3446126 MANIFOLD GP-CONTROL Caterpillar parts
432E, 434E, 442E, 444E
Rating:
Alternative (cross code) number:
CA3446126
344-6126
3446126
CA3446126
344-6126
3446126
Weight: 20 pounds 9 kg.
BACKHOE LOADER,
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$70.11
12 Jan 2019
100 Hundredths Pounds
Arctic Cat: Arctic Cat
Arctic Cat Disc Clutch Pressure 3446-126 New OEM
New OEM Arctic Cat Disc Clutch Pressure || OEM Part Number: 3446-126 (QTY 1) || Item only fits specific models listed. The picture could be generic. || Message us with VIN/HULL for fast fitment verification.
New OEM Arctic Cat Disc Clutch Pressure || OEM Part Number: 3446-126 (QTY 1) || Item only fits specific models listed. The picture could be generic. || Message us with VIN/HULL for fast fitment verification.
Information:
Air-to-air aftercooling (ATAAC) systems are simple, reliable, and easy to maintain. Generally, ATAAC benefits one or two of the following areas: * Improved fuel consumption* Lower emissions* Increased power In some cases all three may be improved.Operation of ATAAC
Inlet air is pulled through the air cleaner, compressed and heated by the compressor wheel in the compressor side of the turbocharger to about 150°C (300°F). The heated air is then pushed through the air to air aftercooler core and moved to the air inlet manifold in the cylinder head at about 43°C (110°F).
Radiator Core (1) and Aftercooler Core (2).Cooling the inlet air increases combustion efficiency, which helps to lower fuel consumption and increase horsepower output. The aftercooler core (2) is a separate cooler core installed behind the standard radiator core (1). Ambient temperature is moved across both cores by the engine fan- this cools the turbocharged inlet air and the engine coolant.Lower inlet air temperature allows more air to enter the cylinder. More complete fuel combustion and reduced exhaust emissions are the results. Air-to-air aftercoolers can achieve charge air temperatures lower than water-to-air systems. The lower air temperatures provide improved efficiency.
To maintain an adequate water pump cavitation temperature for efficient water pump performance in an Air-to-Air Aftercooled engine: Caterpillar recommends that the coolant mix contain a minimum of 30 percent Caterpillar Antifreeze, or equivalent.
Air Inlet System
An air hose failure or a significant air inlet system leak will cause a large drop in boost pressure and power. The engine can be operated at this power level for a short period of time, however, sustained operation under this condition should be avoided.A slight reduction in power or response, or a small increase in exhaust temperature may indicate a small air leak in the charge air cooler core or piping.If air leaking is suspected, inspect the air inlet hoses, elbows and gaskets for cracks or damage. Replace the parts as needed. Check for loose clamps and tighten the clamps as needed.Radiator Restrictions
Caterpillar discourages the use of air flow restriction devices mounted in front of radiators with air-to-air aftercooled engines. Air flow restriction can cause higher exhaust temperatures, power loss, excessive fan usage, and a reduction in fuel economy.If an air flow restriction device must be used, the device should have a permanent opening directly in line with the fan hub. The device must have a minimum opening dimension of at least 770 cm2 (120 in2).A centered opening, directly in line with the fan hub, is specified to provide sensing when viscous fan drives are used and/or to prevent an interrupted air flow on the fan blades. Interrupted air flow on the fan blades could cause a fan failure.Caterpillar recommends that a package include an inlet manifold temperature device, such as a light indicator, buzzer, etc., set at 65°C (150°F) and/or installation of an inlet air temperature gauge. For the ATAAC (Air-To-Air Aftercooled) engines, air temperature in the inlet manifold should not exceed 65°C (150°F). Temperatures exceeding this limit can cause power loss
Inlet air is pulled through the air cleaner, compressed and heated by the compressor wheel in the compressor side of the turbocharger to about 150°C (300°F). The heated air is then pushed through the air to air aftercooler core and moved to the air inlet manifold in the cylinder head at about 43°C (110°F).
Radiator Core (1) and Aftercooler Core (2).Cooling the inlet air increases combustion efficiency, which helps to lower fuel consumption and increase horsepower output. The aftercooler core (2) is a separate cooler core installed behind the standard radiator core (1). Ambient temperature is moved across both cores by the engine fan- this cools the turbocharged inlet air and the engine coolant.Lower inlet air temperature allows more air to enter the cylinder. More complete fuel combustion and reduced exhaust emissions are the results. Air-to-air aftercoolers can achieve charge air temperatures lower than water-to-air systems. The lower air temperatures provide improved efficiency.
To maintain an adequate water pump cavitation temperature for efficient water pump performance in an Air-to-Air Aftercooled engine: Caterpillar recommends that the coolant mix contain a minimum of 30 percent Caterpillar Antifreeze, or equivalent.
Air Inlet System
An air hose failure or a significant air inlet system leak will cause a large drop in boost pressure and power. The engine can be operated at this power level for a short period of time, however, sustained operation under this condition should be avoided.A slight reduction in power or response, or a small increase in exhaust temperature may indicate a small air leak in the charge air cooler core or piping.If air leaking is suspected, inspect the air inlet hoses, elbows and gaskets for cracks or damage. Replace the parts as needed. Check for loose clamps and tighten the clamps as needed.Radiator Restrictions
Caterpillar discourages the use of air flow restriction devices mounted in front of radiators with air-to-air aftercooled engines. Air flow restriction can cause higher exhaust temperatures, power loss, excessive fan usage, and a reduction in fuel economy.If an air flow restriction device must be used, the device should have a permanent opening directly in line with the fan hub. The device must have a minimum opening dimension of at least 770 cm2 (120 in2).A centered opening, directly in line with the fan hub, is specified to provide sensing when viscous fan drives are used and/or to prevent an interrupted air flow on the fan blades. Interrupted air flow on the fan blades could cause a fan failure.Caterpillar recommends that a package include an inlet manifold temperature device, such as a light indicator, buzzer, etc., set at 65°C (150°F) and/or installation of an inlet air temperature gauge. For the ATAAC (Air-To-Air Aftercooled) engines, air temperature in the inlet manifold should not exceed 65°C (150°F). Temperatures exceeding this limit can cause power loss
Caterpillar SIS machinery equipment:
Caterpillar SIS
442E Backhoe Loader EME00001-UP (MACHINE) POWERED BY C4.4 Engine »
344-6126
MANIFOLD GP-CONTROL
444E Backhoe Loader NBA00001-UP (MACHINE) POWERED BY C4.4 Engine »
344-6126
MANIFOLD GP-CONTROL
434E Backhoe Loader SJL00001-UP (MACHINE) POWERED BY C4.4 Engine »
344-6126
MANIFOLD GP-CONTROL
432E Backhoe Loader JBA00001-UP (MACHINE) POWERED BY C4.4 Engine »
344-6126
MANIFOLD GP-CONTROL
Caterpillar parts catalog:
Parts manifold Caterpillar catalog:
2299840
MANIFOLD & MTG GP-STEERING
432E, 434E, 442E, 444E
432E, 434E, 442E, 444E
3082147
MANIFOLD GP-CONTROL
432E, 434E, 442E, 444E
432E, 434E, 442E, 444E
2577724
MANIFOLD & SOLENOID GP-CONTROL
420E, 430E, 432E, 434E, 442E, 444E
420E, 430E, 432E, 434E, 442E, 444E
2164063
MANIFOLD & LINES GP-STEERING
432E, 434E, 442E, 444E
432E, 434E, 442E, 444E
2691100
MANIFOLD GP-CONTROL
434E, 444E
434E, 444E
3117342
MANIFOLD & MTG GP-STEERING
434E, 442E, 444E
434E, 442E, 444E
3715700
MANIFOLD-EXHAUST
3054C, 3054E, 414E, 416D, 416E, 416F, 420D, 420E, 420F, 422E, 422F, 424D, 428D, 428E, 428F, 430D, 430E, 430F, 432D, 432E, 432F, 434E, 434F, 442D, 442E, 444E, 444F, AP-300D, C4.4
3054C, 3054E, 414E, 416D, 416E, 416F, 420D, 420E, 420F, 422E, 422F, 424D, 428D, 428E, 428F, 430D, 430E, 430F, 432D, 432E, 432F, 434E, 434F, 442D, 442E, 444E, 444F, AP-300D, C4.4
2680094
MANIFOLD
420E, 430E, 432E, 434E, 442E, 444E, 450E, 450F
420E, 430E, 432E, 434E, 442E, 444E, 450E, 450F
2570440
MANIFOLD GP-CONTROL
420E, 430E, 432E, 434E, 442E, 444E, 450E, 953D
420E, 430E, 432E, 434E, 442E, 444E, 450E, 953D
2577731
MANIFOLD GP-HYDRAULIC
420E, 430E, 432E, 434E, 442E, 444E, 450E, 450F
420E, 430E, 432E, 434E, 442E, 444E, 450E, 450F
2956595
MANIFOLD
432E, 434E, 442E, 444E
432E, 434E, 442E, 444E
3407028
MANIFOLD GP-STEERING
434E, 442E, 444E
434E, 442E, 444E
2868970
MANIFOLD GP-CONTROL
938H, 966K, 972K, IT38H
938H, 966K, 972K, IT38H
3556975
MANIFOLD & MTG GP-FUEL
735B, 740B
735B, 740B
3918429
MANIFOLD & VALVE GP
THREE60 PC
THREE60 PC
3892652
MANIFOLD GP-DEF
980M, 982M, C13, C15, C18, C7.1, C9.3
980M, 982M, C13, C15, C18, C7.1, C9.3