Description
The Venson Youlong badminton racket is a flagship racket of the brand, designed as a powerful next-generation attacking racket. For its launch, the brand officially signed Chinese world champion Chai Biao as ambassador.
It immediately stands out with its traditional Chinese-inspired design, featuring beautiful 3D relief patterns mimicking dragon scales as well as a premium magnetic gold finish.
The Youlong is slightly head-heavy balanced (about 305 mm) to maximise inertia during smashes.
Its light 4U weight (about 82g), combined with a slim G6 handle, gives it excellent manoeuvrability despite its offensive profile.
Energy Compact Frame: An optimized frame geometry that concentrates the striking energy while enlarging the ideal hitting zone (Sweet Spot) to limit errors.
Ultra-Fine Shaft (Shaft 6840): Its ultra-thin 6.8 mm shaft improves aerodynamics, reduces air resistance and offers maximum rebound effect.
It is made from high-quality carbon (High Digit Hot Melt Carbon Cloth / Graphite C60F) providing an ultra-robust structure.
It supports an impressive string tension ranging from 24 to 36 lbs (up to 16 kg), ideal for players demanding optimal control.
Thanks to feedback from champion Chai Biao, the racket ranks among offensive models. However, in defence and in fast net play, the slimness of its shaft allows fluid movements, making it surprisingly accessible and versatile, suitable for both intermediate players and seasoned competitors.
Product information
- Play level: Advanced
- Player profile: Attacker
- Main benefit: Power
- Weight: 82
- Balance: Very head heavy
- Stiffness: Medium
- Pre-strung racket: False
- Cover included: False
- Ref.: VM-YOULONG-GR
- Recommended retail price set by the supplier in: 2027
Technologies
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Special 6840 Thin-Walled Shaft :
Faster rebound with less effort, increased smash power.
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Power Burst Compact Energy Focusing Frame :
Smash power is concentrated and powerful, and the swing is smooth and effortless.
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High Digit Carbon Fiber :
Increased strength and stiffness, effortlessly reducing frame deformation.
