Description Metal Boxe Pattes D'Ours Courbees S
CLUB LINE Curved Focus Mitts – Durability & Training Comfort
Product Description
The CLUB LINE curved focus mitts are designed to deliver
outstanding durability and maximum comfort during striking sessions.
Made from hard-wearing buffalo leather and filled with
high-density polyethylene foam, these mitts offer
excellent shock absorption, reducing the impact on the coach’s hands and wrists.
With perforated foam around the perimeter, they remain
lightweight while maintaining a high level of impact absorption,
helping to reduce fatigue during intense or extended training sessions.
Extra padding at the wrist and forearm provides
reinforced cushioning and added comfort, while the
integrated finger protection offers enhanced safety against repeated strikes.
Ideal for dedicated coaches and serious fighters, these curved mitts combine
performance, protection and comfort, and are suitable for all training levels.
Key Features
- Outer material – Durable buffalo leather
- Padding – High-density polyethylene foam
- Perforated foam – Reduced weight with strong impact absorption
- Reinforced protection – Extra padding on wrist and forearm
- Increased safety – Integrated finger protection
- Versatile use – Perfect for boxing, kickboxing, Muay Thai and MMA
Why Choose CLUB LINE Curved Mitts?
- Optimized shock absorption for both coach and athlete
- Improved comfort thanks to reinforced wrist and forearm padding
- Durable materials built to withstand regular, intense use
- Lightweight, ergonomic design to reduce coach fatigue
- Ideal for speed drills, combinations and power striking
Frequently Asked Questions (FAQ)
Q: Are these mitts suitable for intense training?
A: Yes, the high-density foam provides excellent impact absorption for heavy striking sessions.
Q: Can they be used for long coaching sessions?
A: Absolutely – their light construction and extra padding help reduce fatigue over time.
Q: Do they protect the coach’s fingers?
A: Yes, the integrated finger protection offers added safety during repeated impacts.