LENNOX
LENNOX 99C63 Corporation Fan Blade
Fan BladeThe Lennox Fan Blade 99C63 features a fan blade designed for medium-tonnage ceiling fans. This fan blade is made with an innovative material that was developed specifically for the HVAC...
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Create A New Account"FAN BLADE 22"" DIA .5""BORE 3-BL"
The FAN BLADE 22"" DIA .5""BORE 3-BL is a type of FAN BLADE. It's made of ELECTRIC BLUE. The length of the FAN BLADE 22"" DIA .5""BORE 3-BL is 0.00, while its width is 0.00, its height is 0.00, it weighs 0.00, it has got a weight of 0.00 lbs and took a turn to have its trademark applied for on 2015-12-09.
The Lennox VSD Corporation is a producer of heat transfer products like the FAN BLADE 22"" DIA .5""BORE 3-BL.
Build your Lennox® home comfort system with the Lennox® fan blade number 72L87. This fan blade has a 22" diameter and 3-blade design. It is single speed and fit for an .5-inch bore Goodman® furnace with a 3-1/4" diameter.
Lennox fan blade 22" dia. 5". The Lennox Signature Collection is 100% American made, a reputation you can trust. Lennox products are field tested and certified to perform up to 20% more efficiently than the efficiency ratings of competitors' products Worldwide recognition for quality of material and workmanship, rated as being among the best in the heating and cooling industry for air handling products
Exhaust Fan Blade, Dia 22 In., Length 9 In., Material Steel, Height 2 1/2 In., Width 4 In., Belt Type Nylon, Pitch 1, Includes Retaining Nut.
We've created this auction to help a family dealing with a tragic loss. Dave Swetman (AKA: Dad) was killed in an automobile accident on September 29, 2016 and leaves behind many loving family members. NO ONE will ever replace him but we all try. I'm sure you will be bidding on this fan blade to help the biggest man we have ever known.... Dave and his family will be very appreciative of your kindness! 100% of the proceeds go directly to a fund that has been set up for his wife and kids.
Aerodynamic fan blades capture air as it flows into the fan and use the kinetic energy to push the air through the motor. The blades are designed for optimal performance by limiting pressure losses and maximizing flow in both high and low pressure areas. The shape of the blade allows for a large angle of incidence, allowing for the blade to run more efficiently while negotiating turns.