101605-3590 ZEXEL 9 400 610 215 BOSCH INJECTION-PUMP ASSEMBLY 9400610215 1016053590 6136721460


 

Information injection-pump assembly

BOSCH 9 400 610 215 9400610215
ZEXEL 101605-3590 1016053590
KOMATSU 6136721460 6136721460
101605-3590 INJECTION-PUMP ASSEMBLY
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Buy INJECTION-PUMP ASSEMBLY 101605-3590 zexel genuine, new aftermarket engine parts with delivery

Service parts 101605-3590 INJECTION-PUMP ASSEMBLY:

1. _
2. FUEL INJECTION PUMP 101060-2470
3. GOVERNOR 105410-6280
4. SUPPLY PUMP 105210-4570
5. AUTOM. ADVANCE MECHANIS
6. COUPLING PLATE 105661-0371
7. COUPLING PLATE
8. _
9. _
10. NOZZLE AND HOLDER ASSY 105100-6440
11. Nozzle and Holder 6137-12-3200
12. Open Pre:MPa(Kqf/cm2) 22.1{225}
13. NOZZLE-HOLDER 105031-4480
14. NOZZLE 105015-6130
15. NOZZLE SET

Include in #1:

101605-3590 as INJECTION-PUMP ASSEMBLY

Cross reference number

BOSCH 9 400 610 215 9400610215
ZEXEL 101605-3590 1016053590
KOMATSU 6136721460 6136721460


Zexel num
Bosch num
Firm num
Name
101605-3590 
9 400 610 215 
6136721460  KOMATSU
INJECTION-PUMP ASSEMBLY
6D105 * K 14BE PE6A 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   1-5-3-6- 2-4
Pre-stroke mm   3.3 3.25 3.35
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   7.6
Pump speed r/min   1175 1175 1175
Average injection quantity mm3/st.   31.9 30.9 32.9
Max. variation between cylinders %   0 -2 2
Basic   *
Fixing the lever   *
Injection quantity adjustment_02
Adjusting point   B
Rack position   8+-0.5
Pump speed r/min   350 350 350
Average injection quantity mm3/st.   9.5 8.5 10.5
Max. variation between cylinders %   0 -10 10
Fixing the rack   *

Test data Ex:

Governor adjustment

Test data 101605-3590
N:Pump speed R:Rack position (mm) (1)Target notch: K (2)RACK LIMIT: RAL (3)Rack difference between N = N1 and N = N2 (4)Rack difference between N = N3 and N = N4 (5)Rack difference between N = N5 and N = N6. (6)Rack difference between N = N7 and N = N8
----------
K=14 RAL=17+-0.2mm N1=1175r/min N2=950r/min N3=1175r/min N4=750r/min N5=1175r/min N6=600r/min N7=1175r/min N8=550r/min
----------

Speed control lever angle

Test data 101605-3590
F:Full speed I:Idle S:Stop
----------

----------
a=14deg+-5deg b=23deg+-5deg c=32deg+-3deg

Timing setting

Test data 101605-3590
(1)Pump vertical direction (2)Coupling's key groove position at No 1 cylinder's beginning of injection (3)- (4)-
----------

----------
a=(0deg)




Information:

The troubleshooting chart provides a definite sequence to be followed for a logical procedure to determine the frequency and amplitude of vibration so that the source of the vibration can be located and corrected.1. The customer must be asked questions to determine whether his complaint is valid, or whether his diagnosis of the actual problem is correct.Some of the questions that must be asked are as follows: a. What components are vibrating?b. In what speed range does this vibration become excessive?c. Does clutch operation affect the vibration?d. What is the history of the problem?2. Run the engine through the idle speed range and note all vibrating components. Look for any loose or broken mounts, brackets, and fasteners. Repair and tighten any fixtures.3. Check idle speed range with clutch disengaged. If vibrations subside, there is a balance problem with the clutch disc. The clutch disc must be repaired or replaced.4. Further analysis requires the use of a vibration instrument. Any instrument which can accurately measure the displacement of the vibration (usually in mils-inch/1000) and the frequency (cycles per second) will be sufficient. A vibration instrument such as the IRD Mechanalysis Model 320 or an equivalent instrument can be used to analyze vibration.5. Measure vibration of cab components which have the objectionable vibration.Run engine slowly through the speed range and measure vibration with the instrument filter OUT. When peak amplitudes are found, run the engine at the speeds they occur and with the instrument filter IN, find the frequency of the vibration.If the frequency of vibration is 1/2 times of engine rpm (1/2 order), the vibration is caused by a cylinder misfiring. This must be corrected before further vibration analysis is made.If the frequency of vibration is 3 times engine rpm, no corrective action can be taken on the engine because this is the firing frequency of the 3406 engine. The problem is in the cab or chassis resonance.If frequency is some order other than 1/2 or 3rd, then further measurements must be made on the engine.6. Measurements taken on the engine must be made perpendicular to the crankshaft at the front and, rear of the engine in vertical and horizontal directions.7. Record all vibrations over 4.0 mils and the engine rpm at which it occurs (100 rpm intervals are sufficient) with instrument filter OUT. Note any sudden increase and decrease in amplitudes. These occur in resonant speed ranges.If no amplitudes exceed 4.0 mils, the engine is within Caterpillar Specifications.If amplitudes exceed 4.0 mils, the vibrations must be measured with the instrument filter IN to obtain the frequency of the vibrations.8. Run the engine at high idle. With the instrument filter IN, check the frequency range and record any amplitudes over 4.0 mils and the corresponding frequency. Analysis of vibrations for the possible causes is done by identifying the frequency of the vibration and where on the engine it is the greatest magnitude. Make reference to Special Instruction, Troubleshooting Engine Vibration In Vehicular Equipment, Form No. SEHS7914 for additional information

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