101605-9970 ZEXEL 9 400 612 498 BOSCH INJECTION-PUMP ASSEMBLY 9400612498 1016059970 3436104040


 

Information injection-pump assembly

BOSCH 9 400 612 498 9400612498
ZEXEL 101605-9970 1016059970
MITSUBISHI-HEAV 3436104040 3436104040
101605-9970 INJECTION-PUMP ASSEMBLY
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Buy INJECTION-PUMP ASSEMBLY 101605-9970 zexel genuine, new aftermarket engine parts with delivery

Service parts 101605-9970 INJECTION-PUMP ASSEMBLY:

1. _
2. FUEL INJECTION PUMP 101061-8730
3. GOVERNOR 105419-3750
4. SUPPLY PUMP 105220-7090
5. AUTOM. ADVANCE MECHANIS
6. COUPLING PLATE
7. COUPLING PLATE
8. _
9. _
10. NOZZLE AND HOLDER ASSY 105118-4620
11. Nozzle and Holder 34361-01010
12. Open Pre:MPa(Kqf/cm2) 21.6{220}
13. NOZZLE-HOLDER 105048-3330
14. NOZZLE 105017-0530
15. NOZZLE SET

Include in #1:

101605-9970 as INJECTION-PUMP ASSEMBLY

Include in #2:

Cross reference number

BOSCH 9 400 612 498 9400612498
ZEXEL 101605-9970 1016059970
MITSUBISHI-HEAV 3436104040 3436104040


Zexel num
Bosch num
Firm num
Name
101605-9970 
9 400 612 498 
3436104040  MITSUBISHI-HEAV
INJECTION-PUMP ASSEMBLY
S6K-T K 14BF INJECTION PUMP ASSY PE6AD PE

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   6-2-600
Overflow valve   131424-5720
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   157 157 157
Tester oil delivery pressure kgf/cm2   1.6 1.6 1.6
Direction of rotation (viewed from drive side)
Right
  R
Injection timing adjustment
Direction of rotation (viewed from drive side)
Right
  R
Injection order   1-5-3-6- 2-4
Pre-stroke mm   3.2 3.15 3.25
Beginning of injection position
Drive side
  NO.1
Difference between angles 1
Cal 1-5
deg.   60 59.5 60.5
Difference between angles 2
Cal 1-3
deg.   120 119.5 120.5
Difference between angles 3
Cal 1-6
deg.   180 179.5 180.5
Difference between angles 4
Cyl.1-2
deg.   240 239.5 240.5
Difference between angles 5
Cal 1-4
deg.   300 299.5 300.5
Injection quantity adjustment
Adjusting point   A
Rack position   9.7
Pump speed r/min   800 800 800
Average injection quantity mm3/st.   81.5 80.5 82.5
Max. variation between cylinders %   0 -2.5 2.5
Basic   *
Fixing the lever   *
Injection quantity adjustment_02
Adjusting point   C
Rack position   6.1+-0.5
Pump speed r/min   450 450 450
Average injection quantity mm3/st.   11 9.7 12.3
Max. variation between cylinders %   0 -14 14
Fixing the rack   *
Injection quantity adjustment_03
Adjusting point   D
Rack position   -
Pump speed r/min   100 100 100
Average injection quantity mm3/st.   95 95 105
Fixing the lever   *
Rack limit   *

Test data Ex:

Governor adjustment

Test data 101605-9970
N:Pump speed R:Rack position (mm) (1)Target notch: K (2)Tolerance for racks not indicated: +-0.05mm. (3)RACK LIMIT (4)Set idle sub-spring (5)Main spring setting (6)Rack difference between N = N1 and N = N2
----------
K=14 N1=800r/min N2=400r/min
----------

Speed control lever angle

Test data 101605-9970
F:Full speed I:Idle S:Stop
----------

----------
a=1deg+-5deg b=12deg+-5deg c=32deg+-3deg

Stop lever angle

Test data 101605-9970
N:Pump normal S:Stop the pump. (1)Normal (2)Hold the boss against the stop side
----------

----------
a=53deg+-5deg b=26.5deg+-5deg c=(11deg)

Timing setting

Test data 101605-9970
(1)Pump vertical direction (2)Position of camshaft's key groove at No 1 cylinder's beginning of injection (3)- (4)-
----------

----------
a=(50deg)




Information:

Air-to-air aftercooling systems are simple, reliable and easy to maintain and provide for one or more benefits.* Improved fuel consumption* Lower emissions* Increased powerOperation of ATAAC
Heated compressed air from the engine turbocharger is conveyed to an air-to-air aftercooler that is positioned in front of the engine radiator. The combined effect of the engine fan and ram air moves cooled air through the system to reduce the turbocharged air temperature before it enters the engine intake manifold.Lower intake air temperature allows more air to enter the cylinder, resulting in more complete fuel combustion and reduced exhaust emissions.Air-to-air aftercoolers can achieve charge air temperatures lower than water-to-air systems for additional efficiency.
To maintain an adequate water pump cavitation temperature for efficient water pump performance in an Air-to-Air aftercooled engine, Caterpillar recommends that the coolant mix contain a minimum of 30% Caterpillar Antifreeze, GM-6038M or equivalent. Only use a greater concentration (above 30%) of antifreeze as needed for anticipated outside temperatures.Ethylene glycol raises the boiling point of water.Do not exceed a coolant mixture of 60% ethylene glycol to water since a concentration above 60% ethylene glycol will reduce the engine's freeze protection and increase the possibility of deposit formation in the cooling system.Downtherm 209 Full-Fill coolant cannot be substituted for ethylene glycol, due to its inability to raise the water pump cavitation temperature. Downtherm 209 Full-Fill coolant lowers the boiling point of water.
Air Intake System
Never run the engine without an air cleaner installed or with a damaged air cleaner. Dirt will enter the engine and cause premature wear and damage to engine components.Service the air cleaner at regular intervals as determined by the operating environmental dust conditions. Check the air cleaner service indicator (if equipped) daily.As the air cleaner element becomes plugged, the difference of air pressure between the inlet side (dirty side) and the engine side (clean side) will increase. Service the air cleaners regularly or when the air cleaner service indicator diaphragm enters the red zone or the red piston locks in the visible position.Inspect the air intake hoses, elbows and gaskets for cracks or damage, replace as needed. Check for loose clamps, tighten as needed.Check the precleaner (if equipped) daily for accumulation of dust and debris.The Caterpillar air cleaner element may be cleaned up to six times, but must be replaced annually. The element when cleaned, should be thoroughly checked for rips and tears in the filter material and for gasket damage.Winter Fronts
Caterpillar discourages the use of winter fronts or other air flow restriction devices mounted in front of radiators with air-to-air aftercooled engines. Air flow restriction can cause higher exhaust temperatures, power loss, excessive fan usage, a reduction in fuel economy and possible engine damage.If a winter front must be used, then it should have a permanent circular or diamond-shaped opening directly in line with the fan hub and must have a minimum opening dimension of at least 120 sq. in. (770 sq. cm).A centered opening, versus a side or edge winter front opening is specified to provide

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Group cross 101605-9970 ZEXEL

Mitsubishi-Heav 

9 400 615 395 
3436104020 
INJECTION-PUMP ASSEMBLY
S6K-T
9 400 615 396 
3436104030 
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S6K
9 400 615 397 
3436104050 
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S6K
9 400 615 398 
3436104060 
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S6K-T
9 400 612 114 
3436103090 
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S6K-T

Daewoo 

9 400 615 399 
 
INJECTION-PUMP ASSEMBLY
DB58
9 400 611 259 
 
INJECTION-PUMP ASSEMBLY
DB58NA

Mitsubishi-Heav 

101605-9970  
9 400 612 498 
3436104040 
INJECTION-PUMP ASSEMBLY
S6K-T
9 400 615 400 
3436104070 
INJECTION-PUMP ASSEMBLY
S6K-T
9 400 611 701 
3436104080 
INJECTION-PUMP ASSEMBLY
S6K-T
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