CN104684440B - Ejecting mechanism for displaceable furniture parts - Google Patents
Ejecting mechanism for displaceable furniture parts Download PDFInfo
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- CN104684440B CN104684440B CN201380036578.6A CN201380036578A CN104684440B CN 104684440 B CN104684440 B CN 104684440B CN 201380036578 A CN201380036578 A CN 201380036578A CN 104684440 B CN104684440 B CN 104684440B
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- furniture parts
- locking element
- ejecting mechanism
- displaceable furniture
- closed position
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- 210000004279 Orbit Anatomy 0.000 description 1
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Abstract
nullThe present invention relates to a kind of lockable ejecting mechanism (1) for displaceable furniture parts (2),This ejecting mechanism includes the release element (3) loaded along opening direction (OR) to displaceable furniture parts (2)、Housing (4) and be arranged in this housing (4) or on locking element (5),By this locking element at least in the closed position (SS) of displaceable furniture parts (2),Release element (3) can be stopped along the path of opening direction (OR),Wherein,Not only displaceable furniture parts (2) by from closed position (SS) to close direction (SR) overvoltage time and also displaceable furniture parts (2) by from closed position (SS) to opening direction (OR) tractive time,Release element (3) can be released by described locking element (5),Wherein,Release element (3) not only to be unlocked about the relative motion of housing (4) by locking element (5) when displaceable furniture parts (2) is by overvoltage but also when displaceable furniture parts (2) is pulled.
Description
Technical field
The present invention relates to a kind of lockable ejecting mechanism for displaceable furniture parts, this ejecting mechanism includes along opening
Direction to displaceable furniture parts release element, housing and be arranged in this housing or on locking element, at least in movable family
In the closed position of tool parts, release element can be stopped by this locking element, wherein, not only along the path of opening direction
From closed position to close direction overvoltage displaceable furniture parts time and also from closed position to the movable family of opening direction tractive
During tool parts, release element and can be released by this locking element.The invention still further relates to one and include this lockable push away
Go out the furniture of mechanism.
Background technology
In furniture part field, ejecting mechanism is the most known for many years, by described ejecting mechanism, displaceable furniture parts quilt
Automatically open up.User merely presses on displaceable furniture parts so that locking is released and displaceable furniture parts is by accumulator
Release.
The modification of ejecting mechanism locking is the locking via centroid by a kind of being commonly used in.First with release at this
The latch elements that part connects is maintained in the cavity of centroid shape slideway in a closed position.By pressing displaceable furniture parts
Latch elements is moved out from cavity, is thus released in the path opening in section of centroid shape slideway.
This lockable ejecting mechanism with centroid shape slideway problematically, this slideway can only by pressing
Open.And when tractive furniture parts, then can not open, this is because latch elements can not be from the kayser of centroid shape slideway
Cavity departs from.
In order to solve this problem, the most known have substantial amounts of mechanism, unlocks and also lead to not only by pressing in these mechanisms
Cross tractive to complete.EP 2 272 400 A1, JP 2007-009 507, US7,374,261 and JP 2008-208 684 disclose
For this example, wherein, the parts of centroid shape slideway rotate when tractive or pivot, thus in tractive kayser unit
Can also unlock during part.
WO 2007/050737 A2 discloses a kind of expansible flexible channel, by this passage, and the kayser unit when tractive
Part exits to opening direction and therefore can be unlocked.
Constitute and disclose one movably " stopper " at Austria application A 614/2011 first right, undocumented,
This stopper constitutes the kayser cavity of centroid shape slideway.When the latch elements of tractive locking, should " stopper " transport against spring
Dynamic and release is used for the overload path of latch elements.
Summary of the invention
It is an object of the invention to: the lockable ejecting mechanism that a kind of hinge structure is alternative is provided.Especially should
Unblock when can realize ejecting mechanism in a straightforward manner not only in overvoltage but also at tractive.
This is achieved by the lockable ejecting mechanism for displaceable furniture parts, and this ejecting mechanism includes along opening
Direction to displaceable furniture parts load release element, housing and be arranged in this housing or on locking element, by this lock
Only element is at least in the closed position of displaceable furniture parts, and release element can be stopped along the path of opening direction, wherein,
Not only at displaceable furniture parts by during from closed position to closedown direction overvoltage but also at displaceable furniture parts by from closed position
When opening direction tractive, release element and can be released by described locking element, wherein, release element not only movably
Furniture parts by during overvoltage and also can be by locking element about the relative motion of housing when displaceable furniture parts is pulled
Unlock, wherein, be provided with position for detecting displaceable furniture parts detection device and for by displaceable furniture parts by
Transfer device that the position that detects of detection device is delivered on locking element, wherein, locking element can detect with described
Moving relatively in position, described transfer device has rotation element, during this rotation element can be maintained at by least one accumulator
Between in position, it is characterised in that described detection device acts on rotation element via functional element, and this rotation element is not only being made
With element along opening direction move time and also functional element along close direction move time can from described centre position rotate from
Open.It is in this particular advantage: when overvoltage and tractive, locking element is always by identical motion.Known in the art
Lockable ejecting mechanism in be all the time kayser cavity constitute locking element.But this kayser cavity is being beaten by the normal of overvoltage
Open in motion and do not move, and only when tractive according in the ejecting mechanism of prior art, at least one parts of kayser cavity
Just move.
Preferred embodiment, ejecting mechanism includes the position for detecting displaceable furniture parts to one according to the present invention
Detection device and for by the transmission being delivered on locking element by the position that detects of detection device of displaceable furniture parts
Device, wherein, locking element can move relatively with the described position detected.Therefore the position of displaceable furniture parts is by simply
Be delivered on locking element.
Detection device is without being all connected with locking element in any position.More properly can set: detection device exists
In closed position, in overvoltage closed position and at least next-door neighbour closed position of displaceable furniture parts and in this closed position
The open position of front side abuts on displaceable furniture parts or is connected with this displaceable furniture parts.
In order in a straightforward manner tractive motion and pressing motion are converted to the same motion of locking element, preferably
Regulation: transfer device has rotation element, and this rotation element can be maintained in centre position by least one accumulator.Excellent for this
Choosing can further provide for: detection device acts on rotation element via functional element, wherein, rotates element not only at functional element
Along opening direction move time but also functional element along close direction move time can rotate from centre position.Preferably, exist
The locking releasing element time outside rotation element is in an intermediate position releases.
In order to design ejecting mechanism simply, can set according to the first embodiment of the present invention: described rotation element is same
Time be locking element.Especially specify for this: locking element is connected with the spring of two composition accumulators via two camber members,
Described spring is fixed on housing in side and is separately fixed at opposite side on an end of one of two camber members, its
In, camber member can move in the elongated hole in being configured in housing limitedly preferably via director element.First embodiment is also
Can specify that the rotary motion of locking element when unlocking the most in one direction, carry out the most along clockwise direction, wherein, should
Rotary motion is restricted based on camber member, and these camber members are directed in two elongated holes via director element.
Can set according to the second embodiment of the present invention: locking element and rotation element construct dividually, wherein, locking
Element is loaded by accumulator and abuts on rotation element.In order to motion detection result is delivered on locking element
This can specify that locking element abuts on the V-arrangement region rotating element, wherein, when locking element abuts in V-arrangement region
Time on the point of rotary shaft, during rotation element is the most in an intermediate position.
The most only need to ensure: release element is hindered along the path of opening direction by locking element
Gear.This such as can be realized by friction or clamping.Preferably regulation: release element in a closed position via first with this release
The latch elements that part connects is maintained on locking element in the way of shape is sealed.
Path is opened for release element, preferably regulation: locking element is not only movably in order to realize discharging simply
Furniture parts is when the closedown direction overvoltage of quilt edge, closed position and at displaceable furniture parts from closed position by along opening direction
Can move transverse to opening direction during tractive.
A kind of furniture is also claimed, it include displaceable furniture parts and according to the present invention for displaceable furniture parts
Lockable ejecting mechanism.
Accompanying drawing explanation
Below with reference to the accompanying drawings illustrated embodiment illustrates to describe other details of the present invention and advantage in detail by accompanying drawing.Attached
In figure:
Fig. 1 to 4 is the schematic diagram of furniture, during wherein displaceable furniture parts is in different positions;
Fig. 5 and 6 is the exploded view of the first embodiment of lockable ejecting mechanism;
Fig. 7 is the lockable ejecting mechanism being in assembled state;
Fig. 8 is to the view that 13 is the ejecting mechanism being in diverse location;
Figure 14 is the second embodiment of lockable ejecting mechanism;
Figure 15 is the exploded view of Figure 14;
Figure 16 to 20 is the view of the diverse location of the ejecting mechanism according to the second embodiment;
Figure 21 is the 3rd embodiment of lockable ejecting mechanism;
Figure 22 is the exploded view of Figure 21;
Figure 23 to 27 is the view of the diverse location of the ejecting mechanism according to the 3rd embodiment.
Detailed description of the invention
Fig. 1 illustrates furniture 18, it include Furniture Body 20 and in Furniture Body the furniture parts 2 of movable support, wherein
In furniture parts 2 SS in the closed position.Displaceable furniture parts 2 is via drawer rail 21 (the most also via intermediate orbit)
It is connected with main body track 22.Main body track 22 also constitutes the housing 4 of lockable ejecting mechanism 1 according to this schematic diagram.Kickoff mechanism
Structure 1 has release element 3, and this release element is pushed out accumulator 24 and loads to opening direction OR.Release accumulator 24 in FIG
Clamping, this is because release element 3 is locked out element 5 to the path of opening direction OR and blocks.Drawer rail 21 is fixed with
Driving device 23, locking element 5 via transfer device 7 with driving device 23 at least time be connected.Transfer device 7 has for examining
Survey driving device 23 and thus the position of displaceable furniture parts 2 detection device 6 and rotate element 8.
When pressing displaceable furniture parts 2 according to Fig. 2 to closedown direction SR, displaceable furniture parts 2 arrives overvoltage close stance
Put in UES.Moving by this, driving device 23 and detection device 6 also move to closedown direction SR, thus via rotating element 8,
Locking element 5 moves transverse to the direction of motion of displaceable furniture parts 2 and discharges for releasing element 3 to opening direction OR
Path.
When along opening direction tractive displaceable furniture parts 2, unlock in substantially the same manner according to Fig. 3 locking element 5.
Thus displaceable furniture parts 2 arrives next-door neighbour closed position SS and along opening direction OR open position ZS before this closed position
In (tractive position).
Once locking element 5 release releases element 3 either by pressing (see Fig. 2) or by tractive (see figure
3), release accumulator 24 just to move along opening direction OR according to Fig. 4 and drive at this or release displaceable furniture parts
2.Driving device 23 this can as known by detection device 6 pivot into no-load operation.Thus movable furniture
In parts 2 OS in an open position.
The first embodiment of the present invention is shown in Fig. 5 to 13.The shell of ejecting mechanism 1 shown in the exploded view of Fig. 5 and 6
Body 4, wherein, releases element 3 movable along guide rail 39.Release element 3 via unshowned device at least section with movably
Furniture parts 2 connects.It is movably disposed within primary element 25 along guide rail 31 between element 3 and housing 4 releasing.In unit substantially
The spring guider 34 for releasing accumulator 24 it is also equipped with on part 25.Thicker end at a lateral spring guider 34
Region, portion and backstop 33 composition released on element 3 at opposite side are used for releasing the spring fastening of accumulator 24.In unit substantially
It is provided with rotary shaft D rotating element 8 by pin on part 25.Rotate element 8 and simultaneously constitute locking in this first embodiment
Element 5, is configured with the locking region 37 for the latch elements 17 shown in Fig. 6 in locking element 5.Two camber members 11 and 12
Act on locking element 5.Camber member 11 is scarfed in the connecting hole 29 of locking element 5 via its pin-shaped end.It addition, arch
Part 11 is movably guided in the elongated hole 15 constructed in housing 4 via director element 26.It addition, camber member 11 via
Constitute the spring 13 of accumulator 9 and spring is supported in backstop 28 with loading.This backstop 28 via fixed area 32 with housing 4
Fixing connection.Camber member 12 is maintained in the connecting hole 30 of locking element 5 via its pin-shaped leading section in an identical manner.
Guide it addition, the director element 27 of camber member 12 is removable in the elongated hole 16 of bottom.It addition, this camber member 12 is via equally
The spring 14 constituting accumulator 9 carrys out spring loading.Via connecting hole 46, rotate element 8 or locking element 5 and primary element 25
Pin-shaped rotary shaft D be rotatably attached.The exploded view of Fig. 6 it is also shown that: is configured with gib block on primary element 25
36, this gib block is scarfed in the guide rail 31 in housing 4.Gib block 36 is slightly shorter than guide rail 31 at this, thus primary element 25 can
Together to carry out overvoltage campaign and tractive motion.Releasing element 3 can be limited in the spring guide rail 35 of housing 4 via backstop 33
Ground is mobile.On the one hand release element 3 at this and can move to backstop 47 and on the other hand along closing direction along opening direction OR
SR can move to release accumulator 24 and clamps completely or move to the backstop on spring guider 34.
Fig. 7 illustrates the ejecting mechanism 1 in assembled state, extend in spring guide rail 35 in this backstop 33.It addition, two are led
It extend in corresponding elongated hole 15 and 16 to element 26,27.Whole lockable ejecting mechanism 1 is positioned in the SS of closed position.
Matingly with this, Fig. 8 illustrates the lockable ejecting mechanism 1 being similarly in the SS of closed position.Due to two structures
Make the spring 13 and 14 for stage clip and be configured to same intensity, so locking element (=rotate element 8) it is also at centre position M
In.On the right part that this director element 27 abuts in the elongated hole 16 offset slightly to the left and can not continue along opening direction
OR moves.Owing to spring 13 intensity is identical, so director element 26 is maintained on the left part of the elongated hole 15 offset more to the right.
It is arranged on the latch elements 17 released on element 3 to be maintained in the locking region 37 of locking element 5.Latch elements 17 is along the side of opening
Therefore stopped by locking element 5 to the path of OR.
When pressing displaceable furniture parts 2 along closedown direction SR from the SS of closed position, lockable ejecting mechanism 1 arrives
In overvoltage closed position UES according to Fig. 9.Displaceable furniture parts 2 is transmitted via detection device 6 not shown further at this
Position, and release element 3 and make locking element 5 relative to housing 4 to left movement, described release element with by latch elements 17
The functional element 10 constituted constitutes transfer device 7 together.Due to the camber member 11 on top based on backstop on the left of elongated hole 15
Director element 26 and can not continue to left movement, be forced to be rotated in a clockwise direction so rotating element 8, until camber member 12
Director element 27 moves against the power of spring 14 until in the left side backstop of elongated hole 16.Rotary shaft D is also relative to housing 4 simultaneously
Move a half-distance.By rotate element 8 rotation, locking region 37 also pivots, thus latch elements 17 its by overvoltage
Motion imports to be released and be the most no longer locked out element 5 in locking element 5 and stops.
Identical unblock effect is also achieved when according to Figure 10 tractive displaceable furniture parts 2.When the movable furniture of tractive
During parts 2, release element 3 and close along with this release element latch elements 17 moves along opening direction OR and arrives next-door neighbour
In position SS and the open position ZS on front side of this closed position.By latch elements 17, it simultaneously constitutes functional element
10 rotate element 8 moves along opening direction OR to the right.The camber member 12 of bottom is based on being on the right side of elongated hole 16 in backstop
Director element 27 can not move along opening direction OR further.Contrary camber member 11 can be with its director element 26 on top
Elongated hole 15 continues move along opening direction OR, the most again trigger locking element 5 or rotate element 8 around rotary shaft D
Rotary motion along clockwise direction.Rotary shaft D along opening direction OR move half that the relative housing 4 of connecting hole 29 moves away from
From, until gib block 36 abuts on the end of guide rail 31.By locking element 5 rotation along clockwise direction, in Fig. 10
Latch elements 17 also arrives at outside the locking region 37 of locking element 5.
By this unblock, releasing accumulator 24 according to Figure 11 can release and make release element 3 and along with releasing unit
Part 3 makes displaceable furniture parts 2 move along opening direction OR via unshowned attachment means.Once latch elements 17 no longer with lock
Only element 5 contacts, and a corresponding spring 13 or 14 returns the most again initial position, thus rotates element 8 the most again along side counterclockwise
In the initial position moved to according to Figure 11 or centre position M.
According to Figure 12, release the further release of accumulator 24 and arrive entering of ejecting mechanism 1 or displaceable furniture parts 2
In the open position OS of one step.
When being again switched off displaceable furniture parts 2, again clamp release via releasing element 3 along closing moving of direction SR
Accumulator 24.Latch elements 17 contacts with locking element 5 at this (to see Figure 13) in the decline of close session, is entering one
In the closedown campaign of step, latch elements 17 is pressed onto on entrance inclined-plane 38 and makes locking element 5 around rotary shaft D against spring 14
Power rotate, until latch elements 17 snaps in or be locked in locking region 37.Therefore the initial bit according to Fig. 8 is arrived again at
Put (closed position SS).
Figure 14 illustrates another embodiment of the present invention to 20, rotates element 8 at this and locking element 5 is configured to separate structure
Part.Release element 3 to be still movably supported on housing 4 along guide rail 39 at this.Release element 3 via broadening end region
This end regions of territory constitutes latch elements 17 and is locked out element 5 and keeps.Locking element 5 still can around rotary shaft X
It is rotatably supported on housing 4 and is supported on the accumulator 9 on housing 4 to load.It addition, rotate element 8 via rotary shaft D
Can be rotated to support on housing 4.The functional element 10 being connected with detection device 6 is positioned at outside the point of rotation rotating element 8.Inspection
Survey device 6, functional element 10 and rotation element 8 and collectively form transfer device 7 for being delivered to the position of displaceable furniture parts 2
On locking element 5.Described position is especially delivered on locking element 5 via the V-arrangement region rotating element 8.
Correspondingly, Figure 16 illustrates closed position SS, and locking element 5 abuts in the V-arrangement region V's of rotation element 8 wherein
On the some P of rotary shaft, and rotate element 8 then in the M of centre position.Accumulator 9 the most slightly release at this,
The locking region 37 making locking element 5 stops the path releasing element 3 along opening direction OR.This is broadening by releasing element 3
End realize, therefore this broadening end constitutes latch elements 17.
Now, when pressing displaceable furniture parts 2 according to Figure 17 to the right along closedown direction SR, detection device 6 moves right
And along with this detection device functional element 10 also moves right.Rotation element 8, institute is acted on prejudicially due to functional element 10
Be rotated in a clockwise direction with this rotation element, thus locking element 5 can not be posted by again V-arrangement region V near rotary shaft
Some P on and power against accumulator 9 pivot counterclockwise.Thus locking region 37 no longer stops latch elements 17, thus pushes away
Go out element 3 to be released or be unlocked.
When along opening direction OR tractive displaceable furniture parts 2, detection device 6 is opened together with functional element 10 edge the most to the left
Direction OR moves (Figure 18).Thus rotate element 8 the most from which between position M rotate, and locking element 5 is not
Abut in again on the some P near rotary shaft of V-arrangement region V.Locking element 5 is again the most inverse in the case of accumulator 9 clamps
Hour hands pivot, and thus release element 3 and are again released.
Once arrive overvoltage closed position UES (Figure 17) or next-door neighbour closed position SS and opening on front side of this closed position
Position ZS (Figure 18), the most unshowned release accumulator 24 just can make release element 3 transport along opening direction OR
Dynamic, as shown in Figure 19.Once displaceable furniture parts 2 arrives open position OS or once detects device 6 freely, accumulator
9 can release and make rotation element 8 be re-moved to intermediate position M via locking element 5 again.
When closed, unshowned release accumulator 24 is clamped again, and releases element 3 along closedown side according to Figure 20
Move to SR.By entering inclined-plane 38, release element 3 and made locking element 5 against accumulation of energy before will arriving closed position SS
The power of device 9 pivots.Once crossing the widest point releasing element 3, the latch elements 17 releasing element 3 is locked out element 5 the most again
Locking region 37 partial frictional sealed and part shape keeps in locking manner.
Figure 21 to 27 illustrates the 3rd embodiment of lockable ejecting mechanism 1.According to Figure 21 and 22, ejecting mechanism 1 has
Housing 4, releases element 3 and is movably supported in the guide rail 39 of housing 4.At the spring fastening 40 being configured on housing 4 and structure
Making between the spring fastening 41 released on element 3, the release accumulator 24 being configured to stage clip is tensioned.Release the increasing of element 3
Wide end still constitutes latch elements 17.Locking element 5 is the most non-rotatable but is supported on shell movably
In the track 48 of body 4.On the end of track 48, locking element 5 is loaded by accumulator 9 (stage clip).Locking element 5 has elongated
Hole 45.The end towards guide rail 39 direction of locking element 5 is provided with locking region 37.Housing 4 is configured with for
The pin receiving portion 43 of pin 42, here, pin 42 simultaneously constitutes rotary shaft D for rotating element 8 and through elongated hole 45.Pin 42
It is connected with rotation element 8 via pin receiving portion 44.Rotate element 8 and additionally there is V-arrangement region V, the rearward end of locking element 5
Abut on this V-arrangement region.It addition, be provided with recess prejudicially in rotating element 8, this recess is constituted for implementing the 3rd
The functional element 10 of the transfer device 7 not being shown specifically in example.
According to Figure 23, in lockable ejecting mechanism 1 SS in the closed position.In this accumulator 9 substantially release and
The locking region 37 of locking element 35 stops the path releasing element 3 along opening direction OR.It is configured to the release accumulator of stage clip
24 tensionings.Rotating in element 8 M in an intermediate position, the rearward end at this locking element 5 abuts in the V-arrangement region rotating element 8
On the some P near rotary shaft of V.
Once entering overvoltage closed position UES along closing direction SR overvoltage displaceable furniture parts 2, functional element 10 via
Unshowned transfer device 7 also moves along cut out direction SR, rotates element 8 and rotates around rotational axis D the most along clockwise direction,
Thus the rearward end of locking element 5 is moved rearwards by (Figure 24) against the power of accumulator 9.This is accomplished by: rotate unit
Part 8 moves out from the M of centre position, and the rearward end of locking element 5 the most no longer abuts in the some P near rotary shaft
On.Locking region 37 retreats and discharges for latch elements 17 and release the element 3 path along opening direction OR simultaneously.
When along opening direction OR tractive displaceable furniture parts 2, functional element 10 also together moves also along opening direction OR
And thus make rotation element 8 rotate (Figure 25) the most counterclockwise.Thus locking element 5 is again against the power of accumulator 9
Mobile so that locking region 37 discharges latch elements 17 and thus discharges release element 3.
By release or unlock, releasing accumulator 24 can be with release and make release element 3 move along opening direction OR
In the open position OS according to Figure 26.Once not having power to be re-applied on functional element 10, accumulator 9 just can release again
And rotate element 8 to arrive in the M of centre position.
When closing displaceable furniture parts 2, release element 3 again by entering the locking district from locking element 5, the inclined-plane 38
The other process in territory 37, release element 3 part shape again is sealed and partial frictional is maintained on locking region 37 in locking manner afterwards.Pushing away
Go out the spring force that have to be larger than accumulator 9 based on the friction releasing accumulator 24 between element 3 and locking region 37.
Therefore, the design of a kind of alternative locking element 5 in current lockable ejecting mechanism 1 is shown by the present invention
Structure, releases element 3 and not only passes through lock when overvoltage displaceable furniture parts 2 but also when tractive displaceable furniture parts 2 at this
Only element 5 can unlock about the relative motion of housing 4.
Certainly, however, it would be possible in the case of keeping this basic thought, transform whole mechanism.The most such as can also be by
Whole ejecting mechanism 1 is arranged on displaceable furniture parts 2 and releases on the driving device 23 being fixed in main body.
In addition to releasing element 3, the drawn-back device preferably buffered can also be set, by this drawn-back device, furniture in principle
Parts 2 are gently drawn in the SS of closed position.Drawn-back device can structurally be integrated in whole structure or also can be independent
Structure.Housing 4 is without being interpreted as encapsulation, but it can be appreciated that pure buck plate, is provided with lockable on this buck plate
The vitals of ejecting mechanism 1.
Claims (13)
1. for the lockable ejecting mechanism (1) of displaceable furniture parts (2), this ejecting mechanism include along opening direction (OR) to
Release element (3) that displaceable furniture parts (2) loads, housing (4) and be arranged in this housing (4) or on locking element (5),
By this locking element at least in the closed position (SS) of displaceable furniture parts (2), release element (3) along opening direction (OR)
Path can be stopped, wherein, not only displaceable furniture parts (2) by from closed position (SS) to close direction (SR) overvoltage
Time and displaceable furniture parts (2) by from closed position (SS) to opening direction (OR) tractive time, release element (3) pass through institute
State locking element (5) and can be released, wherein, release element (3) not only when displaceable furniture parts (2) is by overvoltage and also
Can be unlocked about the relative motion of housing (4) by locking element (5) when displaceable furniture parts (2) is pulled, wherein, arrange
There is the detection device (6) of the position for detecting displaceable furniture parts (2) and be used for being filled displaceable furniture parts (2) by detection
Putting the transfer device (7) that the position that (6) detect is delivered on locking element (5), wherein, locking element (5) can be with described inspection
Moving relatively in the position measured, described transfer device (7) has rotation element (8), and this rotation element can be stored by least one
Can be maintained in centre position (M) by device (9), it is characterised in that described detection device (6) acts on rotation via functional element (10)
Turning element (8), this rotation element (8) is not only when functional element (10) moves along opening direction (OR) but also at functional element
Can be rotated away from from described centre position (M) along when closing direction (SR) motion.
Ejecting mechanism the most according to claim 1, it is characterised in that described detection device (6) is in displaceable furniture parts (2)
Closed position (SS) in, overvoltage closed position (UES) neutralize at least be close to closed position (SS) and on front side of this closed position
Open position (ZS) in abut in displaceable furniture parts (2) upper or be connected with displaceable furniture parts (2).
Ejecting mechanism the most according to claim 1 and 2, it is characterised in that rotating element (8) (M) in an intermediate position
Outside time release element (3) locking release.
Ejecting mechanism the most according to claim 1 and 2, it is characterised in that described rotation element (8) is locking element simultaneously
(5)。
Ejecting mechanism the most according to claim 4, it is characterised in that described locking element (5) is via two camber members
(11,12) and be connected with the spring (13,14) of two composition accumulators (9), described spring (13,14) is fixed on housing in side
(4) upper and on the end that opposite side is separately fixed at one of two camber members (11,12), wherein, camber member (11,
12) elongated hole in being configured in housing (4) (15,16) can move limitedly.
Ejecting mechanism the most according to claim 5, it is characterised in that the rotary motion of described locking element (5) is unlocking
Time carry out the most in one direction, and this rotary motion is restricted, these camber member warps based on described camber member (11,12)
Directed in two elongated holes (15,16) by director element (26,27).
Ejecting mechanism the most according to claim 1 and 2, it is characterised in that described locking element (5) and rotation element (8)
Constructing dividually, wherein, locking element (5) is loaded and abuts in by accumulator (9) in rotation element (8).
Ejecting mechanism the most according to claim 7, it is characterised in that described locking element (5) abuts in rotation element (8)
V-arrangement region (V) on, when the point (P) near rotary shaft that locking element (5) abuts in V-arrangement region (V) is upper, rotate unit
In part (8) (M) the most in an intermediate position.
Ejecting mechanism the most according to claim 1 and 2, it is characterised in that described release element (3) is at closed position (SS)
In be maintained on locking element (5) via latch elements (17).
Ejecting mechanism the most according to claim 1 and 2, it is characterised in that locking element (5) is not only at movable furniture department
Part (2) by from closed position (SS) along close direction (SR) overvoltage time and also at displaceable furniture parts (2) by from closed position
(SS) can move transverse to opening direction (OR) along during opening direction (OR) tractive.
11. ejecting mechanisms according to claim 6, it is characterised in that the rotary motion of described locking element (5) is unlocking
Time carry out along clockwise direction.
12. ejecting mechanisms according to claim 9, it is characterised in that described release element (3) is in closed position (SS)
It is maintained in the way of shape is sealed on locking element (5) via latch elements (17).
13. furniture (18), it include displaceable furniture parts (2) and according to described in any one of claim 1 to 12 for can
The lockable ejecting mechanism (1) of dynamic furniture parts (2).
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
ATA768/2012A AT512509B1 (en) | 2012-07-10 | 2012-07-10 | Ejecting device for a movable furniture part |
ATA768/2012 | 2012-07-10 | ||
PCT/AT2013/000089 WO2014008520A1 (en) | 2012-07-10 | 2013-05-17 | Ejection device for a movable furniture part |
Publications (2)
Publication Number | Publication Date |
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CN104684440A CN104684440A (en) | 2015-06-03 |
CN104684440B true CN104684440B (en) | 2016-11-30 |
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DE19514154C2 (en) * | 1994-04-20 | 1997-07-17 | Illinois Tool Works | Spring lock device |
CN2648909Y (en) * | 2003-08-26 | 2004-10-20 | 杨俊龙 | Sliding rail for drawer with automatic homing device |
US7347515B1 (en) * | 2005-07-01 | 2008-03-25 | Gslide Corporation | Sliding rail assembly auto opening mechanism for drawer |
US7374261B1 (en) * | 2006-12-08 | 2008-05-20 | Dynaslide Corporation | Push-open type slide structure |
CN101951808A (en) * | 2008-03-19 | 2011-01-19 | 尤利乌斯·布卢姆有限公司 | Immobilization device for locking a furniture part movably supported in or on a piece of furniture |
EP2364614A2 (en) * | 2010-03-12 | 2011-09-14 | Paul Hettich GmbH & Co. KG | Opening device for movable parts of furniture |
Patent Citations (6)
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DE19514154C2 (en) * | 1994-04-20 | 1997-07-17 | Illinois Tool Works | Spring lock device |
CN2648909Y (en) * | 2003-08-26 | 2004-10-20 | 杨俊龙 | Sliding rail for drawer with automatic homing device |
US7347515B1 (en) * | 2005-07-01 | 2008-03-25 | Gslide Corporation | Sliding rail assembly auto opening mechanism for drawer |
US7374261B1 (en) * | 2006-12-08 | 2008-05-20 | Dynaslide Corporation | Push-open type slide structure |
CN101951808A (en) * | 2008-03-19 | 2011-01-19 | 尤利乌斯·布卢姆有限公司 | Immobilization device for locking a furniture part movably supported in or on a piece of furniture |
EP2364614A2 (en) * | 2010-03-12 | 2011-09-14 | Paul Hettich GmbH & Co. KG | Opening device for movable parts of furniture |
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