This application claims priority to German Utility Model Application DE 2007 000112.6, filing date Jan. 2, 2007.
The invention refers to mechanical locking arrangements where a swivelling locking hook hooks into a hook-connecting element, hooking around it to form the lock.
Locking arrangements of this kind are described in, for example, the German utility model no. 298 08 914.9, which are suitable, among other things, for locks for luggage boxes in aircraft. Such a locking arrangement provides a locking catch joined to a container and a swivelling locking hook attached to a hinged cover. The hooked part of the locking hook hooks around the locking catch to form the lock.
In aircraft construction, such locks are subject to high requirements. For example, they must withstand high strains while remaining low in weight and size.
The components to be connected such as containers and covers may however be in a different position with reference to one another to the position required. Such differences may be attributable to tolerances in the components themselves or tolerances in assembly. Such differences may cause the locking hook on the cover to be insufficiently well aligned with the hook-connecting element on the container to permit secure locking.
For this reason, the purpose of the invention is to provide a locking arrangement which compensates certain differences in the positioning of the locking hook and the component carrying the hook-connecting element, thereby ensuring a secure lock.
For clarification of the purpose, reference is made to
Both components B1′ and B2′ are positioned with reference to one another in such a way that locking cannot take place between the hooked part V2′-1 of the locking hook and the retaining rod H1′ because the two components B1′ and B2′ are displaced (“in height”) (e.g. by the distance d) with reference to one another.
A problem of the kind shown in
The purpose of the invention is fulfilled advantageously by the characteristics described in claim 1. Advantageous modifications of the invention are described in the sub-claims.
In order to fulfil the purpose of the invention, the retaining rod is located movably in a guide track in one of the components. The locking hook on the other component is shaped and arranged specially in a holder with a sliding bevel for the retaining rod.
This produces a secure lock between the hooked part of the locking hook and the retaining rod even when the components are displaced in height with reference to one another as shown in
A practical application of the invention is shown in the drawings and is described in more detail below.
A perspective exploded view of the locking arrangement according to invention with a locking hook and a movable retaining rod as hook-connecting element.
A perspective partially exploded view of the movable retaining rod and a holder with sliding bevels for the retaining rod.
A perspective partial view of the retaining rod in an initial position on the sliding bevel of the holder.
A perspective partial view of the locking rod in a final position on the sliding bevel of the holder.
A perspective partially exploded view of the locking hook and the retaining rod according to
A partial side view of the holder, the locking hook and the retaining rod, where the retaining rod is in a position in the central area of the holder-sliding-bevel and in a position in front of the outer hook-sliding-bevel of the locking hook which is still lowered.
A partial side view of the locking hook and the retaining rod in the locking position.
A schematic view to illustrate the purpose of the invention.
Component with locking rod and component with locking hook aligned with one another in locking position.
Component with locking rod and component with locking hook displaced with reference to one another so that no locking is possible.
The lock is created by the hooked part 26 of the locking hook 21 which hooks around the retaining rod 11. This lock can however be released.
The retaining rod 11 is arranged with each of its ends in a guide slot 12, 12′. The limited guide slots run in a straight line in wall elements 14, 15 at a distance from one another. Slots running in curved lines are also possible. The outer ends of the rod (11) are connected to disks (13) 12′ which prevent the retaining rod 11 from dropping out of the guide slots.
The locking hook 21 is located between the two wall elements 24 and 25 of a holder 27 on the component 20. The ends of the swivelling axis 22 of the locking hook 21 are 22 connected with these wall elements.
The wall elements 24 and 25 of the holder each have a rising sliding bevel 24-S and 25-S for the retaining rod 11. At their upper end, the sliding bevels have a catch-shaped stop 24-E.
When the first component 10 with the retaining rod 11 and the second component 20 with the locking hook 21 and the holder 27 with the sliding bevels move towards one another in direction X, the retaining rod 11 strikes the lower part of the sliding bevel 24-S and 25-S. With continuing movement of the two components toward one another, the retaining rod 11 is pushed upwards until it reaches the stop 24-E. This displacement of the retaining rod 11 on the sliding bevel 24-S, 25-S is accompanied by a simultaneous upward displacement of the retaining rod 11 in its guide slot 12, 12′.
The locking hook 21 is pre-tensioned by spring F (
The swivelling plane of the locking hook 21 runs adjacent to the sliding bevel 24-S, 25-S of the holder. The locking hook 21 is positioned between the wall elements 24 and 25 of the holder 27 in such a way that, when it is displaced upwards, the retaining rod 11 strikes the sliding bevel 24-S, 25-S on the hooked part 26 of the locking hook 21. This hooked part 26 has an outer hook sliding surface 21-S. When the retaining rod 11 applies pressure to this hook sliding surface 21-S during its upward movement, the locking hook is pressed against the force of the spring acting in direction D. In doing so, the locking hook executes a small swivelling movement around its own axis.
The retaining rod 11 is then pushed “beneath” the hooked part 26 of the locking hook 21.
When the retaining rod 11 is displaced further on the holder sliding bevel 24-S, 25-S the retaining rod 11 is pushed directly under the recess 23 of the hooked part 26. In this position, the hooked part 26 is forced by spring force in direction D directly into the locking position on the retaining rod 11.
Details of this locking process are described in more detail in connection with the
The retaining rod 11 is arranged movably in the guide slots 12, 12′ of two wall elements 14, 15 at a distance from one another. The holder 27 comprises two wall elements 24, 25 at a distance from one another with sliding bevels 24-S, 25-S for the retaining rod 11.
The retaining rod 11 is in the lower position in the guide slots before the components 10 and 20 move towards one another in direction X.
When the two components continue to approach one another in direction X, the retaining rod 11 is pushed upwards on the sliding bevel 24-S, 25-S in direction U. At the same time (not shown), the retaining rod is displaced upwards in its guide slots 12, 12′ (no other movement is possible) (see
In the same way, the possible movement of the retaining rod is restricted by the closed ends of its guide slots 12, 12′.
The locking hook has a hooked part 26 with a recess 23. The retaining rod 11 is located in locking position in this recess 23 of the hooked part 26. To form the lock, it is sufficiently embraced by the hooked part 26.
In this position, the retaining rod, which is still movable on the holder-sliding-bevel 24-S, presses against the hook-sliding-bevel 21-S in such a way that the locking hook swivels upwards against the force of the spring (F) acting in direction D, thereby pushing the retaining rod on sliding bevel 24-S under the hooked part 26 of the locking hook 21. When it is displaced further, the retaining rod 11 (see
In this way, the retaining rod 11 enters the recess 23 of the hooked part 26, i.e. into the locked position with the locking hook 21.
In this connection,
Independently of the variations of the invention described in the figures, it should be noted that the guide slot 12, 12′ may not only be straight but also curved.
In place of the guide slot, a groove-shaped recess may, for example, also be provided in the wall parts 14, 15. Similarly, the holder-sliding-bevel 24-S, 25-S does not have to be straight but may also be curved in shape. However, its shape must correspond to that of the guide slot or guide groove.
The stops 24-E on the holder-sliding-bevel 24-S are dispensable.
They serve only to provide additional security in the positioning of the retaining rod.
Retaining rod 11 and holder 27 with locking hook may be attached directly to (for example) a container or a hinged cover of such a container. According to the application described, it is however also possible to locate retaining rod 11 and holder 27 with locking hook on a mounting element (10, 20) which is then fixed to the container or its cover.
Number | Date | Country | Kind |
---|---|---|---|
20 2007 000 112 U | Jan 2007 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
309181 | Woodrich | Dec 1884 | A |
1093637 | Lint | Apr 1914 | A |
3266831 | Banse | Aug 1966 | A |
3571977 | Abeel | Mar 1971 | A |
4495380 | Ryan et al. | Jan 1985 | A |
4686783 | Bourquard et al. | Aug 1987 | A |
4805366 | Long | Feb 1989 | A |
4987714 | Lemke | Jan 1991 | A |
5036674 | Chang | Aug 1991 | A |
5217339 | O'Connor | Jun 1993 | A |
5308205 | Lautenschlager | May 1994 | A |
5426905 | Rollhauser | Jun 1995 | A |
5529369 | Welborn | Jun 1996 | A |
5626450 | Ferrari et al. | May 1997 | A |
5655801 | Casey | Aug 1997 | A |
5782511 | Schwarz | Jul 1998 | A |
6149210 | Hunt | Nov 2000 | A |
6409446 | Schwarz | Jun 2002 | B1 |
6442806 | Wesson | Sep 2002 | B1 |
6443679 | Schwarz | Sep 2002 | B1 |
6497436 | Deblock | Dec 2002 | B1 |
6679530 | Krynski | Jan 2004 | B2 |
6736438 | Wieclawski | May 2004 | B1 |
6837661 | Schwarz et al. | Jan 2005 | B2 |
6846125 | Smith et al. | Jan 2005 | B2 |
6866227 | Pratt | Mar 2005 | B2 |
6908144 | Gotzinger et al. | Jun 2005 | B2 |
7107697 | Schwarz et al. | Sep 2006 | B2 |
7179039 | Schwarz et al. | Feb 2007 | B2 |
7234209 | Totani et al. | Jun 2007 | B2 |
20020017009 | Smith et al. | Feb 2002 | A1 |
20040115030 | Schwarz | Jun 2004 | A1 |
20040240933 | Schwarz et al. | Dec 2004 | A1 |
20070147975 | Homner | Jun 2007 | A1 |
20070158955 | Homner | Jul 2007 | A1 |
20080150301 | Homner | Jun 2008 | A1 |
20080273922 | Homner | Nov 2008 | A1 |
Number | Date | Country |
---|---|---|
1860948 | Oct 1962 | DE |
3145155 | Nov 1981 | DE |
8710288 | Oct 1987 | DE |
3623311 | Jan 1988 | DE |
3922025 | Sep 1990 | DE |
4239908 | Mar 1994 | DE |
19707634 | Oct 1997 | DE |
29808914 | Sep 1998 | DE |
29914145 | Dec 2000 | DE |
10040410 | Jan 2001 | DE |
19943083 | Dec 2001 | DE |
20218302 | Mar 2003 | DE |
10355780 | Jun 2005 | DE |
102004011183 | Sep 2005 | DE |
102006008655 | Sep 2006 | DE |
202006019165.8 | Aug 2007 | DE |
202007000112.6 | Aug 2007 | DE |
0189569 | Feb 1989 | EP |
0784141 | Jul 1997 | EP |
06026133 | Mar 2007 | EP |
07004742 | May 2007 | EP |
07024364 | Jun 2008 | EP |
07024365 | Jun 2008 | EP |
1268022 | Mar 1972 | GB |
1506902 | Apr 1978 | GB |
2050487 | Jan 1981 | GB |
2219342 | Dec 1989 | GB |
2000310210 | Jul 2000 | JP |
8000162 | Feb 1980 | WO |
Number | Date | Country | |
---|---|---|---|
20080157543 A1 | Jul 2008 | US |