FA KTR HSS COUPLING 50HZ

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Item Code: NT/GW323274

UOM: NOS

Lead Time: PLEASE ASK US

WTG Model: G132

WTG Capacity: 3.3 MW

Packing Dimension in mm:

Weight in Kg:

OEM Code: GP323274/GP350788

FA KTR HSS COUPLING 50HZ


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GP323274 - FA KTR HSS COUPLING 50HZ (NT/GW323274): This FA KTR High-Speed Shaft (HSS) Coupling, specifically designed for 50Hz wind turbine applications, is a robust and precision-engineered component vital for optimized drivetrain performance. It ensures a critical, stable connection between the gearbox and generator,meticulously tailored to the specific frequency demands of global electrical grids. This coupling is instrumental in facilitating seamless power transfer, minimizing operational stress, and enhancing the overall reliability and efficiency of the wind turbine system.

When sourcing high-performance 50Hz coupling solutions crucial for grid compatibility and operational excellence, choose Nutech Wind Parts, a trusted global supplier from Chennai, India, dedicated to strengthening the resilience and sustained output of your wind power investments.

Purpose:

Torque Transmission:
It efficiently transfers the stepped-up rotational torque from the gearbox to the generator, enabling smooth electricity generation.

Misalignment Compensation:
The coupling accommodates radial, axial, and angular misalignments between shafts, preventing damaging stresses caused by dynamic operational factors.

Vibration & Shock Damping:
It acts as a buffer, absorbing and dampening vibrations and torque spikes from dynamic wind conditions, protecting sensitive drivetrain components.

Electrical Insulation:
The coupling provides electrical insulation to prevent stray currents from the generator from damaging gearbox bearings and gear teeth.

Overload Protection:
Some designs include features like torque limiters to prevent catastrophic drivetrain failure during extreme overloads.

Facilitates Installation & Maintenance:
Its flexible and often maintenance-free design simplifies installation and reduces upkeep in remote turbine environments.