CN107581810A - Furniture assembly and the vibrations arrangement for detecting for knockdown furniture part - Google Patents

Furniture assembly and the vibrations arrangement for detecting for knockdown furniture part Download PDF

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Publication number
CN107581810A
CN107581810A CN201610530519.XA CN201610530519A CN107581810A CN 107581810 A CN107581810 A CN 107581810A CN 201610530519 A CN201610530519 A CN 201610530519A CN 107581810 A CN107581810 A CN 107581810A
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CN
China
Prior art keywords
furniture
piece
component
vibration
moving part
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Granted
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CN201610530519.XA
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Chinese (zh)
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CN107581810B (en
Inventor
陈庚金
梁秀江
王俊强
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King Slide Works Co Ltd
King Slide Technology Co Ltd
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King Slide Works Co Ltd
King Slide Technology Co Ltd
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Priority to CN201610530519.XA priority Critical patent/CN107581810B/en
Publication of CN107581810A publication Critical patent/CN107581810A/en
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Publication of CN107581810B publication Critical patent/CN107581810B/en
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Abstract

A kind of vibrations arrangement for detecting of the present invention about furniture assembly and for knockdown furniture part, the furniture assembly include one first piece of furniture, one second piece of furniture and the vibration-type sensing device further.Second piece of furniture can be with respect to the first piece of furniture activity;The vibration-type sensing device further is arranged in one of first piece of furniture and second piece of furniture, and the vibration-type sensing device further includes a moving part;When a strength applies to the vibration-type sensing device further, the moving part is changed to one second state from a first state, to prevent activity of second piece of furniture with respect to first piece of furniture toward a direction.

Description

Furniture assembly and the vibrations arrangement for detecting for knockdown furniture part
Technical field
A kind of vibrations arrangement for detecting the present invention relates to furniture assembly and for knockdown furniture part, particularly relating to one kind can Prevent knockdown furniture part from meeting with vibrations and opening.
Background technology
In general, the furniture (such as the furniture object such as drawer, cabinet OR gate) or an equipment in life are met and earthquake When, if the shaking force of earthquake is excessive, a movable part of the furniture or the equipment usually have and voluntarily open with respect to a fixture (or Close) situation.Therefore, for security concern, research and development one kind makes two objects any relative because external force acts on The product of activity, turns into an important subject under discussion.
The content of the invention
Vibrations arrangement for detecting it is an object of the invention to provide a kind of all components and for knockdown furniture part, to realize energy Enough prevent knockdown furniture part from meeting with to shake and the phenomenon of abnormal start-up.
According to the viewpoint of the present invention, a kind of furniture assembly includes one first piece of furniture, one second piece of furniture and a vibrations Formula sensing device further.Second piece of furniture can be with respect to the first piece of furniture activity;It is characterized in:The vibration-type sensing device further is arranged in One of first piece of furniture and second piece of furniture, the vibration-type sensing device further include a sensing member and a moving part; Wherein, when a strength applies to the vibration-type sensing device further, the sensing member responds the strength to drive the moving part from one One State Transferring to one second state, to prevent activity of second piece of furniture with respect to first piece of furniture toward a direction.
It is preferred that the furniture assembly is also movably mounted to second piece of furniture, and a slide rail zero comprising an auxiliary member Part is connected to second piece of furniture, and the vibration-type sensing device further is arranged in first piece of furniture, when the sensing member be in this second State, and the auxiliary member from one first predetermined state change to second predetermined state when, the auxiliary member can be blocked in this Between slide rail part and the moving part.
It is preferred that the furniture assembly also adheres to second piece of furniture comprising a pedestal, the auxiliary member is pivoted to the pedestal.
It is preferred that the vibration-type sensing device further is arranged in first piece of furniture, and second piece of furniture includes a contact spy Sign, to by the moving part from second State Transferring to the first state.
It is preferred that first piece of furniture includes a solution tug feature, the auxiliary member to be changed from second predetermined state To first predetermined state.
It is preferred that second piece of furniture also includes a locating slot, the auxiliary member has a position point in the locating slot.
It is preferred that the vibration-type sensing device further also comprising a first component and a second component be movably mounted to this first Component, the second component respond the strength and the relative first component activity, the sensing member is responded the activity of the second component And the moving part can be driven.
It is preferred that the moving part is movably mounted to the first component, and the moving part has a contact site, the sensing member The moving part is driven by the contact site, wherein the contact site is an inclined-plane or a cambered surface.
It is preferred that the first component has the limit features that can be collocated with each other respectively with the moving part.
It is preferred that the first component has a protuberance, and there is the moving part elongated slot can arrange in pairs or groups the protuberance.
It is preferred that the first component includes a space to accommodate the second component, and the size of the second component is less than The space.
It is preferred that the vibration-type sensing device further is also lived comprising a rolling member to help the second component with respect to the first component It is dynamic.
It is preferred that the sensing member is a ball.
It is preferred that the sensing member is located between the first component and the second component.
It is preferred that the second component includes a supporting construction, to support a part for the sensing member.
It is preferred that the supporting construction includes a bottom and an inwall, the inwall has an angle with respect to the bottom, and this first Component is located at the adjacent supporting construction comprising a wall portion.
It is preferred that the vibration-type sensing device further also suspends the second component to the first component in midair comprising a rope part, should Rope part has pliability.
According to another viewpoint of the present invention, a kind of vibrations arrangement for detecting for knockdown furniture part includes one first furniture Part, one second piece of furniture and a vibration-type sensing device further.Second piece of furniture can be with respect to the first piece of furniture activity;Its feature It is:The vibration-type sensing device further is arranged in one of first piece of furniture and second piece of furniture, vibration-type sensing dress Put and include a moving part;Wherein, when a strength applies to the vibration-type sensing device further, the moving part is changed from a first state To one second state, to prevent activity of second piece of furniture with respect to first piece of furniture toward a direction.
Brief description of the drawings
To further illustrate the above-mentioned purpose, design feature and the effect that confirm the present invention, below with reference to accompanying drawing to this hair It is bright to be described in detail, wherein:
Fig. 1 shows that the solid that the furniture assembly of one embodiment of the invention includes one first piece of furniture and one second piece of furniture is shown It is intended to.
Fig. 2 shows that Fig. 1 removes the schematic perspective view of the second piece of furniture.
Fig. 3 shows the decomposing schematic representation of the furniture assembly of one embodiment of the invention.
Fig. 4 shows the combination diagram of Fig. 3 furniture assembly.
Fig. 5 shows the bottom schematic view of the second piece of furniture of the furniture assembly of one embodiment of the invention.
Fig. 6 shows the close-up schematic view of Fig. 5 a-quadrant.
Fig. 7 shows the perspective exploded view of the vibration-type sensing device further of one embodiment of the invention.
Fig. 8 shows the combination diagram of the vibration-type sensing device further of one embodiment of the invention.
Fig. 9 shows that the vibration-type sensing device further of one embodiment of the invention not yet receives the view of a strength.
Figure 10 shows that the vibration-type sensing device further of one embodiment of the invention receives the view of the strength.
Figure 11 show the moving part of the vibration-type sensing device further of one embodiment of the invention driven before view.
Figure 12 show the moving part of the vibration-type sensing device further of one embodiment of the invention driven after view.
Figure 13 show Figure 12 moving part driven after state, and an auxiliary member can respond that second piece of furniture is relative should First piece of furniture contacts the schematic diagram of the moving part toward direction activity.
Figure 14 shows that Figure 13 auxiliary member responds second piece of furniture with respect to first piece of furniture toward after direction activity, should The schematic diagram that auxiliary member can be driven by the moving part.
Figure 15 shows that the second piece of furniture of the furniture assembly of one embodiment of the invention includes a contact characteristic and responds second The activity of tool part can be used to contact the schematic diagram of the moving part.
Figure 16 shows that Figure 15 contact characteristic can respond the activity of the second piece of furniture and drive the moving part extensive from a state The multiple schematic diagram into an original state.
Figure 17 shows that the first piece of furniture of the furniture assembly of one embodiment of the invention includes a solution tug feature, and auxiliary member can Respond the second piece of furniture activity and to contact the solution tug feature schematic diagram.
Figure 18 shows that Figure 17 auxiliary member can respond the activity of the second piece of furniture and drive solution tug feature extensive from a state The multiple schematic diagram into an original state.
Figure 19 shows that the second piece of furniture of the furniture assembly of another embodiment of the present invention includes a blocking part, and the vibration-type The moving part of sensing device further driven before view.
Figure 20 shows that the moving part of Figure 19 of the present invention vibration-type sensing device further being capable of clip second furniture after being driven The view of the blocking part of part.
Figure 21 shows that the vibration-type sensing device further of another embodiment of the present invention not yet receives the view of a strength.
Figure 22 shows that Figure 21 of the present invention vibration-type sensing device further receives the view of the strength.
Embodiment
Fig. 1 shows that a furniture assembly 20 of one embodiment of the invention includes one first piece of furniture 22 and one second piece of furniture 24 Can be with respect to the activity of the first piece of furniture 22.In this embodiment, first piece of furniture 22 can be a cabinet, and second furniture Part 24 can be a drawer.It is preferred that by a pair of sliding rail assemblys, contribute to second piece of furniture 24 with respect to first piece of furniture 22 activities.
Coordinate shown in Fig. 2, each sliding rail assembly includes one first rail 26 and can lived with one second rail 28 with respect to first rail 26 It is dynamic.For example, second rail 28 can be with respect to first rail 26 from a stowed position activity to an extended position E.In this, the slide rail is total Into also include one the 3rd rail 30 to extend second rail 28 with respect to first rail 26 active strokes.Furthermore, this One rail 26 is mounted to first piece of furniture 22, therefore first rail 26 is considered as a part for first piece of furniture 22;Separately On the one hand, second rail 28 is mounted to second piece of furniture 24, therefore second rail 28 is considered as second piece of furniture 24 A part.Wherein, the furniture assembly 20 also includes a vibration-type sensing device further 32.The vibration-type sensing device further 32 can arrange In first piece of furniture 22 (being, for example, first rail 26) or second piece of furniture 24 (being, for example, second rail 28).In this implementation In example, so that the vibration-type sensing device further 32 is arranged in first piece of furniture 22 (being, for example, first rail 26) as an example.
As shown in figure 3, first rail 26 includes an extension 34, the vibration-type sensing device further 32 can be arranged on first rail 26 extension 34.On the other hand, second rail 28 includes a supporting part 36.In addition, the furniture assembly 20 is also pulled comprising a solution Feature 37 is located at first piece of furniture 22, such as the extension 34 positioned at first rail 26.Solution tug feature 37 can be considered this A part for one piece of furniture 22.
As shown in figure 4, second rail 28 can be with respect to first rail 26 from above-mentioned extended position E activities to stowed position R. Wherein, the position of the supporting part 36 of second rail 28 is the corresponding extension 34 to first rail 26.
As shown in figs. 5 and 6, the furniture assembly 20 is also movably mounted to second piece of furniture comprising an auxiliary member 39, Such as the auxiliary member 39 is the supporting part 36 for being movably mounted to second rail 28.And one slide rail part 41 be connected to this The supporting part 36 of two rails 28.
It is preferred that the furniture assembly also adheres to second piece of furniture comprising a pedestal 43, such as adhere to second rail 28 supporting part 36;The auxiliary member 39 is pivoted to the pedestal 43 by an axle portion 45 (or shaft member).It is preferred that second rail 28 Supporting part 36 includes an at least locating slot.In this embodiment, so that two locating slots 47a, 47b are located at the pedestal 43 as an example.Separately On the one hand, the auxiliary member 39 has a location division 49.After the auxiliary member 39 pivots with respect to the pedestal 43, the location division 49 can Clip is in one of two locating slots 47a, 47b, to keep the position of the auxiliary member 39.And the auxiliary member 39 has There is a releasing section 51, the releasing section 51 is, for example, an inclined-plane or cambered surface.On the other hand, second piece of furniture, such as second rail The pedestal 43 on 28 supporting part 36 includes a contact characteristic 53, and in this, the contact characteristic 53 is to be molded directly within the pedestal 43, and the contact characteristic 53 includes an inclined-plane 55 (or cambered surface).It is noted that the contact characteristic 53 can also be mounted in One component of the pedestal 43, in not limiting in implementation.
As illustrated in figs. 7 and 8, the vibration-type sensing device further 32 can include a first component 38, a second component 40, one is felt Survey the moving part 44 of part 42 and one.
The first component 38 can be fixed to above-mentioned first rail 26, such as be fixed to the extension 34 of first rail 26.Enter For one step, the first component 38 includes a body 46 and 48 adjacent body 46 of a spacing walls.Wherein, the body 46 has one Opening 50, and the spacing walls 48 define a space 52 and connect the opening 50.It is preferred that the first component 38 includes the phase of a wall portion 54 The adjacent opening 50.
The second component 40 can be with respect to the activity of first component 38.Specifically, the second component 40 is to be moveably mounted In the first component 38.It is preferred that the second component 40 is contained in the space 52 of the first component 38, and the second component 40 Size be less than the space 52.In this embodiment, the second component 40 includes one first side 56 and the position of one second side 58 With respect to first side 56.The second component 40 includes a supporting construction 60 and an installation portion 62.
The supporting construction 60 is, for example, to be located at first side 56, and the position of the supporting construction 60 is generally to correspond to extremely should The opening 50 of first component 38.It is preferred that the generally tapered shape of the supporting construction 60.Specifically, the supporting construction 60 has There are the top 66 of a bottom 64, one and an inwall 68 to be located between the bottom 64 and the top 66.Wherein, the width at the top 66 is big Width in the bottom 64, and the top 66 is proximate to the opening 50 of the first component 38.On the other hand, the inwall 68 is relative should Bottom 64 has an angle.In this embodiment, the inwall 68 is an inclined-plane or cambered surface with respect to the bottom 64.The first component 38 Wall portion 54 be peripheral direction positioned at the adjacent supporting construction 60.It is preferred that the wall portion 54 is generally C-shaped.
The installation portion 62 is to be located at second side 58, and the installation portion 62 can be a depressed area.It is preferred that the vibration-type Sensing device further 32 is also movably contained in the installation portion 62 comprising a rolling member 70.The rolling member 70 can be a ball or rolling Wheel.In this embodiment, the installation portion 62 is with the rolling member 70 all exemplified by a plurality of.
The sensing member 42 is located between the first component 38 and the second component 40.In this, the sensing member 42 is arranged in this Between the supporting construction 60 of second component 40 and the first component 38.Specifically, a part for the sensing member 42 may be housed in The bottom 64 of the supporting construction 60 of the adjacent second component 40, and another part of the sensing member 42 is above the supporting construction 60 Top 66 and the wall portion 54 of the adjacent first component 38.Wherein, the sensing member 42 can be a ball or other similar to spheroid The object of shape, but do not limit in implementation.
The moving part 44 is movably mounted to the first component 38.For example, the moving part 44 can be by the pivot of an articulated part 72 It is connected on the body 46 of the first component 38.It is preferred that there is the moving part 44 receiving space 74 and a contact site 76 to be Positioned at adjacent containing spaces 74.Wherein, the position of the receiving space 74 is generally to should sensing member 42;The contact site 76 Inclined-plane or cambered surface in this way.It is preferred that the first component 38 has the limit features that can be collocated with each other respectively with the moving part 44, Enable the moving part 44 relative activity of first component 38 in a preset range.In this, with the body of the first component 38 There is a protuberance 78, and there is the moving part 44 elongated slot 80 (or elongated hole) for the having border protuberance 78 that can arrange in pairs or groups to be on 46 Example.
As shown in Figures 9 and 10, the first component 38 can be fixed to first rail by a connecting portion 82 (or connector) 26 extension 34, in this by taking a plurality of connecting portions 82 as an example.Specifically, the first component 38 can by rivet, be spirally connected or The modes such as clamping are fixed to the extension 34 of first rail 26, in not limiting in implementation.
In in practice, as a strength F, the shaking force of e.g. external force or earthquake applies to the vibration-type sensing device further When 32 (or the furniture assembly 20), the second component 40 receive strength F and can be with respect to the activity of first component 38.Wherein, borrow Help these rolling members 70 (such as these rolling members 70 contact the extension 34 in first rail 26) that the second component can be helped 40 relative activities of first component 38.
Furthermore, the sensing member 42 respond strength F effect and can be from a first position P1 activities to one the Two position P2.Wherein, it should be noted that because strength F size power differs, thus second place P2 with respect to this first It is a variable position for the P1 of position.In simple terms, the sensing member 42 responds different size of strength F (external force or shake Power) and can be left from first position P1 and to reaching another location.More specifically, the sensing member 42 responds second structure Part 40 can be from first position P1 activities to second place P2 with respect to the activity of the first component 38.For example, when this Two components 40 respond strength F and it is movable when, the sensing member 42 can be resisted against the wall portion 54 of the first component 38, and the sensing Part 42 is driven to second place P2 by the inwall 68 of the supporting construction 60 of the second component 40 from first position P1, makes the sense The moving part 44 can be driven by surveying part 42.In this, the sensing member 42 can push against the contact site 76 of the moving part 44, to drive this Moving part 44.
Coordinate shown in Figure 11 and Figure 12, the auxiliary member 39 second piece of furniture relatively, such as holding with respect to second rail 28 Load portion 36 is in one first predetermined state L1.When the moving part 44 is driven by the sensing member 42, the moving part 44 can be from one First state S1 is changed to one second state S2 with respect to the first component 38, for example, the moving part 44 pivots from a first position To a second place.
As shown in figures 13 and 14, when the moving part 44 is in second state S2, and an external force or the shaking force of earthquake Effect is to second rail 28, such as makes second rail 28 with respect to first rail 26 toward during a first direction D1 activities, the auxiliary member 39 can respond second rail 28 contacts the moving part 44 toward first direction D1 activities, makes the auxiliary member 39 by the moving part 44 change to one second predetermined state L2 from first predetermined state L1, such as the auxiliary member 39 pivots from one first precalculated position To one second precalculated position, the auxiliary member 39 is so set to be blocked between the slide rail part 41 and the moving part 44.Or Person is, through second rail 28 is pressed with respect to first rail 26 toward during first direction D1 activities, can also to enable the auxiliary member 39 Enough it is blocked between the slide rail part 41 and the moving part 44.In other words, it is enough when the shaking force of external force or earthquake reaches When driving the moving part 44 to be in second state S2, such a design can ensure that second rail 28 with respect to first rail 26 by this External force or vibration facter are opened without arbitrary.
According to the characteristics of such, when second rail 28 is in a position, such as a stowed position R with respect to first rail 26 When, second rail 28 just can not be with respect to first rail 26 from stowed position R toward the movable segment distances of first direction D1.So Can be applicable to when the furniture assembly 20 includes self opening device (push-open device), second rail 28 just without Method is pressed a segment distance with respect to first rail 26 from stowed position R toward first direction D1, makes self opening device The elastic force of an elastic component of a drive mechanism can not be released.That is, second rail 28 just can not be with respect to first rail 26 certainly Open dynamicly.It is noted that due to self opening device for the field usual skill it will be appreciated that technology model Farmland, for brevity, do not repeated separately in this.
It follows that after the sensing member 42 responds strength F effect, the moving part 44 can be preventing this second Have activity of the part (such as the second rail 28) with respect to first piece of furniture (such as the first rail 26) toward a direction., should in this implementation kenel Second piece of furniture (such as the second rail 28) can not be with respect to first piece of furniture (such as the first rail 26) from stowed position R toward the first party To D1 activities.
As shown in Figure 15 and Figure 16, operable second rail 28 of operator is with respect to first rail 26 toward a second direction D2 (opposite above-mentioned first direction D1) activity.Furthermore, when second rail 28 is toward during second direction D2 activities, the contact is special The inclined-plane 55 (or cambered surface) of sign 53 can drive the moving part 44 to be changed from second state S2 to first state S1.For example, The moving part 44 is switched to the first position from the second place.It is noted that the moving part 44 also can have inclined-plane or Cambered surface, so that the contact characteristic 53 can drive the moving part 44.It should be noted that when the furniture assembly 20 include one self During opening device (push-open device), its opening ways can pass through pressing mode open, with the mode of drawing open also can, Either, such a furniture assembly 20 has seen U.S. also in relation with self folding mechanism (self-close device), this design State announces US8,172,345B2, usual skill for the field it will be appreciated that technology category, for brevity, in this Do not repeat separately.
As shown in Figure 17 and Figure 18, solution tug feature 37 can be that a component is arranged on first piece of furniture 22, such as pacify Mounted in first rail 26.Solution tug feature 37 has an elastic part 57.
When second rail 28 with respect to first rail 26 from an open position (or extended position) when, operator it is operable this Two rails, 28 relative first rail 26 is movable toward first direction D1.Furthermore, the releasing section 51 of the auxiliary member 39 can connect The elastic part 57 of solution tug feature 37 is touched, the auxiliary member 39 is changed from second predetermined state L2 to first predetermined state L1.For example, the auxiliary member 39 is switched to first precalculated position from second precalculated position.
As shown in Figure 19 and Figure 20, in one second implements kenel, one second piece of furniture of the furniture assembly 200, such as Second rail 202, include a blocking part 204.
When the moving part 44 is driven by the sensing member 42, the moving part 44 can from first state S1 with respect to this first Component 38 is changed to one second state S2.According to this technical characterstic, enable the moving part 44 to clip (or locking) this The blocking part 204 (or a clamping piece) of two rails 202, make second rail 202 can not be with respect to first rail 26 (or first piece of furniture 22) it is movable.According to this application, when second rail 202 is in stowed position R with respect to first rail 26, second rail 202 is not Because of strength F, any relative first rail 26 is movable toward second direction D2 for meeting.Therefore, when furniture assembly 200 is met and during earthquake, It can prevent second rail 202 from being opened with respect to first rail 26.
It follows that after the sensing member 42 responds strength F effect, the moving part 44 can be preventing this second Have activity of the part (such as the second rail 28) with respect to first piece of furniture (such as the first rail 26) toward a direction., should in this implementation kenel Second piece of furniture (such as the second rail 28) can not be with respect to first piece of furniture (such as the first rail 26) from stowed position R toward the second party To D2 activities.
Another embodiment aspect of the vibration-type sensing device further of Figure 21 and Figure 22 display present invention.This embodiment and above-mentioned reality The difference for applying the vibration-type sensing device further 32 of example is substantially:The vibration-type sensing device further 300 includes a rope part 302, the rope Rope part 302 has pliability, such as the rope part 302 is spring wire.In this, with a plurality of rope parts 302 can by this second Component 304 is suspended in midair to the first component 306.According to this configuration, when receiving a strength F, the second component 304 equally may be used With the relative activity of first component 306, to drive the sensing member 308, and then the moving part 310 is driven.For brevity, This part refer to above-described embodiment, not repeated separately in this.
Explanation more than, it is known that enhancement effect of the invention is with advantage:It can prevent knockdown furniture part from meeting with Meet and shake and the phenomenon of abnormal start-up.
Although the present invention describes with reference to current specific embodiment, those of ordinary skill in the art It should be appreciated that the embodiment of the above is intended merely to the explanation present invention, can also make in the case of without departing from spirit of the invention Go out it is various equivalent change and modifications, therefore, as long as in the spirit of the present invention change to above-described embodiment, become Type will all fall in the range of the application claims.

Claims (20)

1. a kind of furniture assembly, comprising one first piece of furniture and one second piece of furniture, wherein, second piece of furniture can with respect to this One piece of furniture activity, it is characterised in that:
One vibration-type sensing device further is arranged in one of first piece of furniture and second piece of furniture, vibration-type sensing dress Put and include a sensing member and a moving part;
Wherein, when a strength applies to the vibration-type sensing device further, the sensing member respond the strength with drive the moving part from One first state is changed to one second state, to prevent work of second piece of furniture with respect to first piece of furniture toward a direction It is dynamic.
2. furniture assembly according to claim 1, it is characterised in that also comprising an auxiliary member be movably mounted to this second Piece of furniture, and a slide rail part are connected to second piece of furniture, and the vibration-type sensing device further is arranged in first piece of furniture, when The sensing member is in second state, and the auxiliary member from one first predetermined state change to second predetermined state when, this is auxiliary Assistant piece can be blocked between the slide rail part and the moving part.
3. furniture assembly according to claim 2, it is characterised in that second piece of furniture also is adhered to comprising a pedestal, The auxiliary member is pivoted to the pedestal.
4. furniture assembly according to claim 1, it is characterised in that the vibration-type sensing device further is arranged in the first hand Have part, and second piece of furniture includes a contact characteristic, to by the moving part from second State Transferring to the first state.
5. furniture assembly according to claim 2, it is characterised in that first piece of furniture includes a solution tug feature, uses So that the auxiliary member is changed to first predetermined state from second predetermined state.
6. furniture assembly according to claim 2, it is characterised in that second piece of furniture also includes a locating slot, should Auxiliary member has a position point in the locating slot.
7. furniture assembly according to claim 1, it is characterised in that the vibration-type sensing device further also includes one first structure Part and a second component, the second component are movably mounted to the first component, and the second component is responded the strength and relatively should First component activity, the sensing member is set to respond the activity of the second component and the moving part can be driven.
8. furniture assembly according to claim 7, it is characterised in that the moving part is movably mounted to first structure Part, and the moving part has a contact site, the sensing member drives the moving part by the contact site, and wherein the contact site is one oblique Face or a cambered surface.
9. furniture assembly according to claim 8, it is characterised in that the first component has respectively with the moving part can The limit features being collocated with each other.
10. furniture assembly according to claim 9, it is characterised in that the first component has a protuberance, and the company There is moving part an elongated slot can arrange in pairs or groups the protuberance.
11. furniture assembly according to claim 8, it is characterised in that the first component includes a space to accommodate The second component, and the size of the second component is less than the space.
12. furniture assembly according to claim 7, it is characterised in that the vibration-type sensing device further also rolls comprising one Part is to help the second component with respect to the first component activity.
13. furniture assembly according to claim 7, it is characterised in that the sensing member is a ball.
14. furniture assembly according to claim 7, it is characterised in that the sensing member be located at the first component with this Between two components.
15. furniture assembly according to claim 14, it is characterised in that the second component includes a supporting construction, uses To support a part for the sensing member.
16. furniture assembly according to claim 15, it is characterised in that the supporting construction is included in a bottom and one Wall, the inwall have an angle with respect to the bottom, and the first component is located at the adjacent supporting construction comprising a wall portion.
17. furniture assembly according to claim 7, it is characterised in that the vibration-type sensing device further also includes a rope Part suspends the second component to the first component in midair, and the rope part has pliability.
18. a kind of vibrations arrangement for detecting for knockdown furniture part, include one first piece of furniture, one second piece of furniture and a shake Dynamic formula sensing device further, wherein, second piece of furniture can be with respect to the first piece of furniture activity, it is characterised in that:
The vibration-type sensing device further is arranged in one of first piece of furniture and second piece of furniture, vibration-type sensing Device includes a moving part;
Wherein, when a strength applies to the vibration-type sensing device further, the moving part is changed to one second shape from a first state State, to prevent activity of second piece of furniture with respect to first piece of furniture toward a direction.
19. the vibrations arrangement for detecting according to claim 18 for knockdown furniture part, it is characterised in that the vibration-type Sensing device further also includes a sensing member, a first component and a second component, and the second component is movably mounted to first structure Part, the second component respond the strength and the relative first component activity, make the sensing member hereby it is possible to driving the gearing Part is changed to second state from the first state.
20. the vibrations arrangement for detecting according to claim 19 for knockdown furniture part, it is characterised in that also auxiliary comprising one Assistant piece is movably mounted to second piece of furniture, and a slide rail part is connected to second piece of furniture, vibration-type sensing dress Put and be arranged in first piece of furniture, when the sensing member is in second state, and the auxiliary member is changed from one first predetermined state During to second predetermined state, the auxiliary member can be blocked between the slide rail part and the moving part.
CN201610530519.XA 2016-07-07 2016-07-07 Furniture assembly and vibration arrangement for detecting for knockdown furniture part Active CN107581810B (en)

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CN107581810B CN107581810B (en) 2019-04-26

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CN102370351A (en) * 2010-08-20 2012-03-14 川湖科技股份有限公司 Shock-resistant structure for slide rail collection
JP2013002215A (en) * 2011-06-20 2013-01-07 Systec Kyowa:Kk Oscillation sensing lock device and locked device
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1025945A (en) * 1996-07-12 1998-01-27 Shinkansai Bearing Kk Earthquake sensitive lock device
JP2006200213A (en) * 2005-01-20 2006-08-03 Murakoshi Mfg Corp Moving member stopping device
CN102370351A (en) * 2010-08-20 2012-03-14 川湖科技股份有限公司 Shock-resistant structure for slide rail collection
JP2013002215A (en) * 2011-06-20 2013-01-07 Systec Kyowa:Kk Oscillation sensing lock device and locked device
CN103913220A (en) * 2013-01-08 2014-07-09 华晶科技股份有限公司 Vibration sensor

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