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8 Strand Nylon Hawser Vessel Rope
Presents its addition is latest with their robust number of rope items - the 80mm 8 Strand Nylon Vessel Rope. This rope that is durable ideal for a selection of applications, specifically for those requiring the additional energy and resilience needed in marine tasks.
Parameter
Construction | Diameter (mm) | Material | Ktex | MBL (KN) |
8 Strand | 20 | Nylon | 247 | 66.7 |
24 | 355 | 96.3 | ||
28 | 484 | 127 | ||
32 | 632 | 161 | ||
36 | 800 | 200 | ||
40 | 987 | 241 | ||
48 | 1420 | 338 | ||
60 | 2220 | 513 | ||
72 | 3200 | 723 | ||
80 | 3950 | 884 |
Advantages
High Tensile Strength: The 8 - strand construction of nylon provides excellent tensile strength, enabling it to withstand heavy loads and high - stress situations during vessel mooring, towing, or other maritime operations. This strength ensures reliable performance and helps prevent breakage under pressure.
Good Elasticity and Shock Absorption: Nylon has inherent elasticity, allowing the rope to stretch and absorb sudden shocks or jerks. When vessels are affected by waves, tides, or sudden movements, this rope can buffer the forces, reducing the risk of damage to both the rope and the mooring or towing equipment.
Abrasion Resistance: The 8 - strand nylon hawser rope is designed to resist abrasion well. In marine environments where ropes constantly rub against docks, bollards, or other surfaces, its abrasion - resistant property extends the rope's lifespan, saving on replacement costs over time.
Corrosion Resistance: Nylon is not easily corroded by saltwater, chemicals commonly found in the marine environment, or exposure to moisture. This makes the 8 - strand nylon hawser rope suitable for long - term use in harsh maritime conditions without significant degradation due to corrosion.
Flexibility and Ease of Handling: Despite its strength, the 8 - strand nylon rope remains flexible, making it easy to handle, tie knots, and coil. Its flexibility also allows for better maneuverability during complex vessel operations, improving efficiency and reducing the physical effort required by crew members.
8 Strand Nylon Hawser Vessel Rope
Presents its addition is latest with their robust number of rope items - the 80mm 8 Strand Nylon Vessel Rope. This rope that is durable ideal for a selection of applications, specifically for those requiring the additional energy and resilience needed in marine tasks.
Parameter
Construction | Diameter (mm) | Material | Ktex | MBL (KN) |
8 Strand | 20 | Nylon | 247 | 66.7 |
24 | 355 | 96.3 | ||
28 | 484 | 127 | ||
32 | 632 | 161 | ||
36 | 800 | 200 | ||
40 | 987 | 241 | ||
48 | 1420 | 338 | ||
60 | 2220 | 513 | ||
72 | 3200 | 723 | ||
80 | 3950 | 884 |
Advantages
High Tensile Strength: The 8 - strand construction of nylon provides excellent tensile strength, enabling it to withstand heavy loads and high - stress situations during vessel mooring, towing, or other maritime operations. This strength ensures reliable performance and helps prevent breakage under pressure.
Good Elasticity and Shock Absorption: Nylon has inherent elasticity, allowing the rope to stretch and absorb sudden shocks or jerks. When vessels are affected by waves, tides, or sudden movements, this rope can buffer the forces, reducing the risk of damage to both the rope and the mooring or towing equipment.
Abrasion Resistance: The 8 - strand nylon hawser rope is designed to resist abrasion well. In marine environments where ropes constantly rub against docks, bollards, or other surfaces, its abrasion - resistant property extends the rope's lifespan, saving on replacement costs over time.
Corrosion Resistance: Nylon is not easily corroded by saltwater, chemicals commonly found in the marine environment, or exposure to moisture. This makes the 8 - strand nylon hawser rope suitable for long - term use in harsh maritime conditions without significant degradation due to corrosion.
Flexibility and Ease of Handling: Despite its strength, the 8 - strand nylon rope remains flexible, making it easy to handle, tie knots, and coil. Its flexibility also allows for better maneuverability during complex vessel operations, improving efficiency and reducing the physical effort required by crew members.