104749-6870 ZEXEL INJECTION-PUMP ASSEMBLY Calibration Data 1047496870 8944593780


 

Information injection-pump assembly

ZEXEL 104749-6870 1047496870
ISUZU 8944593780 8944593780
104749-6870 INJECTION-PUMP ASSEMBLY
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Cross reference number

ZEXEL 104749-6870 1047496870
ISUZU 8944593780 8944593780


Zexel num
Bosch num
Firm num
Name
104749-6870 
104749-5300 
 
8944593780  ISUZU
INJECTION-PUMP ASSEMBLY
4FE1 *

Calibration Data:

Adjustment conditions
Test oil
1404 Test oil
  ISO4113orSAEJ967d
Test oil temperature degC   45 45 50
Nozzle   105000-2010
Bosch type code   NP-DN12SD12TT
Nozzle holder   105780-2080
Opening pressure MPa   14.7 14.7 15.19
Opening pressure kgf/cm2   150 150 155
Injection pipe
Inside diameter - outside diameter - length (mm)
mm   2-6-840
Transfer pump pressure kPa   20 20 20
Transfer pump pressure kgf/cm2   0.2 0.2 0.2
Direction of rotation (viewed from drive side)
Right
  R
Injection timing adjustment
Pump speed r/min   700 700 700
Boost pressure kPa   16 14.7 17.3
Boost pressure mmHg   120 110 130
Average injection quantity mm3/st.   28 27.5 28.5
Basic   *
Oil temperature degC   50 48 52
Remarks
CBS
 
Injection timing adjustment_02
Pump speed r/min   1000 1000 1000
Boost pressure kPa   40 38.7 41.3
Boost pressure mmHg   300 290 310
Average injection quantity mm3/st.   31.4 30.9 31.9
Difference in delivery mm3/st.   2.5
Basic   *
Oil temperature degC   50 48 52
Remarks
Full
 
Injection timing adjustment_03
Pump speed r/min   600 600 600
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Average injection quantity mm3/st.   25.9 23.9 27.9
Oil temperature degC   50 48 52
Injection timing adjustment_04
Pump speed r/min   700 700 700
Boost pressure kPa   16 14.7 17.3
Boost pressure mmHg   120 110 130
Average injection quantity mm3/st.   28 27 29
Basic   *
Oil temperature degC   50 48 52
Injection timing adjustment_05
Pump speed r/min   1000 1000 1000
Boost pressure kPa   40 38.7 41.3
Boost pressure mmHg   300 290 310
Average injection quantity mm3/st.   31.4 30.4 32.4
Difference in delivery mm3/st.   2.5
Basic   *
Oil temperature degC   50 48 52
Injection quantity adjustment
Pump speed r/min   1500 1500 1500
Boost pressure kPa   40 38.7 41.3
Boost pressure mmHg   300 290 310
Average injection quantity mm3/st.   7.7 4.7 10.7
Difference in delivery mm3/st.   3
Basic   *
Oil temperature degC   50 48 52
Injection quantity adjustment_02
Pump speed r/min   1550 1550 1550
Boost pressure kPa   40 38.7 41.3
Boost pressure mmHg   300 290 310
Average injection quantity mm3/st.   3
Oil temperature degC   50 48 52
Injection quantity adjustment_03
Pump speed r/min   1500 1500 1500
Boost pressure kPa   40 38.7 41.3
Boost pressure mmHg   300 290 310
Average injection quantity mm3/st.   7.7 4.7 10.7
Difference in delivery mm3/st.   3
Oil temperature degC   50 48 52
Governor adjustment
Pump speed r/min   375 375 375
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Average injection quantity mm3/st.   6.8 4.8 8.8
Difference in delivery mm3/st.   2
Basic   *
Oil temperature degC   48 46 50
Governor adjustment_02
Pump speed r/min   375 375 375
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Average injection quantity mm3/st.   6.8 4.8 8.8
Difference in delivery mm3/st.   2
Oil temperature degC   48 46 50
Timer adjustment
Pump speed r/min   100 100 100
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Average injection quantity mm3/st.   50 50 57
Basic   *
Oil temperature degC   48 46 50
Remarks
Full
 
Timer adjustment_02
Pump speed r/min   100 100 100
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Average injection quantity mm3/st.   50 50 57
Oil temperature degC   48 46 50
Speed control lever angle
Pump speed r/min   375 375 375
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Average injection quantity mm3/st.   0 0 0
Oil temperature degC   48 46 50
Remarks
Magnet OFF at idling position
 
0000000901
Pump speed r/min   1000 1000 1000
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Overflow quantity cm3/min   360 230 490
Oil temperature degC   50 48 52
Stop lever angle
Pump speed r/min   1000 1000 1000
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Pressure kPa   392 372 412
Pressure kgf/cm2   4 3.8 4.2
Basic   *
Oil temperature degC   50 48 52
Stop lever angle_02
Pump speed r/min   1000 1000 1000
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Pressure kPa   392 372 412
Pressure kgf/cm2   4 3.8 4.2
Basic   *
Oil temperature degC   50 48 52
Stop lever angle_03
Pump speed r/min   1400 1400 1400
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Pressure kPa   500 471 529
Pressure kgf/cm2   5.1 4.8 5.4
Oil temperature degC   50 48 52
0000001101
Pump speed r/min   1000 1000 1000
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Timer stroke mm   1.1 0.9 1.3
Basic   *
Oil temperature degC   50 48 52
_02
Pump speed r/min   850 750 950
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Timer stroke mm   0.5 0.5 0.5
Oil temperature degC   50 48 52
_03
Pump speed r/min   1000 1000 1000
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Timer stroke mm   1.1 0.9 1.3
Basic   *
Oil temperature degC   50 48 52
_04
Pump speed r/min   1400 1400 1400
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Timer stroke mm   2.9 2.6 3.2
Oil temperature degC   50 48 52
_05
Pump speed r/min   1500 1500 1500
Boost pressure kPa   0 0 0
Boost pressure mmHg   0 0 0
Timer stroke mm   3.3 3 3.7
Oil temperature degC   50 48 52
0000001201
Max. applied voltage V   8 8 8
Test voltage V   13 12 14
Timing setting
K dimension mm   3.3 3.2 3.4
KF dimension mm   5.8 5.7 5.9
MS dimension mm   1.8 1.7 1.9
BCS stroke mm   1.4 1.2 1.6
Control lever angle alpha deg.   25 21 29
Control lever angle beta deg.   46.5 41.5 51.5




Information:

Determination Of Overhaul Timing
Generally, the engine needs an overhaul when the compression pressure of the engine becomes low, and the amounts of engine oil consumption and blow-by gas increase.Reduced power output, increased fuel consumption, low oil pressure, difficult in starting, and increased operating noise are also signs that suggest the need for an overhaul; however, since these problems can be caused by various factors, they do not serve as reliable criteria for determining the need for an overhaul.Reduced compression pressure manifests a variety of symptoms, thus making it difficult to accurately determine when the engine needs an overhaul. The following shows typical problems caused by reduced compression pressure.(1) Decreased output power(2) Increased fuel consumption(3) Increased engine oil consumption(4) Increased blow-by gas from breather due to leakage of combustion gas through worn cylinder liners and piston rings(5) Increased gas leakage due to poor seating of inlet and exhaust valves(6) Difficulty in starting(7) Increased noise from engine parts(8) Abnormal exhaust color after warm-up operationThe engine can exhibit these conditions in various combinations.Some of these problems are directly caused by worn engine parts, while others are not.Phenomena described in (2) and (6) can also result from improper injection volume, incorrect fuel injection timing, worn plungers, defective nozzles, and faulty conditions of electrical devices such as battery, starter and alternator.The most valid reason to overhaul an engine is a decrease in the compression pressure due to worn cylinder liners and pistons, as described in (4), and once this is determined, other symptoms should be taken into consideration in order to make the final judgement of whether the engine needs an overhaul.Measurement of Compression Pressure
Preparation For Inspection
Check the following before inspection.(1) Make sure that the engine oil, air cleaner, starter, battery, etc. are in normal operating condition.
Measurement of compression pressureInspection
(1) Move the control lever to the Stop position.(2) Remove the glow plugs from all cylinders, and attach the gage adapter and compression gage to the cylinder to be tested. (3) Crank the engine with the starter, and read the compression gage indication when the indication stabilizes.(4) If the measured compression pressure is lower than the limit, consider overhauling the engine.
(a) Measure the compression pressure in all cylinders.(b) As compression pressure varies with the engine speed, measure the engine speed at the same time.
Measure the compression pressure while the engine is running at 150 to 200 min-1. The oil and coolant temperatures should be between 20 and 30 °C [68 and 86°F].
(a) Measure the compression pressure at regular intervals to keep the record of changes in compression pressure.(b) Compression pressure will be slightly higher when the engine is new or immediately after an overhaul due to tight clearances of piston rings and valve seats, but it decreases to the standard level after the parts break in.

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