Information injection-pump assembly
BOSCH
9 400 618 937
9400618937
ZEXEL
107691-2730
1076912730
MITSUBISHI
ME170419
me170419

Rating:
Service parts 107691-2730 INJECTION-PUMP ASSEMBLY:
1.
_
7.
COUPLING PLATE
9.
_
11.
Nozzle and Holder
ME075583
12.
Open Pre:MPa(Kqf/cm2)
15.7{160}/21.6{220}
14.
NOZZLE
Include in #1:
107691-2730
as INJECTION-PUMP ASSEMBLY
Cross reference number
BOSCH
9 400 618 937
9400618937
ZEXEL
107691-2730
1076912730
MITSUBISHI
ME170419
me170419
Zexel num
Bosch num
Firm num
Name
107691-2730
9 400 618 937
ME170419 MITSUBISHI
INJECTION-PUMP ASSEMBLY
6D17-1 K 14CG INJECTION PUMP ASSY TICS MD-TI6 TICS
6D17-1 K 14CG INJECTION PUMP ASSY TICS MD-TI6 TICS
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
105780-8250
Bosch type code
1 688 901 101
Nozzle
105780-0120
Bosch type code
1 688 901 990
Nozzle holder
105780-2190
Opening pressure
MPa
20.7
Opening pressure
kgf/cm2
211
Injection pipe
Outer diameter - inner diameter - length (mm) mm 8-3-600
Outer diameter - inner diameter - length (mm) mm 8-3-600
Overflow valve
131424-8420
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
255
255
255
Tester oil delivery pressure
kgf/cm2
2.6
2.6
2.6
PS/ACT control unit part no.
407980-2
24*
Digi switch no.
17
Direction of rotation (viewed from drive side)
Left L
Left L
Injection timing adjustment
Direction of rotation (viewed from drive side)
Left L
Left L
Injection order
1-5-3-6-
2-4
Pre-stroke
mm
5.6
5.57
5.63
Beginning of injection position
Governor side NO.1
Governor side NO.1
Difference between angles 1
Cal 1-5 deg. 60 59.75 60.25
Cal 1-5 deg. 60 59.75 60.25
Difference between angles 2
Cal 1-3 deg. 120 119.75 120.25
Cal 1-3 deg. 120 119.75 120.25
Difference between angles 3
Cal 1-6 deg. 180 179.75 180.25
Cal 1-6 deg. 180 179.75 180.25
Difference between angles 4
Cyl.1-2 deg. 240 239.75 240.25
Cyl.1-2 deg. 240 239.75 240.25
Difference between angles 5
Cal 1-4 deg. 300 299.75 300.25
Cal 1-4 deg. 300 299.75 300.25
Injection quantity adjustment
Adjusting point
-
Rack position
12.5
Pump speed
r/min
850
850
850
Average injection quantity
mm3/st.
105
103
107
Max. variation between cylinders
%
0
-3
3
Basic
*
Fixing the rack
*
PS407980-224*
V
2.25+-0.
01
PS407980-224*
mm
3.6+-0.0
5
Standard for adjustment of the maximum variation between cylinders
*
Injection quantity adjustment_02
Adjusting point
Z
Rack position
8+-0.5
Pump speed
r/min
465
465
465
Average injection quantity
mm3/st.
14
12.2
15.8
Max. variation between cylinders
%
0
-15
15
Fixing the rack
*
PS407980-224*
V
V1+0.05+
-0.01
PS407980-224*
mm
5.5+-0.0
3
Standard for adjustment of the maximum variation between cylinders
*
Remarks
Refer to items regarding the pre-stroke actuator
Refer to items regarding the pre-stroke actuator
Injection quantity adjustment_03
Adjusting point
A
Rack position
R1(12.5)
Pump speed
r/min
850
850
850
Average injection quantity
mm3/st.
105
104
106
Basic
*
Fixing the lever
*
PS407980-224*
V
2.25+-0.
01
PS407980-224*
mm
3.6+-0.0
5
Injection quantity adjustment_04
Adjusting point
B
Rack position
R1+1.45
Pump speed
r/min
1450
1450
1450
Average injection quantity
mm3/st.
102.5
98.5
106.5
Fixing the lever
*
PS407980-224*
V
2.25+-0.
01
PS407980-224*
mm
3.6+-0.0
5
Injection quantity adjustment_05
Adjusting point
C
Rack position
R1-1.4
Pump speed
r/min
500
500
500
Average injection quantity
mm3/st.
90.5
86.5
94.5
Fixing the lever
*
PS407980-224*
V
2.25+-0.
01
PS407980-224*
mm
3.6+-0.0
5
Timer adjustment
Pump speed
r/min
1250--
Advance angle
deg.
0
0
0
Remarks
Start
Start
Timer adjustment_02
Pump speed
r/min
1200
Advance angle
deg.
0.5
Timer adjustment_03
Pump speed
r/min
1470
Advance angle
deg.
3
2.5
3.5
Remarks
Finish
Finish
0000001601
CU407980-224*
*
Actuator retarding type
*
Supply voltage
V
24
23.5
24.5
Ambient temperature
degC
23
18
28
Pre-stroke
mm
2.5
2.45
2.55
Output voltage
V
2.83
2.82
2.84
Adjustment
*
_02
CU407980-224*
*
Supply voltage
V
24
23.5
24.5
Ambient temperature
degC
23
18
28
Pre-stroke
mm
5.6
5.57
5.63
Output voltage
V
1.2
1
1.4
Confirmation
*
Remarks
Output voltage V1
Output voltage V1
_03
CU407980-224*
*
Supply voltage
V
24
23.5
24.5
Ambient temperature
degC
23
18
28
Output voltage
V
3.05
3.05
Confirmation of operating range
*
Test data Ex:
Governor adjustment

N:Pump speed
R:Rack position (mm)
(1)Torque cam stamping: T1
(2)Tolerance for racks not indicated: +-0.05mm.
----------
T1=AD54
----------
----------
T1=AD54
----------
Speed control lever angle

F:Full speed
I:Idle
(1)Stopper bolt set position 'H'
(2)Use the hole at R = aa
(3)Accelerator lever
----------
aa=38mm
----------
a=29deg+-5deg b=39.5deg+-3deg
----------
aa=38mm
----------
a=29deg+-5deg b=39.5deg+-3deg
Stop lever angle

N:Pump normal
S:Stop the pump.
(1)Use the hole at R = aa
(2)Normal engine position (Rack position corresponding to bb)
(3)Set the stopper bolt at rack position = cc and speed = dd and confirm non-injection
----------
aa=47mm bb=17.4mm cc=3.5+-0.3mm dd=0r/min
----------
a=4deg+-5deg b=(31deg) c=41deg+-5deg
----------
aa=47mm bb=17.4mm cc=3.5+-0.3mm dd=0r/min
----------
a=4deg+-5deg b=(31deg) c=41deg+-5deg
0000001301

(1)Pump vertical direction
(2)Coupling's key groove position at No 1 cylinder's beginning of injection
(3)B.T.D.C.: aa
(4)Pre-stroke: bb
----------
aa=5deg bb=5.6+-0.03mm
----------
a=(0deg)
----------
aa=5deg bb=5.6+-0.03mm
----------
a=(0deg)
0000001401

(1)Pointer
(2)Injection timing aligning mark
(3)Fly weight
(4)The actual shape and direction may be different from this illustration.
Operation sequence
1. Turn the prestroke actuator OFF.
2. Turn the camshaft as far as the No.1 cylinder's beginning of injection position.
3. Check that the pointer alignment mark of the injection pump and the alignment mark of the flywheel are matching.
4. If they are not matching, erase the alignment mark on the flywheel side, and stamp an alignment mark on the flywheel position that matches with the pointer side alignment mark.
5. Check again that the coupling's key groove position is in the No.1 cylinder's beginning of injection position.
----------
----------
----------
----------
0000001701

A : Stopper pin
B: Connector
----------
----------
----------
----------
0000001801

C:Shim
----------
----------
----------
----------
0000001901

A:Sealing position
B:Pre-stroke actuator
1. When installing the pre-stroke actuator on the pump, first tighten the installation bolts loosely, then move the actuator fully clockwise (viewed from the drive side).
Temporary tightening torque: 1 - 1.5 N.m (0.1 - 0.15 kgf.m)
2. Move the actuator in the counterclockwise direction when viewed from the drive side, and adjust so that it becomes the adjustment point of the adjustment value. Then tighten it.
Tightening torque: 7^9 N.m (0.7^0.9 kgf.m)
3. After prestroke actuator installation adjustment, simultaneously stamp both the actuator side and housing side.
----------
----------
----------
----------
0000002201 RACK SENSOR

(VR) measurement voltage
(I) Part number of the control unit
(G) Apply red paint.
(H): End surface of the pump
1. Rack sensor adjustment (-0620)
(1)Fix the speed control lever at the full position
(2)Set the speed to N1 r/min.
(If the boost compensator is provided, apply boost pressure.)
(3)Adjust the bobbin (A) so that the rack sensor's output voltage is VR+-0.01.
(4)At that time, rack position must be Ra.
(5)Apply G at two places.
Connecting part between the joint (B) and the nut (F)
Connecting part between the joint (B) and the end surface of the pump (H)
----------
N1=1450r/min Ra=R1(12.5)+1.45mm
----------
----------
N1=1450r/min Ra=R1(12.5)+1.45mm
----------
0000002301 SPEED SENSOR

(A) Flyweight projection
(B) Pickup sensor
(c) Lock nut
Speed sensor installation
(1)Install the speed sensor so that the clearance between the sensor and the flyweight projection is L.
(This gap is the gap when the pickup sensor is returned 1 turn from where it contacts the flyweight tooth.)
----------
L=0.8~1mm
----------
----------
L=0.8~1mm
----------
Information:
b. Operate vehicle at 60% of rated speed with moderate load until oil and coolant temperatures reach their normal range for operation. If there is a heavy vibration, drive shaft whip, tire bounce, etc., do not continue with dynamometer test until cause of the problem is corrected. Engines that have had new internal parts installed should be operated on a run-in schedule before operation at full load. For run-in schedule information, make reference to General Instructions section of this Service Manual.2. Put transmission in direct gear and the differential in the highest speed ratio. Operate vehicle at maximum engine speed and increase chassis dynamometer load until a speed of 50 rpm less than rated speed is reached (continuity light should be on). Maintain this speed for one minute and record the engine speed and wheel horsepower. If horsepower is low and poor maintenance is suspected, remove air cleaner or inlet piping to turbocharger and check horsepower again to see if a plugged air cleaner could be the problem.3a. If the wheel horsepower is correct, find the balance point of the engine (speed at which the load stop pin just touches the torque spring or stop bar). At this point the continuity light should flicker (go off and on dimly). If the balance point is correct, then the low power complaint can not be validated. No further test or repairs are necessary.If the balance point is low, see Procedure No. 5.3b. If the wheel horsepower is below the correct value, find the balance point of the engine (speed at which the load stop pin just touches the torque spring or stop bar). At this point the continuity light should flicker (go off and on dimly). If the balance point is correct, see Procedure No. 6.If the balance point is low, see Procedure No. 4.4. Stop the engine. Remove the AFRC (air-fuel ratio control). Put a cover over the hole where the AFRC was installed. Start the engine and check the balance point and horsepower again. If both of these are now correct, the problem is in AFRC. Repair or replace the AFRC. If, with the AFRC removed, horsepower is now acceptable and balance point is low, the problem is still with AFRC. Repair or replace the AFRC. Then adjust balance point according to Procedure No. 5.5. If the balance point is low, the high idle will have to be increased to raise the balance point to the correct rpm (the point at which the continuity light just comes on). If the balance point is still low and high idle has been adjusted to maximum, disengage clutch while maximum throttle position is maintained. Now observe high idle rpm and, if lower than previously adjusted, check frame-to-engine-mount. A damaged or loose engine mount may put the linkage in a bind and thus prevent maximum governor position at load conditions.6. If the balance point was correct and the wheel horsepower was low, install the 4S6553 Engine Test Group and do the wheel
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Mitsubishi
Mitsubishi
107691-2730
9 400 618 937
ME170419
INJECTION-PUMP ASSEMBLY
6D17-1
6D17-1