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2011 - 2023 Kawasaki ZX-10R No Cut Frame Front & Rear Axle Sliders Case Covers Spools

T-Rex Racing 2011 - 2019 Kawasaki ZX-10R No Cut Frame Front & Rear Axle Sliders Case Covers Spools


 
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Part Number: N56-11 + N56-11C + N56-11R + N56-8F + BlaPlaSpool8
Our Price: $284.95



Availability:: Usually Ships in 24 to 48 Hours


Aluminum Insert Color*:


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Description
 
  • Condition: New
  • Material: UHMW-PE (ultra high molecular weight polyethylene), aircraft grade aluminum
  • No cut or fairing modifications required
  • Fit Models: Kawasaki
  • 2011 - 2019 Ninja ZX-10R
This purchase is for a set of frame sliders, front & rear axle sliders, and case covers for the bike models above. The sliders feature a new design of a complete solid puck without a hollowed-out center. This increases the strength and contact surface to about 30%. The slider's spacer is machined from 6061-T6 aluminum. The spacer is bolted to the engine mount and the slider puck is screwed onto it. Since this spacer is made of solid billet aluminum there is no need for re-tightening the engine bolt in the long run where you have to do so with plastic slider as the plastic would gradually give in and therefore making the bolt loose. The front axle sliders are designed to minimize damage to the front forks in a low-side. The rear axle sliders provide an indispensable protection for your beautiful expensive swing-arm. The material of the puck is made of UHMW-PE (ultra high molecular weight polyethylene), a tough plastic with good strength, wear resistance and dimensional stability. It is more dimensionally stable than Nylon and used in many industrial ball bearing and friction reducing applications. Compared to Delrin, it is softer but tougher. Delrin is harder but more brittle. It is an ideal material for frame sliders since it can absorb more impact force onto itself and therefore reduce the impact on the frame and engine. The slider pucks can be inexpensively replaced in case of a low-side. We use highest grade commercially available 12.9(177,000 psi in tensile strength) wherever possible. Rest assured that you are getting the best material commercially available.

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