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Working Principle
1. When air is supplied, it passes through the switching valve and enters drive chamber B.
2. Diaphragm B moves to the right, and at the same time diaphragm A also moves to the right
pushing pilot valve A.
3. When pilot valve A is pushed, air acts upon the switching valve, drive chamber A switches to a
supply state, and the air which was in drive chamber B is exhausted to the outside.
4. When air enters drive chamber A, diaphragm B moves to the left pushing pilot valve B.
5. When pilot valve B is pushed, the air which was acting upon the switching valve is exhausted,
and drive chamber B once again switches to a supply state. A continuous reciprocal motion is
generated by this repetition.
1. When air enters drive chamber B, the fluid in pump chamber B is forced out, and at the same time
fluid is sucked into pump chamber A.
2. When the diaphragm moves in the opposite direction, the fluid in pump chamber A is forced out,
and fluid is sucked into pump chamber B.
3. Continuous suction and discharge is performed by the reciprocal motion of the diaphragm.
Maintenance Parts
- I
t is not recommended to disassemble the process pump. However, if this is necessary,
be sure to follow the instructions in the maintenance procedure.
-
When carrying out this work, wear appropriate protective equipment.
Description
PA3310
PAP3310
Diaphragm kit
KT-PA3-531
KT-PAP3-531
Check valve kit
KT-PA3-536#1
KT-PAP3-536#1
Pilot valve kit
KT-PA3-538
Manual cap assembly kit
KT-PA3-545
□
Note)
Foot kit
KT-PA3-40
KT-PAP3-40
The maintenance procedure is to be distributed individually. Please contact your SMC sales representative
for details.
Note) One of Nil, N, F or T is entered as a thread symbol.
Drive unit
Control unit
Air exhaust port
(AIR EXH)
Air supply port (AIR SUP)
Discharge port (FLUID OUT)
Suction port (FLUID IN)
Pump chamber A
Check valve
Drive chamber B
Pump chamber B
Drive chamber A
Pilot valve B
Pilot valve A
Diaphragm A
Diaphragm B
Shaft
Switching valve