106671-6753 ZEXEL F 01G 09U 1F4 BOSCH INJECTION-PUMP ASSEMBLY f01g09u1f4 1066716753 1156035004


 

Information injection-pump assembly

BOSCH F 01G 09U 1F4 f01g09u1f4
ZEXEL 106671-6753 1066716753
ISUZU 1156035004 1156035004
106671-6753 INJECTION-PUMP ASSEMBLY
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Buy INJECTION-PUMP ASSEMBLY 106671-6753 zexel genuine, new aftermarket engine parts with delivery

Service parts 106671-6753 INJECTION-PUMP ASSEMBLY:

1. _
2. FUEL INJECTION PUMP 106067-6300
3. GOVERNOR 105407-8453
4. SUPPLY PUMP 105237-4421
5. AUTOM. ADVANCE MECHANIS 105681-6100
6. COUPLING PLATE 105664-2011
7. COUPLING PLATE
8. _
9. _
10. NOZZLE AND HOLDER ASSY 105110-8310
11. Nozzle and Holder
12. Open Pre:MPa(Kqf/cm2) 18.1(185)22.1(225)
13. NOZZLE-HOLDER 105041-2082
14. NOZZLE
15. NOZZLE SET 105019-2840

Include in #1:

106671-6753 as INJECTION-PUMP ASSEMBLY

Cross reference number

BOSCH F 01G 09U 1F4 f01g09u1f4
ZEXEL 106671-6753 1066716753
ISUZU 1156035004 1156035004


Zexel num
Bosch num
Firm num
Name
106671-6753 
F 01G 09U 1F4 
1156035004  ISUZU
INJECTION-PUMP ASSEMBLY
6HK1TQC K

Calibration Data:

Adjustment conditions
Test oil
1404 Test oil
  ISO4113 or {SAEJ967d}
Test oil temperature degC   40 40 45
Nozzle and nozzle holder   105780-8140
Bosch type code   EF8511/9A
Nozzle   105780-0000
Bosch type code   DN12SD12T
Nozzle holder   105780-2080
Bosch type code   EF8511/9
Opening pressure MPa   17.2
Opening pressure kgf/cm2   175
Injection pipe
Outer diameter - inner diameter - length (mm)
mm   8-3-600
Overflow valve   134424-4320
Overflow valve opening pressure kPa   255 221 289
Overflow valve opening pressure kgf/cm2   2.6 2.25 2.95
Tester oil delivery pressure kPa   255 255 255
Tester oil delivery pressure kgf/cm2   2.6 2.6 2.6
Direction of rotation (viewed from drive side)
Left
  L
Injection timing adjustment
Direction of rotation (viewed from drive side)
Left
  L
Injection order   1-5-3-6- 2-4
Pre-stroke mm   3.4 3.37 3.43
Beginning of injection position
Governor side
  NO.1
Difference between angles 1
Cal 1-5
deg.   60 59.75 60.25
Difference between angles 2
Cal 1-3
deg.   120 119.75 120.25
Difference between angles 3
Cal 1-6
deg.   180 179.75 180.25
Difference between angles 4
Cyl.1-2
deg.   240 239.75 240.25
Difference between angles 5
Cal 1-4
deg.   300 299.75 300.25
Injection quantity adjustment
Adjusting point   A
Rack position   10.7
Pump speed r/min   1150 1150 1150
Average injection quantity mm3/st.   97.5 96.5 98.5
Max. variation between cylinders %   0 -3 3
Basic   *
Fixing the lever   *
Boost pressure kPa   120 120
Boost pressure mmHg   900 900
Injection quantity adjustment_02
Adjusting point   C
Rack position   7.8+-0.5
Pump speed r/min   425 425 425
Average injection quantity mm3/st.   13.5 10.3 16.7
Max. variation between cylinders %   0 -15 15
Fixing the rack   *
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Remarks
Adjust only variation between cylinders; adjust governor according to governor specifications.
 
Injection quantity adjustment_03
Adjusting point   E
Rack position   10.9++
Pump speed r/min   100 100 100
Average injection quantity mm3/st.   125 115 135
Fixing the lever   *
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Rack limit   *
Boost compensator adjustment
Pump speed r/min   500 500 500
Rack position   R1-1.05
Boost pressure kPa   45.3 41.3 49.3
Boost pressure mmHg   340 310 370
Boost compensator adjustment_02
Pump speed r/min   500 500 500
Rack position   R1(10.7)
Boost pressure kPa   107 100.3 113.7
Boost pressure mmHg   800 750 850
Timer adjustment
Pump speed r/min   (N1+50)- -
Advance angle deg.   0 0 0
Remarks
Start
 
Timer adjustment_02
Pump speed r/min   N1(500)
Advance angle deg.   0 -0.5 0
Timer adjustment_03
Pump speed r/min   (670)+-2 5
Advance angle deg.   -2.5 -3 -2
Remarks
Finish
 

Test data Ex:

Governor adjustment

Test data 106671-6753
N:Pump speed R:Rack position (mm) (1)Target notch: K (2)Tolerance for racks not indicated: +-0.05mm. (3)Deliver with positive torque control spring not operating (4)RACK LIMIT (5)Boost compensator stroke: BCL (6)Main spring setting (7)Set idle sub-spring
----------
K=6 BCL=1.05+-0.1mm
----------

Speed control lever angle

Test data 106671-6753
F:Full speed I:Idle S:Stop (1)Use the hole at R = aa (2)Stopper bolt setting
----------
aa=70mm
----------
a=7deg+-5deg b=31deg+-3deg c=30deg+-5deg

Stop lever angle

Test data 106671-6753
N:Pump normal S:Stop the pump. (1)Normal (2)Use the hole at R = aa (3)Rack position bb, pump speed cc (seal at delivery)
----------
aa=23mm bb=1-0.5mm cc=0r/min
----------
a=15deg+-5deg b=70deg+-5deg

0000001501 TAMPER PROOF

Test data 106671-6753
Tamperproofing-equipped boost compensator cover installation procedure (A) After adjusting the boost compensator, tighten the bolts to remove the heads. (1)Before adjusting the governor and the boost compensator, tighten the screw to the specified torque. (Tightening torque T = T1 maximum) (2)After adjusting the governor and the boost compensator, tighten to the specified torque to break off the bolt heads. (Tightening torque T = T2)
----------
T1=2.5N-m(0.25kgf-m) T2=2.9~4.4N-m(0.3~0.45kgf-m)
----------

Timing setting

Test data 106671-6753
(1)Pump vertical direction (2)Positions of coupling's threaded installation holes at No 1 cylinder's beginning of injection (3)B.T.D.C.: aa (4)-
----------
aa=12deg
----------
a=(50deg)




Information:

General Recommendations and Contamination Control Guidelines for Fuels
Follow all applicable industry standards and all applicable governmental, environmental, and safety guidelines, practices, regulations, and mandates.Note: These general recommendations and guidelines concerning maintenance and care of fuel and fuel storage systems are not intended to be all inclusive. Discuss proper fuel safety and health, handling, and maintenance practices with your fuel supplier. Use of these general recommendations and guidelines does not lessen the engine owners and/or fuel supplier responsibility to follow all industry standard practices for fuel storage and for fuel handling.Note: Where recommendations for draining water and/or sediment and/or debris are stated, dispose of this waste according to all applicable regulations and mandates.Note: Caterpillar filters are designed and built to provide optimal performance and protection of the fuel system components.Clean fuels, as detailed below, are strongly recommended to allow optimal performance and durability of the fuel systems and to reduce power loss, failures, and related down time of engines.Fuels of “ISO 18/16/13” cleanliness levels or cleaner as dispensed into the engine or machine fuel tank should be used. Reduced power, failures and related downtime can result if clean fuels are not used. Fuels of “ISO 18/16/13” are particularly important for new fuel system designs such as Common Rail injection systems and unit injection systems. These new injection system designs utilize higher fuel pressures and are designed with tight clearances between moving parts to meet required stringent emissions regulations. Peak injection pressures in current fuel injection systems may exceed 30,000 psi. Clearances in these systems are less than 5 µm. As a result, particle contaminants as small as 4 µm can cause scoring and scratching of internal pump and injector surfaces and of injector nozzles.Water in the fuel causes cavitation, corrosion of fuel system parts, and provides an environment where microbial growth in the fuel can flourish. Other sources of fuel contamination are soaps, gels, or other compounds that may result from undesirable chemical interactions in the fuels. Gels and other insoluble compounds can also form in biodiesel fuel at low temperatures or if biodiesel is stored for extended periods. An indication of microbial contamination, detrimental fuel additives interactions, or cold temperature gel is very rapid filter plugging of bulk fuel filters or machine fuel filters.To reduce downtime due to contamination, follow these fuel maintenance guidelines in addition to the recommendations given in the "Contamination Control" Chapter in this Special Publication:
Use high-quality fuels per recommended and required specifications (refer to the “Fuel” chapter in this Special Publication).
Do not add new engine oil, waste engine oil or any oil product to the fuel unless the engine is designed and certified to burn diesel engine oil (for example Caterpillar ORS designed for large engines). Engine oils may raise the sulfur level of the fuel and may cause fouling of the fuel system and loss of performance. Engine oils in fuels can also reduce the maintenance intervals of aftertreatment devices in Tier 4 machines.
Use recommended Cat filtration products, including Cat Advanced Efficiency Fuel

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