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Polyurethane marine protection devices ensure that pipes or cables connected to offshore wind power and oil and gas drilling platforms do not bend.
In offshore oil and gas development and offshore wind power projects, flexible riser buoyancy devices provide appropriate buoyancy support, control the catenary shape of the riser in the water, ensure it is in a fixed position, and ensure safety.
Diverless J-tube seals (J-tube sealing system) can fix and seal submarine cables in offshore wind power, submarine communications, power transmission, and other projects, ensuring the long-term stable operation of the system.
Submarine cable protection ducts are generally made of marine-grade polyurethane, which is anti-corrosion, high temperature resistant, and abrasion resistant, protecting submarine pipelines from friction.
Polyurethane bend restrictors play a role in protecting cables in offshore wind power to avoid excessive bending and wear. They are generally installed at the submarine cable outlet, inside or outside of J-tubes and I-tubes.
Polymer bend restrictor is a modular protective component made of high-strength polyurethane. It effectively prevents excessive bending of cables, pipes or hoses by limiting the minimum bending radius when under stress.
Submarine polyurethane vertebrae hose bend limiter is a key accessory for protecting pipelines and cables in subsea oil and gas extraction, offshore wind power and other industries.
Polyurethane dynamic cable bending stiffener is a mechanical device that prevents excessive bending of cables or pipelines between offshore platforms and submarine structures.
J-tube centralizers are used in offshore platforms and wind turbine structures to ensure that the cable is accurately centered and aligned within the J-tube, reducing mechanical damage and extending the service life of the cable system.
Distributed subsea floating buoyancy modules help mitigate the buckling by reducing the self-weight of the flowline as well as the friction against the seabed.
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202508-28
202508-28
202508-26
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