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High Strength Polysteel Twisted PP Rope for Fishing Marine for Boat Pot Winches Docking

Categories Mooring Rope
Brand Name: JC MARINETIME
Model Number: 3 / 4 / 8 / 12 STRAND ROPE
Certification: ISO / CE
Place of Origin: CHINA
MOQ: 220 Meter
Price: 30 USD Per Meters
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 50000 Meters Per Month
Delivery Time: 5-20 days
Packaging Details: Pallet Or As Required
Part: Dock Mooring
Coil length: 220m
Weight and length tolerance: ± 5%
Spliced strength: ±10% lower
U.V.Resistance: Very Good
Service: OEM/ODM
Warranty: 12 Months
Material: polypropylene,Nylon,polyester,PP,PET/PA/PP/PE as request
Color: white,yellow,blue,black and others as requested,Customers' Requirments
Usage: mooring hawser,anchor rope,mooring tail,mooring rope,Package/mooring/towing/fishing
Diameter: 4mm-56mm,48,2-160mm (customized),6mm -144mm,24 - 120 mm
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High Strength Polysteel Twisted PP Rope for Fishing Marine for Boat Pot Winches Docking


High Strength Polysteel Twisted PP Rope for Fishing Marine for Boat Pot Winches Docking


2. Main performance


MaterialPolyamide
Multifilament
Polyamide
Yarn
Polypropylene
Multifilament
PolypropylenePolyesterPolypropylene and
Polyester Mixed
Spec.Density1.14
no floating
1.14
not floating
0.91
no floating
0.91
Floating
1.27
no floating
0.95
Floating
Melting Point215℃215℃165℃165℃260℃165℃/260℃
Abrasion ResistanceVery GoodVery GoodMediumMediumGoodGood
U.V.ResistanceVery GoodVery GoodMediumMediumGoodGood
Temperature resistance120℃max120℃max70℃max70℃max120℃max80℃max
Chemical resistanceVery GoodVery GoodGoodGoodGoodGood

3.Technology Comparison


Coil length: 220m

Spliced strength:± 10% lower

Weight and length tolerance:± 5%

MBL=Minimum Breaking Load conform ISO 2307

Other sizes available upon request

4.Parameter Table

Specification
规格
PA Multifilament
锦纶复丝
PAYarn
锦纶
PP Multifilament
丙纶长丝
Polypropylene
丙纶
Polyester
涤纶
PET/PP Mixed
丙纶/涤纶混合绳
Dia.CirKtexKNKtexKNKtexKNKtexKNKtexKNKtexKN
直径圆 周线密度破断强力线密度破断强力线密度破断强力线密度破断强力线密度破断强力线密度破断强力
41/2103.7102.66.32.362.1122.97.02.8
63/4227.9226186.5175.9275.617.56.8
814013.84010.93211.43010.44810.03111.9
101-1/46221.26215.74716.84515.37615.648.518.2
121-1/28930.18924.16823.96521.711022.369.925.7
141-3/412140.012133.09532.99029.914831.295.134.7
16215851.915842.512140.711537.019539.812444.8
182-1/420064.320053.915551.914847.224549.815756.1
202-1/224779.224766.718962.618056.930362.319468.7
222-3/429994.029980.423175.022068.236774.723582.1
24335511235593.627387.726079.743789.627996.3
263-1/4417129417111.532010130592.2512105328113
283-1/2484149484127373115355105594120380130
303-3/4555169555143425132405120682134437148
324632192632161483146460132778154497167
364 - 1/ 2800240800200614182585166982190629210
4059872949872417562217202011215235776257
445-1/2119035111902899242668802421468275939308
486142041214203381092308104028017503291110364
526-1/2167047916703931281357122032520503841320424
567193055019304501491408142037123804391520489

Production Process

  • Step 1: Raw Material Preparation & Melting
    High-quality polypropylene (PP) resin pellets are selected as the base material, combined with reinforcing "polysteel" components (typically high-tensile synthetic fiber blends or fiber-reinforced PP additives to enhance strength). The mixed raw materials are fed into an extruder, where they are heated to a molten state (around 180–220°C) under controlled temperature. This melting process ensures the PP resin and polysteel components fuse uniformly, forming a homogeneous molten polymer.
  • Step 2: Fiber Extrusion & Cooling
    The molten polymer mixture is pushed through a spinneret (a metal plate with hundreds of tiny holes) to form continuous, thin PP-polysteel composite filaments. These filaments are immediately drawn through a water cooling bath or air-cooling system to solidify quickly, preventing thermal degradation and maintaining fiber integrity. After cooling, the filaments are pulled slightly (a process called "drawing") to align the polymer molecules, further boosting their tensile strength.
  • Step 3: Filament Bundling & Spooling
    The cooled, drawn filaments are gathered into larger bundles (called "yarns" or "strands") with consistent thickness. Each bundle is wound onto large spools using automated spooling machines, ensuring even tension to avoid filament tangling or breakage. These spools of PP-polysteel yarn serve as the raw material for rope twisting.
  • Step 4: Twisting (Strand Formation)
    Multiple spools of PP-polysteel yarn are mounted on a twisting machine. The machine rotates the yarns in a controlled direction (either S-twist or Z-twist) to twist them into individual strands. For high-strength performance, the twisting tension and rotation speed are precisely calibrated—tighter twists enhance strand density and load-bearing capacity, while avoiding over-twisting that could cause brittleness. This step produces the foundational strands of the rope.
  • Step 5: Rope Construction (Final Twisting)
    The pre-twisted PP-polysteel strands are loaded onto a secondary twisting machine (or a stranding machine) to form the final rope. Depending on the desired rope diameter and strength, multiple strands (e.g., 3, 4, or more) are twisted together in the opposite direction of their individual twist (a process called "counter-twisting"). This counter-twist balances the rope’s internal tension, preventing it from unraveling and ensuring structural stability. The machine controls the twist rate to achieve the specified "twisted" texture and strength.
  • Step 6: Post-Processing & Quality Inspection
    The finished rope is cut to standard lengths using automated cutting equipment. It then undergoes post-processing treatments: a surface smoothing process to reduce friction (critical for winch and docking use) and a UV-resistant coating (optional but common for marine applications to prevent sun-induced degradation). Finally, quality inspection is conducted—tests include tensile strength measurement, abrasion resistance checks, and dimensional verification—to ensure the rope meets high-strength marine and fishing standards.

Application Scope

  • Fishing Industry
    • Used as fishing net ropes (to reinforce net edges or connect net panels) for both inshore and offshore fishing. Its high strength withstands the weight of large catches (e.g., tuna, cod) and resists abrasion from underwater rocks or coral.
    • Serves as mooring ropes for fishing vessels when anchored at fishing grounds, and as tow ropes for pulling small fishing skiffs or auxiliary equipment (e.g., bait tanks) behind larger fishing boats.
    • Ideal for securing fishing gear (e.g., traps, pots, or lines) to buoys, as it resists saltwater corrosion and maintains tension even in rough seas.
  • Marine General Use
    • Functions as general-purpose marine ropes for small to medium-sized vessels, including tie-down ropes for on-deck cargo (e.g., fuel cans, fishing supplies) and temporary mooring lines for short stops at coastal harbors.
    • Used as safety lines (e.g., for securing crew members during deck work) or as barrier ropes to mark restricted areas on boats or docks, thanks to its durability and weather resistance.
    • Suitable for floating marker lines (to mark navigation channels or hazard zones in shallow waters), as PP’s natural buoyancy keeps the rope afloat, ensuring visibility.
  • Boat Pot Winches
    • Specifically designed for use with boat pot winches (common in crab, lobster, or shellfish fishing). The rope’s high tensile strength handles the mechanical pull of winches when lifting heavy pots from the seabed, while its twisted structure ensures smooth winding and unwinding on winch drums (reducing friction and wear on both the rope and winch).
    • Resists stretching under the weight of loaded pots, ensuring precise control during winching operations, and its resistance to saltwater and winch grease prevents degradation from contact with winch components.
  • Docking & Mooring
    • Used as docking lines for recreational boats (e.g., sailboats, speedboats) and small commercial vessels (e.g., ferry boats, tour boats) when berthing at docks or marinas. Its strength secures vessels against wind and tide forces, while its flexibility allows easy tying to cleats or bollards.
    • Functions as spring lines (to control a boat’s forward/backward movement during docking) and breast lines (to keep the boat parallel to the dock), as it maintains knot stability and resists abrasion from dock edges or concrete pilings.
    • Suitable for temporary or semi-permanent mooring in calm to moderately rough waters, as it retains performance in exposure to rain, sun, and salt spray.

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