858840 Governor Volvo.Penta
2001; 2001B; 2001AG, 230A; 230B; 250A, 430; 430A; 430B, 500; 500A; 501A, 571A, 740A; BB740A, AD30A; AQAD30A; MD30A, AQ125B, AQ131A; AQ131B; AQ131C, AQ145B, AQ151A; AQ151B; AQ151C, AQ171A; AQ171C, AQ175A, AQ200D; AQ200F; 280B, AQ205A; AQ205LB, AQ211A;
Governor
Price: query
Rating:
Compatible models:
2001; 2001B; 2001AG
230A; 230B; 250A
430; 430A; 430B
500; 500A; 501A
571A
740A; BB740A
AD30A; AQAD30A; MD30A
AQ125B
AQ131A; AQ131B; AQ131C
AQ145B
AQ151A; AQ151B; AQ151C
AQ171A; AQ171C
AQ175A
AQ200D; AQ200F; 280B
AQ205A; AQ205LB
AQ211A; DP-A; SP-A
AQ225D; AQ225E; AQ225F
AQ231A; AQ231B; AQ231LB
AQ260A; AQ260B; BB260A
AQ271A; AQ271B; AQ271C
AQ290A
AQ311A; AQ311B
AQD70D; TAMD70D; TAMD70E
BB231A; BB261A
MD31A; TMD31A; TMD31B
MD40A; TMD40A; TMD40B
MD70B; MD70BK; TMD70B
MD70C; TMD70C; TAMD70C
TAMD60C
TD30A; TD31ACE; TD40A
TD61A; TD61AW; TD61ACE
TMD41A; TMD41B; D41A
Volvo.Penta
Volvo Penta entire parts catalog list:
- Alternator » 858840
430; 430A; 430B; 431A; 431B; 432A; 434A; 500B; 501B; 570A; 572A; 740B; DP-A; DP-A1; DP-A2; DP-C; DP-C1; DP-C1 1.95; DP-C1 2.30; DP-D; DP-D1; DP-D1
500; 500A; 501A
571A
740A; BB740A
AD30A; AQAD30A; MD30A; TAMD30A; TMD30A; AD30; AQAD30; MD30; TAMD30; TMD30
AQ125B
AQ131A; AQ131B; AQ131C; AQ131D
AQ145B
AQ151A; AQ151B; AQ151C
AQ171A; AQ171C
AQ175A
AQ200D; AQ200F; 280B; 290A; 290DP
AQ205A; AQ205LB
AQ211A; DP-A; SP-A; 290A
AQ225D; AQ225E; AQ225F; BB225A; BB225AV; BB225B; BB225C; 275; 280B; 290A; 290DP; MS3B; MS3C; MS4A
AQ231A; AQ231B; AQ231LB; 290A; DP-A; SP-A; 275A; 285A
AQ260A; AQ260B; BB260A; BB260AV; BB260B; BB260C
AQ271A; AQ271B; AQ271C; AQ271D; AQ271LB
AQ290A
AQ311A; AQ311B
AQD70D; TAMD70D; TAMD70E
BB231A; BB261A
MD31A; TMD31A; TMD31B; TAMD31A; TAMD31B; AD31; AQAD31A; AD31B; 290A; DP-A; DP-B; DP-A1; DP-B1; SP-A; SP-A1
MD40A; TMD40A; TMD40B; TMD40C; AQD40A; TAMD40A; TAMD40B; AD40B; AQAD40A; AQAD40B
MD70B; MD70BK; TMD70B; THAMD70B; TAMD70B; AQD70BL; AQD70B
MD70C; TMD70C; TAMD70C; THAMD70C; AQD70BL; AQD70CL
TAMD60C
TD30A; TD31ACE; TD40A; TD45B; D45A
TD61A; TD61AW; TD61ACE; TD61AG; TD61AGP; TD61AP; TD61APB; TID61AG; TD71A; TD71AW; TD71ACE; TD71AG; TD71AGP; TD71AP; TD71APB; TID71A; TID71AG; TID
TMD41A; TMD41B; D41A; D41B; TAMD41A; TAMD41B; AQAD41A; AD41A; AD41B; 290A; DP-A; DP-B; DP-A1; DP-B1; SP-A; SP-A1; AD41BJ; AD41; AD41P-B; D41; TAMD41
Information:
Face Run Out (Axial Eccentricity) Of The Flywheel Housing
8T5096 Dial Indicator Group Installed (Typical Example)If any method other than given here is used, always remember bearing clearance must be removed to get correct measurements.1. Fasten a dial indicator to the flywheel so the anvil of the indicator will touch the face of the flywheel housing.2. Put a force on the crankshaft toward the rear before the indicator is read at each point.
Checking Face Runout Of The Flywheel Housing3. With dial indicator set at "0" (zero) at location (A), turn the flywheel and read the indicator at locations (B), (C) and (D).4. The difference between lower and higher measurements taken at all four points must not be more than 0.38 mm (.015 in), which is the maximum permissible face run out (axial eccentricity) of the flywheel housing.Bore Runout (Radial Eccentricity) Of The Flywheel Housing
1. Fasten the dial indicator as shown so the anvil of the indicator will touch the bore of the flywheel housing.2. With the dial indicator in position at (C), adjust the dial indicator to "0" (zero). Push the crankshaft up against the top of the bearing. Write the measurement for bearing clearance on line 1 in column (C) in the Chart For Dial Indicator Measurements.
8T5096 Dial Indicator Group Installed (Typical Example) Write the dial indicator measurements with their positive (+) and negative (-) notation (signs). This notation is necessary for making the calculations in the chart correctly.3. Divide the measurement from Step 2 by 2. Write this number on line 1 in columns (B) & (D).4. Turn the flywheel to put the dial indicator at (A). Adjust the dial indicator to "0" (zero).5. Turn the flywheel counterclockwise to put the dial indicator at (B). Write the measurements in the chart.
Checking Bore Runout Of The Flywheel Housing6. Turn the flywheel counterclockwise to put the dial indicator at (C). Write the measurement in the chart.7. Turn the flywheel counterclockwise to put the dial indicator at (D). Write the measurement in the chart. 8. Add lines I & II by columns.9. Subtract the smaller number from the larger number in line III in columns (B) & (D). The result is the horizontal eccentricity (out of round). Line III, column (C) is the vertical eccentricity.10. On the graph for total eccentricity, find the point of intersection of the lines for vertical eccentricity and horizontal eccentricity.11. If the point of intersection is in the range marked "Acceptable", the bore is in alignment. If the point of intersection is in the range marked "Not Acceptable", the flywheel housing must be changed.
Graph For Total Eccentricity
(1) Total Vertical Eccentricity [mm (in)]. (2) Total Horizontal Eccentricity [mm (in)]. (3) Acceptable. (4) Not Acceptable.Face Runout (Axial Eccentricity) Of The Flywheel
1. Install the dial indicator as shown. Always put a force on the crankshaft in the same direction before the indicator is read so the crankshaft end clearance (movement) is always removed.
Checking Face Runout Of The Flywheel (Typical Example)2. Set the dial indicator to read "0" (zero).3. Turn the flywheel and read the indicator every 90 degrees.4. The difference between the lower and higher measurements taken at all four points must not be more than 0.15 mm (.006 in), which is the maximum permissible face runout (axial eccentricity) of the flywheel.Bore Runout (Radial Eccentricity) Of The Flywheel
Checking Bore Runout Of The Flywheel (Typical Example)
(1) 7H1945 Holding Rod (2) 7H1645 Holding Rod (3) 7H1942 indicator (4) 7H1940 Universal Attachment1. Install the dial indicator (3) and make an adjustment of the universal attachment (4) so it makes contact as shown.2. Set the dial indicator to read "0" (zero).3. Turn the flywheel and read the indicator every 90 degrees.4. The difference between the lower and higher measurements taken at all four points must not be more than 0.15 mm (.006 in), which is the maximum permissible bore runout (radial eccentricity) of the flywheel.5. Runout (eccentricity) of the bore for the pilot bearing for the flywheel clutch, must not exceed 0.13 mm (.005 in).
Checking Flywheel Clutch Pilot Bearing Bore
8T5096 Dial Indicator Group Installed (Typical Example)If any method other than given here is used, always remember bearing clearance must be removed to get correct measurements.1. Fasten a dial indicator to the flywheel so the anvil of the indicator will touch the face of the flywheel housing.2. Put a force on the crankshaft toward the rear before the indicator is read at each point.
Checking Face Runout Of The Flywheel Housing3. With dial indicator set at "0" (zero) at location (A), turn the flywheel and read the indicator at locations (B), (C) and (D).4. The difference between lower and higher measurements taken at all four points must not be more than 0.38 mm (.015 in), which is the maximum permissible face run out (axial eccentricity) of the flywheel housing.Bore Runout (Radial Eccentricity) Of The Flywheel Housing
1. Fasten the dial indicator as shown so the anvil of the indicator will touch the bore of the flywheel housing.2. With the dial indicator in position at (C), adjust the dial indicator to "0" (zero). Push the crankshaft up against the top of the bearing. Write the measurement for bearing clearance on line 1 in column (C) in the Chart For Dial Indicator Measurements.
8T5096 Dial Indicator Group Installed (Typical Example) Write the dial indicator measurements with their positive (+) and negative (-) notation (signs). This notation is necessary for making the calculations in the chart correctly.3. Divide the measurement from Step 2 by 2. Write this number on line 1 in columns (B) & (D).4. Turn the flywheel to put the dial indicator at (A). Adjust the dial indicator to "0" (zero).5. Turn the flywheel counterclockwise to put the dial indicator at (B). Write the measurements in the chart.
Checking Bore Runout Of The Flywheel Housing6. Turn the flywheel counterclockwise to put the dial indicator at (C). Write the measurement in the chart.7. Turn the flywheel counterclockwise to put the dial indicator at (D). Write the measurement in the chart. 8. Add lines I & II by columns.9. Subtract the smaller number from the larger number in line III in columns (B) & (D). The result is the horizontal eccentricity (out of round). Line III, column (C) is the vertical eccentricity.10. On the graph for total eccentricity, find the point of intersection of the lines for vertical eccentricity and horizontal eccentricity.11. If the point of intersection is in the range marked "Acceptable", the bore is in alignment. If the point of intersection is in the range marked "Not Acceptable", the flywheel housing must be changed.
Graph For Total Eccentricity
(1) Total Vertical Eccentricity [mm (in)]. (2) Total Horizontal Eccentricity [mm (in)]. (3) Acceptable. (4) Not Acceptable.Face Runout (Axial Eccentricity) Of The Flywheel
1. Install the dial indicator as shown. Always put a force on the crankshaft in the same direction before the indicator is read so the crankshaft end clearance (movement) is always removed.
Checking Face Runout Of The Flywheel (Typical Example)2. Set the dial indicator to read "0" (zero).3. Turn the flywheel and read the indicator every 90 degrees.4. The difference between the lower and higher measurements taken at all four points must not be more than 0.15 mm (.006 in), which is the maximum permissible face runout (axial eccentricity) of the flywheel.Bore Runout (Radial Eccentricity) Of The Flywheel
Checking Bore Runout Of The Flywheel (Typical Example)
(1) 7H1945 Holding Rod (2) 7H1645 Holding Rod (3) 7H1942 indicator (4) 7H1940 Universal Attachment1. Install the dial indicator (3) and make an adjustment of the universal attachment (4) so it makes contact as shown.2. Set the dial indicator to read "0" (zero).3. Turn the flywheel and read the indicator every 90 degrees.4. The difference between the lower and higher measurements taken at all four points must not be more than 0.15 mm (.006 in), which is the maximum permissible bore runout (radial eccentricity) of the flywheel.5. Runout (eccentricity) of the bore for the pilot bearing for the flywheel clutch, must not exceed 0.13 mm (.005 in).
Checking Flywheel Clutch Pilot Bearing Bore
Parts governor Volvo Penta:
840633
840633 Governor
2001; 2001B; 2001AG, AQ120B; AQ125A; AQ140A, AQ145A; BB145A, AQ200B; AQ225B, AQ200C; AQ200D; AQ225C, D42A; D42A PP, D70B; D70B PP; D70B K, MD11; MD11C; MD11D, MD21B; AQD21B, MD5A; MD5B; MD5C, MD6; MD6A; MD6B, TD30A; TD31ACE; TD40A
872720
872720 Governor, governor with brush holder
2001; 2001B; 2001AG, 230A; 230B; 250A, 430; 430A; 430B, AD31D; AD31D-A; AD31XD, AD31L-A; AD31P-A; AD41L-A, AD41D; D41D; TAMD41D, D2-55; D2-55B; D2-55C, KAD32P; TAMD42WJ-A; KAD43P-A, KAD42A; KAMD42A; HS1A, KAD42B; KAMD42B; TAMD42B, KAD42P-A; KAMD42P-A
844960
845406
845406 Governor
D70CHC; D70CRC; TD70CHC, MD70C; TMD70C; TAMD70C, TD100G; TD100G-85; TD100G-87, TD70G; TD70G-83; TD70GPP
847427
3825230
849508
849501