The invention concerns a fastening device for connecting two wall parts of a furniture part, in particular a rear wall to a side wall of a drawer, wherein the fastening device on a wall part has at least one resilient latch which is resilient about a notional spring axis and which is—preferably releasably—latchable into a latching receiving means provided or fastened to the other wall part.
Furthermore the invention concerns a connecting fitting for transversely connecting two wall parts of a furniture part with a fastening device of the kind to be described. The invention further concerns a drawer and an article of furniture having a connecting fitting of the specified kind.
Fastening devices of that kind already form part in large numbers of the state of the art. Thus for example DE 32 18 504 C2 of 25 Mar. 1993 discloses a fastening device, by means of which a rear wall can be connected to a side wall of a drawer. In that case the fastening device has two resilient latches arranged at a wall of the drawer, which correspond to recesses in a further wall.
The object of the invention is to provide a fastening device which is improved over the state of the art.
According to the invention that object is attained by the characterising portion of claim 1.
This is therefore achieved in that the notional spring axis of the resilient latch is provided transversely—preferably substantially at a right angle—relative to a wall of the wall part, wherein the latching receiving means on the other wall part is in the form of an opening, wherein a notional normal to the opening extends substantially parallel to the notional spring axis of the resilient latch.
In other words this means that the push-on direction of the latching receiving means extends substantially parallel—not at a right angle—to the notional spring axis of the resilient latch and thus a joining direction extends substantially parallel to the notional spring axis of the resilient latch and thereby the latching receiving means is movable in a sole single joining direction until reaching an end latching position over the resilient resilient latch, and that permits extremely simple assembly.
As a result the longitudinal extent of the resilient latch is not at a right angle to the wall of the wall part but preferably extends substantially parallel to that wall. That provides that the width of the wall part has no influence on the possible length of the resilient latch. In that way even very narrow wall parts can also be connected to a further wall part, with such a fastening device.
In the fastening devices belonging to the state of the art in contrast the width of the wall part is directly related to the length of the resilient latch as those resilient latches are disposed substantially perpendicularly to the wall of the wall part and can extend therefore at a maximum over the width of the wall part, without in that case projecting beyond the wall part.
The fastening device thus provides a compact solution for a fastening device for connecting two wall parts of a furniture part.
Further advantageous embodiments of the invention are defined in the appendant claims.
It has proven to be particularly advantageous if the fastening device has at least one second whose notional spring axis is provided transversely—preferably substantially at a right angle—to a wall of the wall part. A more stable fastening device can be achieved by means of a second resilient latch. In a preferred embodiment it can be provided that the two resilient latches are substantially parallel to each other and are connected together. That measure can also contribute to a more stable structure for the fastening device.
Furthermore it can preferably be provided that a limb is provided between the two resilient latches. The provision of a limb between the two resilient latches can also enhance the stability of the fastening device.
It has proven to be particularly advantageous if the fastening device is in one piece. A one-piece embodiment of the fastening device can contribute to reducing the fitment times.
It can particularly preferably be provided that the fastening device is made from plastic material. The structure of plastic material simplifies manufacture of the fastening device as it can be produced for example in an injection molding process.
In that respect it has proven to be particularly advantageous if the resilient latch has an inclined surface, wherein a portion of the inclined surface rises towards the wall part and another portion rises from the notional spring axis towards the free end of the resilient latch. The configuration of two different portions of the inclined surface makes it possible on the one hand to provide that the latching receiving means can be pushed on towards the wall part over a portion of the inclined surface, over the resilient latch, and can then be latched, while on the other hand the latched latching receiving means can be released from the resilient latch again, more specifically when the latching receiving means is pushed over the second portion of the inclined surface, that rises from the notional spring axis towards the free end of the resilient latch. That makes it possible to achieve destruction-free separation of the latching receiving means from the fastening device.
It has further proven to be advantageous if the latching receiving means on the other wall part is in the form of a through opening. A latching receiving means in the form of a through opening can be technically readily implemented and can afford advantages in regard to stability.
It has proven to be advantageous if the fastening device is adapted to be releasable without a tool. Disengagement of the fastening device from its latched condition, without a tool, can contribute to short dismantling times, which can have the effect of reducing costs.
Preferably it can further be provided that the fastening device is provided at the side wall of a drawer and the latching receiving means is provided at the rear wall of a drawer.
Protection is also claimed for a connecting fitting for transversely connecting two wall parts of a furniture part with a—in particular two—fastening device of the above-indicated kind.
In that respect it can particularly preferably be provided that the connecting fitting is in one piece. The design configuration in the form of a one-piece connecting fitting can contribute to reducing production costs as it can be produced in an inexpensive injection molding process.
Specifically protection is also claimed for a drawer having at least one—in particular two—connecting fittings of the above-indicated kind.
Protection is also claimed for an article of furniture having at least one drawer of the above-indicated kind.
Further details and advantages of the present invention will be described by means of the specific description. In the drawing:
a shows a further perspective view of a connecting fitting as shown in
b shows a detail view of a fastening device of a connecting fitting as shown in
a shows a perspective view of two wall parts of a furniture part with a connecting fitting with two fastening devices, the two wall parts being in the separated condition,
b shows a perspective detail view of
a shows a perspective view of two wall parts as shown in
b shows a detail view of the
a shows a plan view of two wall parts of a furniture part in the non-fastened position,
b shows a perspective view of the two wall parts as shown in
c shows a detail view of
Both the two fastening devices 2 and 2′ are in one piece and also the entire connecting fitting 1. In that respect plastic is preferably used as the material for the fastening devices 2 and 2′ and for the connecting fitting 1.
This
In this preferred embodiment the fastening devices 2 and 2′ respectively have at least also a second resilient latch 4 and 4′ whose notional spring axis B (see
Provided between the two resilient latches 3, 4 and 3′, 4′ respectively is a limb 5 and 5′ respectively which contributes to enhancing the stability of the respective fastening device 2 and 2′.
In this preferred embodiment the connecting fitting 1 serves to connect a rear wall 111 to a side wall 112 of a drawer 102 (see in that respect
a shows an also perspective view of a connecting fitting 1 as just described with reference to
b shows a perspective detail view of the circled region in
The fastening device 2 in this preferred embodiment has two resilient latches 3 and 4 which are connected together by way of a connecting portion 7. The fastening device 2 is thus of a U-shaped cross-section.
In addition arranged on the connecting portion 7 is a limb 5 projecting between the two resilient latches 3 and 4. The two resilient latches 3 and 4 in this case are of a resilient configuration, wherein the resilient latch 3 is resilient about a spring axis A and the resilient latch 4 about a spring axis B.
In this preferred embodiment the two spring axes A and B are disposed transversely—preferably substantially at a right angle—to a wall (not shown) 140 (see
In this case the inclined surface 20 of the resilient latch 3 has a portion 21 which extends substantially in the same direction as the spring axis A. In the case of resilient latches belonging to the state of the art, these are normally displaced through about 90° relative to each other (strictly speaking, through 90° minus the angle of the rise of the portion of the inclined surface).
In addition the inclined surface has a further portion 22 which rises from the notional spring axis A or B respectively towards the free end 6 of the resilient latch 3 and 4 respectively (see in that respect
a shows a perspective view of two wall parts 103 and 104 in a condition of being released from each other. In this preferred embodiment the wall part 104 is in the form of a side wall 112 of a drawer 102 (not shown), the other wall part 103 is in the form of a rear wall 111. The connecting fitting 1 is pre-mounted to the side wall 112. The connecting fitting 1 has two fastening devices 2 and 2′ corresponding to the latching receiving means 30 and 30′ respectively of the rear wall 111.
In this preferred embodiment the latching receiving means 30 and 30′ are in the form of openings 31—strictly speaking in the form of a through opening 32—(see
In this case the latching receiving means 30 and 30′ are disposed in the latching plate 8 which for connecting the two wall parts 103 and 104 is pushed over the two fastening devices 2 and 2′ and, after it has pressed the resilient latches 3 and 4, and 3′ and 4′ respectively of the fastening devices 2 and 2′ together, latches behind the resilient latches 3, 4 and 3′, 4′ respectively of the two fastening devices 2 and 2′. That provides a stable connection of the two wall parts 103 and 104, or the side wall 112 to the rear wall 111 (see
b shows a detail view of the fastening device 2 as shown in
As a result a joining direction X extends substantially parallel to the notional spring axes A and B of the resilient latches 3 and 4 and as a result the latching receiving means 30 can be moved in a sole single joining direction X until reaching an end latching position, over the two resilient resilient latches 3 and 4, and that thus permits extremely quick and simple assembly.
By virtue of this arrangement of the spring axes A and B the longitudinal extent of the resilient latch 3 and 4—from the notional spring axes A and B towards the free end of the resilient latches 3 and 4—has no influence on the maximum wall thickness of the side wall 112. That makes it possible for narrow side walls 112 and 112′ (see
Assembly of the two wall parts 103 and 104:
a and 3b show the two separated wall parts 103 and 104—the mutually separated side wall 112 and rear wall 111—, while
For fastening the rear wall 111 to the side wall 112 the rear wall 111 or its latching plate 8 is pushed with the two latching receiving means 30 and 30′ thereof, which are in the form of through openings 32, over the resilient latches 3, 4 and 3′, 4′ respectively in a sole single joining direction X until reaching an end latching position. For that purpose the resilient latches have a portion 21 of an inclined surface 20 which rises towards the wall 140 of the wall part 104—in this embodiment the side wall 112.
While the latching plate 8 is being pushed over the resilient latches 3, 4 and 3′, 4′ respectively it compresses the resilient latches 3, 4 and 3′, 4′ respectively until it has moved beyond them and then is placed behind the resilient latches and the resilient latches 3, 4 and 3′, 4′ respectively are relieved again by virtue of their spring action. Thus the latching plate 8 and therewith the rear wall 111 is fastened to the side wall 112.
As can be clearly seen from
For again releasing the latching plate 8 the resilient latch 3 has a portion 22 of the inclined surface 20, which rises from the notional spring axis A towards the free end 6 of the resilient latch 3. That portion 22 serves as an inclined disengagement portion. When now the rear wall 111 is pivoted in the direction of the side wall 112 and thus towards the resilient latch 3 the resilient latch 3 is again compressed by the latching plate 8 and the rear wall 111 can be removed from the side wall 112 or the connecting fitting 1 again.
That dismantling process is shown in
This therefore provides a fastening device which is both compact and also releasable again.
Number | Date | Country | Kind |
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1945/2010 | Nov 2010 | AT | national |
Number | Date | Country | |
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Parent | PCT/AT2011/000469 | Nov 2011 | US |
Child | 13898868 | US |