The RLU Series Tyre Coupling is a heavy-duty and high-performance variant, designed for critical applications requiring high torque transmission and superior damping
High torque capacity for demanding industrial applications
Reinforced tyre design for extended service life
Ideal for continuous and heavy-duty operations
Typical Applications
Tyre Flex Couplings are widely used in:
• Pumps and compressors
• Fans and blowers
• Conveyors and material handling systems
• Crushers and heavy machinery
• Cement, steel, and process industries
These couplings are ideal for applications requiring high flexibility, shock absorption, and reliable performance under dynamic loads.
Optional Variants & Customization
• Different rubber compounds for specific applications
• Reinforced tyre elements for heavy-duty use
• Steel / stainless steel hub options
• Custom bore and keyway configurations as per DIN / ISO standards
• Anti-corrosion coatings for harsh environments
Provides maximum flexibility and vibration isolation
Ideal for misaligned and dynamic systems
Easy installation and reduced maintenance time
Proven performance in demanding industrial environments
Our team of experts is ready to assist you in selecting the perfect power transmission components for your specific applications.
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Yes. Our couplings are engineered to handle demanding torque and speed requirements with minimal vibration and backlash, ensuring smooth and reliable power transmission under extreme conditions.
Yes. Our couplings are engineered to handle demanding torque and speed requirements with minimal vibration and backlash, ensuring smooth and reliable power transmission under extreme conditions.
Yes. Our couplings are engineered to handle demanding torque and speed requirements with minimal vibration and backlash, ensuring smooth and reliable power transmission under extreme conditions.
Yes. Our couplings are engineered to handle demanding torque and speed requirements with minimal vibration and backlash, ensuring smooth and reliable power transmission under extreme conditions.