CN211173841U - Intelligent door with auxiliary door capable of being automatically opened and closed - Google Patents

Intelligent door with auxiliary door capable of being automatically opened and closed Download PDF

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Publication number
CN211173841U
CN211173841U CN201921095771.8U CN201921095771U CN211173841U CN 211173841 U CN211173841 U CN 211173841U CN 201921095771 U CN201921095771 U CN 201921095771U CN 211173841 U CN211173841 U CN 211173841U
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door
door body
lock cylinder
intelligent
auxiliary
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CN201921095771.8U
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唐燕
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Woxing Hangzhou Technology Co ltd
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Woxing Hangzhou Technology Co ltd
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Abstract

The utility model provides an intelligence door with but automatic switch auxiliary door belongs to intelligent house technical field. It has solved current intelligent door and can't realize receiving the article scheduling problem. This intelligent door with but automatic switch auxiliary door, including the first door body and set up the lock on the door body, the door frame has been seted up to the lower part of the first door body, is provided with the second door body in the door frame, is connected with between the upper end of the second door body and the first door body to be used for the second door body to carry out pivoted connecting means to the first door body, still is provided with the control component that is used for controlling the second door body and opens and shuts in the first door body. The utility model has the advantages of easy operation, convenient article putting.

Description

Intelligent door with auxiliary door capable of being automatically opened and closed
Technical Field
The utility model belongs to the technical field of intelligent house, a but intelligent door with automatic switch auxiliary door is related to.
Background
The intelligent door is based on the traditional anti-theft safety door, through emerging technical means and the concept of the internet of things, and takes an intelligent system host as a carrier, and on the function of the traditional anti-theft safety door, the anti-theft door with a plurality of intelligent functions is realized, such as: the intelligent alarm system has the advantages of powerful intelligent functions such as an on-site sound alarm function, a remote automatic alarm function, a one-key defense release function, no need of power supply, a signal transmission function, an outgoing defense release function, an indoor defense release function, a theft site monitoring function, a door magnet anti-prying function, a disassembly prevention alarm function, a host automatic reset function, a multi-element defense area alarm prompt function, a chip unique identity recognition function, a smoke induction alarm function, a gas induction alarm function, an infrared induction curtain function, a voice window protection alarm function, a one-key emergency call function and the like.
Along with the development of internet technology, the online shopping is popularized, especially the proportion that occupies in young crowd is very high, because young people are mostly going out to work daytime, often can not in time the addressee to the express delivery, consequently, can set up in the district and get goods cupboard such as honeycomb and deposit the express delivery, although made things convenient for express delivery person's dispatch, it is comparatively troublesome to get the addressee, if directly place the express delivery in the gate, can cause the problem that the express delivery is lost, if the guest has the home to send when east and west, the householder is not when the home just, can cause the problem of running a time.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the above-mentioned problem, provide an easy operation, make things convenient for the intelligent door that has automatic switch auxiliary door of article input.
In order to achieve the above purpose, the utility model adopts the following technical proposal:
the intelligent door with the automatic opening and closing auxiliary door comprises a first door body and a door lock arranged on the door body and is characterized in that a door frame is arranged on the lower portion of the first door body, a second door body is arranged in the door frame, a connecting component used for enabling the second door body to rotate relative to the first door body is connected between the upper end of the second door body and the first door body, and a control component used for controlling the second door body to open and close is further arranged in the first door body.
In foretell intelligent door with but automatic switch auxiliary door, the connecting elements including link firmly last connection page or leaf on the first door body and link firmly the lower connection page or leaf on the second door body, last connection page or leaf and be provided with the pivot axle down between connecting, the pivot on be provided with the elastic component that provides torsional force for last connection page or leaf and lower connection page or leaf, when last connection page or leaf and lower connection page or leaf link firmly respectively on the first door body and the second door body, the elastic component is exerted decurrent torsion on the second door body, make the second door body and door frame be in the state of closing.
In the above-mentioned intelligent door with but automatic switch auxiliary door, the elastic component cover locate the pivot round pin, and set up in the middle part of pivot round pin, the both ends of elastic component have upper extending limit and the lower limit that radial extension formed, upper extending limit butt on last connection page or leaf, lower limit butt on lower connection page or leaf.
In the above intelligent door with the auxiliary door capable of being automatically opened and closed, the control member comprises a locking assembly and a power supply for supplying electric energy to the locking assembly, the power supply is further connected with a control assembly for controlling the on-off of the current of the power supply and the current of the locking assembly, and the control assembly and the locking assembly are mutually connected in parallel on the power supply.
In the above-mentioned intelligent door with but automatic switch auxiliary door, both sides tip of door frame seted up the holding tank that is used for holding the control member, the second door body on with the holding tank corresponding position department seted up the lockhole that is used for the locking subassembly to realize locking.
In foretell intelligence door with but automatic switch auxiliary door, the locking subassembly including link firmly the casing in the holding tank and set up lock core and the electro-magnet in the casing, the electro-magnet set up in the bottom portion of casing, and the winding has the solenoid that is connected with the power on the electro-magnet, the horizontal activity of lock core set up in the casing, and have armature with electro-magnet matched with at the trailing end connection of lock core.
In the above-mentioned intelligent door with automatic switch auxiliary door, the casing in have radial protruding partition table, the partition table with the inside separation of casing be used for placing the interior chamber of electro-magnet and be used for the outer cavity of lock core horizontal slip.
In the intelligent door with the auxiliary door capable of being automatically opened and closed, the lock cylinder is provided with a ring which is radially raised, and a power piece which provides elasticity for the transverse reciprocating motion of the lock cylinder is arranged between the ring and the partition table.
In the above-mentioned intelligent door with an auxiliary door capable of being automatically opened and closed, the edge of the door frame at the outer side is provided with a radially-protruding limiting frame for limiting the displacement of the second door body.
In the intelligent door with the auxiliary door capable of being automatically opened and closed, the width of the lock hole is larger than the transverse width of the lock cylinder, a gap is reserved between one side of the lock cylinder, which faces the limiting frame, and the lock hole, and the end face of the other side of the lock cylinder is attached to the surface of the lock hole.
Compared with the prior art, the utility model has the advantages of:
1. utilize connecting elements to realize that the first door body is connected with the upset of the second door body, the opening and shutting of the relative first door body of second door body is controlled to rethread control component, and it is indoor convenient and fast to make things convenient for the express delivery to fill in through the second door body.
2. The elastic piece is sleeved on the rotating shaft pin, the elastic piece is provided with an upward extending edge and a downward extending edge, the upward extending edge is abutted to the upper connecting page, the downward extending edge is abutted to the lower connecting page, the second door body is automatically reset to a closed state when opened by the aid of the torsional force of the elastic piece, and the structure is simple and reasonable.
3. The control component comprises locking subassembly, power and control assembly, and the power provides the electric energy for locking subassembly, control assembly, and locking subassembly realizes automatic locking and opens through control assembly, and degree of automation is high.
4. The locking assembly comprises a lock cylinder and an electromagnet, and the adsorption magnetism of the electromagnet is kept by switching on and off of a coil on the electromagnet, so that the lock cylinder moves transversely, the structure is reasonable, and the working performance is stable.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the present invention.
Fig. 2 is a schematic view of the connection structure of the connection member of the present invention.
Fig. 3 is a schematic structural diagram of the locking assembly of the present invention.
Fig. 4 is a connection matching diagram of the lock cylinder and the lock hole in the present invention.
Fig. 5 is a specific structure diagram of the middle door frame of the present invention.
Fig. 6 is a connection structure diagram of the whole assembly in the control member of the present invention.
In the figure, 1, a first door body; 2. a door lock; 3. a door frame; 4. a second door body; 5. a connecting member; 6. a control member; 7. an upper connection page; 8. a lower connection page; 9. a roller pin; 10. an elastic member; 11. extending the edge; 12. edge downward extending; 13. a locking assembly; 14. a power source; 15. a control component; 16. accommodating grooves; 17. a lock hole; 18. a housing; 19. a lock cylinder; 20. an electromagnet; 21. an electromagnetic coil; 22. an armature; 23. separating the platform; 24. an inner chamber; 25. an outer chamber 25; 26. a loop; 27. a power member; 28. a limiting frame; 29. A gap.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings.
As shown in fig. 1, 2, and 5, the intelligent door with the auxiliary door capable of being automatically opened and closed comprises a first door body 1 and a door lock 2 arranged on the door body, wherein a door frame 3 is arranged at the lower part of the first door body 1, a second door body 4 is arranged in the door frame 3, a connecting member 5 for rotating the second door body 4 relative to the first door body 1 is connected between the upper end of the second door body 4 and the first door body 1, and a control member 6 for controlling the opening and closing of the second door body 4 is further arranged in the first door body 1.
The intelligence door is provided with the second door body 4 that the upset set up from top to bottom on first door body 1, be connected through 5 mechanical upsets of connecting elements between the upper end of second door body 4 and the first door body 1, realize the locking through control member 6 and connect, after control member 6 relieves the locking, utilize external force to overturn second door body 4, fill in article from door frame 3, then second door body 4 utilizes the torsional force automatic re-setting of connecting elements 5, and is easy to operate, make things convenient for article to put in.
It should be understood by those skilled in the art that the connecting member 5 may be a connecting hinge and a connecting pin commonly available in the market, the connecting pin or the connecting hinge is used for the purpose of connecting the first door body 1 and the second door body 4, and the second door body 4 can be turned relative to the first door body 1.
As shown in fig. 3, in this embodiment, preferably, the connection member 5 includes an upper connection leaf 7 fixedly connected to the first door body 1 and a lower connection leaf 8 fixedly connected to the second door body 4, a pivot pin 9 is disposed between the upper connection leaf 7 and the lower connection leaf, an elastic member 10 for providing a torsional force to the upper connection leaf 7 and the lower connection leaf 8 is disposed on the pivot, and when the upper connection leaf 7 and the lower connection leaf 8 are respectively fixedly connected to the first door body 1 and the second door body 4, the elastic member 10 applies a downward torsional force to the second door body 4, so that the second door body 4 and the door frame 3 are in a closed state.
In order to make the torsion applied by the elastic member 10 more balanced, the elastic member 10 is sleeved on the roller pin 9 and is arranged in the middle of the roller pin 9, the two end portions of the elastic member 10 are provided with an upper extending edge 11 and a lower extending edge 12 which are formed by radial extension, the upper extending edge 11 is abutted on the upper connecting leaf 7, the lower extending edge 12 is abutted on the lower connecting leaf 8, when the second door body 4 is turned, the elastic member 10 is in the process of gradually increasing the torsion because the angle between the second door body 4 and the first door body 1 is smaller and smaller, and the force applied by the elastic member 10 is uniformly distributed on each extending edge.
Referring to fig. 6, in the present embodiment, the control member 6 includes a locking assembly 13 and a power supply 14 for supplying power to the locking assembly 13, the power supply 14 is further connected with a control assembly 16 for controlling current on/off of the power supply 14 and the locking assembly 13, and the control assembly 16 and the locking assembly 13 are mutually connected in parallel to the power supply 14. The control component 16 and the locking component 13 are connected in parallel to the power source 14, so that the power source 14 supplies power to the control component 16 and the locking component 13 independently, and one end of the control component 16 is connected to the circuit of the power source 14 and the locking component 13 and is used for controlling the on-off state when the power source 14 supplies power to the locking component 13.
As shown in fig. 5, in the present embodiment, the two side ends of the door frame 3 are opened with receiving grooves for receiving the control member 6, and the second door body 4 is opened with locking holes 17 for locking the locking assembly 13 at positions corresponding to the receiving grooves.
It will be appreciated by those skilled in the art that the locking assembly 13 may be a bolt or a rotatable lock cylinder 19 known to those skilled in the art, in use, the bolt being locked by external force acting on the bolt, or the lock cylinder 19 being linearly actuated by rotation of the lock head.
In this embodiment, the locking assembly 13 preferably includes a housing 18 fixedly connected in the accommodating groove, and a lock cylinder 19 and an electromagnet 20 arranged in the housing 18, the electromagnet 20 is arranged at the bottom end portion of the housing 18, an electromagnetic coil 21 connected to the power supply 14 is wound on the electromagnet 20, the lock cylinder 19 is transversely movably arranged in the housing 18, and an armature 22 matched with the electromagnet 20 is connected to the rear end of the lock cylinder 19. When the electromagnetic coil 21 is electrified, the electromagnetic coil 21 can be matched with the electromagnet 20 to generate a magnetic field, the electromagnet 20 can be magnetized to generate an attraction force to attract the armature 22, the second door body 4 can be successfully unlocked when the armature enters the lock cylinder 19 to move inwards, and when the electromagnetic coil 21 is powered off, the magnetic field disappears, and the lock cylinder 19 can be restored to an original state and is in a locking state.
It should be appreciated by those skilled in the art that the control element may be a commercially available push button switch or push button switch, which in this embodiment is used to control the current flow between the power source and the locking element.
In this embodiment, as an optimization, the control component includes a signal input module, a signal transmission module, a signal receiving module, an instruction receiving module and a current on-off module, the signal input module is disposed on the core and transmits the received sensing signal to the transmission module, the signal transmission module is in communication connection with the signal input module, when the sensing signal detected by the signal transmission module is received, the signal is transmitted to the user mobile terminal, the instruction receiving module is configured to receive an instruction transmitted back by the user mobile terminal and transmit the instruction signal to the current on-off module, the current on-off module receives the instruction signal, and controls the on-off of the current between the power supply 14 and the locking component 13 according to the instruction signal.
In this embodiment, the signal input module may be a pressure sensor or a proximity switch, and in order to improve the service life, the current on-off module is preferably a pressure sensor, and is preferably a relay or a photocoupler, and is preferably a relay in this embodiment.
Preferably, the power supply 14 is connected in parallel with the signal input module, the signal transmission module, the signal receiving module, the command receiving module and the current on-off module in the control assembly 16. The power supply independently supplies power to each module, and mutual independent operation between each module is guaranteed, so that working stability is improved.
Preferably, the housing 18 has a radially protruding partition 23, the partition 23 divides the interior of the housing 18 into an inner chamber 24 for placing the electromagnet 20 and an outer chamber 25 for laterally sliding the lock cylinder 19, the lock cylinder 19 has a radially protruding ring 26, a power member 27 for providing elastic force for the lock cylinder 19 to laterally reciprocate is arranged between the ring 26 and the partition 23, one end of the power member 27 is fixed to an end surface of the partition 23, and the other end of the power member 27 abuts against the ring 26 of the lock cylinder 19, when the lock cylinder 19 moves towards the side of the electromagnet 20, the power member 27 is in a compressed state, and when the magnetic field of the electromagnet 20 disappears, the lock cylinder 19 returns to an original state, i.e., a locked state under the action of the power member 27, in this embodiment, the power member 27 may be a spring.
Referring to fig. 4, in this embodiment, the edge of the door frame 3 located at the outer side has a radially protruding limiting frame 28 for limiting the displacement of the second door body 4, the width of the lock hole 17 is greater than the lateral width of the lock cylinder 19, a gap 29 is left between one side of the lock cylinder 19 facing the limiting frame 28 and the lock hole 17, the other side end surface of the lock cylinder 19 is attached to the surface of the lock hole 17, the signal input module is disposed on the surface of the lock cylinder 19 facing the gap 29, when the second door body 4 is subjected to an external force, the second door body 4 may deflect, in order to avoid interference caused by environmental factors such as wind, the lock hole 17 is matched with the lock cylinder 19, the gap 29 is provided, and when the inner surface of the lock hole 17 contacts the signal input module 23 and reaches a rated pressure, the signal input module transmits a signal to the.
The utility model discloses a theory of operation does: when the intelligent door works, force is applied to the second door body 4 to enable the second door body 4 to deflect, when the inner surface of the lock hole 17 contacts the signal input module and reaches rated pressure, the control assembly 16 receives an instruction to electrify the locking assembly 13, the electromagnetic coil 21 in the locking assembly 13 is electrified and can be matched with the electromagnet 20 to generate a magnetic field, the electromagnet 20 can be magnetized to generate suction to attract the armature 22, the lock cylinder 19 moves inwards, the second door body 4 can be successfully unlocked to plug an article in the door frame 3, then the second door body 4 can be automatically reset by utilizing the torsional force of the connecting component 5, after the power supply 14 is powered off, the magnetic field disappears, and the lock cylinder 19 can be restored to the original state and is in the locking state.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.
Although the terms of the first door body 1, the door lock 2, the door frame 3, the second door body 4, the connecting member 5, the control member 6, the upper connecting leaf 7, the lower connecting leaf 8, the rotating shaft pin 9, the elastic member 10, the upper extending edge 11, the lower extending edge 12, the locking assembly 13, the power source 14, the control assembly 15, the receiving groove 16, the locking hole 17, the housing 18, the lock cylinder 19, the electromagnet 20, the electromagnetic coil 21, the armature 22, the partition 23, the inner chamber 24, the outer chamber 25, the ring 26, the power member 27, the limit frame 28, the gap 29, etc. are used more frequently, the possibility of using other terms is not excluded. These terms are used merely to more conveniently describe and explain the nature of the present invention and should not be interpreted as imposing any additional limitations that are contrary to the spirit of the present invention.

Claims (10)

1. The utility model provides an intelligence door with but automatic switch auxiliary door, includes the first door body (1) and sets up lock (2) on the door body, its characterized in that, the lower part of the first door body (1) seted up door frame (3), door frame (3) in be provided with the second door body (4), the upper end of the second door body (4) and the first door body (1) between be connected with and be used for the second door body (4) to carry out pivoted connecting means (5) relative the first door body (1), the first door body (1) in still be provided with and be used for controlling the control means (6) that the second door body (4) opened and shut.
2. The intelligent door with the auxiliary door capable of being automatically opened and closed according to claim 1, wherein the connecting member (5) comprises an upper connecting leaf (7) fixedly connected to the first door body (1) and a lower connecting leaf (8) fixedly connected to the second door body (4), a rotating shaft pin (9) is arranged between the upper connecting leaf (7) and the lower connecting leaf, an elastic member (10) for providing torsional force for the upper connecting leaf (7) and the lower connecting leaf (8) is arranged on the rotating shaft, and when the upper connecting leaf (7) and the lower connecting leaf (8) are respectively fixedly connected to the first door body (1) and the second door body (4), the elastic member (10) applies downward torsional force to the second door body (4) so that the second door body (4) and the door frame (3) are in a closed state.
3. The intelligent door with the auxiliary door capable of being automatically opened and closed according to claim 2, wherein the elastic member (10) is sleeved on the rotating shaft pin (9) and arranged in the middle of the rotating shaft pin (9), the two end parts of the elastic member (10) are provided with an upper extending edge (11) and a lower extending edge (12) which are formed by radial extension, the upper extending edge (11) abuts against the upper connecting leaf (7), and the lower extending edge (12) abuts against the lower connecting leaf (8).
4. The intelligent door with the auxiliary door capable of being automatically opened and closed according to claim 1, wherein the control member (6) comprises a locking assembly (13) and a power supply (14) for supplying power to the locking assembly (13), and the power supply (14) is further connected with a control assembly (15) for controlling the current on-off of the power supply (14) and the locking assembly (13).
5. The intelligent door with the auxiliary door capable of being automatically opened and closed according to claim 4, wherein the two side ends of the door frame (3) are provided with accommodating grooves (16) for accommodating the control member (6), and the second door body (4) is provided with locking holes (17) for locking the locking assembly (13) at positions corresponding to the accommodating grooves (16).
6. The intelligent door with the auxiliary door capable of being automatically opened and closed as claimed in claim 5, wherein the locking assembly (13) comprises a housing (18) fixedly connected in the accommodating groove (16) and a lock cylinder (19) and an electromagnet (20) arranged in the housing (18), the electromagnet (20) is arranged at the bottom end part of the housing (18), the electromagnet (20) is wound with an electromagnetic coil (21) connected with the power supply (14), the lock cylinder (19) is transversely movably arranged in the housing (18), and an armature (22) matched with the electromagnet (20) is connected to the tail end of the lock cylinder (19).
7. An intelligent door with an automatically openable and closable auxiliary door according to claim 6, wherein the housing (18) has a radially protruding partition (23) therein, and the partition (23) partitions the interior of the housing (18) into an inner chamber (24) for housing the electromagnet (20) and an outer chamber (25) for lateral sliding movement of the lock cylinder (19).
8. An intelligent door with an automatic opening and closing auxiliary door as claimed in claim 6, wherein the lock cylinder (19) is provided with a radially protruding ring (26), and a power member (27) for providing elasticity for the transverse reciprocating motion of the lock cylinder (19) is arranged between the ring (26) and the partition table (23).
9. An intelligent door with an automatic opening and closing auxiliary door according to claim 1, characterized in that the edge of the door frame (3) at the outer side is provided with a radial convex limiting frame (28) for limiting the displacement of the second door body (4).
10. The intelligent door with the auxiliary door capable of being automatically opened and closed according to claim 7, wherein the width of the lock hole (17) is larger than the transverse width of the lock cylinder (19), a gap (29) is reserved between one side of the lock cylinder (19) facing the limiting frame (28) and the lock hole (17), and the end surface of the other side of the lock cylinder (19) is attached to the surface of the lock hole (17).
CN201921095771.8U 2019-07-12 2019-07-12 Intelligent door with auxiliary door capable of being automatically opened and closed Active CN211173841U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921095771.8U CN211173841U (en) 2019-07-12 2019-07-12 Intelligent door with auxiliary door capable of being automatically opened and closed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921095771.8U CN211173841U (en) 2019-07-12 2019-07-12 Intelligent door with auxiliary door capable of being automatically opened and closed

Publications (1)

Publication Number Publication Date
CN211173841U true CN211173841U (en) 2020-08-04

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Application Number Title Priority Date Filing Date
CN201921095771.8U Active CN211173841U (en) 2019-07-12 2019-07-12 Intelligent door with auxiliary door capable of being automatically opened and closed

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110397389A (en) * 2019-07-12 2019-11-01 沃兴(杭州)科技有限公司 It is a kind of with the intelligent door that can be automatically switched auxiliary door

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110397389A (en) * 2019-07-12 2019-11-01 沃兴(杭州)科技有限公司 It is a kind of with the intelligent door that can be automatically switched auxiliary door

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