871051 Propeller Volvo.Penta
AD30A; AQAD30A; MD30A, AQ120B; AQ125A; AQ140A, AQ145A; BB145A, AQ225D; AQ225E; AQ225F, AQ260A; AQ260B; BB260A, MB10A, MD11; MD11C; MD11D, MD1B; MD2B; AQD2B, MD21B; AQD21B, MD40A; TMD40A; TMD40B, MD5A; MD5B; MD5C, MD6; MD6A; MD6B
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MARKGOO Exhaust Manifold Elbow Gasket 4 PCS for MerCruiser Stern Drive and Inboard Engine V6 V8 GM 4.3L 5.0L 5.7L 5.8L 6.2L 6.3L 7.4L 8.2L MC1 Sierra 18-2849-1 27-863726 860232 818832 871051
MARKGOO This exhaust elbow gasket is the standard cooling, full flow muffler elbow riser manifold gasket 4 slot. More detailed information please see description below. || Fits select MerCruiser sterndrive and inboard engines with center rise outlet exhaust manifold || It fits mercurier engines V6 V8 GM 4.3L 5.0L 5.7L 5.8L 6.2L 6.3L 7.4L 8.2L 200 228 230 260 300 330 340 350 370 372 454 898 MC1 with center riser manifolds with 3 or 4-inch riser from the early 80s to 2002. || Replaces Mercruiser Stern Drive 27-863726, 27-860232, 27-818832, 27-871051, 27-87105 || Produced to meet Mercury Marine original equipment manufacturer specifications to maximize the performance of your Mercury and Mariner outboard or MerCruiser sterndrive.
MARKGOO This exhaust elbow gasket is the standard cooling, full flow muffler elbow riser manifold gasket 4 slot. More detailed information please see description below. || Fits select MerCruiser sterndrive and inboard engines with center rise outlet exhaust manifold || It fits mercurier engines V6 V8 GM 4.3L 5.0L 5.7L 5.8L 6.2L 6.3L 7.4L 8.2L 200 228 230 260 300 330 340 350 370 372 454 898 MC1 with center riser manifolds with 3 or 4-inch riser from the early 80s to 2002. || Replaces Mercruiser Stern Drive 27-863726, 27-860232, 27-818832, 27-871051, 27-87105 || Produced to meet Mercury Marine original equipment manufacturer specifications to maximize the performance of your Mercury and Mariner outboard or MerCruiser sterndrive.
$152.00
04-02-2018
100 Hundredths Pounds
TRUE PARTS: TRUE PARTS
TRUE PARTS 871051 LIGHT ASM GDM/TSD 2 DR SLIDE (871051)
871051||LIGHT ASM GDM/TSD 2 DR SLIDE
871051||LIGHT ASM GDM/TSD 2 DR SLIDE
Compatible models:
Volvo Penta entire parts catalog list:
- Propeller, Bronze Zinc Anode: A » 871051
AQ145A; BB145A
AQ225D; AQ225E; AQ225F; BB225A; BB225AV; BB225B; BB225C; 275; 280B; 290A; 290DP; MS3B; MS3C; MS4A
AQ260A; AQ260B; BB260A; BB260AV; BB260B; BB260C
MB10A
MD11; MD11C; MD11D; MD17; MD17C; MD17D
MD1B; MD2B; AQD2B; MD3B
MD21B; AQD21B
MD40A; TMD40A; TMD40B; TMD40C; AQD40A; TAMD40A; TAMD40B; AD40B; AQAD40A; AQAD40B
MD5A; MD5B; MD5C
MD6; MD6A; MD6B; MD7; MD7A; MD7B
Information:
Active Event Codes
An active event code represents a problem with engine operation. Correct the problem as soon as possible.Active event codes are listed in ascending numerical order. The code with the lowest number is listed first.Illustration 1 is an example of the operating range of a temperature sensor. Do not use the Illustration to troubleshoot temperature sensors.
Illustration 1 g01138880
Example of the typical operating range of a temperature sensor
(1) This area represents the normal operating range of the parameter. The normal output voltage of the sensor is between 0.2 VDC and 4.2 VDC.
(2) In this area, the temperature above 107 °C (225 °F) is higher than normal. The output voltage of the sensor will generate an event code. The sensor does not have an electronic problem.
(3) In these areas, the output voltage of the sensor is too high or too low. The voltage is outside of the normal range. The electronic problem will generate a diagnostic code. Refer to Troubleshooting, "Troubleshooting with a Diagnostic Code" for additional information on diagnostic codes. Events are represented in two formats. In the first format, the "E" means that the code is an event code. The "XXX" represents a numeric identifier for the event code. This is followed by a description of the code. If a warning, a derate, or a shutdown is applicable, the numeric identifiers are different. Refer to the following example:
E004 Engine Overspeed ShutdownIn the second format, the "E" means that the code is an event code. The "XXX-X" represents a numeric identifier for the event code. The fourth "X" identifies the event as a warning, a derate, or a shutdown. This is followed by a description of the code. Refer to the following example:
E360-1 Low Oil Pressure Warning
E360-2 Low Oil Pressure Derate
E360-3 Low Oil Pressure ShutdownThe definition for a warning, a derate, and a shutdown are defined below:Warning - This condition represents a serious problem with engine operation. However, this condition does not require a derate or a shutdown.Derate - For this condition, the ECM reduces the engine's power in order to help prevent possible engine damage.Shutdown - For this condition, the ECM actuates an audible alarm and a warning light in the cab of the machine in order to warn the operator that engine damage is occurring. The operator must shut down the engine.Logged Event Codes
When the ECM generates an event code the ECM logs the code in permanent memory. The ECM has an internal diagnostic clock. The ECM will record the following information when an event code is generated:
The hour of the first occurrence of the code
The hour of the last occurrence of the code
The number of occurrences of the codeLogged events are listed in chronological order. The most recent event code is listed first.This information can be helpful for troubleshooting intermittent problems. Logged codes can also be used to review the performance of the engine.Clearing Event Codes
A code is cleared from memory when one of the following conditions occur:
The code does not recur for 100 hours.
A new code is logged and there are already ten codes in memory. In this case, the oldest code is cleared.
The service technician manually clears the code.Always clear logged event codes after investigating and correcting the problem which generated the code.Troubleshooting
For basic troubleshooting of the engine, perform the following steps in order to diagnose a malfunction:
Obtain the following information about the complaint:
The event and the time of the event
Determine the conditions for the event. The conditions will include the engine rpm and the load.
Determine if there are any systems that were installed by the dealer or by the customer that could cause the event.
Determine whether any additional events occurred.
Verify that the complaint is not due to normal engine operation. Verify that the complaint is not due to error of the operator.
Narrow the probable cause. Consider the operator information, the conditions of operation, and the history of the engine.
Perform a visual inspection. Inspect the following items:
Fuel supply
Oil level
Oil supply
Wiring
ConnectorsBe sure to check the connectors. This is very important for problems that are intermittent. Refer to Troubleshooting, "Electrical Connectors - Inspect".If these steps do not resolve the problem, identify the procedures in this manual that best describe the event. Check each probable cause according to the tests that are recommended.Trip Points for the Monitoring System
The monitoring system determines the level of action that is taken by the ECM in response to a condition that can damage the engine. When any of these conditions occur, the appropriate event code will trip.Table 1 contains the conditions that are monitored and the default trip points for each condition. Each condition has an associated parameter. The settings for each parameter can be viewed with the Caterpillar Electronic Technician (ET). The trip points for some of the parameters may be adjustable with Cat ET.
Table 1
Trip Points for the Monitoring System
Condition Action Delay Time in Seconds Trip Point Default State
Min Max Default Min Max Default
E096 High Fuel Pressure Warning N/A N/A 8 N/A N/A 758 kPa (110 psi) On (1)
E172 High Air Filter Restriction Warning N/A N/A (2) N/A N/A 7.5 kPa (1.1 psi) On (1)
Derate N/A N/A (2) N/A N/A 7.5 kPa (1.1 psi) On (1)
E194 High Exhaust Temperature Derate N/A N/A 0 N/A N/A (3) On (1)
E360 Low Engine Oil Pressure Warning N/A N/A 8 N/A N/A (3) On (1)
Shutdown N/A N/A
An active event code represents a problem with engine operation. Correct the problem as soon as possible.Active event codes are listed in ascending numerical order. The code with the lowest number is listed first.Illustration 1 is an example of the operating range of a temperature sensor. Do not use the Illustration to troubleshoot temperature sensors.
Illustration 1 g01138880
Example of the typical operating range of a temperature sensor
(1) This area represents the normal operating range of the parameter. The normal output voltage of the sensor is between 0.2 VDC and 4.2 VDC.
(2) In this area, the temperature above 107 °C (225 °F) is higher than normal. The output voltage of the sensor will generate an event code. The sensor does not have an electronic problem.
(3) In these areas, the output voltage of the sensor is too high or too low. The voltage is outside of the normal range. The electronic problem will generate a diagnostic code. Refer to Troubleshooting, "Troubleshooting with a Diagnostic Code" for additional information on diagnostic codes. Events are represented in two formats. In the first format, the "E" means that the code is an event code. The "XXX" represents a numeric identifier for the event code. This is followed by a description of the code. If a warning, a derate, or a shutdown is applicable, the numeric identifiers are different. Refer to the following example:
E004 Engine Overspeed ShutdownIn the second format, the "E" means that the code is an event code. The "XXX-X" represents a numeric identifier for the event code. The fourth "X" identifies the event as a warning, a derate, or a shutdown. This is followed by a description of the code. Refer to the following example:
E360-1 Low Oil Pressure Warning
E360-2 Low Oil Pressure Derate
E360-3 Low Oil Pressure ShutdownThe definition for a warning, a derate, and a shutdown are defined below:Warning - This condition represents a serious problem with engine operation. However, this condition does not require a derate or a shutdown.Derate - For this condition, the ECM reduces the engine's power in order to help prevent possible engine damage.Shutdown - For this condition, the ECM actuates an audible alarm and a warning light in the cab of the machine in order to warn the operator that engine damage is occurring. The operator must shut down the engine.Logged Event Codes
When the ECM generates an event code the ECM logs the code in permanent memory. The ECM has an internal diagnostic clock. The ECM will record the following information when an event code is generated:
The hour of the first occurrence of the code
The hour of the last occurrence of the code
The number of occurrences of the codeLogged events are listed in chronological order. The most recent event code is listed first.This information can be helpful for troubleshooting intermittent problems. Logged codes can also be used to review the performance of the engine.Clearing Event Codes
A code is cleared from memory when one of the following conditions occur:
The code does not recur for 100 hours.
A new code is logged and there are already ten codes in memory. In this case, the oldest code is cleared.
The service technician manually clears the code.Always clear logged event codes after investigating and correcting the problem which generated the code.Troubleshooting
For basic troubleshooting of the engine, perform the following steps in order to diagnose a malfunction:
Obtain the following information about the complaint:
The event and the time of the event
Determine the conditions for the event. The conditions will include the engine rpm and the load.
Determine if there are any systems that were installed by the dealer or by the customer that could cause the event.
Determine whether any additional events occurred.
Verify that the complaint is not due to normal engine operation. Verify that the complaint is not due to error of the operator.
Narrow the probable cause. Consider the operator information, the conditions of operation, and the history of the engine.
Perform a visual inspection. Inspect the following items:
Fuel supply
Oil level
Oil supply
Wiring
ConnectorsBe sure to check the connectors. This is very important for problems that are intermittent. Refer to Troubleshooting, "Electrical Connectors - Inspect".If these steps do not resolve the problem, identify the procedures in this manual that best describe the event. Check each probable cause according to the tests that are recommended.Trip Points for the Monitoring System
The monitoring system determines the level of action that is taken by the ECM in response to a condition that can damage the engine. When any of these conditions occur, the appropriate event code will trip.Table 1 contains the conditions that are monitored and the default trip points for each condition. Each condition has an associated parameter. The settings for each parameter can be viewed with the Caterpillar Electronic Technician (ET). The trip points for some of the parameters may be adjustable with Cat ET.
Table 1
Trip Points for the Monitoring System
Condition Action Delay Time in Seconds Trip Point Default State
Min Max Default Min Max Default
E096 High Fuel Pressure Warning N/A N/A 8 N/A N/A 758 kPa (110 psi) On (1)
E172 High Air Filter Restriction Warning N/A N/A (2) N/A N/A 7.5 kPa (1.1 psi) On (1)
Derate N/A N/A (2) N/A N/A 7.5 kPa (1.1 psi) On (1)
E194 High Exhaust Temperature Derate N/A N/A 0 N/A N/A (3) On (1)
E360 Low Engine Oil Pressure Warning N/A N/A 8 N/A N/A (3) On (1)
Shutdown N/A N/A
Parts propeller Volvo Penta:
871193
871193 Propeller
AD30A; AQAD30A; MD30A, AQ120B; AQ125A; AQ140A, AQ145A; BB145A, AQ225D; AQ225E; AQ225F, AQ260A; AQ260B; BB260A, MB10A, MD11; MD11C; MD11D, MD1B; MD2B; AQD2B, MD21B; AQD21B, MD40A; TMD40A; TMD40B, MD5A; MD5B; MD5C, MD6; MD6A; MD6B
814628
814628 Propeller
AD30A; AQAD30A; MD30A, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145A; BB145A, AQ145B, AQ175A, AQ190A; AQ240A, AQ200B; AQ225B, AQ200C; AQ200D; AQ225C, AQ200D; AQ200F; 280B, AQ225D; AQ225E; AQ225F, AQ260A; AQ260B; BB260A, AQ290A, MD21B
851037
851037 Propeller
230A; 230B; 250A, 251A, 430; 430A; 430B, 500; 500A; 501A, 571A, AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD41D; D41D; TAMD41D, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145A; BB145A, AQ145B, AQ151A; AQ151B; AQ151C, AQ171A; AQ171
814633
814633 Propeller
AD30A; AQAD30A; MD30A, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145A; BB145A, AQ145B, AQ175A, AQ190A; AQ240A, AQ200B; AQ225B, AQ200C; AQ200D; AQ225C, AQ200D; AQ200F; 280B, AQ225D; AQ225E; AQ225F, AQ260A; AQ260B; BB260A, AQ290A, MD21B
851139
851139 Propeller
230A; 230B; 250A, 251A, 430; 430A; 430B, 500; 500A; 501A, 571A, AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD41D; D41D; TAMD41D, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145A; BB145A, AQ145B, AQ151A; AQ151B; AQ151C, AQ171A; AQ171
852634
852634 Propeller
230A; 230B; 250A, 251A, 430; 430A; 430B, 500; 500A; 501A, 571A, AD30A; AQAD30A; MD30A, AD31D; AD31D-A; AD31XD, AD41D; D41D; TAMD41D, AQ120B; AQ125A; AQ140A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145A; BB145A, AQ145B, AQ151A; AQ151B; AQ151C, AQ171A; AQ171
852233
852233 Propeller, 4 blades
AD30A; AQAD30A; MD30A, AQ200D; AQ200F; 280B, AQ225D; AQ225E; AQ225F, MD31A; TMD31A; TMD31B, MD31A; TMD31B; TAMD31B, MD40A; TMD40A; TMD40B, TMD41A; TMD41B; D41A, TMD41B; D41B; TAMD41B
852271
852271 Propeller, 3 blades
AD30A; AQAD30A; MD30A, AQ200D; AQ200F; 280B, AQ225D; AQ225E; AQ225F, MD31A; TMD31A; TMD31B, MD31A; TMD31B; TAMD31B, MD40A; TMD40A; TMD40B, TMD41A; TMD41B; D41A, TMD41B; D41B; TAMD41B