Information injection-pump assembly
ZEXEL
101441-9271
1014419271
NISSAN-DIESEL
1679090173
1679090173

Rating:
Service parts 101441-9271 INJECTION-PUMP ASSEMBLY:
1.
_
6.
COUPLING PLATE
7.
COUPLING PLATE
8.
_
9.
_
10.
NOZZLE AND HOLDER ASSY
11.
Nozzle and Holder
12.
Open Pre:MPa(Kqf/cm2)
9.8{100}
15.
NOZZLE SET
Include in #1:
101441-9271
as INJECTION-PUMP ASSEMBLY
Include in #2:
105856-4201
as _
Cross reference number
ZEXEL
101441-9271
1014419271
NISSAN-DIESEL
1679090173
1679090173
Zexel num
Bosch num
Firm num
Name
Calibration Data:
Adjustment conditions
Test oil
1404 Test oil ISO4113 or {SAEJ967d}
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
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
Right R
Injection timing adjustment
Direction of rotation (viewed from drive side)
Right R
Right R
Injection order
1-3-4-2
Pre-stroke
mm
2.3
2.25
2.35
Beginning of injection position
Drive side NO.1
Drive side NO.1
Difference between angles 1
Cal 1-3 deg. 90 89.5 90.5
Cal 1-3 deg. 90 89.5 90.5
Difference between angles 2
Cal 1-4 deg. 180 179.5 180.5
Cal 1-4 deg. 180 179.5 180.5
Difference between angles 3
Cyl.1-2 deg. 270 269.5 270.5
Cyl.1-2 deg. 270 269.5 270.5
Injection quantity adjustment
Adjusting point
A
Rack position
10.8
Pump speed
r/min
900
900
900
Average injection quantity
mm3/st.
39.9
38.9
40.9
Max. variation between cylinders
%
0
-2.5
2.5
Basic
*
Fixing the lever
*
Injection quantity adjustment_02
Adjusting point
B
Rack position
10.1
Pump speed
r/min
1200
1200
1200
Average injection quantity
mm3/st.
37
34
40
Max. variation between cylinders
%
0
-4
4
Fixing the lever
*
Injection quantity adjustment_03
Adjusting point
C
Rack position
6.8+-0.5
Pump speed
r/min
300
300
300
Average injection quantity
mm3/st.
8.2
7.1
9.3
Max. variation between cylinders
%
0
-15
15
Fixing the rack
*
Timer adjustment
Pump speed
r/min
500
Advance angle
deg.
0.5
Timer adjustment_02
Pump speed
r/min
900
Advance angle
deg.
1.8
1.3
2.3
Timer adjustment_03
Pump speed
r/min
1300
Advance angle
deg.
4
3.5
4.5
Timer adjustment_04
Pump speed
r/min
-
Advance angle
deg.
5
5
5
Remarks
Measure the actual speed, stop
Measure the actual speed, stop
Test data Ex:
Governor adjustment

N:Pump speed
R:Rack position (mm)
(1)Notch fixed: K
----------
K=20
----------
----------
K=20
----------
Speed control lever angle

F:Full speed
I:Idle
S:Stop
----------
----------
a=(15deg)+-5deg b=(32deg)+-5deg c=32deg+-3deg
----------
----------
a=(15deg)+-5deg b=(32deg)+-5deg c=32deg+-3deg
Stop lever angle

N:Pump normal
S:Stop the pump.
----------
----------
a=19deg+-5deg b=53deg+-5deg
----------
----------
a=19deg+-5deg b=53deg+-5deg
Timing setting

(1)Pump vertical direction
(2)Position of gear mark 'Y' at No 1 cylinder's beginning of injection
(3)B.T.D.C.: aa
(4)-
----------
aa=20deg
----------
a=(130deg)
----------
aa=20deg
----------
a=(130deg)
Information:
Illustration 9 g00293067
(5) Air shutoff solenoid that is mounted in the air intake pipe.
Illustration 10 g00281839
Air Shutoff (Typical Example)
Table 2
(1) Air transfer pipe.     (5) Air shutoff solenoid.    
(2) Valve assembly.     (6) O-ring seal.    
(3) Shutoff shaft.     (7) Diode assembly.    
(4) Governor control shaft.        The air shutoff solenoid (5) is located in the air inlet system on the top of the engine. When the air shutoff solenoid (ASOS) is activated, the inlet air to the engine is mechanically shut off. The ASOS can be only activated in two ways:
The ASOS is activated by the overspeed switch (OS).
The ASOS is activated by the emergency stop switch (ES).Fuel Shutoff Solenoid (FSOS)
Illustration 11 g00281970
Fuel Solenoid (Typical Example) (1) Diode assembly. (2) Spring. (3) Governor drive. (4) Fuel solenoid. (5) Shaft.
Illustration 12 g00293070
(4) Fuel shutoff solenoid (FSOS) that is mounted on the governor.The fuel shutoff solenoid (FSOS) (4) is located on the governor or on the fuel injection pump of the engine.When the FSOS is energized, the spring (2) and the shaft (5) will cause the fuel rack to move directly or the fuel rack will move through governor drive (3) to the FUEL OFF position. The FSOS remains energized until the time delay relay causes the circuit of the FSOS to de-energize.Time Delay Relay (TD)
Illustration 13 g00281989
4W-8471 Time Delay Relay The time delay relay is an ON/OFF switch which has two controls. When the electric protection system is energized, one control will immediately activate the time delay relay. The other control will activate a relay after a delay of 9 seconds when a continuous signal is received. The time delay relay has a 70 second OFF delay after the signal is removed from both the input terminal (TD-1) and the input terminal (TD-2).The time delay relay is mounted in the junction box.2301AElectric Governor Control
Illustration 14 g00293071
(1) 2301A Electric Governor Speed Control
Illustration 15 g00293069
Electric governor actuator (EGA) (2) and fuel shutoff solenoid (FSOS) (3). These components are mounted on the top of the engine.The 2301A Electric Governor Control system consists of the following components:
2301A Control
Actuator (EGA)
Magnetic pickup (MPU)The 2301A Electric Governor Control system provides precision engine speed control. The 2301A Control constantly monitors the engine rpm. The control makes necessary corrections to the engine fuel setting through an actuator connected to the fuel system.The engine rpm is measured by the magnetic pickup (MU). The magnetic pickup makes an AC voltage that is sent to the 2301A Control. The 2301A Control then sends a DC voltage signal to the actuator in order to adjust the fuel flow.The actuator changes the electrical signal from the 2301A Control to a mechanical output. The mechanical output of the actuator causes the linkage from the actuator to move the fuel rack. This will increase the flow of fuel to the engine or this will decrease the flow of fuel to the engine. For example, if the engine speed is more than the speed setting, the 2301A Control will decrease the voltage output which