1533580 SHAFT Caterpillar parts
120H, 120H ES, 120H NA, 120K, 120K 2, 12H, 12H ES, 12H NA, 12K, 130G, 135H, 135H NA, 140H, 140H ES, 140H NA, 140K, 140K 2, 143H, 160K
Rating:
Alternative (cross code) number:
CA1533580
153-3580
1533580
CA1533580
153-3580
1533580
Weight: 50 pounds 22 kg.
MOTOR GRADER,
Related part:
1533580
SHAFT-YM
2992055
CL
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PIMPANT
PIMPANT
$388.98
26 Oct 2023
US: Fast 404
1533580 Shaft Fits CATERPILLARR Models 1533580
BSlocator mpn: 1533580
BSlocator mpn: 1533580
Compatible equipment models: 1533580:
Information:
This engine has a pressure type cooling system. A pressure type cooling system has two advantages.
The pressure helps prevent cavitation.
The risk of boiling is reduced.Cavitation occurs when mechanical forces cause the formation of air bubbles in the coolant. The bubbles can form on the cylinder liners. Collapsing bubbles can remove the oxide film from the cylinder liner. This allows corrosion and pitting to occur. If the pressure of the cooling system is low, the concentration of bubbles increases. The concentration of bubbles is reduced in a pressure type cooling system.The boiling point is affected by three factors: pressure, altitude and concentration of glycol in the coolant. The boiling point of a liquid is increased by pressure. The boiling point of a liquid is decreased by a higher altitude. Illustration 1 shows the effects of pressure and altitude on the boiling point of water.
Illustration 1 g00286266The boiling point of the coolant also depends on the type of coolant and the concentration of glycol. A greater concentration of glycol has a higher boiling temperature. However, glycol transfers heat less effectively than water. Because of the boiling point and the efficiency of heat transfer, the concentration of glycol is important.Three basic problems can be associated with the cooling system:
Overheating
Coolant loss
OvercoolingIf the cooling system is not properly maintained, solids such as scale and deposits reduce the ability of the cooling system to transfer heat. The engine operating temperature will increase.Coolant can be lost by leaks. Overheated coolant can be lost through the cooling system's pressure relief valve. Lower coolant levels contribute to additional overheating. Overheating can result in conditions such as cracking of the cylinder head and piston seizure.A cracked cylinder head or cylinder liner will force exhaust gas into the cooling system. The additional pressure causes coolant loss, cavitation of the water pump, less circulation of coolant, and further overheating.Overcooling is the result of coolant that bypasses the water temperature regulators and flows directly to the radiator or to the heat exchanger. Low load operation in low ambient temperatures can cause overcooling. Overcooling is caused by water temperature regulators that remain open. Overcooling reduces the efficiency of operation. Overcooling enables more rapid contamination of the engine oil. This results in the formation of sludge in the crankcase and carbon deposits on the valves.Cycles of rapid heating and cooling can result in cracked cylinder heads, gasket failure, accelerated wear, and excessive fuel consumption.If a problem with the cooling system is suspected, perform a visual inspection before you perform any tests on the system.
The pressure helps prevent cavitation.
The risk of boiling is reduced.Cavitation occurs when mechanical forces cause the formation of air bubbles in the coolant. The bubbles can form on the cylinder liners. Collapsing bubbles can remove the oxide film from the cylinder liner. This allows corrosion and pitting to occur. If the pressure of the cooling system is low, the concentration of bubbles increases. The concentration of bubbles is reduced in a pressure type cooling system.The boiling point is affected by three factors: pressure, altitude and concentration of glycol in the coolant. The boiling point of a liquid is increased by pressure. The boiling point of a liquid is decreased by a higher altitude. Illustration 1 shows the effects of pressure and altitude on the boiling point of water.
Illustration 1 g00286266The boiling point of the coolant also depends on the type of coolant and the concentration of glycol. A greater concentration of glycol has a higher boiling temperature. However, glycol transfers heat less effectively than water. Because of the boiling point and the efficiency of heat transfer, the concentration of glycol is important.Three basic problems can be associated with the cooling system:
Overheating
Coolant loss
OvercoolingIf the cooling system is not properly maintained, solids such as scale and deposits reduce the ability of the cooling system to transfer heat. The engine operating temperature will increase.Coolant can be lost by leaks. Overheated coolant can be lost through the cooling system's pressure relief valve. Lower coolant levels contribute to additional overheating. Overheating can result in conditions such as cracking of the cylinder head and piston seizure.A cracked cylinder head or cylinder liner will force exhaust gas into the cooling system. The additional pressure causes coolant loss, cavitation of the water pump, less circulation of coolant, and further overheating.Overcooling is the result of coolant that bypasses the water temperature regulators and flows directly to the radiator or to the heat exchanger. Low load operation in low ambient temperatures can cause overcooling. Overcooling is caused by water temperature regulators that remain open. Overcooling reduces the efficiency of operation. Overcooling enables more rapid contamination of the engine oil. This results in the formation of sludge in the crankcase and carbon deposits on the valves.Cycles of rapid heating and cooling can result in cracked cylinder heads, gasket failure, accelerated wear, and excessive fuel consumption.If a problem with the cooling system is suspected, perform a visual inspection before you perform any tests on the system.
Cat SIS web machinery list:
Parts shaft Caterpillar catalog:
6E5885
SHAFT
120G, 120H, 12G, 12H, 12H NA, 130G, 140G, 140H, 140H NA, 14H, 14H NA, 160G, 16G, 16H, 16H NA, 24H
120G, 120H, 12G, 12H, 12H NA, 130G, 140G, 140H, 140H NA, 14H, 14H NA, 160G, 16G, 16H, 16H NA, 24H
8X7956
SHAFT AS
120H, 120H ES, 120H NA, 120K, 120K 2, 12G, 12H, 12H ES, 12H NA, 12K, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 140K, 140K 2, 143H, 160G, 160H, 160H ES, 160H NA, 160K, 163H, 163H NA
120H, 120H ES, 120H NA, 120K, 120K 2, 12G, 12H, 12H ES, 12H NA, 12K, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 140K, 140K 2, 143H, 160G, 160H, 160H ES, 160H NA, 160K, 163H, 163H NA
1078375
SHAFT AS
120G, 120H, 120H ES, 120H NA, 120K, 120K 2, 120M, 120M 2, 12G, 12H, 12H ES, 12H NA, 12K, 12M, 12M 2, 12M 3, 12M 3 AWD, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 140K, 140K 2, 140M, 140M 2, 14...
120G, 120H, 120H ES, 120H NA, 120K, 120K 2, 120M, 120M 2, 12G, 12H, 12H ES, 12H NA, 12K, 12M, 12M 2, 12M 3, 12M 3 AWD, 130G, 135H, 135H NA, 140G, 140H, 140H ES, 140H NA, 140K, 140K 2, 140M, 140M 2, 14...
1022385
SHAFT-PUMP
120G, 120H, 120H ES, 120H NA, 120K, 120K 2, 12H, 12K, 135H, 135H NA, 140H, 140K, 140K 2, 160H, 160K
120G, 120H, 120H ES, 120H NA, 120K, 120K 2, 12H, 12K, 135H, 135H NA, 140H, 140K, 140K 2, 160H, 160K
1915973
SHAFT-SUN GEAR
12H, 12H ES, 12H NA, 12K, 140H, 140H ES, 140H NA, 140K, 140K 2, 143H, 160H, 160H ES, 160H NA, 160K, 163H, 163H NA
12H, 12H ES, 12H NA, 12K, 140H, 140H ES, 140H NA, 140K, 140K 2, 143H, 160H, 160H ES, 160H NA, 160K, 163H, 163H NA
8W4142
SHAFT-DRIVE
12H, 12H ES, 12H NA, 12K, 140H, 140H ES, 140H NA, 140K, 140K 2, 143H, 160H, 160H ES, 160H NA, 160K, 163H, 163H NA
12H, 12H ES, 12H NA, 12K, 140H, 140H ES, 140H NA, 140K, 140K 2, 143H, 160H, 160H ES, 160H NA, 160K, 163H, 163H NA
1003401
SHAFT-PUMP
120H, 120H ES, 120H NA, 120K, 120K 2, 12H, 12H ES, 12H NA, 12K, 135H, 135H NA, 140H, 140H ES, 140H NA, 140K, 140K 2, 160H, 160H ES, 160H NA, 160K
120H, 120H ES, 120H NA, 120K, 120K 2, 12H, 12H ES, 12H NA, 12K, 135H, 135H NA, 140H, 140H ES, 140H NA, 140K, 140K 2, 160H, 160H ES, 160H NA, 160K
8W4979
SHAFT-DRIVE
120H, 120H ES, 120H NA, 120K, 120K 2, 135H, 135H NA
120H, 120H ES, 120H NA, 120K, 120K 2, 135H, 135H NA
3071958
SHAFT-PINION DRIVE
120H, 120H ES, 120K, 120K 2, 120M, 120M 2, 12H, 12H ES, 12H NA, 12K, 12M, 12M 2, 135H, 140H, 140H ES, 140H NA, 140K, 140K 2, 140M, 140M 2, 160H, 160H ES, 160H NA, 160K, 160M, 160M 2
120H, 120H ES, 120K, 120K 2, 120M, 120M 2, 12H, 12H ES, 12H NA, 12K, 12M, 12M 2, 135H, 140H, 140H ES, 140H NA, 140K, 140K 2, 140M, 140M 2, 160H, 160H ES, 160H NA, 160K, 160M, 160M 2
4229841
SHAFT
120K, 120K 2, 120M, 120M 2, 12K, 12M, 12M 2, 12M 3, 12M 3 AWD, 140K, 140K 2, 140M, 140M 2, 140M 3, 140M 3 AWD, 160K, 160M, 160M 2, 160M 3, 160M 3 AWD
120K, 120K 2, 120M, 120M 2, 12K, 12M, 12M 2, 12M 3, 12M 3 AWD, 140K, 140K 2, 140M, 140M 2, 140M 3, 140M 3 AWD, 160K, 160M, 160M 2, 160M 3, 160M 3 AWD
7B5036
SHAFT
120, 120B, 120G, 12E, 12F, 12G, 130G, 140, 140B, 140G, 14E
120, 120B, 120G, 12E, 12F, 12G, 130G, 140, 140B, 140G, 14E
8J6296
SHAFT
120G, 12G, 130G
120G, 12G, 130G
2G9042
SHAFT AS
14G, 14H, 14H NA, 16G, 16H, 16H NA
14G, 14H, 14H NA, 16G, 16H, 16H NA
6G4831
SHAFT
14G, 14H, 14H NA, 14M, 16G, 16H, 16H NA, 16M
14G, 14H, 14H NA, 14M, 16G, 16H, 16H NA, 16M
1035690
SHAFT-PUMP
14G, 16G
14G, 16G
9T8629
SHAFT
14G, 16G
14G, 16G
9T8057
SHAFT
14G, 14H, 14H NA, 14M, 16G, 16H, 16H NA, 16M, 24H, 24M
14G, 14H, 14H NA, 14M, 16G, 16H, 16H NA, 16M, 24H, 24M
6G6245
SHAFT-DRIVE PINION
14G, 14H, 14H NA
14G, 14H, 14H NA
8X3123
SHAFT
120H, 120H ES, 120H NA, 12H, 12H ES, 12H NA, 135H, 135H NA, 140H, 140H ES, 140H NA, 143H, 14H NA, 160H, 160H ES, 160H NA, 163H NA, 16H NA
120H, 120H ES, 120H NA, 12H, 12H ES, 12H NA, 135H, 135H NA, 140H, 140H ES, 140H NA, 143H, 14H NA, 160H, 160H ES, 160H NA, 163H NA, 16H NA
6G1541
SHAFT-DRIVE PINION
16G, 16H, 16H NA, 24M
16G, 16H, 16H NA, 24M
8W2309
SHAFT
16G, 16H, 16H NA
16G, 16H, 16H NA
8D2423
SHAFT-DRIVE
16G, 16H, 16H NA
16G, 16H, 16H NA
8D9333
SHAFT AS-DRIVE
16G, 16H, 16H NA
16G, 16H, 16H NA
8D5121
SHAFT
12G, 140G, 14G, 16G
12G, 140G, 14G, 16G