101495-3501 ZEXEL 9 400 614 535 BOSCH INJECTION-PUMP ASSEMBLY 9400614535 1014953501 6205711530


 

Information injection-pump assembly

BOSCH 9 400 614 535 9400614535
ZEXEL 101495-3501 1014953501
KOMATSU 6205711530 6205711530
101495-3501 INJECTION-PUMP ASSEMBLY
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Buy INJECTION-PUMP ASSEMBLY 101495-3501 zexel genuine, new aftermarket engine parts with delivery

Service parts 101495-3501 INJECTION-PUMP ASSEMBLY:

1. _
2. FUEL INJECTION PUMP 101049-4100
3. GOVERNOR 105400-9631
4. SUPPLY PUMP 105220-5960
5. AUTOM. ADVANCE MECHANIS
6. COUPLING PLATE
7. COUPLING PLATE
8. _
9. _
10. NOZZLE AND HOLDER ASSY 105119-4080
11. Nozzle and Holder
12. Open Pre:MPa(Kqf/cm2) 19.6{200}
13. NOZZLE-HOLDER 105048-4450
14. NOZZLE 105017-3460
15. NOZZLE SET

Include in #1:

101495-3501 as INJECTION-PUMP ASSEMBLY

Cross reference number

BOSCH 9 400 614 535 9400614535
ZEXEL 101495-3501 1014953501
KOMATSU 6205711530 6205711530


Zexel num
Bosch num
Firm num
Name
101495-3501 
9 400 614 535 
6205711530  KOMATSU
INJECTION-PUMP ASSEMBLY
S4D95LE-3 K 14BC INJECTION PUMP ASSY PE4A,5A, 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
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   1-2-4-3
Pre-stroke mm   3.2 3.15 3.25
Rack position
After adjusting injection quantity.
  R=A
Beginning of injection position
Drive side
  NO.1
Difference between angles 1
Cyl.1-2
deg.   90 89.5 90.5
Difference between angles 2
Cal 1-4
deg.   180 179.5 180.5
Difference between angles 3
Cal 1-3
deg.   270 269.5 270.5
Injection quantity adjustment
Adjusting point   A
Rack position   10.8
Pump speed r/min   1050 1050 1050
Average injection quantity mm3/st.   64 63 65
Max. variation between cylinders %   0 -2.5 2.5
Basic   *
Fixing the lever   *
Injection quantity adjustment_02
Adjusting point   -
Rack position   9.7+-0.5
Pump speed r/min   420 420 420
Average injection quantity mm3/st.   13.5 12.5 14.5
Max. variation between cylinders %   0 -15 15
Fixing the rack   *
Remarks
Adjust only variation between cylinders; adjust governor according to governor specifications.
 

Test data Ex:

Governor adjustment

Test data 101495-3501
N:Pump speed R:Rack position (mm) (1)Target notch: K (2)Tolerance for racks not indicated: +-0.05mm. (3)RACK CAP: R1
----------
K=(11) R1=(17.5)mm
----------

Speed control lever angle

Test data 101495-3501
F:Full speed I:Idle (1)Stopper bolt setting
----------

----------
a=(4deg)+-5deg b=(20deg)+-5deg

Stop lever angle

Test data 101495-3501
N:Pump normal S:Stop the pump. (1)Rack position = aa, speed = bb (stamp at delivery) (2)No return spring
----------
aa=1-0.5mm bb=0r/min
----------
a=27.5deg+-5deg b=(55deg)

0000001501 I/P WITH LOAD PLUNGER ADJ

Load plunger-equipped pump adjustment 1. Adjust the variation between cylinders and the injection quantity. 2. At Full point A, adjust the pre-stroke to the specified value. 3. After pre-stroke adjustment, reconfirm that the fuel injection quantity and the variation between cylinders is as specified.
----------

----------

Timing setting

Test data 101495-3501
(1)Pump vertical direction (2)Position of key groove at No 1 cylinder's beginning of injection (3)Stamp aligning marks on the pump housing flange. (4)After adjusting the injection quantity, adjust at rack position aa.
----------
aa=10.8mm
----------
a=58deg+-3deg b=2deg+-30min




Information:

This engine has an exhaust driven turbocharger to provide compacted air to the cylinders.The exhaust gases enter the turbine housing and are directed through the blades of a turbine wheel, causing the turbine wheel and a compressor wheel to rotate.Filtered inlet air from the air cleaner is drawn through the air inlet of the compressor housing by the rotating compressor wheel. The air is forced through the aftercooler to the inlet manifold of the engine and is compressed by action of the compressor impeller.When the intake air passes through and is compressed by the turbocharger, it becomes heated and becomes less dense. By directing air through the aftercooler located between the turbocharger and the inlet manifold, some of that heat is removed from the air. The aftercooler is a simple device resembling a small radiator core. Coolant from the engine passes through the core tubes and the compressed air is directed around the tubes. Since the temperature of the coolant is lower than the air, the air is cooled as it leaves the aftercooler. This means more air (oxygen) is available for combustion, resulting in more fuel being burned and more power produced.When engine load increases, more fuel is injected into the engine cylinders. The increased volume of exhaust gas causes the turbocharger turbine wheel and compressor impeller to rotate faster. The higher RPM of the impeller increases the quantity of inlet air. As the turbocharger provides additional inlet air, more fuel can be burned; hence more horsepower derived from the engine.The turbocharger is mounted to the engine exhaust manifold. All the exhaust gases from the diesel engine pass through the turbocharger.The turbocharger bearings are pressure-lubricated by engine oil. The oil enters the top of the center section and is directed through passages to lubricate the thrust bearing, sleeves and the journal bearings of the turbocharger. Oil leaves the turbocharger through a port in the bottom of the center section and is returned to the engine sump.
CROSS SECTION OF THE TURBOCHARGERMaximum turbocharger speed is determined by the rack setting, the high idle speed setting and the altitude at which the engine is operated. The high idle speed and the rack setting are not the same for all altitudes.
If the high idle speed or the rack setting is greater than specified for the altitude at which the engine is operated, damage to engine or turbocharger parts can result.
The fuel pump rack has been set by qualified personnel for a particular engine application. The governor housing and turbocharger are sealed to prevent unqualified personnel from tampering with the adjustments.The engine can be operated at a lower altitude than specified without danger of engine damage. In this situation the engine will perform at slightly less than maximum efficiency. When operated at a higher altitude, the rack setting and high idle speed setting must be changed.The principal cause of fouled valves, damaged bearings, worn piston rings and cylinder liners is the entrance of airborne foreign matter into the engine cylinders; therefore,

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