper head reduces metal contamination and damage, promoting longer tool life and less waste
Standard manufacturer warranty applies. Please refer to Wattmaster for specific warranty details.
The Wattmaster Copper Sledge Hammer 3.72kg is available for immediate purchase, ideal for non-sparking and safety-critical applications.