Information fuel-injection pump
BOSCH
9 410 614 349
9410614349
ZEXEL
106060-7590
1060607590
NISSAN-DIESEL
1670196700
1670196700

Rating:
Scheme ###:
1. | [1] | 134062-2320 | PUMP HOUSING |
1/30. | [3] | 029040-6020 | STUD |
1/45. | [1] | 134311-0000 | SPACER RING |
1/50. | [12] | 134138-0000 | STUD |
1/55. | [2] | 139008-0700 | STUD |
7. | [6] | 134145-5420 | PLUNGER-AND-BARREL ASSY |
7/1. | [1] | 134131-1920 | FLANGE BUSHING |
7/2. | [1] | 134151-9020 | PLUNGER-AND-BARREL ASSY |
7/3. | [1] | 134110-7820 | DELIVERY-VALVE ASSEMBLY |
7/4. | [1] | 134116-4220 | FITTING |
7/5. | [1] | 139722-0400 | O-RING |
7/6. | [1] | 134117-0500 | FILLER PIECE |
7/7. | [1] | 132112-0200 | COILED SPRING |
7/8. | [1] | 134115-0100 | GASKET |
7/9. | [1] | 029302-0140 | PLAIN WASHER |
7/10. | [1] | 134135-0400 | CAPSULE |
7/11. | [1] | 029602-0010 | LOCKING WASHER |
7/13. | [1] | 139729-0400 | O-RING |
7/14. | [1] | 139715-0400 | O-RING |
7/15. | [1] | 139715-0400 | O-RING |
23/1. | [0] | 139400-0900 | SHIM T0.500 |
23/1. | [0] | 139400-1000 | SHIM T0.525 |
23/1. | [0] | 139400-1100 | SHIM T0.550 |
23/1. | [0] | 139400-1200 | SHIM T0.575 |
23/1. | [0] | 139400-1300 | SHIM T0.600 |
23/1. | [0] | 139400-1400 | SHIM T0.625 |
23/1. | [0] | 139400-1500 | SHIM T0.650 |
23/1. | [0] | 139400-1600 | SHIM T0.675 |
23/1. | [0] | 139400-1700 | SHIM T0.700 |
23/1. | [0] | 139400-1800 | SHIM T0.725 |
23/1. | [0] | 139400-1800 | SHIM T0.725 |
23/1. | [0] | 139400-1900 | SHIM T0.750 |
23/1. | [0] | 139400-2000 | SHIM T0.775 |
23/1. | [0] | 139400-2100 | SHIM T0.800 |
23/1. | [0] | 139400-2200 | SHIM T0.825 |
23/1. | [0] | 139400-2300 | SHIM T0.850 |
23/1. | [0] | 139400-2400 | SHIM T0.875 |
23/1. | [0] | 139400-2500 | SHIM T0.900 |
23/1. | [0] | 139400-2600 | SHIM T0.925 |
23/1. | [0] | 139400-2700 | SHIM T0.950 |
23/1. | [0] | 139400-2800 | SHIM T0.975 |
23/1. | [0] | 139400-2900 | SHIM T1.000 |
23/1. | [0] | 139400-3000 | SHIM T1.025 |
23/1. | [0] | 139400-3100 | SHIM T1.050 |
23/1. | [0] | 139400-3200 | SHIM T1.075 |
23/1. | [0] | 139400-3300 | SHIM T1.100 |
23/1. | [0] | 139400-3400 | SHIM T1.125 |
23/1. | [0] | 139400-3500 | SHIM T1.150 |
23/1. | [0] | 139400-3600 | SHIM T1.175 |
23/1. | [0] | 139400-3700 | SHIM T1.200 |
23/1. | [0] | 139400-3800 | SHIM T1.225 |
23/1. | [0] | 139400-3900 | SHIM T1.250 |
23/1. | [0] | 139400-4000 | SHIM T1.275 |
23/1. | [0] | 139400-4100 | SHIM T1.300 |
23/1. | [0] | 139400-4200 | SHIM T1.325 |
23/1. | [0] | 139400-4300 | SHIM T1.350 |
23/1. | [0] | 139400-4400 | SHIM T1.375 |
23/1. | [0] | 139400-4500 | SHIM T1.400 |
23/1. | [0] | 139400-4600 | SHIM T1.425 |
23/1. | [0] | 139400-4700 | SHIM T1.450 |
23/1. | [0] | 139400-4800 | SHIM T1.475 |
23/1. | [0] | 139400-4900 | SHIM T1.500 |
23/1. | [0] | 139400-5000 | SHIM T1.525 |
23/1. | [0] | 139400-5100 | SHIM T1.550 |
23/1. | [0] | 139400-5200 | SHIM T1.575 |
23/1. | [0] | 139400-5300 | SHIM T1.600 |
23/1. | [0] | 139400-5400 | SHIM T1.625 |
23/1. | [0] | 139400-5500 | SHIM T1.650 |
23/1. | [0] | 139400-5600 | SHIM T1.675 |
23/1. | [0] | 139400-5700 | SHIM T1.700 |
23/1. | [0] | 139400-5800 | SHIM T1.725 |
23/1. | [0] | 139400-5900 | SHIM T1.750 |
23/1. | [0] | 139400-6000 | SHIM T1.775 |
23/1. | [0] | 139400-6100 | SHIM T1.800 |
23/1. | [0] | 139400-6200 | SHIM T1.825 |
23/1. | [0] | 139400-6300 | SHIM T1.850 |
23/1. | [0] | 139400-6400 | SHIM T1.875 |
23/1. | [0] | 139400-6500 | SHIM T1.900 |
23/1. | [0] | 139400-6600 | SHIM T1.925 |
23/1. | [0] | 139400-6700 | SHIM T1.950 |
23/1. | [0] | 139400-6800 | SHIM T1.975 |
24. | [12] | 134132-0300 | PLAIN WASHER D20&11T2.5 |
26. | [12] | 013021-0040 | UNION NUT M10P1.5H8 |
30. | [2] | 134001-0000 | BUSHING |
30. | [2] | 134001-0000 | BUSHING |
32. | [1] | 134256-3000 | CONTROL RACK |
33. | [1] | 024030-2030 | BEARING PIN |
34. | [1] | 134222-0000 | BUSHING |
41. | [6] | 134241-0320 | CONTROL SLEEVE |
43. | [6] | 134216-0000 | SLOTTED WASHER |
44. | [6] | 134215-0700 | COILED SPRING |
45. | [6] | 134217-0500 | SLOTTED WASHER |
47. | [6] | 134200-0420 | TAPPET |
47/2. | [1] | 134204-0100 | ROLLER |
47/3. | [1] | 134205-0000 | BUSHING |
47/4. | [1] | 134203-0000 | BEARING PIN |
47/5. | [1] | 131206-0500 | SLIDER |
59. | [1] | 016650-2230 | BEARING PLATE |
64/1. | [0] | 134303-0000 | SHIM D59.8&43T1.2 |
64/1. | [0] | 134303-0100 | SHIM D59.8&43T1.5 |
64/1. | [0] | 134303-0200 | SHIM D59.8&43T1.8 |
64/1. | [0] | 134303-0300 | SHIM D59.8&43T2.0 |
64/1. | [0] | 134303-0400 | SHIM D59.8&43T0.6 |
71. | [1] | 134371-6100 | CAMSHAFT |
74. | [1] | 134306-0600 | BEARING SHELL |
75. | [2] | 020106-2040 | BLEEDER SCREW M6P1L20 |
76. | [2] | 134306-1200 | BEARING SHELL |
77. | [4] | 020106-2040 | BLEEDER SCREW M6P1L20 |
79. | [1] | 016650-2230 | BEARING PLATE |
80. | [1] | 134316-4520 | COVER |
80/2. | [1] | 139634-0100 | PACKING RING |
80/3. | [1] | 139699-0100 | PACKING RING |
82/1. | [0] | 134314-0000 | SHIM T0.1 |
82/1. | [0] | 134314-0100 | SHIM T0.12 |
82/1. | [0] | 134314-0200 | SHIM T0.14 |
82/1. | [0] | 134314-0300 | SHIM T0.16 |
82/1. | [0] | 134314-0400 | SHIM T0.18 |
82/1. | [0] | 134314-0500 | SHIM T0.3 |
82/1. | [0] | 134314-0600 | SHIM T0.5 |
83. | [1] | 029635-5010 | O-RING |
85. | [1] | 134043-0800 | COVER |
86. | [1] | 134042-1400 | GASKET |
87. | [12] | 012206-1640 | FLAT-HEAD SCREW M6P1L16 |
88. | [1] | 134045-0100 | CAPSULE |
89. | [1] | 026524-2940 | GASKET D28.9&24.3T2 |
93. | [3] | 139206-0400 | UNION NUT |
95. | [1] | 131041-0800 | GASKET |
96. | [6] | 134047-0000 | CAPSULE |
118. | [1] | 134496-2400 | POINTER |
119. | [2] | 010206-1240 | HEX-SOCKET-HEAD CAP SCREW M6P1L12 |
121. | [2] | 014110-6440 | LOCKING WASHER |
142. | [1] | 029731-0430 | EYE BOLT |
152. | [1] | 132424-0620 | OVER FLOW VALVE |
162. | [1] | 029731-4680 | EYE BOLT |
250. | [1] | 134311-0420 | PLATE |
250/2. | [1] | 139642-0100 | PACKING RING |
251. | [4] | 139006-3101 | BLEEDER SCREW |
252. | [4] | 016430-0070 | BACKUP RING |
253. | [4] | 016500-0750 | O-RING |
254. | [1] | 134400-0500 | ADAPTOR |
Cross reference number
Zexel num
Bosch num
Firm num
Name
106060-7590
9 410 614 349
1670196700 NISSAN-DIESEL
FUEL-INJECTION PUMP
* Q
* Q
Information:
Introduction
This document provides information about fuel degradation, which can cause a flow restriction of fuel through the fuel system and premature plugging of the filters. These guidelines should be used to guide service personnel in the use of fuels within diesel engines and covers recognized tests in identifying degredated fuels and best practices in storing fuels.This document can be used as a guide, but it does not provide all the information on all practices and procedures for degraded fuels. This document does not provide all the information for best practices for storing and handling fuels. Refer to Caterpillar Commercial Diesel Engine Fluids Recommendations, SEBU6251 for more information.The Thermal Stability and Oxidation Stability of Fuel
Diesel fuels can deteriorate rapidly for a variety of reasons. When the fuel is stressed and stored for long intervals, degradation and oxidation can occur. Degradation and oxidation are complex chemical changes. These changes lead to deposits or sediment from certain hydrocarbons and traces of naturally occurring nitrogen and sulfur containing compounds in the fuel. Fuel composition and environmental factors influences the process.Diesel fuel is being used as a coolant for high pressure fuel injection systems with high temperature fuel wetted walls. This can stress the fuel in the fuel system. The thermal stress and an increase in recirculation fuel temperature is often responsible for fuel degradation and the formation of gums, resins and sediment, which can cause fuel flow restriction through fuel filters and fuel injection systems.Certain products are often left with the fuel in the fuel system for long periods. This exposes the fuel to oxygen. Complex reactions between the oxygen and the fuel components can generate fuel particulates. The particulates in the fuel system can turn into the sludge that is found in fuel tanks, fuel lines and the fuel filters. This will deteriorate the performance of the fuel system. Degradation also leads to a plugged fuel filter, a restriction to the fuel line and deposit formation in the fuel injection nozzle.Biodiesel and blends of biodiesel have poor thermal stability and oxidation stability compared to petroleum distillate diesel fuels. The use of these biodiesels and blends of biodiesel can accelerate the problems that are addressed in this Special Instruction. Using biodiesel blends above the maximum level approved for the engine is not recommended.Thermal and oxidative degradation of diesel fuel can result in a darkening of fuel color. Fuel color is not necessarily an indication of excessive degradation that will lead to the problems outlined in thisSpecial Instruction, but can be an indicator or degradation If concerns arise about the stability of darkened fuel, the thermal oxidation and oxidative stability tests should be run to confirm actual degradation.Thermal Oxidation Stability
Caterpillar recommends the use of the Accelerated Fuel Oil Stability Test (ASTM D6468). This is a test method that determines the instability of a fuel subjected to a thermal degradation process. This test exposes the fuel to actual operating conditions when the fuel cools the injectors during the engine operation.The test is performed by
This document provides information about fuel degradation, which can cause a flow restriction of fuel through the fuel system and premature plugging of the filters. These guidelines should be used to guide service personnel in the use of fuels within diesel engines and covers recognized tests in identifying degredated fuels and best practices in storing fuels.This document can be used as a guide, but it does not provide all the information on all practices and procedures for degraded fuels. This document does not provide all the information for best practices for storing and handling fuels. Refer to Caterpillar Commercial Diesel Engine Fluids Recommendations, SEBU6251 for more information.The Thermal Stability and Oxidation Stability of Fuel
Diesel fuels can deteriorate rapidly for a variety of reasons. When the fuel is stressed and stored for long intervals, degradation and oxidation can occur. Degradation and oxidation are complex chemical changes. These changes lead to deposits or sediment from certain hydrocarbons and traces of naturally occurring nitrogen and sulfur containing compounds in the fuel. Fuel composition and environmental factors influences the process.Diesel fuel is being used as a coolant for high pressure fuel injection systems with high temperature fuel wetted walls. This can stress the fuel in the fuel system. The thermal stress and an increase in recirculation fuel temperature is often responsible for fuel degradation and the formation of gums, resins and sediment, which can cause fuel flow restriction through fuel filters and fuel injection systems.Certain products are often left with the fuel in the fuel system for long periods. This exposes the fuel to oxygen. Complex reactions between the oxygen and the fuel components can generate fuel particulates. The particulates in the fuel system can turn into the sludge that is found in fuel tanks, fuel lines and the fuel filters. This will deteriorate the performance of the fuel system. Degradation also leads to a plugged fuel filter, a restriction to the fuel line and deposit formation in the fuel injection nozzle.Biodiesel and blends of biodiesel have poor thermal stability and oxidation stability compared to petroleum distillate diesel fuels. The use of these biodiesels and blends of biodiesel can accelerate the problems that are addressed in this Special Instruction. Using biodiesel blends above the maximum level approved for the engine is not recommended.Thermal and oxidative degradation of diesel fuel can result in a darkening of fuel color. Fuel color is not necessarily an indication of excessive degradation that will lead to the problems outlined in thisSpecial Instruction, but can be an indicator or degradation If concerns arise about the stability of darkened fuel, the thermal oxidation and oxidative stability tests should be run to confirm actual degradation.Thermal Oxidation Stability
Caterpillar recommends the use of the Accelerated Fuel Oil Stability Test (ASTM D6468). This is a test method that determines the instability of a fuel subjected to a thermal degradation process. This test exposes the fuel to actual operating conditions when the fuel cools the injectors during the engine operation.The test is performed by
Have questions with 106060-7590?
Group cross 106060-7590 ZEXEL
Nissan-Diesel
Mitsubishi
Mitsubishi
Nissan-Diesel
106060-7590
9 410 614 349
1670196700
FUEL-INJECTION PUMP