Synergy, where science meets hockey. Nano Technology takes performance to new levels by extracting the maximum from every fibre. The TK S 4177 Synergy Composite Hockey Stick features Improved matrix performance from a 2.9% Reactive Liquid Polymer level and enhanced structural strength from the Uni Directional Carbon strands. Late Bow Profile and Added precision from the CWT groove.
50% Carbon, 45% Glassfibre, 5% Aramid
Late Bow Indent Profile
A well known and popular TK shape, the LTI incorporates our original Control Wing Technology (CWT) full indent control channel in the face of the stick. Running from the toe to two thirds of the way up the shaft, this 2mm groove helps the player maintain a specific centred ball position over the widest playing...
Synergy, where science meets hockey. Nano Technology takes performance to new levels by extracting the maximum from every fibre. The TK S 4177 Synergy Composite Hockey Stick features Improved matrix performance from a 2.9% Reactive Liquid Polymer level and enhanced structural strength from the Uni Directional Carbon strands. Late Bow Profile and Added precision from the CWT groove.
50% Carbon, 45% Glassfibre, 5% Aramid
Late Bow Indent Profile
A well known and popular TK shape, the LTI incorporates our original Control Wing Technology (CWT) full indent control channel in the face of the stick. Running from the toe to two thirds of the way up the shaft, this 2mm groove helps the player maintain a specific centred ball position over the widest playing area, maximising ball control and giving extra assistance to drag flicking and aerial passing skills.
The optimum point of the 25mm bow is pushed further towards the head of the stick to increase the emphasis of assistance to the execution of drag flicking by increasing the slingshot momentum that can be imparted on the ball. The lower bow placement also assists dynamic dribbling capability.
Reactive Liquid Polymer (RLP)
A special formulation resin, Reactive Liquid Polymer, is a simplified Nano Technology method with the overall effect is a noticeable enhancement of the fibre matrix to improve the strength, durability and performance of the stick against regular composite constructions.
Uni-Directional Carbon Strands
Visually apparent in the stick, the use of uni-directional carbon strands further adds to the stiffness of the structure and therefore the potential power output against a standard composite matrix.
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