Marine Cone Fender
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Marine Cone Fender

Marine Cone Fender

Marine Cone Fender Introduction Cone Fender is the latest generation of"Cell Fender"combining excellent energy capacity with low reaction force to give the most efficient performance.The conical shape keeps the fender body stable under all combinations of axial, shear and angular...

Description

 

Marine Cone Fender


 

Contact Person

Contact Person: Fairy Fan

Email:Fairy@luhanggroup.com

Tel:+86 19063952909

Whatsapp/WeChat:+86 19063952909

 


Introduction

 

Marine Cone Fender 0

Marine Cone Fender is the latest generation of"Cell Fender"combining excellent energy capacity with low reaction force to give the most efficient performance.The conical shape keeps the fender body stable under all combinations of axial, shear and angular loading. Hence,it is ideal for berths where large berthing angles and heavy impacts need to be accommodated. All Marine Cone Fenders are single piece mouldings so they are robust,long lasting and easy to install. In most projects,the frontal frame is generally used in conjunction with Cone Fender System. Generally the frontal frame is consist of Steel Panel and UHMW PE Pads. Marine Cone Fenders also have been used with great success behind fender piles, in Parallel Motion Fender Systems and for numerous other applications.

 


Features

 

  • Highly efficient structure
  • Stable performance under large berthing angles and shears
  • Versatile design suits various applications
  • Multiple rubber compounds achieve various performances
  • Easy installation

Applications

 

  • Tanker Berths
  • Container Terminals
  • RoRo &Cruise Berths
  • BulkCarrier Terminals
  • Dolphins &Monopiles

Dimensions

 

Marine Cone Fender 1

Marine Cone Fender 2


Performance Curve

 

Marine Cone Fender 3

 

 

Deflections

Marine Cone Fender 4

 

 

 

Marine Cone Fender 5

For example, when the compression deformation is 30%, H1 = 30%, R1 = 97%, and E1 = 30%.
Reaction force: R(30%) = R × R1 = R × 97%
Energy absorption: E(30%) = E × E1 = E × 30%
For instance, when the deflection is 30%, then H1 = 30%, R1 = 97%, and E1 = 30%.
Reaction force: R(30%) = R × R1 = R × 97%
Energy absorption: E(30%) = E × E1 = E × 30%

 


Proven In Practice

 

product-687-301product-690-320

 

 

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