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SZ-F Fender
Model
-
Series
Foam Filled Fender
Product Description

Features

Foam Filled Fenders are constructed with and energy-absorbing foam core and a tough outer skin of filament-reinforced Polyurea Elastomer

Seazone’s Foam Filled Fender, buoys, and ocean barriers are made with industry-leading manufacturing technology, combining existing methods with computer-automated processes that enable consistent production of long-lasting, high quality fenders measured across four performance grades.


- No point loading
- Non-marking skin
- Low hull pressure
- High energy absorption and Low reaction force
- Low maintenance and High durability
- High abrasion resistance
- Flotation unaffected by tidal waves or harsh weather conditions
- Various and Easy installation



Applications





Drawing


PE-Foam Core
PropertyStandard
Density58-70 𝑘𝑔/𝑚3
Tensile strength≧414kPa
Elongation to break≧120%
Water absorption〈 1𝑘𝑔/𝑚2
--
Nylon Filament Reinforcement
PropertyStandard
Filament size2520 denier
Breaking strength≧230N
Elongation to break≧16%
Filament spacing4mm(typical)
--
Elastomer Skin
PropertyStandard
Hardness (Shore A)75-95
Tensile strength≧13.8Mpa
Elongation to break≧300%
Tear strength≧32kN/m
Abrasion resistance (NBS)≧200



















Nylon Filament Helical & Hoop Winding Process





- The elastomer used in the fender skin in polyurea. The skin is reinforced by filament winding wrap in a helical and hoop direction, which is controlled by and automatic winding system with load cell sensors at each filament. Our four-axis filament winding system, also used to build spacecraft fuel tanks, takes control and positions each filament for maximum strength and an even finish.




Performance curve





Hull Pressures

STD134.4kpa13.7t/m22.8ksf
HC176.6kpa18.0t/m23.7ksf
EHC257.0kpa26.2t/m25.4ksf
SHC353.2kpa36.0t/m27.4ksf

- Foam-filled fenders do not experience a high reaction force during normal docking because they have high energy absorption with low reaction force and hull pressure.

- The reaction force curve shows a gradual performance increase as deflection rate increases. Unlike foam-filled fenders, rubber fenders have high reaction force with low deflection rates, increasing the risk of damage to docks, piers, and vessels during docking.



Performance table

CompoundsStandard CapacityHigh CapacityExtra High CapacitySuper High Capacity
Deflection60%60%60%60%
Size x PerformanceE.A. (ton.m)R.F. (ton)E.A. (ton.m)R.F. (ton)E.A. (ton.m)R.F. (ton)E.A. (ton.m)R.F. (ton)
Ø600 × 1,200L29212317424
Ø600 × 1,800L315320529739
Ø600 × 2,400L421528740955
Ø600 × 3,000L4276358521171
Ø700 × 1,500L314318526735
Ø900 × 1,500L4206278391153
Ø900 × 1,800L52272810411457
Ø900 × 2,400L831104015592080
Ø900 × 3,000L10401352197626104
Ø900 × 3,700L12491664239331127
Ø900 × 4,300L145819752711037151
Ø1,000 × 1,500L5186239341346
Ø1,000 × 2,000L72693413491867
Ø1,200 × 1,800L826113316482266
Ø1,200 × 2,000L929123718542474
Ø1,200 × 2,400L1238164923723298
Ø1,200 × 3,000L16502165319642131
Ø1,200 × 3,700L206226803811753161
Ø1,200 × 4,900L2886371125316373223
Ø1,200 × 6,100L36110471436820993285
Ø1,350 × 2,500L15432056298140111
Ø1,500 × 2,400L18452459368649118
Ø1,500 × 3,000L256132794711665158
Ø1,500 × 3,700L317541985914481197
Ø1,500 × 4,300L3791481187117297236
Ø1,500 × 4,900L431065613782201113275
Ø1,500 × 5,500L491216415794229128314
Ø1,800 × 3,700L41845411079160108220
Ø1,800 × 4,300L501026513396194131265
Ø1,800 × 4,900L5912077156112229154313
Ø1,800 × 5,500L6813888180129263177360
Ø1,800 × 6,100L77156100203146297199406
Ø2,000 × 3,500L46866011288164121224
Ø2,000 × 4,000L5510272133105195143267
Ø2,000 × 4,500L6411883154121225166308
Ø2,100 × 4,300L6711788153128223175305
Ø2,100 × 4,900L79138103180151263206360
Ø2,100 × 5,500L91159119207173303237414
Ø2,100 × 6,100L103180134234196342269468
Ø2,100 × 6,700L115201150261219382300523
Ø2,400 × 3,700L7311195145139212191291
Ø2,400 × 4,300L85130111170163248223340
Ø2,400 × 4,900L101155132201193294264402
Ø2,400 × 5,500L117179152232223340305464
Ø2,400 × 6,100L133203173264253385346527
Ø2,400 × 6,700L149227193295283431387590
Ø2,500 × 4,000L82122106159155232213317
Ø2,500 × 5,500L122181159237233347318474
Ø2,700 × 4,300L108146140190205277280380
Ø2,700 × 4,900L123167160217234317320434
Ø2,700 × 5,500L143194186252271368371503
Ø2,700 × 6,100L163220211287309419423573
Ø2,700 × 6,700L182247237322346470474643
Ø3,000 × 4,900L150182194237284347389474
Ø3,000 × 5,500L174212226276331403452552
Ø3,000 × 6,000L189234246304359445491609
Ø3,000 × 6,100L198242258315377460516630
Ø3,000 × 6,700L223272290354424517580708
Ø3,000 × 7,300L250306316386462564632772
Ø3,300 × 4,500L153172199224291328398448
Ø3,300 × 6,500L247278321362469529643725
Ø3,400 × 5,500L219265267295389432533591
Ø3,400 × 6,100L241279296338446494610676
Ø3,400 × 6,700L264293343381502557687762
Ø3,400 × 7,300L288319375415548607749831
Ø3,700 × 6,100L299321389417----
Ø3,700 × 7,300L359386467502----
Ø4,000 × 7,900L448447582581----
Ø4,200 × 8,000L495478644621----
Ø4,300 × 8,500L553513719667----
Ø4,500 × 9,000L639580831754----
Ø4,500 × 10,500L763689992896----
*The tolerance shall be ±10%




Performance test


Test procedures
: Select Fender → Move to the Machine → Measure Height → Compression → Read Reaction Force (60%) → Decompress → Measure Recovery Rate to Full Height



Compression Performance Test

- To ensure fenders are able to prevent damage to docks, piers, and vessels, these tests measure the quality and durability of a fender’s ability to absorb energy and reduce reaction force.

- Energy absorption and compression load must be able to reach 60% deflection.

- At 60% deflection, the fender will be decompressed. After two minutes, the height of the fender is measured and must recover 90% of its original height. After thirty minutes, fender height recovery must exceed 95%.