Information fuel-injection pump
BOSCH
9 410 617 250
9410617250
ZEXEL
104268-3020
1042683020
NIIGATA-TEKKOU
7BA47010A
7ba47010a

Rating:
Components :
0. | INJECTION-PUMP ASSEMBLY | 104268-3020 |
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] | 141055-8300 | PUMP HOUSING |
5. | [1] | 141189-5220 | PLUNGER-AND-BARREL ASSY |
12. | [1] | 141145-6521 | DELIVERY-VALVE ASSEMBLY |
12/1. | [1] | 141146-2300 | SEAT;D.V. |
12/2. | [1] | 141138-1800 | FITTING |
12/3. | [1] | 141142-9100 | VALVE BODY |
12/4. | [1] | 141144-0500 | COMPRESSION SPRING |
12/5. | [1] | 141113-3201 | SLOTTED WASHER |
12/6. | [1] | 141145-8400 | VALVE BODY |
12/7. | [1] | 141112-8701 | COILED SPRING |
12/8. | [1] | 141113-2003 | FILLER PIECE |
12/9. | [2] | 010235-2520 | HEX-SOCKET-HEAD CAP SCREW |
16. | [1] | 150508-3100 | BEARING PIN |
18. | [8] | 141124-5900 | HEX-SOCKET-HEAD CAP SCREW |
21. | [1] | 141119-4901 | FLANGE BUSHING |
22. | [8] | 141124-6000 | BLEEDER SCREW |
24. | [2] | 016421-0600 | BACKUP RING |
25. | [3] | 141485-1002 | O-RING |
40. | [1] | 141200-3620 | TAPPET |
44. | [1] | 141212-0300 | BEARING PIN |
50. | [1] | 141215-9000 | COMPRESSION SPRING |
51. | [1] | 141216-7120 | SLOTTED WASHER |
52. | [1] | 141217-9600 | SLOTTED WASHER |
54. | [1] | 141450-2100 | PLATE |
56/1. | [1] | 141209-5000 | PLATE |
56/1. | [1] | 141209-5100 | PLATE |
56/1. | [1] | 141209-5200 | PLATE |
56/1. | [1] | 141209-5300 | PLATE |
56/1. | [1] | 141209-5400 | PLATE |
56/1. | [1] | 141209-5500 | PLATE |
56/1. | [1] | 141209-5600 | PLATE |
59. | [1] | 141485-0602 | O-RING |
60. | [1] | 141291-5200 | CONTROL RACK |
68. | [1] | 141405-4900 | ADAPTOR |
69. | [1] | 026520-2440 | GASKET D23.9&20.2T1 |
77. | [1] | 141292-3700 | CONTROL SLEEVE |
81. | [1] | 141245-2000 | POINTER |
82/1. | [0] | 023500-6210 | PLAIN WASHER D11&6.4T1.5 |
82/1. | [0] | 029300-6010 | PLAIN WASHER D11&6.4T0.8 |
82/1. | [0] | 029300-6020 | PLAIN WASHER D11&6.4T0.35 |
83. | [1] | 020006-1440 | BLEEDER SCREW M6P1L14 |
93. | [2] | 141402-3120 | EYE BOLT |
93. | [2] | 141402-3120 | EYE BOLT |
110. | [1] | 141418-2600 | SET OF NUTS |
111. | [1] | 141403-2000 | GASKET |
160. | [1] | 141418-2600 | SET OF NUTS |
161. | [1] | 141403-2000 | GASKET |
167. | [1] | 150948-0000 | INLET UNION |
168. | [1] | 150949-0100 | EYE BOLT |
169. | [2] | 150521-0800 | GASKET |
Include in #1:
101401-9120
as _
Include in #2:
104268-3020
as INJECTION-PUMP ASSEMBLY
Cross reference number
Zexel num
Bosch num
Firm num
Name
Information:
Retrofit DPF (Diesel Particulate Filter) System
This Retrofit DPF (Diesel Particulate Filter) System must have the following components:
Diesel Particulate Filter (DPF)
Silencer and/or housing
Clamp and gasket
Flow direction label
Engine tagEngine exhaust flows into the Retrofit DPF System reactor housing through the exhaust inlet. Exhaust flows through the DPF.Non-Unidirectional Requirements
(r) Directional Requirements for Diesel Emission Control Strategies
Every diesel emission control strategy must be installed as designed and specified by the manufacturer. For a diesel emission control strategy comprised of multiple exhaust aftertreatment parts, each aftertreatment part must be installed in the proper order relative to the exhaust flow.
Diesel emission control strategies installed between February 19, 2009, and January 1, 2010.
(A) The diesel emission control strategy must indicate the proper direction of exhaust flow. This exhaust flow indicator will allow the end user or installer to see how to install the device properly.
Diesel emission control strategies installed on or after January 1, 2010.
(A) The proper direction for exhaust to flow through the aftertreatment part of the diesel emission control strategy is to be clearly indicated on the outside surface of the aftertreatment part. The exhaust flow indicator consists of an arrow imprinted on or affixed to the aftertreatment part. The indicator arrow is to be clearly visible and durable.
(B) The aftertreatment part must be constructed such that the part can only be installed into the diesel emission control strategy in one unique direction relative to the exhaust flow. The aftertreatment part cannot be installed in the reversed direction.
(C) A diesel emission control strategy not meeting these requirements may be installed after January 1, 2010, if the diesel emission controls strategy: (1) Has a date of manufacture no later than December 31, 2009, (2) Complies with (r)(1) and (r)(2) above and (3) Is installed no later than December 31 2011.
(D) Except for an aftertreatment part that reduces PM through a physical trapping mechanism, such as a diesel particulate filter, the applicant may request that the Executive Officer waives the requirements that an aftertreatment part indicates the flow direction and have unidirectional construction. In reviewing the request, the Executive Officer may consider all relevant information including, but not limited to, the symmetry of the aftertreatment part, potential for impaired performance as a result of different orientations relative to exhaust flow, and interaction with other parts.Diesel Particulate Filter Operation
The Cat DPF is a catalyzed diesel particulate filter that is designed to reduce emissions of particulate (smoke), carbon monoxide (CO) and hydrocarbons (HC), from diesel engines. Carbon monoxide and hydrocarbon reductions are achieved when the exhaust gases interact with the catalyst on the ceramic filter. The catalyst is impregnated on the walls of the ceramic substrate. As the exhaust gases come in contact with the catalyst, a chemical reaction takes place that oxidizes the gases. The oxidation process turns carbon monoxide into carbon dioxide, and hydrocarbons into water and carbon dioxide.Reduction of Emissions
The Cat DPF is a complete product for reducing carbon monoxide, hydrocarbons, and PM. The filter is catalyzed with a precious-metal catalyst. For CO
This Retrofit DPF (Diesel Particulate Filter) System must have the following components:
Diesel Particulate Filter (DPF)
Silencer and/or housing
Clamp and gasket
Flow direction label
Engine tagEngine exhaust flows into the Retrofit DPF System reactor housing through the exhaust inlet. Exhaust flows through the DPF.Non-Unidirectional Requirements
(r) Directional Requirements for Diesel Emission Control Strategies
Every diesel emission control strategy must be installed as designed and specified by the manufacturer. For a diesel emission control strategy comprised of multiple exhaust aftertreatment parts, each aftertreatment part must be installed in the proper order relative to the exhaust flow.
Diesel emission control strategies installed between February 19, 2009, and January 1, 2010.
(A) The diesel emission control strategy must indicate the proper direction of exhaust flow. This exhaust flow indicator will allow the end user or installer to see how to install the device properly.
Diesel emission control strategies installed on or after January 1, 2010.
(A) The proper direction for exhaust to flow through the aftertreatment part of the diesel emission control strategy is to be clearly indicated on the outside surface of the aftertreatment part. The exhaust flow indicator consists of an arrow imprinted on or affixed to the aftertreatment part. The indicator arrow is to be clearly visible and durable.
(B) The aftertreatment part must be constructed such that the part can only be installed into the diesel emission control strategy in one unique direction relative to the exhaust flow. The aftertreatment part cannot be installed in the reversed direction.
(C) A diesel emission control strategy not meeting these requirements may be installed after January 1, 2010, if the diesel emission controls strategy: (1) Has a date of manufacture no later than December 31, 2009, (2) Complies with (r)(1) and (r)(2) above and (3) Is installed no later than December 31 2011.
(D) Except for an aftertreatment part that reduces PM through a physical trapping mechanism, such as a diesel particulate filter, the applicant may request that the Executive Officer waives the requirements that an aftertreatment part indicates the flow direction and have unidirectional construction. In reviewing the request, the Executive Officer may consider all relevant information including, but not limited to, the symmetry of the aftertreatment part, potential for impaired performance as a result of different orientations relative to exhaust flow, and interaction with other parts.Diesel Particulate Filter Operation
The Cat DPF is a catalyzed diesel particulate filter that is designed to reduce emissions of particulate (smoke), carbon monoxide (CO) and hydrocarbons (HC), from diesel engines. Carbon monoxide and hydrocarbon reductions are achieved when the exhaust gases interact with the catalyst on the ceramic filter. The catalyst is impregnated on the walls of the ceramic substrate. As the exhaust gases come in contact with the catalyst, a chemical reaction takes place that oxidizes the gases. The oxidation process turns carbon monoxide into carbon dioxide, and hydrocarbons into water and carbon dioxide.Reduction of Emissions
The Cat DPF is a complete product for reducing carbon monoxide, hydrocarbons, and PM. The filter is catalyzed with a precious-metal catalyst. For CO