Arch Rubber Fender for Marine Vessel Hull Protection with Extreme Weather Resistance and High Rebound Efficiency
Arch Rubber Fender is a marine berthing protection system engineered for high-frequency vessel docking operations where structural load absorption, impact energy control, and quay infrastructure protection are required under continuous operational cycles.
Manufactured using marine-grade elastomer compounds through precision vulcanization molding technology, this system ensures stable molecular structure, controlled hardness distribution, and long-term resistance to fatigue deformation under repeated compression loading.
A high-throughput container logistics terminal in Rotterdam, Netherlands implemented Arch Rubber Fender systems as part of a quay modernization project focused on increasing berth utilization efficiency and reducing maintenance downtime.
Following implementation, operational monitoring indicated improved load distribution consistency and reduced peak stress concentration on quay edges. The system supported increased berthing efficiency by maintaining stable vessel alignment and reducing downtime associated with structural maintenance activities.


| Parameter | Specification |
|---|---|
| Product Name | Arch Rubber Fender |
| Material | Natural Rubber, Silicone Rubber |
| Color | Black, or Customized |
| Surface | Smooth |
| Size Range | Height: 200-1000mm Length: 1000-3500mm All Sizes Can Be Customized |
| Physical Properties | Polymer Content: 100% Virgin Working Temperature: -50℃~240℃ Tensile Strength: ≥16 Mpa Density: 90+/-5 Per 100mm Hardness: 50-70 (shore A) Elongation: ≥400% |
| Features | High Temperature Resistant Excellent Tear Resistant, Oil Resistant, Aging Resistant Resistant to Industrial Acid & Alkali Good Elastic Properties Built as Per PIANC2002 |
| Application | Multi-Purpose Terminals, RoRo Ramps, Passenger Vessel Terminals, Barge |
| Model | W [mm] | B [mm] | F [mm] | C [mm] | H [mm] |
|---|---|---|---|---|---|
| HM-ARF200H | 400 | 320 | 145 | 128 | 200 |
| HM-ARF250H | 500 | 410 | 175 | 160 | 250 |
| HM-ARF300H | 600 | 490 | 225 | 196 | 300 |
| HM-ARF400H | 800 | 670 | 300 | 260 | 400 |
| HM-ARF500H | 1000 | 840 | 375 | 325 | 500 |
| HM-ARF600H | 1200 | 1010 | 450 | 390 | 600 |
| HM-ARF800H | 1600 | 1340 | 600 | 520 | 800 |
| HM-ARF1000H | 2000 | 1680 | 750 | 650 | 1000 |
- High Cycle Load Structural Stability Design: Engineered for repeated impact loading conditions with arch configuration that distributes compressive forces across the elastomer body.
- Fatigue Resistant Marine Elastomer Technology: Formulated using marine-grade rubber compounds designed to withstand long-term cyclic compression loading.
- Controlled Energy Dissipation Behavior: Operates through staged compression response under vessel impact conditions for stable performance.
- Industrial Mounting Load Transfer System: Engineered for high stability integration with concrete and steel quay structures.
- Container Terminal Berthing Systems: High-throughput container ports with scheduled vessel cycles requiring consistent impact absorption.
- Logistics and Distribution Port Infrastructure: Marine logistics hubs requiring rapid vessel turnaround and high-frequency docking.
- Bulk Cargo Handling Terminals: Bulk material ports with repetitive vessel loading/unloading cycles generating continuous impact stress.
- High Frequency Port Engineering Capability: Systems designed specifically for high-cycle operational environments.
- Industrial Grade Elastomer Processing Technology: Controlled vulcanization and compound formulation for stable fatigue resistance.
- Engineering Based Customization: Technical design support for different berth layouts and vessel traffic density.
- Global Logistics Port Project Experience: Supporting international container and logistics terminal projects worldwide.




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