Information hydraulic governor
BOSCH
F 019 Z2E 466
f019z2e466
ZEXEL
105866-4490
1058664490
DAIHATSU
QGDK313020FZ
qgdk313020fz
Rating:
Components :
0. | INJECTION-PUMP ASSEMBLY | 105866-4490 |
1. | _ | |
2. | FUEL INJECTION PUMP | |
3. | NUMBER PLATE | |
4. | _ | |
5. | CAPSULE | |
6. | ADJUSTING DEVICE | |
7. | NOZZLE AND HOLDER ASSY | |
8. | Nozzle and Holder | |
9. | Open Pre:MPa(Kqf/cm2) | |
10. | NOZZLE-HOLDER | |
11. | NOZZLE |
Scheme ###:
1. | [1] | 158502-0420 | BASE |
2. | [1] | 029811-8000 | BEARING PLATE |
3. | [1] | 158528-0900 | PACKING RING |
7. | [1] | 158131-0100 | GEAR SHAFT |
10. | [1] | 158028-0000 | O-RING |
11. | [1] | 158507-1920 | DIAPHRAGM HOUSING |
13. | [1] | 158621-0800 | SLEEVE |
18. | [1] | 158699-0621 | COMPENSATOR ASSY |
18/1. | [1] | 158610-1101 | POWER PISTON |
18/3. | [1] | 158654-0800 | COILED SPRING |
18/4. | [1] | 158614-0700 | STOP PIN |
18/5. | [1] | 158612-0500 | PLAIN WASHER |
18/6. | [1] | 158654-0900 | COILED SPRING |
18/7. | [1] | 016110-1220 | LOCKING WASHER |
18/8. | [1] | 158612-0401 | BUSHING |
18/9. | [2] | 016550-2310 | O-RING |
18/10. | [1] | 158615-0500 | PUMP PLUNGER |
18/11. | [1] | 025620-1410 | SPRING PIN |
35. | [3] | 029330-6070 | GASKET |
36. | [3] | 010206-2520 | HEX-SOCKET-HEAD CAP SCREW |
50. | [1] | 158600-1020 | FLYWEIGHT ASSEMBLY |
51. | [1] | 158106-0100 | PLAIN WASHER |
52. | [1] | 029811-0000 | BEARING PLATE |
53. | [1] | 158620-1220 | PILOT VALVE |
60. | [2] | 158220-0000 | GUIDE LEVER |
61. | [2] | 158736-0200 | BEARING PIN |
62. | [4] | 025520-1510 | SPLIT PIN |
70. | [1] | 158730-0220 | TERMINAL ARM |
70/1. | [1] | 158230-0020 | TERMINAL ARM |
70/2. | [1] | 158315-0200 | TERMINAL SHAFT |
70/3. | [1] | 158315-0200 | TERMINAL SHAFT |
70/4. | [2] | 158736-0100 | TAPER PIN |
70/5. | [2] | 011006-0620 | SET OF NUTS |
70/6. | [1] | 158214-0020 | SPEED DROOP ADJUSTER |
70/7. | [1] | 014020-5120 | PLAIN WASHER |
70/8. | [1] | 029320-5030 | TAB WASHER |
70/9. | [1] | 010535-1220 | FLAT-HEAD SCREW |
85. | [1] | 158814-0900 | SPEED CONTROL SHAFT |
86. | [2] | 158823-0300 | BUSHING |
86. | [2] | 158823-0300 | BUSHING |
87. | [1] | 158322-0200 | COILED SPRING |
88. | [1] | 158710-0400 | STRAP |
89. | [1] | 029404-5010 | BEARING PIN |
95. | [1] | 158211-0100 | STRAP |
96. | [2] | 158653-0100 | WIRE |
104. | [1] | 158017-0900 | GASKET |
105. | [1] | 158964-3420 | PNEUMATIC CONTROLLER |
105/1. | [1] | 158562-4600 | COVER |
105/2. | [1] | 158910-0200 | CYLINDER |
105/3. | [3] | 029050-6090 | FLAT-HEAD SCREW |
105/4. | [1] | 014110-6440 | LOCKING WASHER |
105/5. | [1] | 158416-0000 | FLAT-HEAD SCREW |
105/6. | [1] | 158915-0700 | UNION NUT |
105/7. | [1] | 158918-0000 | PLAIN WASHER D30&10.8T1.00 |
105/8/1. | [1] | 158412-0100 | COILED SPRING K1.0 |
105/8/1. | [1] | 158412-0200 | COILED SPRING K2.0 |
105/8/1. | [1] | 158412-0300 | COILED SPRING K3.0 |
105/8/1. | [1] | 158412-0400 | COILED SPRING K4.0 |
105/8/1. | [1] | 158412-0500 | COILED SPRING K5.0 |
105/8/1. | [1] | 158912-1800 | COILED SPRING K3.4 |
105/8/1. | [1] | 158912-1900 | COILED SPRING K2.5 |
105/8/1. | [1] | 158912-3300 | COILED SPRING K4.5 |
105/9/1. | [1] | 158412-0000 | COILED SPRING K7.0 |
105/9/1. | [1] | 158912-0500 | COILED SPRING K4.9 |
105/9/1. | [1] | 158912-0600 | COILED SPRING K5.1 |
105/9/1. | [1] | 158912-0700 | COILED SPRING K5.2 |
105/9/1. | [1] | 158912-1100 | COILED SPRING K4.8 |
105/9/1. | [1] | 158912-1200 | COILED SPRING K5.4 |
105/9/1. | [1] | 158912-2300 | COILED SPRING K6.8 |
105/9/1. | [1] | 158912-2400 | COILED SPRING K7.0 |
105/9/1. | [1] | 158912-2500 | COILED SPRING K7.3 |
105/9/1. | [1] | 158912-2600 | COILED SPRING K7.4 |
105/10. | [1] | 158918-0000 | PLAIN WASHER D30&10.8T1.00 |
105/11. | [1] | 158413-0001 | STOP PIN |
105/12. | [1] | 158414-0000 | PUMP PLUNGER |
105/13. | [1] | 158414-0100 | DIAPHRAGM |
105/14. | [1] | 158414-0200 | PLATE |
105/15. | [1] | 013020-6040 | UNION NUT M6P1H5 |
105/16. | [1] | 158910-0300 | CAP |
105/17. | [1] | 158915-1000 | FLAT-HEAD SCREW |
105/18. | [1] | 029630-9050 | O-RING |
105/19. | [1] | 158567-1500 | WING NUT |
105/21. | [1] | 158904-2020 | ROUND NUT |
105/22. | [1] | 158916-0000 | SET OF NUTS |
105/23. | [2] | 029050-6220 | FLAT-HEAD SCREW |
105/24. | [2] | 029320-6010 | LOCKING WASHER |
105/25. | [2] | 158909-0200 | BLEEDER SCREW |
105/26. | [1] | 027114-1040 | INLET UNION |
105/27. | [2] | 029331-4120 | GASKET D18&14.2T1.5 |
105/28. | [1] | 027414-2640 | EYE BOLT |
105/30. | [1] | 013020-6040 | UNION NUT M6P1H5 |
105/31. | [1] | 158567-1200 | SET OF NUTS |
105/35. | [1] | 026512-1640 | GASKET D15.9&12.2T1 |
105/36. | [1] | 158066-0000 | BLEEDER SCREW |
106. | [4] | 029010-6350 | BLEEDER SCREW M6P1.0L22 |
118. | [1] | 158527-0200 | NEEDLE VALVE |
119. | [1] | 016500-0710 | O-RING |
123. | [2] | 026512-1640 | GASKET D15.9&12.2T1 |
123. | [2] | 026512-1640 | GASKET D15.9&12.2T1 |
124. | [2] | 029111-2070 | CAPSULE M12P1.5L10 |
124. | [2] | 029111-2070 | CAPSULE M12P1.5L10 |
130. | [1] | 029331-8040 | GASKET |
131. | [1] | 158660-0320 | CONTROL VALVE |
135. | [1] | 158515-0900 | INDICATOR PLATE |
137. | [1] | 158515-1000 | INDICATOR PLATE |
140. | [1] | 158820-0620 | POINTER |
142. | [1] | 158820-0620 | POINTER |
158. | [1] | 015040-0880 | BEARING PIN |
163. | [1] | 010210-1420 | HEX-SOCKET-HEAD CAP SCREW |
164. | [1] | 026510-1340 | GASKET D13.4&10.2T1 |
190. | [1] | 158017-1000 | GASKET |
200. | [1] | 158599-7320 | SPARE PART |
Include in #2:
105866-4490
as INJECTION-PUMP ASSEMBLY
Cross reference number
Zexel num
Bosch num
Firm num
Name
Information:
Downhill
When cresting a hill, the decision of whether to use power or not on the downside of the hill must be made. Best fuel economy results from using minimum power to get back to speed after climbing a grade. However, care must be taken not to allow the engine to overspeed. This engine should not exceed 2300 rpm.If equipped with an exhaust brake, the engine should not exceed maximum braking rpm. Refer to "Auxilliary Exhaust Brakes" section of this manual.Saving Fuel On Hills
Rolling hills provide a great opportunity to reduce fuel. Avoid downshifting on small hills. If a hill can be topped without downshifting, even if the engine lugs to the peak torque rpm (1100-1200), the truck should not be downshifted.On long grades that require one or more downshifts, let the engine lug back to the peak torque rpm. If road speed stabilizes with the engine running at or above peak torque rpm, remain in that gear. When going down hill, use gravity instead of engine power to regain vehicle speed.Long steep down grades should be anticipated. Vehicle speed should be reduced before cresting the top of a hill and proceeding down a long steep grade. The way to achieve maximum fuel efficiency, is to minimize the amount of braking that is used to maintain a safe vehicle speed.The engine's ability to hold the truck back increases with engine speed. A gear should be selected that runs the engine near the high engine rpm limit for long steep hills when braking is required.Speed reductions and future stops should be anticipated ahead of time to save fuel. Downshifts should be avoided and the amount of braking minimize
When cresting a hill, the decision of whether to use power or not on the downside of the hill must be made. Best fuel economy results from using minimum power to get back to speed after climbing a grade. However, care must be taken not to allow the engine to overspeed. This engine should not exceed 2300 rpm.If equipped with an exhaust brake, the engine should not exceed maximum braking rpm. Refer to "Auxilliary Exhaust Brakes" section of this manual.Saving Fuel On Hills
Rolling hills provide a great opportunity to reduce fuel. Avoid downshifting on small hills. If a hill can be topped without downshifting, even if the engine lugs to the peak torque rpm (1100-1200), the truck should not be downshifted.On long grades that require one or more downshifts, let the engine lug back to the peak torque rpm. If road speed stabilizes with the engine running at or above peak torque rpm, remain in that gear. When going down hill, use gravity instead of engine power to regain vehicle speed.Long steep down grades should be anticipated. Vehicle speed should be reduced before cresting the top of a hill and proceeding down a long steep grade. The way to achieve maximum fuel efficiency, is to minimize the amount of braking that is used to maintain a safe vehicle speed.The engine's ability to hold the truck back increases with engine speed. A gear should be selected that runs the engine near the high engine rpm limit for long steep hills when braking is required.Speed reductions and future stops should be anticipated ahead of time to save fuel. Downshifts should be avoided and the amount of braking minimize