GENERAL INFORMATION
4.6
CARBURETOR OPERATION CONT’D
When the throttle plate is opened and engine speed
begins to increase, the pressure in the venturi (and
therefore in the chamber above the diaphragm)
becomes significantly lower than atmospheric.
Atmospheric pressure in the chamber below the
diaphragm forces the diaphragm upward, raising the
slide against spring pressure. When the pressure
above and below the diaphragm are nearly equal, the
slide moves downward under spring pressure.
Raising or lowering the slide increases or decreases
the cross sectional area in the venturi, and therefore
the air velocity in the venturi is kept relatively constant.
This provides improved fuel atomization and optimum
fuel/air ratio.
= Air Flow
= Low Pressure
Low Pressure
From Venturi
From
Air Box
Throttle
Plate
Diaphragm
Vacuum
Slide
Venturi
Note: Diagrams are for explanation of theory only, and are not true
representations of Mikuni BST carburetor.
PILOT (IDLE AND SLOW)
SYSTEM
This system supplies fuel during engine operation
with throttle valve closed (1) or slightly opened. The
fuel from float chamber (2) is metered by pilot jet (3)
where it mixes with air coming in through pilot air jet
(4). The mixture then goes up through pilot passage
to pilot screw (5). A part of the mixture is discharged
into the main bore out of bypass ports (6). The
remainder is then metered by pilot screw and
discharged into the main bore through pilot outlet (7).
4
1
6
7
5
2
3
STARTER SYSTEM (CHOKE
OR ENRICHMENT)
When the choke cable (1) is activated, the starter
plunger (5) is lifted off the seat.
1
5
8
6
4
2
3
7
Fuel is drawn into the starter circuit from the float
chamber (2) through the starter jet (3). Starter jet
meters this fuel, which then flows into starter pipe (4)
and mixes with the air (7) coming from the float
chamber. The mixture, rich in fuel content, reaches
starter plunger and mixes again with the air coming
through a passage (8) extending from underneath the
diaphragm. The rich fuel/air mixture for starting is
discharged through starter outlet (6) in the the main
bore.
Summary of Contents for 2004-2005 Sportsman 6x6
Page 1: ...SPORTSMAN 6X6 6 59 0 18 31 504 SPORTSMAN 6X6 6 59 0 18 31 504...
Page 58: ...MAINTENANCE 2 38 NOTES...
Page 78: ...GENERAL INFORMATION 3 20 CYLINDER HEAD EXPLODED VIEW EH50PL EH50PL...
Page 126: ...GENERAL INFORMATION 4 14 NOTES...
Page 142: ...GENERAL INFORMATION 5 16 NOTES...
Page 198: ...GENERAL INFORMATION 7 30 NOTES...
Page 276: ...ELECTRICAL 10 48 NOTES...
Page 277: ...ELECTRICAL WIRING DIAGRAM 2004 SPORTSMAN 6X6...
Page 278: ...ELECTRICAL WIRING DIAGRAM 2004 SPORTSMAN 6X6 NOTES...
Page 279: ...ELECTRICAL WIRING DIAGRAM 2005 SPORTSMAN 6X6 BUILT BEFORE JULY 12 2004...
Page 280: ...ELECTRICAL WIRING DIAGRAM 2005 SPORTSMAN 6X6 BUILT BEFORE JULY 12 2004 NOTES...
Page 281: ...ELECTRICAL WIRING DIAGRAM 2005 SPORTSMAN 6X6 BUILT AFTER JULY 12 2004...
Page 282: ...ELECTRICAL WIRING DIAGRAM 2005 SPORTSMAN 6X6 BUILT AFTER JULY 12 2004 NOTES...
Page 289: ...31 504 3ULQWHG LQ 86...