Information injection-pump assembly
BOSCH
F 01G 09W 0B5
f01g09w0b5
ZEXEL
104746-5880
1047465880
ISUZU
8981105640
8981105640

Rating:
Components :
0. | INJECTION-PUMP ASSEMBLY | 104746-5880 |
1. | _ | |
2. | FUEL INJECTION PUMP | |
3. | NUMBER PLATE | |
4. | _ | 146672-1720 |
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 ###:
1/6. | [1] | 146601-0700 | PACKING RING |
6. | [1] | 146100-0120 | SUPPLY PUMP |
9. | [1] | 146103-0400 | COVER |
10. | [2] | 139104-0000 | FLAT-HEAD SCREW |
12. | [1] | 146200-1920 | DRIVE SHAFT |
12/1. | [1] | 146200-1900 | DRIVE SHAFT |
12/2. | [1] | 146201-0000 | WOODRUFF KEY |
12/3. | [2] | 146202-0100 | DAMPER |
12/4. | [1] | 146203-0000 | TOOTHED GEAR |
12/5. | [1] | 146206-0400 | COILED SPRING |
17. | [1] | 146204-0100 | PLAIN WASHER |
20. | [1] | 146210-7720 | ROLLER SET |
24. | [1] | 146303-0400 | BEARING PIN |
25. | [1] | 146304-0000 | BEARING PIN |
26. | [1] | 146305-0000 | CLAMPING BAND |
27. | [1] | 146205-0301 | SLOTTED WASHER |
29. | [1] | 146220-7220 | CAM PLATE |
30. | [1] | 146600-6200 | GASKET |
31. | [1] | 146300-5300 | PUMP PLUNGER |
32. | [1] | 146301-0500 | SLIDING PIECE |
33. | [1] | 146603-0700 | SHIM |
34. | [1] | 146306-4500 | COMPRESSION SPRING |
34B. | [1] | 146306-2400 | COMPRESSION SPRING |
34C. | [1] | 146302-5600 | COMPRESSION SPRING |
35/1. | [0] | 146603-0700 | SHIM D17.5&7.5T0.60 |
35/1. | [0] | 146603-0800 | SHIM D17.5&7.5T0.70 |
35/1. | [0] | 146603-0900 | SHIM D17.5&7.5T0.90 |
35/1. | [0] | 146603-1000 | SHIM D17.5&7.5T1.00 |
35/1. | [0] | 146603-1100 | SHIM D17.5&7.5T1.20 |
35/1. | [0] | 146603-3600 | SHIM D17.5&7.5T2.40 |
36. | [1] | 146600-6200 | GASKET |
37. | [1] | 146310-0000 | COVER |
38. | [2] | 146622-0300 | BLEEDER SCREW |
39. | [1] | 146310-5500 | COVER |
40. | [2] | 146622-0300 | BLEEDER SCREW |
43. | [1] | 146230-0000 | SHIM |
44. | [1] | 146230-0100 | PLAIN WASHER |
45. | [1] | 146231-0001 | SLOTTED WASHER |
47. | [2] | 146233-0000 | SLOTTED WASHER |
48/1. | [1] | 146603-0000 | SHIM D17.0&5.2T0.50 |
48/1. | [1] | 146603-0100 | SHIM D17.0&5.2T0.80 |
48/1. | [1] | 146603-0200 | SHIM D17.0&5.2T1.00 |
48/1. | [1] | 146603-0300 | SHIM D17.0&5.2T1.20 |
48/1. | [1] | 146603-0400 | SHIM D17.0&5.2T1.50 |
48/1. | [1] | 146603-0500 | SHIM D17.0&5.2T1.80 |
48/1. | [1] | 146603-0600 | SHIM D17.0&5.2T2.00 |
48/1. | [1] | 146690-1400 | SHIM D17&5.2T0.9 |
48/1. | [1] | 146690-1500 | SHIM D17&5.2T1.1 |
48/1. | [1] | 146690-1600 | SHIM D17&5.2T1.3 |
48/1. | [1] | 146690-1700 | SHIM D17&5.2T1.4 |
48/1. | [1] | 146690-1800 | SHIM D17&5.2T1.6 |
48/1. | [1] | 146690-1900 | SHIM D17&5.2T1.7 |
48/1. | [1] | 146690-5800 | SHIM D17&5.2T2.1 |
48/1. | [1] | 146690-5900 | SHIM D17&5.2T2.2 |
48/1. | [1] | 146690-6000 | SHIM D17&5.2T2.3 |
48/1. | [1] | 146690-6100 | SHIM D17&5.2T2.4 |
48/1. | [1] | 146690-6200 | SHIM D17&5.2T2.5 |
48/1. | [1] | 146690-6300 | SHIM D17&5.2T2.6 |
48/1. | [1] | 146690-6400 | SHIM D17&5.2T2.7 |
48/1. | [1] | 146690-6500 | SHIM D17&5.2T2.8 |
48/1. | [1] | 146690-6600 | SHIM D17&5.2T2.9 |
48/1. | [1] | 146690-6700 | SHIM D17&5.2T3.0 |
48/1. | [1] | 146690-6800 | SHIM D17&5.2T3.1 |
48/1. | [1] | 146690-6900 | SHIM D17&5.2T3.2 |
48/1. | [1] | 146690-7000 | SHIM D17&5.2T3.3 |
48/1. | [1] | 146690-7100 | SHIM D17&5.2T3.4 |
48/1. | [1] | 146690-7200 | SHIM D17&5.2T0.4 |
48/1. | [1] | 146690-7300 | SHIM D17&5.2T0.6 |
48/1. | [1] | 146690-7400 | SHIM D17&5.2T0.7 |
48/1. | [1] | 146690-7500 | SHIM D17&5.2T1.9 |
48/1. | [1] | 146690-7800 | SHIM D17&5.2T0.2 |
49. | [2] | 146234-0800 | GUIDE PIN |
50. | [1] | 146402-5220 | HYDRAULIC HEAD |
50. | [1] | 146402-5220 | HYDRAULIC HEAD |
50. | [1] | 146402-5220 | HYDRAULIC HEAD |
51. | [1] | 146600-0000 | O-RING |
52/1. | [1] | 146420-0000 | SHIM D9.5&3.0T1.90 |
52/1. | [1] | 146420-0100 | SHIM D9.5&3.0T1.92 |
52/1. | [1] | 146420-0200 | SHIM D9.5&3.0T1.94 |
52/1. | [1] | 146420-0300 | SHIM D9.5&3.0T1.96 |
52/1. | [1] | 146420-0400 | SHIM D9.5&3.0T1.98 |
52/1. | [1] | 146420-0500 | SHIM D9.5&3.0T2.00 |
52/1. | [1] | 146420-0600 | SHIM D9.5&3.0T2.02 |
52/1. | [1] | 146420-0700 | SHIM D9.5&3.0T2.04 |
52/1. | [1] | 146420-0800 | SHIM D9.5&3.0T2.06 |
52/1. | [1] | 146420-0900 | SHIM D9.5&3.0T2.08 |
52/1. | [1] | 146420-1000 | SHIM D9.5&3.0T2.10 |
52/1. | [1] | 146420-1100 | SHIM D9.5&3.0T2.12 |
52/1. | [1] | 146420-1200 | SHIM D9.5&3.0T2.14 |
52/1. | [1] | 146420-1300 | SHIM D9.5&3.0T2.16 |
52/1. | [1] | 146420-1400 | SHIM D9.5&3.0T2.18 |
52/1. | [1] | 146420-1500 | SHIM D9.5&3.0T2.20 |
52/1. | [1] | 146420-1600 | SHIM D9.5&3.0T2.22 |
52/1. | [1] | 146420-1700 | SHIM D9.5&3.0T2.24 |
52/1. | [1] | 146420-1800 | SHIM D9.5&3.0T2.26 |
52/1. | [1] | 146420-1900 | SHIM D9.5&3.0T2.28 |
52/1. | [1] | 146420-2000 | SHIM D9.5&3.0T2.30 |
52/1. | [1] | 146420-2100 | SHIM D9.5&3.0T2.32 |
52/1. | [1] | 146420-2200 | SHIM D9.5&3.0T2.34 |
52/1. | [1] | 146420-2300 | SHIM D9.5&3.0T2.36 |
52/1. | [1] | 146420-2400 | SHIM D9.5&3.0T2.38 |
52/1. | [1] | 146420-2500 | SHIM D9.5&3.0T2.40 |
52/1. | [1] | 146420-2600 | SHIM D9.5&3.0T2.42 |
52/1. | [1] | 146420-2700 | SHIM D9.5&3.0T2.44 |
52/1. | [1] | 146420-2800 | SHIM D9.5&3.0T2.46 |
52/1. | [1] | 146420-2900 | SHIM D9.5&3.0T2.48 |
52/1. | [1] | 146420-3000 | SHIM D9.5&3.0T2.50 |
52/1. | [1] | 146420-3100 | SHIM D9.5&3.0T2.52 |
52/1. | [1] | 146420-3200 | SHIM D9.5&3.0T2.54 |
52/1. | [1] | 146420-3300 | SHIM D9.5&3.0T2.56 |
52/1. | [1] | 146420-3400 | SHIM D9.5&3.0T2.58 |
52/1. | [1] | 146420-3500 | SHIM D9.5&3.0T2.60 |
52/1. | [1] | 146420-3600 | SHIM D9.5&3.0T2.62 |
52/1. | [1] | 146420-3700 | SHIM D9.5&3.0T2.64 |
52/1. | [1] | 146420-3800 | SHIM D9.5&3.0T2.66 |
52/1. | [1] | 146420-3900 | SHIM D9.5&3.0T2.68 |
52/1. | [1] | 146420-4000 | SHIM D9.5&3.0T2.70 |
52/1. | [1] | 146420-4100 | SHIM D9.5&3.0T2.72 |
52/1. | [1] | 146420-4200 | SHIM D9.5&3.0T2.74 |
52/1. | [1] | 146420-4300 | SHIM D9.5&3.0T2.76 |
52/1. | [1] | 146420-4400 | SHIM D9.5&3.0T2.78 |
52/1. | [1] | 146420-4500 | SHIM D9.5&3.0T2.80 |
52/1. | [1] | 146420-4600 | SHIM D9.5&3.0T2.82 |
52/1. | [1] | 146420-4700 | SHIM D9.5&3.0T2.84 |
52/1. | [1] | 146420-4800 | SHIM D9.5&3.0T2.86 |
52/1. | [1] | 146420-4900 | SHIM D9.5&3.0T2.88 |
52/1. | [1] | 146420-5000 | SHIM D9.5&3.0T2.90 |
52/1. | [1] | 146420-5100 | SHIM D9.5&3.0T1.74 |
52/1. | [1] | 146420-5200 | SHIM D9.5&3.0T1.76 |
52/1. | [1] | 146420-5300 | SHIM D9.5&3.0T1.78 |
52/1. | [1] | 146420-5400 | SHIM D9.5&3.0T1.80 |
52/1. | [1] | 146420-5500 | SHIM D9.5&3.0T1.82 |
52/1. | [1] | 146420-5600 | SHIM D9.5&3.0T1.84 |
52/1. | [1] | 146420-5700 | SHIM D9.5&3.0T1.86 |
52/1. | [1] | 146420-5800 | SHIM D9.5&3.0T1.88 |
54. | [4] | 146433-0100 | GASKET |
58. | [4] | 149300-0521 | PRESSURE-CONTROL VALVE |
60. | [4] | 139106-0100 | FLAT-HEAD SCREW |
66. | [1] | 146600-0100 | O-RING |
67. | [1] | 146504-5020 | GOVERNOR COVER |
67/1. | [1] | 146806-3820 | GOVERNOR COVER |
67/13. | [1] | 013020-6040 | UNION NUT |
67/14. | [1] | 146621-1700 | UNION NUT |
67/15. | [1] | 146526-2800 | BLEEDER SCREW |
67/16. | [1] | 146526-2800 | BLEEDER SCREW |
67/23. | [1] | 146628-9201 | BRACKET |
67/24. | [2] | 139006-4500 | BLEEDER SCREW |
67/26. | [1] | 146936-0900 | BRACKET |
67/78. | [1] | 146600-4400 | SEAL RING |
67/102. | [1] | 146935-7720 | BRACKET |
67/102/1. | [1] | 146935-7700 | BRACKET |
67/102/2. | [1] | 139006-4800 | BLEEDER SCREW |
67/102/3. | [1] | 013020-6040 | UNION NUT |
67/200. | [1] | 139308-0300 | PLAIN WASHER |
67/201. | [1] | 146545-3400 | THREADED PIN L53.00 |
67/201B. | [1] | 146545-3500 | THREADED PIN L55.00 |
67/201C. | [1] | 146545-3600 | THREADED PIN L57.00 |
67/202. | [1] | 139208-0900 | UNION NUT |
67/203. | [1] | 146600-1200 | O-RING |
68. | [1] | 146811-1820 | CONTROL SHAFT |
69. | [1] | 139310-0200 | PLAIN WASHER |
72. | [1] | 146831-1800 | CONTROL LEVER STAMP:118 |
72B. | [1] | 146831-1900 | CONTROL LEVER STAMP:119 |
72C. | [1] | 146832-7900 | CONTROL LEVER |
72D. | [1] | 146832-8000 | CONTROL LEVER |
73. | [1] | 014110-6440 | LOCKING WASHER D12.2&6.1T1.5 |
75. | [1] | 013020-6040 | UNION NUT |
95. | [1] | 146855-0320 | FULCRUM LEVER |
104. | [2] | 146568-0000 | SLOTTED SPRING PIN |
105. | [2] | 026508-1140 | GASKET D11.4&8.2T1.0 |
106. | [2] | 146588-0500 | COILED SPRING |
107. | [1] | 146569-0300 | UNION NUT |
108. | [1] | 146570-0100 | GOVERNOR SHAFT |
109. | [1] | 146600-0400 | O-RING |
110/1. | [1] | 146571-0000 | SHIM D20.2&8.3T1.05 |
110/1. | [1] | 146571-0100 | SHIM D20.2&8.3T1.25 |
110/1. | [1] | 146571-0200 | SHIM D20.2&8.3T1.45 |
110/1. | [1] | 146571-0300 | SHIM D20.2&8.3T1.65 |
110/1. | [1] | 146571-0400 | SHIM D20.2&8.3T1.85 |
110/1. | [1] | 146571-0500 | SHIM D20.2&8.3T1.15 |
110/1. | [1] | 146571-0600 | SHIM D20.2&8.3T1.35 |
110/1. | [1] | 146571-0700 | SHIM D20.2&8.3T1.55 |
110/1. | [1] | 146571-0800 | SHIM D20.2&8.3T1.75 |
111. | [1] | 146602-0600 | PLAIN WASHER |
112. | [1] | 146572-0020 | FLYWEIGHT ASSEMBLY |
114. | [1] | 146602-2600 | PLAIN WASHER |
115. | [1] | 146976-3800 | SLIDING SLEEVE |
116. | [1] | 146576-0400 | CAP |
117/1. | [1] | 146877-0820 | PLUG L=5.0 |
117/1. | [1] | 146877-0920 | PLUG L=5.1 |
117/1. | [1] | 146877-1020 | PLUG L=5.2 |
117/1. | [1] | 146877-1120 | PLUG L=5.3 |
117/1. | [1] | 146877-1220 | PLUG L=5.4 |
117/1. | [1] | 146877-1320 | PLUG L=5.5 |
117/1. | [1] | 146877-1420 | PLUG L=5.6 |
117/1. | [1] | 146877-1520 | PLUG L=5.7 |
117/1. | [1] | 146877-1620 | PLUG L=5.8 |
117/1. | [1] | 146877-1720 | PLUG L=5.9 |
117/1. | [1] | 146877-1820 | PLUG L=6.0 |
117/1. | [1] | 146877-1920 | PLUG L=6.1 |
117/1. | [1] | 146877-2020 | PLUG L=6.2 |
117/1. | [1] | 146877-2120 | PLUG L=6.3 |
117/1. | [1] | 146877-2220 | PLUG L=6.4 |
117/1. | [1] | 146877-2320 | PLUG L=6.5 |
117/1. | [1] | 146877-2420 | PLUG L=6.6 |
117/1. | [1] | 146877-2520 | PLUG L=6.7 |
117/1. | [1] | 146877-2620 | PLUG L=6.8 |
117/1. | [1] | 146877-2720 | PLUG L=6.9 |
117/1. | [1] | 146877-2820 | PLUG L=7.0 |
117/1. | [1] | 146877-2920 | PLUG L=7.1 |
117/1. | [1] | 146877-3020 | PLUG L=7.2 |
117/1. | [1] | 146877-3120 | PLUG L=7.3 |
117/1. | [1] | 146877-3220 | PLUG L=7.4 |
117/1. | [1] | 146877-3320 | PLUG L=7.5 |
117/1. | [1] | 146877-3420 | PLUG L=7.6 |
117/1. | [1] | 146877-3520 | PLUG L=7.7 |
117/1. | [1] | 146877-3620 | PLUG L=7.8 |
117/1. | [1] | 146877-3720 | PLUG L=7.9 |
117/1. | [1] | 146877-3820 | PLUG L=8.0 |
117/1. | [1] | 146877-3920 | PLUG L=8.1 |
117/1. | [1] | 146877-4020 | PLUG L=8.2 |
117/1. | [1] | 146877-4120 | PLUG L=8.3 |
117/1. | [1] | 146877-4220 | PLUG L=8.4 |
123. | [4] | 139106-0200 | FLAT-HEAD SCREW |
130. | [1] | 146421-1620 | CAPSULE |
130/2. | [1] | 146422-1100 | BLEEDER SCREW |
130/3. | [1] | 146600-0500 | O-RING |
133. | [1] | 146600-0600 | O-RING |
134. | [1] | 146600-0700 | O-RING |
135. | [1] | 146110-0620 | CONTROL VALVE |
135/5. | [1] | 146114-0000 | SPRING WASHER |
136. | [1] | 146688-3220 | PULLING ELECTROMAGNET |
137. | [2] | 139514-0200 | GASKET |
137. | [2] | 139514-0200 | GASKET |
145. | [1] | 146621-4901 | UNION NUT |
147. | [1] | 146600-5000 | O-RING |
158. | [1] | 020105-0940 | BLEEDER SCREW |
159. | [1] | 146625-8000 | PLATE |
205. | [1] | 029470-4030 | WOODRUFF KEY |
206. | [1] | 013121-4140 | UNION NUT |
207. | [1] | 029321-4050 | LOCKING WASHER |
220. | [1] | 146587-5000 | COILED SPRING |
233. | [1] | 146658-8920 | WIRE |
240. | [1] | 146650-1220 | PULLING ELECTROMAGNET |
240/8. | [1] | 146600-1700 | O-RING |
242. | [1] | 146658-7320 | WIRE |
243. | [1] | 146621-4901 | UNION NUT |
245. | [3] | 139512-0500 | GASKET |
246. | [1] | 146125-1200 | EYE BOLT |
247. | [1] | 146677-6120 | INLET UNION |
248. | [1] | 146614-0200 | SPACER BUSHING |
251. | [1] | 146125-0101 | FILTER |
252. | [1] | 146125-0200 | COILED SPRING |
260. | [1] | 146611-2121 | BRACKET |
261. | [2] | 146621-4700 | UNION NUT |
262. | [1] | 139008-0900 | BLEEDER SCREW |
264. | [1] | 016500-5010 | O-RING |
270. | [1] | 146615-5620 | TOOTHED GEAR |
270/1. | [1] | 146615-5600 | TOOTHED GEAR |
270/2. | [1] | 146615-5700 | COUPLING PLATE |
270/3. | [4] | 146622-2000 | BLEEDER SCREW |
311. | [1] | 139006-4400 | BLEEDER SCREW |
800S. | [1] | 146020-2020 | PUMP HOUSING |
800S/1/6. | [1] | 146601-0700 | PACKING RING |
804S. | [1] | 146232-1320 | COMPRESSION SPRING |
805S. | [1] | 146574-0920 | PARTS SET |
810S. | [1] | 146600-6320 | REPAIR SET |
821S. | [1] | 146210-7820 | ROLLER SET |
835S. | [1] | 146598-1000 | CAP |
836S/1. | [1] | 146598-0600 | CAP L18 |
836S/1. | [1] | 146598-0700 | CAP L21 |
836S/1. | [1] | 146598-0800 | CAP L24 |
836S/1. | [1] | 146598-0900 | CAP L27 |
839S. | [1] | 146421-1820 | CAPSULE |
903. | [1] | 146672-1720 | PULSE GENERATOR |
903/2. | [1] | 146600-1300 | O-RING |
906. | [1] | 146979-6900 | NAMEPLATE |
Include in #2:
104746-5880
as INJECTION-PUMP ASSEMBLY
Cross reference number
BOSCH
F 01G 09W 0B5
f01g09w0b5
ZEXEL
104746-5880
1047465880
ISUZU
8981105640
8981105640
Zexel num
Bosch num
Firm num
Name
104746-5880
F 01G 09W 0B5
8981105640 ISUZU
INJECTION-PUMP ASSEMBLY
4JA1-L
4JA1-L
Calibration Data:
Adjustment conditions
Test oil
1404 Test oil ISO4113orSAEJ967d
1404 Test oil ISO4113orSAEJ967d
Test oil temperature
degC
45
45
50
Nozzle
105780-0060
Bosch type code
NP-DN0SD1510
Nozzle holder
105780-2150
Opening pressure
MPa
13
13
13.3
Opening pressure
kgf/cm2
133
133
136
Injection pipe
157805-7320
Injection pipe
Inside diameter - outside diameter - length (mm) mm 2-6-450
Inside diameter - outside diameter - length (mm) mm 2-6-450
Joint assembly
157641-4720
Tube assembly
157641-4020
Transfer pump pressure
kPa
20
20
20
Transfer pump pressure
kgf/cm2
0.2
0.2
0.2
Direction of rotation (viewed from drive side)
Left L
Left L
(Solenoid timer adjustment condition)
OFF
Timer measuring device installation position
Low pressure side LOW PRESSURE SIDE
Low pressure side LOW PRESSURE SIDE
Injection timing adjustment
Pump speed
r/min
1100
1100
1100
Average injection quantity
mm3/st.
72.7
72.2
73.2
Difference in delivery
mm3/st.
6
Basic
*
Oil temperature
degC
50
48
52
Injection timing adjustment_02
Pump speed
r/min
500
500
500
Average injection quantity
mm3/st.
54.8
49.3
60.3
Oil temperature
degC
48
46
50
Injection timing adjustment_03
Pump speed
r/min
750
750
750
Average injection quantity
mm3/st.
64.5
59
70
Oil temperature
degC
50
48
52
Injection timing adjustment_04
Pump speed
r/min
900
900
900
Average injection quantity
mm3/st.
71.4
65.9
76.9
Oil temperature
degC
50
48
52
Injection timing adjustment_05
Pump speed
r/min
1100
1100
1100
Average injection quantity
mm3/st.
72.7
71.7
73.7
Difference in delivery
mm3/st.
6
Basic
*
Oil temperature
degC
50
48
52
Injection timing adjustment_06
Pump speed
r/min
1900
1900
1900
Average injection quantity
mm3/st.
83.9
79.4
88.4
Oil temperature
degC
50
48
52
Injection quantity adjustment
Pump speed
r/min
2350
2350
2350
Average injection quantity
mm3/st.
28.4
25.4
31.4
Difference in delivery
mm3/st.
4
Basic
*
Oil temperature
degC
52
50
54
Injection quantity adjustment_02
Pump speed
r/min
2600
2600
2600
Average injection quantity
mm3/st.
5
Oil temperature
degC
55
52
58
Injection quantity adjustment_03
Pump speed
r/min
2350
2350
2350
Average injection quantity
mm3/st.
28.4
25.4
31.4
Difference in delivery
mm3/st.
4
Basic
*
Oil temperature
degC
52
50
54
Governor adjustment
Pump speed
r/min
365
365
365
Average injection quantity
mm3/st.
10.6
8.6
12.6
Difference in delivery
mm3/st.
2
Basic
*
Oil temperature
degC
48
46
50
Governor adjustment_02
Pump speed
r/min
365
365
365
Average injection quantity
mm3/st.
10.6
8.6
12.6
Difference in delivery
mm3/st.
2
Basic
*
Oil temperature
degC
48
46
50
Timer adjustment
Pump speed
r/min
100
100
100
Average injection quantity
mm3/st.
90
70
110
Basic
*
Oil temperature
degC
48
46
50
Remarks
Full
Full
Timer adjustment_02
Pump speed
r/min
100
100
100
Average injection quantity
mm3/st.
90
70
110
Oil temperature
degC
48
46
50
Remarks
Full
Full
Speed control lever angle
Pump speed
r/min
365
365
365
Average injection quantity
mm3/st.
0
0
0
Oil temperature
degC
48
46
50
Remarks
Magnet OFF at idling position
Magnet OFF at idling position
0000000901
Pump speed
r/min
1600
1600
1600
Overflow quantity with S/T ON
cm3/min
1120
890
1350
Oil temperature
degC
50
48
52
Stop lever angle
Pump speed
r/min
1600
1600
1600
Pressure with S/T ON
kPa
667
628
706
Pressure with S/T ON
kgf/cm2
6.8
6.4
7.2
Pressure with S/T OFF
kPa
598
578
618
Pressure with S/T OFF
kgf/cm2
6.1
5.9
6.3
Basic
*
Oil temperature
degC
50
48
52
Remarks
OFF
OFF
Stop lever angle_02
Pump speed
r/min
1300
1300
1300
Pressure with S/T ON
kPa
569
520
618
Pressure with S/T ON
kgf/cm2
5.8
5.3
6.3
Oil temperature
degC
50
48
52
Stop lever angle_03
Pump speed
r/min
1500
1500
1500
Pressure with S/T OFF
kPa
569
540
598
Pressure with S/T OFF
kgf/cm2
5.8
5.5
6.1
Oil temperature
degC
50
48
52
Stop lever angle_04
Pump speed
r/min
1600
1600
1600
Pressure with S/T ON
kPa
667
628
706
Pressure with S/T ON
kgf/cm2
6.8
6.4
7.2
Pressure with S/T OFF
kPa
598
578
618
Pressure with S/T OFF
kgf/cm2
6.1
5.9
6.3
Basic
*
Oil temperature
degC
50
48
52
Remarks
OFF
OFF
Stop lever angle_05
Pump speed
r/min
1900
1900
1900
Pressure with S/T OFF
kPa
696
667
725
Pressure with S/T OFF
kgf/cm2
7.1
6.8
7.4
Oil temperature
degC
50
48
52
Stop lever angle_06
Pump speed
r/min
2200
2200
2200
Pressure with S/T OFF
kPa
824
765
883
Pressure with S/T OFF
kgf/cm2
8.4
7.8
9
Oil temperature
degC
52
50
54
0000001101
Pump speed
r/min
1600
1600
1600
Timer stroke with S/T ON
mm
4.1
3.7
4.5
Timer stroke with S/T OFF
mm
2.5
2.3
2.7
Basic
*
Oil temperature
degC
50
48
52
Remarks
OFF
OFF
_02
Pump speed
r/min
1300
1300
1300
Timer stroke with S/T ON
mm
1.7
1.2
2.2
Oil temperature
degC
50
48
52
_03
Pump speed
r/min
1600
1600
1600
Timer stroke with S/T ON
mm
4.1
3.6
4.6
Timer stroke with S/T OFF
mm
2.5
2.3
2.7
Basic
*
Oil temperature
degC
50
48
52
Remarks
OFF
OFF
_04
Pump speed
r/min
1800
1800
1800
Timer stroke with S/T OFF
mm
4.1
3.7
4.5
Oil temperature
degC
50
48
52
_05
Pump speed
r/min
2200
2200
2200
Timer stroke with S/T OFF
mm
4.8
4.5
5.2
Oil temperature
degC
52
50
54
0000001201
Max. applied voltage
V
8
8
8
Test voltage
V
13
12
14
Timing setting
K dimension
mm
3.6
3.5
3.7
KF dimension
mm
7.7
7.6
7.8
MS dimension
mm
0.8
0.7
0.9
Pre-stroke
mm
0.2
0.18
0.22
Control lever angle alpha
deg.
18
14
22
Control lever angle beta
deg.
37
32
42
Information:
Engine Performance
Poor vessel performance is traditionally believed to be the result of a lack (or loss) of engine performance, when in fact the engine is only one of numerous factors that influence the overall performance of a vessel. Several factors determine the power demand on an engine. The engine has no control over the demand made upon it by the vessel design, such as hull, prop and driveline design. These same factors also affect the amount of power available to perform additional work such as to drive auxiliary pumps.If you feel you have a vessel performance problem, first consider the impact of vessel design and condition, loads, propeller and driveline condition, etc. on power demand. Deterioration of vessel systems (cooling, air intake and exhaust, fuel tanks, etc.) can only lessen the engine's chance to produce power and vessel speed. In the case of poor fuel economy, the engine is not likely to be the cause without the presence of excessive exhaust smoke and/or a significant loss of power.If you feel you have a valid engine performance problem, contact an authorized Caterpillar marine engine servicing dealer for assistance. If your engine is under warranty then the Caterpillar warranty will cover the cost of resolving a valid engine performance deficiency. However, if the engine is not found at fault, all costs incurred will be the responsibility of the owner. Adjustment of the fuel system outside Caterpillar specified limits will not improve fuel efficiency and could result in damage to the engine.Your Caterpillar dealer can determine engine condition and check the engine's external systems using a diagnostic procedure called the Marine Engine Performance Analysis Report (PAR). (See next topic).Caterpillar engines are designed and manufactured using state-of-the-art technology to provide maximum fuel efficiency and performance in all applications. To insure optimum performance for the life of your engine, follow the recommended operation and preventive maintenance procedures described in this publication.Marine Engine Performance Analysis Report (PAR)
Today's marine user is concerned with performance, cost of operation and satisfactory engine life. Traditionally, vessel performance has been directly related to the propulsion engine, when in fact the engine is only one of numerous factors influencing the propulsion system.To verify the condition of the propulsion system, Caterpillar has developed the Marine Engine Performance Analysis Report (PAR) program. Marine Engine PAR is an in-vessel test procedure, performed and evaluated by Caterpillar certified Marine Analysts under normal or bollard operating conditions, comparing the performance of all marine engine systems to original factory test cell specifications.When Marine Engine PAR testing is conducted at Sea Trial, it can assure you of a quality installation that confirms hull, rudders, propeller, marine transmission, ventilation and cooling systems are all properly matched for optimum performance and fuel efficiency.Caterpillar additionally recommends regularly scheduled (see Maintenance Schedule) Marine Engine PAR analyses to maintain optimum performance. Periodic PAR analyses can define propulsion system deterioration and aid in fine tuning the maintenance, repair and overhaul schedules, which will provide you the most economical and efficient cost of operation.
Poor vessel performance is traditionally believed to be the result of a lack (or loss) of engine performance, when in fact the engine is only one of numerous factors that influence the overall performance of a vessel. Several factors determine the power demand on an engine. The engine has no control over the demand made upon it by the vessel design, such as hull, prop and driveline design. These same factors also affect the amount of power available to perform additional work such as to drive auxiliary pumps.If you feel you have a vessel performance problem, first consider the impact of vessel design and condition, loads, propeller and driveline condition, etc. on power demand. Deterioration of vessel systems (cooling, air intake and exhaust, fuel tanks, etc.) can only lessen the engine's chance to produce power and vessel speed. In the case of poor fuel economy, the engine is not likely to be the cause without the presence of excessive exhaust smoke and/or a significant loss of power.If you feel you have a valid engine performance problem, contact an authorized Caterpillar marine engine servicing dealer for assistance. If your engine is under warranty then the Caterpillar warranty will cover the cost of resolving a valid engine performance deficiency. However, if the engine is not found at fault, all costs incurred will be the responsibility of the owner. Adjustment of the fuel system outside Caterpillar specified limits will not improve fuel efficiency and could result in damage to the engine.Your Caterpillar dealer can determine engine condition and check the engine's external systems using a diagnostic procedure called the Marine Engine Performance Analysis Report (PAR). (See next topic).Caterpillar engines are designed and manufactured using state-of-the-art technology to provide maximum fuel efficiency and performance in all applications. To insure optimum performance for the life of your engine, follow the recommended operation and preventive maintenance procedures described in this publication.Marine Engine Performance Analysis Report (PAR)
Today's marine user is concerned with performance, cost of operation and satisfactory engine life. Traditionally, vessel performance has been directly related to the propulsion engine, when in fact the engine is only one of numerous factors influencing the propulsion system.To verify the condition of the propulsion system, Caterpillar has developed the Marine Engine Performance Analysis Report (PAR) program. Marine Engine PAR is an in-vessel test procedure, performed and evaluated by Caterpillar certified Marine Analysts under normal or bollard operating conditions, comparing the performance of all marine engine systems to original factory test cell specifications.When Marine Engine PAR testing is conducted at Sea Trial, it can assure you of a quality installation that confirms hull, rudders, propeller, marine transmission, ventilation and cooling systems are all properly matched for optimum performance and fuel efficiency.Caterpillar additionally recommends regularly scheduled (see Maintenance Schedule) Marine Engine PAR analyses to maintain optimum performance. Periodic PAR analyses can define propulsion system deterioration and aid in fine tuning the maintenance, repair and overhaul schedules, which will provide you the most economical and efficient cost of operation.
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INJECTION-PUMP ASSEMBLY
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