Difference between revisions of "Addax"
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As the first to introduce advanced composite couplings to the cooling tower industry in 1987, Rexnord Addax is recognized as the benchmark in the industry. The lightweight, advanced composite material design increases critical speed, reduces vibration, and extends bearing life compared to alternative all-steel couplings. Rexnord Addax delivers best-in-class performance and lowest total cost of ownership. | As the first to introduce advanced composite couplings to the cooling tower industry in 1987, Rexnord Addax is recognized as the benchmark in the industry. The lightweight, advanced composite material design increases critical speed, reduces vibration, and extends bearing life compared to alternative all-steel couplings. Rexnord Addax delivers best-in-class performance and lowest total cost of ownership. | ||
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* Shaft diameters up to 12.75 inches and bore capacity up to 5.06 inches | * Shaft diameters up to 12.75 inches and bore capacity up to 5.06 inches | ||
* Dynamically balanced to meet ISO 1940 G6.3 requirements as standard | * Dynamically balanced to meet ISO 1940 G6.3 requirements as standard | ||
+ | [[File:Addex .png|alt=Addex |center|thumb|1024x1024px|Addex ]] | ||
= '''What makes Addax different than the rest?''' = | = '''What makes Addax different than the rest?''' = |
Revision as of 21:59, 10 January 2022
As the first to introduce advanced composite couplings to the cooling tower industry in 1987, Rexnord Addax is recognized as the benchmark in the industry. The lightweight, advanced composite material design increases critical speed, reduces vibration, and extends bearing life compared to alternative all-steel couplings. Rexnord Addax delivers best-in-class performance and lowest total cost of ownership.
Rexnord Addax CT Disc Couplings
Lightweight, floating shaft spacer coupling specifically designed for the harsh rigors of cooling tower applications.
- Configured-to-order based on application requirements
- Custom spacer lengths up to 275 inches (7,000 mm)
- Continuous torque ratings up to 36,200 lb-in (4,090 Nm)
- Shaft diameters up to 12.75 inches and bore capacity up to 5.06 inches
- Dynamically balanced to meet ISO 1940 G6.3 requirements as standard
What makes Addax different than the rest?
Proven & Trusted Performance
With over 50,000 couplings installed across the world, Rexnord Addax is the most specified coupling globally in the cooling tower industry. Customers continually select Addax Composite Couplings when dependable performance is a must.
Extended System Life
Low weight design reduces coupling inertia and overhung bearing loads, resulting in lower vibration and extended service life of connected components.
Rapid Installation & Maintenance
Superior design and high misalignment capability enable simplified installation process and ultra-fast replacement of wearable components. Low coupling weight eliminates need for special lifting equipment.
Low Total Cost of Ownership
The superior performance and reliability of Addax Composite Couplings along with Rexnord’s unmatched service and quick turnaround capability, combine to deliver the coupling solution with lowest Total Cost of Ownership.
Why choose a Rexnord ® Addax ® Composite Cooling Tower over the alternatives?
Features | Functions | Benefits |
---|---|---|
Low Weight | Reduced Mass
Reduce Bearing Loads Reduce Inertia |
Simplified Installation
Increase Bearing Life Reduce Vibration |
Corrosion Resistance | Resist Chemical Attack | Extend Service Life
Reduce Maintenance Increase Safety Low Cost of Ownership |
Low Coefficient of
Thermal Expansion |
Dimensional Stability | Reduce Vibration
Reduce Stresses Increase Operating Range |
Continuous Fiber
Composite Spacer Flange |
Infinite Fatigue Life | Low Cost of Ownership |
Unitized Flex
Element |
Eliminate Fretting
Infinite Fatigue Life Simplified Installation |
Low Cost of Ownership
Longer Service Life Reduced Maintenance Increased Safety |
High Misalignment
Capacity |
Reduced Equipment Stress
Increase Life |
Easier Installation
Reduced Ownership Costs |
High Strength to
Weight Ratio |
Increase Stiffness
Higher Critical Speed |
Eliminate Harmonics
Eliminate Steady Bearings |