DOOR UNIT FOR A VEHICLE
20220381069 · 2022-12-01
Inventors
Cpc classification
E05B77/245
FIXED CONSTRUCTIONS
E05B83/42
FIXED CONSTRUCTIONS
International classification
E05B83/42
FIXED CONSTRUCTIONS
B64C1/14
PERFORMING OPERATIONS; TRANSPORTING
E05B77/24
FIXED CONSTRUCTIONS
Abstract
A door unit for an aircraft includes a door which is configured, in a closed position, to cover an opening in the vehicle and to delimit a vehicle interior from a vehicle environment; a pressure compensation flap which is configured, in a sealing position, to cover a pressure compensation opening in the door and, in a pressure compensation position, to at least partially release the pressure compensation opening; a locking element which is configured, in a locking state, to lock the door in the closed position and, in an unlocking state, to unlock the door; and a blocking element which is configured, in the sealing position of the pressure compensation flap, to block a movement of the locking element from the locking state into the unlocking state, wherein the blocking element is arranged on the pressure compensation flap.
Claims
1-15. (canceled)
16. A door unit for a vehicle, comprising: a door configured, in a closed position, to cover an opening in the vehicle and to delimit a vehicle interior from a vehicle environment; a pressure compensation flap configured, in a sealing position, to cover a pressure compensation opening in the door and, in a pressure compensation position, to at least partially release the pressure compensation opening; a locking element configured, in a locking state, to lock the door in the closed position and, in an unlocking state, to unlock the door; and a blocking element configured, in the sealing position of the pressure compensation flap, to block a movement of the locking element from the locking state into the unlocking state, wherein the blocking element is arranged on the pressure compensation flap.
17. The door unit as claimed in claim 16, wherein the blocking element is arranged so as to beat least one of rotationally secure or translationally secure relative to the pressure compensation flap.
18. The door unit as claimed in claim 17, wherein the blocking element is produced integrally with the pressure compensation flap or a carrier element of the pressure compensation flap.
19. The door unit as claimed in claim 16, wherein the blocking element is configured, in the sealing position of the pressure compensation flap, to block a translation of the locking element from the locking state into the unlocking state.
20. The door unit as claimed in claim 19, wherein the blocking element is configured, in the sealing position of the pressure compensation flap, to block the translation of the locking element in a direction which extends substantially parallel with the pressure compensation flap.
21. The door unit as claimed in claim 16, wherein the blocking element extends in a direction of the vehicle interior with respect to the pressure compensation flap.
22. The door unit as claimed in claim 16, wherein the blocking element protrudes at least partially over an outer edge of the pressure compensation flap.
23. The door unit as claimed in claim 16, wherein the blocking element is configured, in the pressure compensation position of the pressure compensation flap, to permit the movement of the locking element from the locking state into the unlocking state.
24. The door unit as claimed in claim 23, wherein the blocking element is configured in such a manner that, in the pressure compensation position of the pressure compensation flap, it is spaced apart from the locking element in a direction of at least one of the vehicle interior or a door center.
25. The door unit as claimed in claim 16, configured such that the pressure compensation flap can be displaced by means of a substantially translational movement of the pressure compensation flap in a direction of the vehicle interior from the sealing position into the pressure compensation position.
26. The door unit as claimed in claim 16, further comprising an actuation mechanism configured, during a movement of the pressure compensation flap from the pressure compensation position into an open position, to move the locking element from the locking state into the unlocking state.
27. The door unit as claimed in claim 16, further comprising a door state indication element arranged such that, during a movement of the pressure compensation flap from the sealing position into the pressure compensation position, the pressure compensation flap moves in a direction of a door center.
28. A door system, comprising: the door unit as claimed in claim 16; a door frame having a door lintel and a door threshold; and a locking counter-piece arranged in a region of the door lintel and configured, in the closed position of the door, in the locking state of the locking element, to cooperate with the locking element to lock the door.
29. The door system as claimed in claim 28, further comprising a door state indication element arranged such that, during a movement of the pressure compensation flap from the sealing position into the pressure compensation position, the pressure compensation flap moves in a direction of a door center, and a spacing sensor arranged on the door frame and configured to measure a spacing between the spacing sensor and the door state indication element.
30. The door system as claimed in claim 28, further comprising a door state indication element arranged such that, during a movement of the pressure compensation flap from the sealing position into the pressure compensation position, the pressure compensation flap moves in a direction of a door center, and an electrically operated safety actuator arranged on the door frame and configured, in an activated state, to block a movement of the locking element from the locking state into the unlocking state and, in a deactivated state, to release the movement of the locking element from the locking state into the unlocking state.
31. A vehicle comprising the door unit as claimed in claim 16.
32. The vehicle as claimed in claim 31, wherein the vehicle comprises an aircraft.
33. A vehicle comprising the door system as claimed in claim 28.
34. The vehicle as claimed in claim 33, wherein the vehicle comprises an aircraft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Preferred embodiments of the invention will now be explained with reference to the appended schematic drawings, in which
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030] The same reference numerals refer to the same functional or structural features below.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0031]
[0032] An exemplary opening movement of the door 2 is schematically illustrated in
[0033] Prior to the opening of the door 2, the door 2 covers the opening 16 and delimits a vehicle interior 18 from the vehicle environment 14. In the open state, the door no longer covers the opening 16 in the vehicle 300. Passengers can thus leave the vehicle 300 through the opening 16 after the door 2 has been opened.
[0034]
[0035] In the first state of the door system 200, the door 2 is closed and locked. The door unit 100 comprises, to this end, a locking element 24. The locking element 24 is located in
[0036] The door unit 100 comprises a blocking element 26. This serves to prevent unintentional displacement of the locking element 24. The blocking element 26 is arranged in an upper region of the pressure compensation flap 4. In the embodiment shown, the blocking element 26 is produced integrally with the pressure compensation flap 4 and protrudes from the pressure compensation flap 4 in the direction of the vehicle interior 18. A portion of the blocking element 26 protrudes over an upper edge of the pressure compensation flap 4. The blocking element 26 prevents in the first state of the door system 200 the displacement or translation of the locking element 24 in a direction which extends parallel with an upper edge of the pressure compensation flap 4 (in
[0037] Of course, a large number of blocking elements 26 and locking elements 24 may be provided. The locking elements 24 can be arranged so as to be non-movable relative to each other. For example, the locking elements 24 are secured to the same shaft 25. As can be seen in
[0038]
[0039] In the second state of the door system 200, the door 2 is further closed and locked. This is a result of the fact that the locking element 24 also further cooperates with the locking counter-piece 30 in the second state, as can be seen, in particular, in
[0040]
[0041] The door unit 100 comprises an actuation mechanism 38 which is configured, during a movement of the pressure compensation flap 4 from the pressure compensation position into the open position, to move the locking element 24 from the locking state into the unlocking state. The actuation mechanism 38 is connected to the at least one arm 36 which is moved during a movement of the pressure compensation flap. The actuation mechanism 38 may comprise a shaft 40 which is connected to the at least one arm 36 and during a movement of the arm 36 is rotated by the arm 36. The shaft may be connected to a translation mechanism which is arranged laterally beside the pressure compensation opening 22 on the door 2. The translation mechanism may be configured to convert a rotational movement of the shaft into a translation of the locking element 24.
[0042] In comparison with the pressure compensation position, the pressure compensation flap 4 in the open position is still located further in the direction of the vehicle interior 18. In particular, the pressure compensation flap 4 is rotated from the pressure compensation position into the open position. This is clear from a comparison of
[0043] The door unit 100 comprises, for example, exclusively mechanical components, that is to say, no cable-bound or electrical components. In this instance, the door unit 100 comprises a door state indication element 46 which is arranged in such a manner that, in the event of a movement of the pressure compensation flap 4 from the sealing position into the pressure compensation position, it moves away from the upper end of the door 2 or in the direction of the door center. To this end, the door state indication element 46 may be coupled to the handle 34, the arm 36, the pressure compensation flap 4 and/or the actuation mechanism 38. The door system 200 comprises a spacing sensor 48 which is arranged on the door frame 17 and which is configured to measure a spacing between the spacing sensor 48 and the door state indication element 46. The spacing sensor 48 is consequently arranged on the fuselage so that no such spacing sensor has to be incorporated in the door 2.
[0044] Additional electrical components may also be arranged on the fuselage or on the door frame 17. For example, the door system 200 comprises an electrically operated safety actuator 50 (“Flight Lock Actuator”), which is arranged on the door frame and which is configured, in an activated state, to block a movement of the locking element 24 from the locking state into the unlocking state and, in a deactivated state, to release the movement of the locking element 24 from the locking state into the unlocking state.
[0045]
[0046] Of course, modifications of the aspects and embodiments described herein are possible. For example, the locking element 24 could be configured in such a manner that it has to be rotated from the locking state into the unlocking state. The translation mechanism could be adapted accordingly. The movement sequence of the pressure compensation flap 4 may also be configured differently, for example, the pressure compensation flap 4 could be tilted from the sealing position into the pressure compensation position.
[0047] The pressure compensation flap 4 may according to the present disclosure perform a dual function by being used, on the one hand, for the sealing or opening of the pressure compensation opening 22 and, on the other hand, ensuring the locking of the door 2. As a result of the arrangement of the blocking element 26 on the pressure compensation flap 4, in comparison with existing solutions weight and production costs of the door 2 can be saved. An arrangement of electrical components on the fuselage, such as, for example, the spacing sensor 48 and the safety actuator 50, also reduces weight and production costs of the door 2.
[0048] While at least one exemplary embodiment of the present invention(s) is disclosed herein, it should be understood that modifications, substitutions and alternatives may be apparent to one of ordinary skill in the art and can be made without departing from the scope of this disclosure. This disclosure is intended to cover any adaptations or variations of the exemplary embodiment(s). In addition, in this disclosure, the terms “comprise” or “comprising” do not exclude other elements or steps, the terms “a” or “one” do not exclude a plural number, and the term “or” means either or both. Furthermore, characteristics or steps which have been described may also be used in combination with other characteristics or steps and in any order unless the disclosure or context suggests otherwise. This disclosure hereby incorporates by reference the complete disclosure of any patent or application from which it claims benefit or priority.