9S7577 BEARING REAR Caterpillar parts
D9H, G353D
Rating:
Alternative (cross code) number:
CA9S7577
9S-7577
9S7577
CA9S7577
9S-7577
9S7577
Weight: 1 pounds 0 kg.
GAS ENGINE, TRACK-TYPE TRACTOR,
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$329.00
31 May 2023
CN: kangpinyouxuan
Main Bearing 1N4333 5S5166 7S8312 9S7577 for Caterpillar .050
N\\C Part Number: 1N4333, 5S5166, 7S8312, 9S7577 || Applicable Models: for Caterpillar .050 || Warranty: 1 Year. || TIPS: Please be sure to compare carefully with photos and check part number before buying items, If you are not sure this part is suitable, please feel free to contact us, we'll reply you as soon as possible. || Delivery Time: We will ship the item to you by DHL/FedEx/USPS, which will arrive in 5-9 days once we ship it to you. The delivery time will not a month like which shown online, you could buy with confidence!
N\\C Part Number: 1N4333, 5S5166, 7S8312, 9S7577 || Applicable Models: for Caterpillar .050 || Warranty: 1 Year. || TIPS: Please be sure to compare carefully with photos and check part number before buying items, If you are not sure this part is suitable, please feel free to contact us, we'll reply you as soon as possible. || Delivery Time: We will ship the item to you by DHL/FedEx/USPS, which will arrive in 5-9 days once we ship it to you. The delivery time will not a month like which shown online, you could buy with confidence!
$225.59
30 May 2022
US: Florida-Parts-Z
1N4333 - BRG,ENG 0.050IN=1 5S5166 7S8312 9S7577 fits Caterpillar (CAT)
FIRST PRICE PARTS
FIRST PRICE PARTS
Information:
Engine: C7 (S/N: C7S1-UP) C9 (S/N: C9S1-UP) C13 (S/N: S3C1-UP; LEE1-UP) C15 (S/N: SDP1-UP; B5R1-UP)Introduction
The article below explains the proper interpretation of oil samples that are taken from 2007 On-Highway Engines. The oil samples that are taken in the early mileage of these engines have shown some unique characteristics. These characteristics could be misunderstood. A misinterpretation of the results from the oil sample could lead to unnecessary inspections or repairs. The problem that is identified below does not have a known permanent solution. Until a permanent solution is known, use the solution that is identified below.Problem
Initial oil samples from 2007 On-Highway Engines have shown highly elevated values of potassium and aluminum. The elevated values may occur during the first two to three oil changes. After the first two to three oil changes, the potassium will decrease to less than 25 parts per million. Also, the aluminum levels will decrease to 130 parts per million or less depending on the oil change interval.The source of these elements has been traced to the brazing flux that is used in order to manufacture the aluminum Air-to-Air Aftercooler (ATAAC). The brazing flux is made from a compound that contains a high concentration of potassium and aluminum. Residual amounts of this flux remain in the new ATAAC. The air from the turbocharger and the air from the circuit of the Clean Gas Induction (CGI) flow through the ATAAC during operating conditions. The moist air from the CGI reacts chemically with the brazing flux. This reaction releases small amounts of potassium and aluminum into the air stream for combustion. These elements enter the engine oil through the oil film on the cylinder liners.Potassium is commonly used as an indicator of coolant contamination in an oil sample. Aluminum is commonly used to indicate severe bearing wear or stress on aluminum engine components. The correct interpretation of the oil sample is very difficult when elevated values of potassium and aluminum are present.Solution
Potassium and aluminum from the core of the ATAAC not cause abnormal wear of the engine. Iron, lead, and chromium values are not affected by this source of potassium and aluminum. The service life of the core of the ATAAC is not reduced by the reaction with the brazing flux.Potassium could reach 700 parts per million and aluminum could reach 500 parts per million during the first two to three oil changes according to current data. The ratio of potassium to aluminum varies widely on these initial oil samples. In many engines, the potassium value is higher than the aluminum value. After the first two to three oil changes, the potassium will decrease to less than 25 parts per million. Also, the aluminum levels will decrease to 130 parts per million or less depending on the oil change interval.Elevated potassium from the ATAAC brazing flux will make the identification of coolant contamination more difficult. Most heavy-duty coolants contain high concentrations of sodium and/or potassium compounds. The sodium and/or potassium compounds are used in order to
The article below explains the proper interpretation of oil samples that are taken from 2007 On-Highway Engines. The oil samples that are taken in the early mileage of these engines have shown some unique characteristics. These characteristics could be misunderstood. A misinterpretation of the results from the oil sample could lead to unnecessary inspections or repairs. The problem that is identified below does not have a known permanent solution. Until a permanent solution is known, use the solution that is identified below.Problem
Initial oil samples from 2007 On-Highway Engines have shown highly elevated values of potassium and aluminum. The elevated values may occur during the first two to three oil changes. After the first two to three oil changes, the potassium will decrease to less than 25 parts per million. Also, the aluminum levels will decrease to 130 parts per million or less depending on the oil change interval.The source of these elements has been traced to the brazing flux that is used in order to manufacture the aluminum Air-to-Air Aftercooler (ATAAC). The brazing flux is made from a compound that contains a high concentration of potassium and aluminum. Residual amounts of this flux remain in the new ATAAC. The air from the turbocharger and the air from the circuit of the Clean Gas Induction (CGI) flow through the ATAAC during operating conditions. The moist air from the CGI reacts chemically with the brazing flux. This reaction releases small amounts of potassium and aluminum into the air stream for combustion. These elements enter the engine oil through the oil film on the cylinder liners.Potassium is commonly used as an indicator of coolant contamination in an oil sample. Aluminum is commonly used to indicate severe bearing wear or stress on aluminum engine components. The correct interpretation of the oil sample is very difficult when elevated values of potassium and aluminum are present.Solution
Potassium and aluminum from the core of the ATAAC not cause abnormal wear of the engine. Iron, lead, and chromium values are not affected by this source of potassium and aluminum. The service life of the core of the ATAAC is not reduced by the reaction with the brazing flux.Potassium could reach 700 parts per million and aluminum could reach 500 parts per million during the first two to three oil changes according to current data. The ratio of potassium to aluminum varies widely on these initial oil samples. In many engines, the potassium value is higher than the aluminum value. After the first two to three oil changes, the potassium will decrease to less than 25 parts per million. Also, the aluminum levels will decrease to 130 parts per million or less depending on the oil change interval.Elevated potassium from the ATAAC brazing flux will make the identification of coolant contamination more difficult. Most heavy-duty coolants contain high concentrations of sodium and/or potassium compounds. The sodium and/or potassium compounds are used in order to
Caterpillar parts catalog:
Parts bearing Caterpillar catalog:
6K8088
BEARING-ROLLER
120G, 12G, 130G, 140G, 14G, 160G, 16G, 515, 518, 518C, 525, 525B, 528, 528B, 530B, 535B, 545, 561D, 572G, 578, 583K, 583R, 587R, 589, 65, 814, 814S, 815, 816, 824B, 824S, 834B, 836, 910, 910E, 910G, 9...
120G, 12G, 130G, 140G, 14G, 160G, 16G, 515, 518, 518C, 525, 525B, 528, 528B, 530B, 535B, 545, 561D, 572G, 578, 583K, 583R, 587R, 589, 65, 814, 814S, 815, 816, 824B, 824S, 834B, 836, 910, 910E, 910G, 9...
3J7584
BEARING AS-NEEDLE
183, 3306, 3612, 3616, 571G, 572G, 583K, 621, 651, 657, 769, 977K, 983, D333B, D334, D342, D342C, D6C, D7F, D7G, D7G2, D8H, D8K, D9G, D9H
183, 3306, 3612, 3616, 571G, 572G, 583K, 621, 651, 657, 769, 977K, 983, D333B, D334, D342, D342C, D6C, D7F, D7G, D7G2, D8H, D8K, D9G, D9H
9M4878
BEARING INTERMEDIATE
D353C, G353D
D353C, G353D
2L0611
BEARING
120G, 129, 245, 3208, 3406, 3408, 3508, 3512, 3516, 594, 814, 951B, 966C, D326F, D342, D4D, D5, D8K, D9H
120G, 129, 245, 3208, 3406, 3408, 3508, 3512, 3516, 594, 814, 951B, 966C, D326F, D342, D4D, D5, D8K, D9H
1M7939
BEARING
183B, 191, D9E, D9G, D9H
183B, 191, D9E, D9G, D9H
5J2245
BEARING (threaded holes)
814F II, 824C, 824S, 826C, 834B, 836, 9A, 9S, D9H
814F II, 824C, 824S, 826C, 834B, 836, 9A, 9S, D9H
8P4923
BEARING
571G, 572G, 583K, D7G, D8K, D9H, D9L
571G, 572G, 583K, D7G, D8K, D9H, D9L
6J7166
BEARING
D9H
D9H
1N4316
BEARING
D9H
D9H
9S7576
BEARING REAR
D9H, G353D
D9H, G353D
2679556
BEARING
824K, 825K, 826K, 834K, 836K, 844K, 854K, 950K, 953D, 962K, 963D, 966H, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 973D, 980K, 980K HLG, 980M, 982M, 988K, 990K, 992K, 993K, 994H, D3K XL, D4K XL, D5K LG...
824K, 825K, 826K, 834K, 836K, 844K, 854K, 950K, 953D, 962K, 963D, 966H, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 973D, 980K, 980K HLG, 980M, 982M, 988K, 990K, 992K, 993K, 994H, D3K XL, D4K XL, D5K LG...
2679555
BEARING
824K, 825K, 826K, 834K, 836K, 844K, 854K, 950K, 953D, 962K, 963D, 966H, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 973D, 980K, 980K HLG, 980M, 982M, 988K, 990K, 992K, 993K, 994H, D3K XL, D4K XL, D5K LG...
824K, 825K, 826K, 834K, 836K, 844K, 854K, 950K, 953D, 962K, 963D, 966H, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 973D, 980K, 980K HLG, 980M, 982M, 988K, 990K, 992K, 993K, 994H, D3K XL, D4K XL, D5K LG...
2679554
BEARING
824K, 825K, 826K, 834K, 836K, 844K, 854K, 950K, 953D, 962K, 963D, 966H, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 973D, 980K, 980K HLG, 980M, 982M, 988K, 990K, 992K, 993K, 994H, D3K XL, D4K XL, D5K LG...
824K, 825K, 826K, 834K, 836K, 844K, 854K, 950K, 953D, 962K, 963D, 966H, 966K, 966M, 966M XE, 972K, 972M, 972M XE, 973D, 980K, 980K HLG, 980M, 982M, 988K, 990K, 992K, 993K, 994H, D3K XL, D4K XL, D5K LG...
9G9086
BEARING
943, 953, 953B, 953C, 953D
943, 953, 953B, 953C, 953D
3W8409
BEARING
943, 953, 953B, 953C, 953D
943, 953, 953B, 953C, 953D
2M2827
BEARING-SLEEVE
657, 666, 769, 824, 834, 910, 931, 931B, 988, D3B, D3C II
657, 666, 769, 824, 834, 910, 931, 931B, 988, D3B, D3C II
5M2055
BEARING-CAGED
14G, 14H, 14H NA, 16G, 16H, 16H NA, 518, 518C, 528, 528B, 530B, 578, 583R, 589, 613C, 613C II, 613G, 910, 916, 920, 930, 931B, 931C, 931C II, 933, 941, 951B, D3B, D3C, D3C III, D4B, D4C, D4C III, D4D,...
14G, 14H, 14H NA, 16G, 16H, 16H NA, 518, 518C, 528, 528B, 530B, 578, 583R, 589, 613C, 613C II, 613G, 910, 916, 920, 930, 931B, 931C, 931C II, 933, 941, 951B, D3B, D3C, D3C III, D4B, D4C, D4C III, D4D,...
1T0994
BEARING-BALL
578, 583R, 589, 906H, 906H2, 907H, 907H2, 908H, 908H2, 910, 931, 931B, D3B, D3C II, G910, IT12
578, 583R, 589, 906H, 906H2, 907H, 907H2, 908H, 908H2, 910, 931, 931B, D3B, D3C II, G910, IT12
1T0993
BEARING-BALL
910, 931, 931B, D3B, D3C II, G910, IT12
910, 931, 931B, D3B, D3C II, G910, IT12
6D5974
BEARING
12F, 12G, 141, 14E, 153, 16, 515, 518, 518C, 525, 525B, 525C, 528, 528B, 530B, 535B, 535C, 545, 545C, 561D, 571G, 572G, 578, 583K, 583R, 587R, 589, 594, 594H, 613, 613B, 613C, 615, 615C, 826B, 834B, 8...
12F, 12G, 141, 14E, 153, 16, 515, 518, 518C, 525, 525B, 525C, 528, 528B, 530B, 535B, 535C, 545, 545C, 561D, 571G, 572G, 578, 583K, 583R, 587R, 589, 594, 594H, 613, 613B, 613C, 615, 615C, 826B, 834B, 8...