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Advanced Shock Absorption Cone Fender Uv Resistant Structure Stable Performance

Categories Cone Rubber Fenders
Brand Name: Hongruntong Marine
Model Number: HM-CRF30
Certification: PIANC, ABS, DNV
Place of Origin: China
MOQ: 1
Price: USD18-USD889
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 1020 PCS Per Month
Delivery Time: 5-8 Work Days
Packaging Details: Plastic Protective Film, Wooden Pallet
Product Name: Cone Rubber Fenders
Material: Wear Resistant Natural Rubber
Application: Industrial Dock Port Boat
Features: Easy to Handle
Hardness: ≤82 Shore A
Processing Service: Moulding, Cutting
Color: Black or Customized
Elongation: ≥300%
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Advanced Shock Absorption Cone Fender Uv Resistant Structure Stable Performance

Advanced Shock Absorption Cone Fender Uv Resistant Structure Stable Performance


Description


The Cone Rubber Fender is a high-performance marine fender designed for ports and offshore facilities where reliable energy absorption and low reaction force are critical. Its conical geometry allows for efficient compression during vessel impact, evenly distributing loads and minimizing stress on quay walls and ship hulls. The compact design delivers high energy absorption relative to its footprint, making it suitable for ports with space constraints or where multiple berths are operating simultaneously.


Constructed from high-quality natural and synthetic rubber with multiple reinforcement layers, Cone Fenders provide exceptional durability, elasticity, and resistance to ozone, UV, and saltwater exposure. The modular design allows optional integration of steel backing plates and UHMW-PE facing pads, enhancing friction reduction and long-term operational performance.


Case Study: Offshore Supply Base – West Africa


An offshore supply base handling crew transfer vessels and supply ships needed a fendering system that could withstand frequent berthings under strong tidal currents. Previous fenders suffered early wear and high maintenance costs due to repeated high-energy impacts and abrasive saltwater conditions.


Hongruntong Marine provided Cone Rubber Fenders with reinforced steel plates and low-friction UHMW-PE facing panels. The installation was performed without interrupting base operations, and alignment was verified to ensure optimal impact performance.


After 14 months, data showed a 38% reduction in quay wall reaction forces and significantly smoother vessel berthing. The fenders maintained elasticity, showed no deformation, and required minimal maintenance. Operators reported improved safety for vessels and personnel, highlighting the effectiveness of the conical fender design under challenging offshore conditions.


Specifications


Product NameCone Rubber Fenders
Brand NameHongruntong Marine
MaterialHigh Quality NR
StandardPIANC, HGT
Face PadsUHMW-PE Available
CertificatesBV, ABS, DNV, LR, SGS, RS, CCS
OEM / ODMWelcome
Packing DetailsPe Plastic Bags Then to The Pallet / as Per Your Request
Production Capacity3000 Pcs Per Month
Lead Time7 Days for Prototype Tooling & Samples, 14 Days for Production Mold, 14-28 Days for Moq
Payment TermsT/T, L/C, Paypal, Western Union
Rubber SpecificationASTM D2000, SAE J200

ModelHhFDQWd-md-n
Cone[mm][mm][mm][mm][mm][mm][mm][mm]
HM-CRF30030013.5255450195405M1620
HM-CRF35035025300570235510M2025
HM-CRF40040018340600260540M2025
HM-CRF50050025425750325675M2430
HM-CRF60060027510900390810M2430
HM-CRF700700325851050455945M3038
HM-CRF8008003668012005201080M3644
HM-CRF9009004176513505851215M3644
HM-CRF100010004585015006501350M4256
HM-CRF1050105055103016809001530M3644
HM-CRF110011005093516507151485M4250
HM-CRF115011505299817257501550M4256
HM-CRF1200120054102018007801620M4250
HM-CRF1300130059110519508451755M4860
HM-CRF1400140066119021009301890M4860
HM-CRF16001600721360240010602160M4870
HM-CRF18001800781530288011902430M5676
HM-CRF20002000801900320015402920M5676

Features


Optimized Energy Absorption and Load Distribution
The conical profile allows gradual deformation under vessel impact, efficiently distributing forces along the fender body. This reduces the reaction force on the quay and prevents localized stress, protecting both the structure and the vessel hull. The high energy-to-footprint ratio ensures performance even in compact dock areas.


High Performance Rubber and Environmental Resistance
Cone Fenders are produced using proprietary natural and synthetic rubber blends resistant to ozone, UV, and saltwater. Reinforcement layers improve fatigue resistance and tensile strength, allowing thousands of berthings without loss of performance. The material maintains elasticity and energy absorption over long-term exposure to harsh marine environments.


Structural Reinforcement and Stability
Internal synthetic fabric layers combined with optional galvanized or stainless-steel backing plates provide stability under compression and angled impacts. Reinforcements ensure consistent shape and energy absorption capacity, even under repeated high-load conditions, extending service life and reliability.


Modular Design for Installation Flexibility
The modular construction allows quick installation, replacement, and adjustment to berth-specific requirements. UHMW-PE facing pads reduce friction and protect hull surfaces. Pre-drilled holes and standardized mounting systems simplify assembly on concrete and steel docks, reducing operational downtime and maintenance costs.


Applications


Offshore Supply Bases
Protects crew transfer vessels and supply ships from repeated high-energy impacts, ensuring smooth and safe docking operations.


Bulk and Container Terminals
Efficiently absorbs energy during berthing of large cargo and container ships, reducing quay wall and hull stress.


Naval and Defense Ports
Ensures safe berthing for military vessels, patrol boats, and support ships, maintaining operational readiness and structural integrity.


Why Choose Hongruntong Marine


Advanced Design and Engineering Optimization
Hongruntong uses finite element analysis (FEA) and energy absorption simulations to design fenders that optimize force distribution, impact resistance, and durability. Each fender is tailored to vessel types, berth dimensions, and tidal conditions to ensure maximum efficiency and safety.


Premium Materials and Manufacturing Excellence
Proprietary rubber compounds, precise vulcanization, and reinforced multi-layer construction provide consistent material properties, high tensile strength, and superior elasticity. These features ensure durability and fatigue resistance for long-term, high-frequency berthing operations.


Customized Solutions for Specific Operational Needs
Cone Fenders can be customized in size, base diameter, facing pads, and mounting system to match berth layout, vessel class, and environmental conditions. Tailored solutions maximize safety, efficiency, and service life, with optional protective features such as steel backing plates and friction-reducing panels.


Global Service and Maintenance Support
Hongruntong offers worldwide technical support, including on-site installation supervision, performance monitoring, inspection, refurbishment, and spare parts supply. Maintenance programs and technical guidance ensure fender reliability, minimize downtime, and extend operational lifespan.


FAQ


1. What is the expected service life of Cone Rubber Fenders?
Typically 12–20 years depending on operational intensity, environmental conditions, and maintenance practices.


2. Are Cone Fenders suitable for high-frequency berthing?
Yes, the conical geometry distributes impact energy efficiently, allowing frequent berthings without structural compromise.


3. Can facing pads be added for additional protection?
Yes, optional UHMW-PE facing pads reduce friction, protect hull coatings, and enhance overall fender performance.


4. What mounting options are available?
Steel backing plates are available in galvanized or stainless steel for concrete or steel quay installation, providing secure attachment and corrosion resistance.


5. How often should fenders be inspected?
Visual inspection every six months, with annual detailed checks for surface wear, mounting integrity, and reinforcement stability.


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