Claims
- 1. Pneumatic actuator system, comprising: one or more piston-cylinder type actuators (14) each having a working piston (21) with a load engaging piston rod (22), a control circuit including a directional valve (24;24a) connected to a pressure air source (25) and arranged to direct pressure air to alternative driving sides of the working piston (21) of each actuator (14) for accomplishing movement of the working piston (21) in alternative directions, characterized in that each actuator (14) is provided withend position sensors (28,29) for detecting and indicating the extreme end positions of the working piston (21), air feed shut-off valves (30,31; 30a,31a) connected to said end position sensors (28,29) and arranged to cut off the air feed to the current driving side of the working piston (21) as an extreme end position is reached and indicated by the respective end position sensor (28,29), and air flow restrictions (26,27;26a,27a) arranged to limit automatically the air feed flow to the current driving side of the working piston (21), thereby limiting automatically the pressure air volume supplied to the driving side of the working piston (21) at low piston rod load magnitudes.
- 2. Actuator system according to claim 1, wherein said directional valve (24;24a) is located remotely from the actuator or actuators (14), whereas said air feed shut-off valves (30,31; 30a,31a) form a unit together with the respective actuator (14).
- 3. Actuator according to claim 2, wherein said air flow restrictions (26a,27a) are located in said air feed shutoff valves (30a, 31a).
- 4. Actuator according to claim 2, wherein said shut-off valves (30,31; 30a,31a) are mounted on the outside of the respective actuator (14), whereas said end position sensors (28,29) are built-in in the respective actuator (14).
- 5. Pneumatic actuator system for crust breaking in electrolytic aluminum reduction baths (10), comprising one or more piston-cylinder actuators (14) each having a working piston (21) with a piston rod (22) connected to a crust breaking implement (17), a control circuit including a directional valve (24;24a), air flow restrictions (26,27)inserted between the actuator (14) and the directional valve (24;24) for restricting the air feed flow to the current driving side of the working piston (21), characterized in that each actuator (14) is provided withend position sensors (23,29) for detecting and indicating the extreme end positions of the working piston (21), air feed shut-off valves (30,31; 30a,31a) connected to said end position sensors (28,29) and arranged to cut off the pressure feed to the current driving side of the working piston (21) as an extreme end position of the working piston (21) is reached and indicated by the respective end position sensor (23,29), and air flow restrictions (26,27) disposed between the actuator (14) and the directional valve (24;24) for restricting automatically the air feed flow to the current driving side of the working piston (21) at low piston rod load magnitudes, wherein said end position sensors (28,29) and said air feed shutoff valves (30,31; 30a,31a) are disposed integrally with the actuator (14) to form a working unit to be located at the electrolytic reduction bath (10), whereas said directional valve (24,24a) is located remotely from the electrolytic bath (10).
- 6. Actuator system according to claim 5, wherein said flow restrictions (26a,27a) are integrated with the air feed shut-off valves (30a,31a).
- 7. Actuator system according to claim 6, wherein two actuators (14) have their working pistons connected to a common crust breaking beam, said actuators (14) sharing a common remotely located directional valve (24;24a) but comprising separate end position sensors (28,29) and air feed shut-off valves (30,31; 30a, 31a).
- 8. Actuator system according to claim 6, wherein each actuator (14) operates a single-point crust breaking implement (17) which extends in a substantial co-axial disposition relative to said piston rod (22).
- 9. Actuator system according to claim 5, wherein two actuators (14) have their working pistons connected to a common crust breaking beam, said actuators (14) sharing a common remotely located directional valve (24;24a) but comprising separate end position sensors (28,29) and air feed shut-off valves (30,31; 30a, 31a).
- 10. Actuator system according to claim 5, wherein each actuator (14) operates a single-point crust breaking implement (17) which extends in a substantial co-axial disposition relative to said piston rod (22).
Priority Claims (1)
Number |
Date |
Country |
Kind |
0002905 |
Aug 2000 |
SE |
|
Parent Case Info
This application is a U.S. National Phase Application under 35 USC 371 of International Application PCT/SE01/01729 filed Aug. 10, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/SE01/01729 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO02/14698 |
2/21/2002 |
WO |
A |
US Referenced Citations (8)
Foreign Referenced Citations (2)
Number |
Date |
Country |
4 201 464 |
Jul 1993 |
DE |
0 552 557 |
Jul 1993 |
EP |