Claims
- 1. Door closer for a door having a door closure, comprising:
- an energy accumulator for closing the door closure, the energy accumulator being at least partially charged by manual opening of the door closure, and being at least partially discharged to effect closing of the door closure;
- the energy accumulator comprising a first partial energy accumulator and a second partial energy accumulator, door closing taking place by discharge of the first partial energy accumulator, and the second partial energy accumulator; and
- a time function means for controlling discharge of the second partial energy accumulator whereby it is ensured that, after the opening, the door closes completely within a predetermined time, said time function means including
- means for automatically initiating discharge of the second partial energy accumulator if the closed position is not reached within a predetermined time period, and for automatically stopping discharge of the second partial energy accumulator as soon as a closed position is reached; and
- means for controlling discharge of the second partial energy accumulator such that during the closing operation, the second partial energy accumulator discharges continuously but more slowly than the first partial energy accumulator, with discharge phases of a different discharge speed.
- 2. Door closer according to claim 1, wherein said time function means includes means for adjusting the predetermined time period.
- 3. Door closer according to claim 2, wherein a last discharge phase of the second partial energy accumulator, preceding the closed position, has a relatively higher discharge speed in comparison to a discharge speed of the first partial energy accumulator and in comparison to a discharge speed of the second partial energy accumulator at least in a discharge phase which precedes the last discharge phase.
- 4. Door closer according to claim 3, wherein the last discharge phase of the second partial energy accumulator, follows a second discharge phase with a relatively slow discharge speed.
- 5. Door closer according to claim 4, wherein before the second discharge phase of the second partial energy accumulator taking place at a relatively slow discharge speed first discharge phase takes place which has a relatively high discharge speed.
- 6. Door closer according to claim 5, wherein:
- the first partial energy accumulator comprises a first piston guided in a tight manner in a common cylinder;
- the second partial energy accumulator comprises a second piston which is guided tightly in the common cylinder; and
- the first piston and the second piston are connected behind one another.
- 7. Door closer according to claim 6, wherein said time function means includes means for controlling the second piston pneumatically or hydraulically.
- 8. Door closer according to claim 7 wherein:
- the time function means comprises an overflow device which connects a cylinder space formed in front of the second piston with a cylinder space formed behind the second piston;
- the time function means has at least one of an adjustable flow control valves, an overflow duct, and an overflow groove in the cylinder or in the second piston.
- 9. Door closer according to claim 8, wherein, a flow resistance in the overflow device varies as a function of a position of the second piston, whereby different resistances become operative successively.
- 10. Door closer according to claim 9 wherein a moving speed of the second piston is controlled by an overflow groove which is formed in one of an exterior piston wall and the interior wall of the cylinder.
- 11. Door closer according to claim 10 wherein the moving speed of the second piston is controlled by an overflow duct which is constructed in the cylinder or in the piston.
- 12. Door closer according to claim 11 wherein one of a control valve and a stop device is arranged in the overflow duct.
- 13. Door closer according to claim 12 when one of the closed position of the door and a predetermined position of the first piston is reached, the stop valve stops movement of the second piston automatically, storing the residual energy of the second partial energy accumulator for a subsequent closing operation.
- 14. Door closer according to claim 13 wherein a mouth of the overflow duct is closed by the first piston as soon as the closed position of the door is reached.
- 15. Door closer according to claim 14 wherein the first piston has a seal which interacts with the mouth of the overflow duct in the cylinder said seal comprising a spring-loaded sealing element, arranged in a recess in the first piston.
- 16. Door closer according to claim 7 wherein:
- the first piston and the second piston form hydraulic spaces in the cylinder, which are hydraulically connected with one another such that a different hydraulic pressure is generated in the spaces, a first space being formed in front of the first piston, a second space being formed between the first piston and the second piston, and a third space being formed behind the second piston; and
- during closing, a higher pressure is generated in the first space than in the second space, and in the second space a higher pressure is generated than in the third space.
- 17. Door closer according to claim 16, wherein an output shaft interacts with the first piston by way of a pinion gear with a piston-side toothed rack and an output-shaft-side pinion.
- 18. Door closer according to claim 17 wherein the output shaft is rotatably disposed in the cylinder while sealing by means of a seal designed for hydraulic pressures treater than 10 bar.
- 19. Door closer according to claim 18, wherein said seal is designed for hydraulic pressures greater than 50 bar.
- 20. A device for automatically closing a door, comprising
- a first energy accumulator which is at least partially charged by a manual opening of said door; and
- a second energy accumulator which is at least partially charged by a manual opening of said door, both of said first and second energy accumulators being coupled to each other for discharging stored energy to close said door;
- wherein said second energy accumulator includes a time delay element which delays for a predeterminable time period an application of energy stored therein to close said door.
- 21. The device according to claim 20 further comprising a device coupled to said second energy accumulator, which interrupts a discharge of energy from said second energy accumulator if said door reaches a closed position within said predeterminable time period.
Priority Claims (1)
Number |
Date |
Country |
Kind |
196 08 023.1 |
Mar 1996 |
DEX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/712,344, filed on Sep. 11, 1996 now abandoned.
US Referenced Citations (11)
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391 512 B |
Oct 1990 |
ATX |
28 44 302 |
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34 23 242 C1 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
712344 |
Sep 1996 |
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