17 Quart
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- Size: 2in 17 Quart 20in x 100ft 44 Gallon
- Material: Cast Iron Ductile Iron Plastic PVC 40 Wood
Part #:502787
- Brute Vented Trash Receptacle, Round, 44 gal, Gray
Rounded handles make lifting and moving easier, and are reinforced to resist tearing or damage from even the heaviest loads.
Reinforced base is specifically engineered to be dragged over rough surfaces, extending life and overall durability even in the toughest environments.
Colors complement your facility's recycling, sortation, and organization needs.
Seamless construction makes cleaning the container easier.
Stackable design enables nesting for easy transport and storage.
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$
0.90
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Part #:713366
-
Y-Type Cast Iron Strainers
250 lb Screwed 1/2"-3" Class 125 Flanged 2"-6" Class 250 Flanged 2"-6"
Screen chambers won't leak or crush
Both ends of the chambers are precisely machined. This means perfectly round and smooth seating surfaces, as well as a fixed chamber length. Since the screen seats snugly on the machined surface, no particle bigger than the screen opening can escape around the end of the screen.
Screwed retainers easy in, easy out
Straight threads mean it takes less torque to achieve a tight seal with proper gasket compression. Less torque is also required to remove the retainer. For you, that means less danger of "freezing in" than with hard-to-break tapered pipe threads.
Off-center blowdown connections for better dirt removal
Off-center drains on 2-1/2" and 3" strainers allow you to remove liquid and dirt nearly completely when blowing down the strainer. Also, less liquid will spill when the screen retainer is removed.
Many screen choices
Many screen materials, meshes and perforations are available.
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Part #:334-HDPE200BU
- High Density Polyethylene (HDPE) Coupling Attributes
Weight
4.5 lb
Material
Ductile Iron
Seal
Buna-N
Nominal Size
2"
Pipe OD
2.375"
$
432.30
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Part #:334-GIBFV200
- Grooved End Iron Butterfly Valve Attributes
Weight
8 lb
Size
2"
Material
Ductile Iron
Seal
EPDM
Working Pressure
300 PSI
Maximum Temperature
210°F (99°C)
$
214.28
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Part #:334-HDPE200
- High Density Polyethylene (HDPE) Coupling Attributes
Weight
4.5 lb
Material
Ductile Iron
Seal
EPDM
Nominal Size
2"
Pipe OD
2.375"
$
432.30
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Part #:501644
- Double Utility Pail, 17qt, Gray
RCP2617GRA
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Double pail allows you to separate cleaning solution from your rinse water.
Molded-in graduations.
Wide pour spout.
Durable, molded plastic.
$
50.83
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Part #:502796
- Vented Round BRUTE Lid, 24.5 dia x 1.5h, Gray
RCP264560GY
Snap-lock ensures a secure fit.
Ridges enable stacking of BRUTE® containers to providing a space-efficient storage solution.
Meets NSF 2, 21 approval and is USDA Meat and Poultry Group listed, ensuring regulatory compliance for food storage and cleanability.
Proprietary design constructed with the highest-quality materials plus a UV inhibitor ensures long life in even the most extreme commercial environments. Guaranteed to never fade, warp, crack, or crush.
$
37.79
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$
18.24
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Part #:814353
- Grooved Standard Coupling- Series S, Style 11 Attributes
Maximum Operating Pressure
1000 PSI at 70°F (21°C)
Weight
2.81 lb
Material
Ductile Iron
Max End Load
4430 lbs
Seal
EPDM
Nominal Size
2"
Pipe OD
2.375"
$
23.82
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Part #:334-L02
- Grooved Lightweight Flexible Coupling- Series L, Style 10 Attributes
Maximum Operating Pressure
500 PSI at 70°F (21°C)
Weight
1.61 lb
Material
Ductile Iron
Seal
EPDM
Nominal Size
2"
Pipe OD
2.375"
$
13.63
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Part #:201122
- All Fittings Meet or Exceed &bull Materials ASTM A-536 &bull Joints AWWA C-111 &bull Gaskets ASTM F-477 &bull Coating AWWA C-153
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Part #:210121
- All Fittings Meet or Exceed &bull Materials ASTM A-536 &bull Joints AWWA C-111 &bull Gaskets ASTM F-477 &bull Coating AWWA C-153
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Part #:501-C5295-1
- Inverted Bucket Steam TrapsEnergy efficient because it's so reliable
The inverted bucket is the most reliable steam trap operating principle known. The heart of its simple design is a unique leverage system that multiplies the force provided by the bucket to open the valve against pressure.
Since the bucket is open at the bottom, it resists damage from water hammer, and wear points are heavily reinforced for long life. The inverted bucket has only two moving parts-the valve lever assembly and the bucket. That means no fixed points, no complicated linkage. Nothing to stick, bind or clog.
Conserves energy even in the presence of wear
Armstrong inverted bucket steam traps open and close based on the difference in density between condensate and steam-the inverted bucket principle. They open and close gently, minimizing wear. This simple fact means that inverted buckets are subject to less wear than some other types of traps.
In fact, as an Armstrong inverted bucket trap wears, its tight seal actually improves. The valve and seat of the Armstrong trap provide essentially line contact-resulting in a tight seal because the entire closing force is concentrated on one narrow seating ring.
An Armstrong inverted bucket steam trap continues to operate efficiently with use. Gradual wear slightly increases the diameter of the seat and alters the shape and diameter of the valve. But, as this occurs, a tight seal is still preserved-the ball merely seats itself more deeply.
Corrosion-resistant parts
The stainless steel valve and seat of the Armstrong inverted bucket steam trap are individually ground and lapped together in matched sets. All other working parts are wear- and corrosion-resistant stainless steel.
Venting of air and CO2
The Armstrong inverted bucket provides continuous automatic air and CO2 venting with no cooling lag or threat of air binding.
Operation against back pressure
The Armstrong inverted bucket has excellent performance against back pressure. It has no adverse effect on inverted bucket operation other than to reduce its capacity by the low differential. The bucket simply requires less force to pull the valve open and cycle the trap.
Freedom from dirt problems
Armstrong designed its inverted bucket to be virtually free of dirt problems. The valve and seat are at the top of the trap, far away from the larger particles of dirt, which fall to the bottom. Here, the up-and-down action of the bucket pulverizes them.
Since the valve of an inverted bucket is either fully closed or open, dirt particles pass freely. And the swift flow of condensate from under the bucket's edge creates a unique self-scrubbing action that sweeps dirt out of the trap.
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Part #:501-C6123
- Automatic Differential Condensate Controllers
Armstrong automatic differential condensate controllers (DC) are designed to function on applications where condensate must be lifted from a drain point or in gravity drainage applications where increased velocity will aid in condensate drainage.
Lifting condensate from the drain pointoften referred to as siphon drainagereduces the pressure of the condensate, causing a portion of it to flash into steam. Since ordinary steam traps are unable to distinguish flash steam from live steam, they close and impeded drainage.
Increased velocity with gravity drainage will aid in drawing the condensate and air to the DC. An internal steam bypass controlled by a manual metering valve causes this increased velocity. Therefore, the condensate controller automatically vents the bypass or secondary steam. This steam is then collected for use in other heat exchangers or discharged to the condensate return line.
Capacity considerations for draining equipment vary greatly, according to the application. However, a single condensate controller provides sufficient capacity for most applications..
How they work
Condensate, air and steam (live and flash) enter through the controller inlet. At this point, flash steam and air are automatically separated from the condensate. Then they divert into the integral bypass at a controlled rate, forming secondary steam.
The valve is adjustable so it matches the amount of flash present under full capacity operation or to meet the velocity requirements of the system. The condensate discharges through a separate orifice by the inverted bucket.
Because of the dual-orifice design, there is a preset controlled pressure differential for the secondary steam system, while maximum pressure differential is available to discharge the condensate.
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