1P4230 GEAR (12 Teeth) Caterpillar parts
515, 525, 966C
Rating:
Alternative (cross code) number:
CA1P4230
1P-4230
1P4230
CA1P4230
1P-4230
1P4230
Weight: 1 pounds 0 kg.
WHEEL LOADER, WHEEL SKIDDER,
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$55.62
18 Mar 2023
Amazon.com
CTP 1P4230 Hydraulic Pump Gear for Heavy Equipment
CTP For Hydraulic Pump || Highly Efficient || Easy in-and-out fit
CTP For Hydraulic Pump || Highly Efficient || Easy in-and-out fit
$54.13
07 Feb 2023
Amazon.com
CTP 1P4230 Hydraulic Pump Gear for Heavy Equipment
CTP For Hydraulic Pump || Highly Efficient || Easy in-and-out fit
CTP For Hydraulic Pump || Highly Efficient || Easy in-and-out fit
Information:
This engine has a pressure type cooling system. A pressure type cooling system gives two advantages. First, the cooling system can be operated safely at a temperature that is higher than the boiling point of water. Also, cavitation in the water pump is prevented. It is more difficult for air or steam pockets to be made in the cooling system.
Illustration 1 g00678773
Cooling system schematic (1) Shunt tank (2) Radiator (3) Jacket water pump (4) Engine oil cooler (5) Aftercooler (6) Separate circuit aftercooler pump (7) Turbocharger (8) Engine (9) Power train oil coolerThe cooling circuit consists of two water pumps. The jacket water pump (3) provides water to the engine oil cooler (4) and the power train oil cooler (9) . The jacket water pump also carries heat away from the engine (8) to the radiator (2) . The water from the jacket water pump is broken into two circuits in the engine head. The two circuits carry heat from both rows of cylinders. The water is then passed through a thermostat. There is one thermostat on each side of the engine. The thermostat then directs the water to either the radiator for cooling or to the pump for recirculation if the water is cool.The separate circuit aftercooler pump (6) provides water to the aftercooler (5) . This water reduces the inlet manifold temperature. All water flow in this circuit goes directly to the radiator (2) . This water does not pass through a thermostat. There are two radiator cores. Water enters the radiator from both circuits. The water is divided between the radiator cores. The amount of water that goes to each radiator core depends on the amount of water that is directed to the radiator from the thermostats.Coolant Conditioner
Note: Coolant conditioner is not required if the cooling system is using Caterpillar Extended Life Coolant.Some conditions of operation can cause pitting on the outer surface of the cylinder liners and on the cylinder block surface next to the cylinder liners. This pitting is caused by corrosion or by cavitation erosion. A corrosion inhibitor is a chemical that provides a reduction in pitting. The addition of a corrosion inhibitor can keep this type of damage to a minimum.The coolant conditioner element is a spin-on element that is similar to a fuel filter and to oil filter elements. The coolant conditioner element attaches to coolant conditioner base that is mounted on the engine or mounted on a remote location. Coolant flows through lines from the water pump to the base and back to water pump. Coolant constantly flows through the coolant conditioner element.The element has a specific amount of inhibitor for acceptable cooling system protection. As the coolant flows through the element, the corrosion inhibitor goes into the solution. Two basic types of elements are used for the cooling system: the precharge element and the maintenance element. Each type of element has a specific use. The elements must be used correctly in order to get the necessary concentration for cooling
Illustration 1 g00678773
Cooling system schematic (1) Shunt tank (2) Radiator (3) Jacket water pump (4) Engine oil cooler (5) Aftercooler (6) Separate circuit aftercooler pump (7) Turbocharger (8) Engine (9) Power train oil coolerThe cooling circuit consists of two water pumps. The jacket water pump (3) provides water to the engine oil cooler (4) and the power train oil cooler (9) . The jacket water pump also carries heat away from the engine (8) to the radiator (2) . The water from the jacket water pump is broken into two circuits in the engine head. The two circuits carry heat from both rows of cylinders. The water is then passed through a thermostat. There is one thermostat on each side of the engine. The thermostat then directs the water to either the radiator for cooling or to the pump for recirculation if the water is cool.The separate circuit aftercooler pump (6) provides water to the aftercooler (5) . This water reduces the inlet manifold temperature. All water flow in this circuit goes directly to the radiator (2) . This water does not pass through a thermostat. There are two radiator cores. Water enters the radiator from both circuits. The water is divided between the radiator cores. The amount of water that goes to each radiator core depends on the amount of water that is directed to the radiator from the thermostats.Coolant Conditioner
Note: Coolant conditioner is not required if the cooling system is using Caterpillar Extended Life Coolant.Some conditions of operation can cause pitting on the outer surface of the cylinder liners and on the cylinder block surface next to the cylinder liners. This pitting is caused by corrosion or by cavitation erosion. A corrosion inhibitor is a chemical that provides a reduction in pitting. The addition of a corrosion inhibitor can keep this type of damage to a minimum.The coolant conditioner element is a spin-on element that is similar to a fuel filter and to oil filter elements. The coolant conditioner element attaches to coolant conditioner base that is mounted on the engine or mounted on a remote location. Coolant flows through lines from the water pump to the base and back to water pump. Coolant constantly flows through the coolant conditioner element.The element has a specific amount of inhibitor for acceptable cooling system protection. As the coolant flows through the element, the corrosion inhibitor goes into the solution. Two basic types of elements are used for the cooling system: the precharge element and the maintenance element. Each type of element has a specific use. The elements must be used correctly in order to get the necessary concentration for cooling
Caterpillar parts catalog:
Parts gear Caterpillar catalog:
1W4405
GEAR-CRANKSHAFT
120G, 12G, 12H, 12H ES, 12H NA, 130G, 140B, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H NA, 1673C, 225, 330, 330 L, 3304, 3304B, 3306, 3306B, 350, 515, 517, 518...
120G, 12G, 12H, 12H ES, 12H NA, 130G, 140B, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H, 160H ES, 160H NA, 163H NA, 1673C, 225, 330, 330 L, 3304, 3304B, 3306, 3306B, 350, 515, 517, 518...
1960029
GEAR AS-IDLER
120G, 12G, 12H ES, 12H NA, 130G, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H ES, 160H NA, 163H NA, 1673C, 330, 3304, 3304B, 3306, 3306B, 350, 515, 517, 518C, 525, 527, 528B, 530B, 615C...
120G, 12G, 12H ES, 12H NA, 130G, 140G, 140H, 140H ES, 140H NA, 143H, 14G, 14H NA, 160G, 160H ES, 160H NA, 163H NA, 1673C, 330, 3304, 3304B, 3306, 3306B, 350, 515, 517, 518C, 525, 527, 528B, 530B, 615C...
7N9145
GEAR
120G, 12G, 12H, 12H ES, 12H NA, 130G, 140G, 140H, 140H ES, 140H NA, 143H, 160G, 160H, 160H ES, 160H NA, 163H NA, 225, 3304, 3306, 3306B, 515, 517, 518, 518C, 525, 527, 528B, 530B, 545, 611, 615C, 627B...
120G, 12G, 12H, 12H ES, 12H NA, 130G, 140G, 140H, 140H ES, 140H NA, 143H, 160G, 160H, 160H ES, 160H NA, 163H NA, 225, 3304, 3306, 3306B, 515, 517, 518, 518C, 525, 527, 528B, 530B, 545, 611, 615C, 627B...
4M9933
GEAR CRANKSHAFT
120B, 120G, 12E, 140B, 14E, 1673, 1673B, 1673C, 225, 3304, 3306, 518, 561B, 561C, 572G, 627, 637D, 814, 910, 920, 931B, 941, 943, 950, 950B, 953, 955H, 955K, 955L, 963, 966C, 977H, 977K, 980B, D3, D33...
120B, 120G, 12E, 140B, 14E, 1673, 1673B, 1673C, 225, 3304, 3306, 518, 561B, 561C, 572G, 627, 637D, 814, 910, 920, 931B, 941, 943, 950, 950B, 953, 955H, 955K, 955L, 963, 966C, 977H, 977K, 980B, D3, D33...
5S6972
GEAR (27 & 25 Teeth)
814, 950, 955K, 955L, 966C, D5, D5B
814, 950, 955K, 955L, 966C, D5, D5B
3K1068
GEAR (48 Teeth)
814, 816, 966C
814, 816, 966C
4K6737
GEAR (64 TEETH)
815, 966C
815, 966C
9K1773
GEAR (64 TEETH)
528, 814, 815, 966C
528, 814, 815, 966C
8K0043
GEAR (39 Teeth)
824B, 980B
824B, 980B
9K1193
GEAR (17 TEETH)
815, 966C
815, 966C
7S4634
GEAR
815, 950, 966C
815, 950, 966C
8S0556
GEAR (90 & 101 Teeth)
814, 950, 966C
814, 950, 966C
7S8572
GEAR (81 Teeth)
814, 950, 966C
814, 950, 966C
7K9563
GEAR (45 Teeth)
834, 992
834, 992
1P0981
GEAR (8 Teeth)
824B, 992
824B, 992
1P0980
GEAR (8 Teeth)
824B, 992
824B, 992
9K0198
GEAR (19 Teeth)
980B, D44B, D550B
980B, D44B, D550B
8K6466
GEAR (35 Teeth)
950, 966C
950, 966C