421160 Gasket Volvo.Penta
AQD70D; TAMD70D; TAMD70E, D70B; D70B PP; D70B K, MD70B; MD70BK; TMD70B, MD70C; TMD70C; TAMD70C, TAMD60A; TAMD60B, TAMD60C, TD60A; TD60B; TD60B PP, TD60D; TD60D-83; TD60DPP-83, TD70G; TD70G-83; TD70GPP
Gasket
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$22.22
06-05-2022
-: -
Autograph Warehouse 421160 Ramon Castro Autographed Baseball Card Florida Marlins 2000 Fleer Tradition No.413
Ramon Castro Autographed Baseball Card Florida Marlins 2000 Fleer Tradition No.413Specifications || Player: Ramon Castro || Weight: 1 lbs || Satisfaction Ensured. || Produced with the highest grade materials
Ramon Castro Autographed Baseball Card Florida Marlins 2000 Fleer Tradition No.413Specifications || Player: Ramon Castro || Weight: 1 lbs || Satisfaction Ensured. || Produced with the highest grade materials
$90.39
06-06-2021
4.0[1.80] Pounds
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Roush 421160 Serpentine Belt (R2300 Supercharger, SB Phase 2), 1 Pack
Country of Origin: United States || Package quantity: 1 || Product Type: Auto Part || Package dimensions: 12.0 " L x 8.0 " W x 6.0 " H
Country of Origin: United States || Package quantity: 1 || Product Type: Auto Part || Package dimensions: 12.0 " L x 8.0 " W x 6.0 " H
Compatible models:
Volvo Penta entire parts catalog list:
- Repair Kits » 421160
- Thermostat and Water Pump with Installation Components: A
- Thermostat and Water Pump with Installation Components: B
- Repair Kit: A
- Repair Kit: B
MD70C; TMD70C; TAMD70C; THAMD70C; AQD70BL; AQD70CL
TAMD60A; TAMD60B
TAMD60C
TD60A; TD60B; TD60B PP; TD60B G
- Circulation Pump and Thermostat with Installation Components: A
- Circulation Pump and Thermostat with Installation Components: A
- Circulation Pump and Thermostat with Installation Components: B
- Circulation Pump and Thermostat with Installation Components: B
- Silencer and Installation Components, Power Pack
- Repair Kit
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS: A
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS: A
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS: B
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS: B
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS: C
- THERMOSTAT AND WATER PUMP WITH INSTALLATION COMPONENTS: C
- SILENCER AND INSTALLATION COMPONENTS, POWER PACK
- REPAIR KIT
- Thermostat and Water Pump with Installation Components
- Thermostat and Water Pump with Installation Components: A
- Thermostat and Water Pump with Installation Components: B
- Silencer and Installation Components, Power Pack: A
- Silencer and Installation Components, Power Pack: B
- Silencer and Installation Components, Power Pack
Information:
Probable Causes
Inlet system leak
Engine operating conditions
Failed exhaust back pressure valve
High altitude
Obstructed Air-to-Air Aftercooler (ATAAC)
Illustration 1 g03795585
Example of an electronic service tool screenshot of the histogram. This histogram is populated when the engine system has calculated a condition in which high exhaust temperatures are present. A diagnostic code will not be logged when the system calculates a high exhaust temperature condition. The engine will be derated in order to protect the engine system. This situation is normal under most circumstances and no additional troubleshooting is necessary.
Note: Information from this histogram is to be used with active and logged diagnostic trouble codes. This histogram is for information only.Complete the procedure in the order in which the steps are listed.
Table 1
Troubleshooting Test Steps Values Results
1. Check for Inlet System Leakage
A. Apply a light load to the engine and check for leakage from the inlet system downstream of the low-pressure turbocharger.
Boost leaks
Result: Leakage was found.
Repair: Repair the leaks. Return the unit to service.
Result: Leakage was not found.
Proceed to Test Step 2.
2. Check the Engine Operating Conditions
A. Use the electronic service tool to check the histograms. Use the histograms to determine if the high exhaust temperature was due to normal operation.
If possible, interview the operator. Determine if the engine is being operated under heavy load. Ensure that the engine is being operated at an acceptable engine speed.
If derates are suspected, reset the histogram and return the unit to service. If the histogram repopulates without fault codes, the derating of the engine was under normal engine operation.
Normal operation
Result: The code was logged during a heavy load.
Repair: Reduce the load on the engine. Return the unit to service.
Result: The code was not logged during a heavy load.
Proceed to Test Step 3.
3. Check the Exhaust Back Pressure Regulator (EBPR)
A. Check the EBPR for correct operation. Refer to Troubleshooting, "Motorized Valve - Test" for the correct troubleshooting procedure.
Note: An EBPR that has failed in the closed position can cause high exhaust temperatures.
Failed exhaust back pressure regulator
Result: The exhaust back pressure regulator has failed.
Repair: Repair or replace the valve. Return the unit to service.
Result: The exhaust back pressure regulator has not failed.
Proceed to Test Step 4.
4. Check the Engine Operating Altitude
A. Check the engine operating altitude.
Note: High altitudes can cause high exhaust temperatures, consider the operational altitude when troubleshooting a high exhaust temperature. High exhaust temperatures are associated with high operational altitudes.
When operating below 5500ft and the ambient temperature is below 30° C (85° F), altitude should not cause a high exhaust temperature derate.
High operational altitudes
Result: The engine was operating at high altitudes.
The high exhaust temperature was due to high altitudes. Return the unit to service.
Result: The engine was not operating at high altitudes.
Proceed to Test Step 5.
5. Check for an Obstructed Air-to-Air Aftercooler (ATAAC)
A. The intake manifold air temperature can increase if the flow through the ATAAC is obstructed. Check the ATAAC for obstructions or debris. Ensure that the flow of air or coolant through the ATAAC is adequate.
Obstructed aftercooler
Result: The engine ATAAC was obstructed.
Repair: Clear any obstructions. Return the unit to service.
If the procedure did not correct the issue, contact the Dealer Solutions Network (DSN).
Inlet system leak
Engine operating conditions
Failed exhaust back pressure valve
High altitude
Obstructed Air-to-Air Aftercooler (ATAAC)
Illustration 1 g03795585
Example of an electronic service tool screenshot of the histogram. This histogram is populated when the engine system has calculated a condition in which high exhaust temperatures are present. A diagnostic code will not be logged when the system calculates a high exhaust temperature condition. The engine will be derated in order to protect the engine system. This situation is normal under most circumstances and no additional troubleshooting is necessary.
Note: Information from this histogram is to be used with active and logged diagnostic trouble codes. This histogram is for information only.Complete the procedure in the order in which the steps are listed.
Table 1
Troubleshooting Test Steps Values Results
1. Check for Inlet System Leakage
A. Apply a light load to the engine and check for leakage from the inlet system downstream of the low-pressure turbocharger.
Boost leaks
Result: Leakage was found.
Repair: Repair the leaks. Return the unit to service.
Result: Leakage was not found.
Proceed to Test Step 2.
2. Check the Engine Operating Conditions
A. Use the electronic service tool to check the histograms. Use the histograms to determine if the high exhaust temperature was due to normal operation.
If possible, interview the operator. Determine if the engine is being operated under heavy load. Ensure that the engine is being operated at an acceptable engine speed.
If derates are suspected, reset the histogram and return the unit to service. If the histogram repopulates without fault codes, the derating of the engine was under normal engine operation.
Normal operation
Result: The code was logged during a heavy load.
Repair: Reduce the load on the engine. Return the unit to service.
Result: The code was not logged during a heavy load.
Proceed to Test Step 3.
3. Check the Exhaust Back Pressure Regulator (EBPR)
A. Check the EBPR for correct operation. Refer to Troubleshooting, "Motorized Valve - Test" for the correct troubleshooting procedure.
Note: An EBPR that has failed in the closed position can cause high exhaust temperatures.
Failed exhaust back pressure regulator
Result: The exhaust back pressure regulator has failed.
Repair: Repair or replace the valve. Return the unit to service.
Result: The exhaust back pressure regulator has not failed.
Proceed to Test Step 4.
4. Check the Engine Operating Altitude
A. Check the engine operating altitude.
Note: High altitudes can cause high exhaust temperatures, consider the operational altitude when troubleshooting a high exhaust temperature. High exhaust temperatures are associated with high operational altitudes.
When operating below 5500ft and the ambient temperature is below 30° C (85° F), altitude should not cause a high exhaust temperature derate.
High operational altitudes
Result: The engine was operating at high altitudes.
The high exhaust temperature was due to high altitudes. Return the unit to service.
Result: The engine was not operating at high altitudes.
Proceed to Test Step 5.
5. Check for an Obstructed Air-to-Air Aftercooler (ATAAC)
A. The intake manifold air temperature can increase if the flow through the ATAAC is obstructed. Check the ATAAC for obstructions or debris. Ensure that the flow of air or coolant through the ATAAC is adequate.
Obstructed aftercooler
Result: The engine ATAAC was obstructed.
Repair: Clear any obstructions. Return the unit to service.
If the procedure did not correct the issue, contact the Dealer Solutions Network (DSN).
Parts gasket Volvo Penta:
947620
947620 Gasket
2001; 2001B; 2001AG, AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, AQD70D; TAMD70D; TAMD70E, D1-13; D1-13B; D1-20, D100A; D100AK; D100B, D100BHC; D100BRC; TD100AHC, D120A; D120AK; TD120A, D12D-A MG; D
957173
957173 Gasket
2001; 2001B; 2001AG, AD30A; AQAD30A; MD30A, AQ115A; AQ115B; AQ130, AQ120B; AQ125A; AQ140A, AQ145A; BB145A, AQ225D; AQ225E; AQ225F, AQ260A; AQ260B; BB260A, AQD70D; TAMD70D; TAMD70E, D100A; D100AK; D100B, D100BHC; D100BRC; TD100AHC, D120A; D120AK; TD12
957177
957177 Gasket
2001; 2001B; 2001AG, 430; 430A; 430B, 500; 500A; 501A, 571A, 740A; BB740A, AQ115A; AQ115B; AQ130, AQD70D; TAMD70D; TAMD70E, D1-13; D1-13B; D1-20, D120A; D120AK; TD120A, D2-55; D2-55B; D2-55C, D2-75; D2-75B; D2-75C, D3-110I-A; D3-110I-B; D3-110I-C, D7
947621
947621 Gasket
AD30A; AQAD30A; MD30A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145B, AQ151A; AQ151B; AQ151C, AQ171A; AQ171C, D100BHC; D100BRC; TD100AHC, D42A; D42A PP, MD120A; MD120AK; TMD120A, MD31A; TMD31A; TMD31B, MD40A; TMD40A; TMD40B, TD120AHC; TD120ARC; TAD120AHC, T
808275
808275 Gasket
AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, AQD70D; TAMD70D; TAMD70E, D5A-T; D5A-TA; D5A-B TA, D5A-T; D5A-TA; D5A-B TA, D70CHC; D70CRC; TD70CHC, KAD32P; TAMD42WJ-A; KAD43P-A, KAD42A; KAMD42A; HS1A,
947282
947282 Gasket
AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, AQD70D; TAMD70D; TAMD70E, D11A-A; D11A-B; D11A-C, D11B1-A MP; D11B2-A MP, D11B3-A MP; D11B4-A MP, D2-55; D2-55B; D2-55C, D2-75; D2-75B; D2-75C, D3-110I-A;
897682
897682 Gasket
230A; 230B; 250A, 251A, 430; 430A; 430B, 500; 500A; 501A, 571A, 740A; BB740A, AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, AQ115A; AQ115B; AQ130, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131
1275379
1275379 Gasket
AD31L-A; AD31P-A; AD41L-A, AQD70D; TAMD70D; TAMD70E, D4-180I-B; D4-180I-C; D4-180I-D, D4-180I-F; D4-225A-F; D4-225I-F, D6-280A-A; D6-280A-B; D6-280A-C, D6-300A-F; D6-300D-F; D6-300I-F, DH10A; DH10A 285; DH10A 360, KAD32P; TAMD42WJ-A; KAD43P-A, KAD42P