CN213087759U - Intelligent storage and management safety cabinet - Google Patents

Intelligent storage and management safety cabinet Download PDF

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Publication number
CN213087759U
CN213087759U CN202021040679.4U CN202021040679U CN213087759U CN 213087759 U CN213087759 U CN 213087759U CN 202021040679 U CN202021040679 U CN 202021040679U CN 213087759 U CN213087759 U CN 213087759U
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door
door lock
cabinet
cavity
assembly
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CN202021040679.4U
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Chinese (zh)
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何华东
马光辉
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Ningbo Shengda Intelligent Technology Co ltd
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Ningbo Shengda Intelligent Technology Co ltd
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Abstract

The application relates to the field of anti-theft equipment, in particular to an intelligent storage and management safety cabinet, which comprises a door body assembly; the cabinet body assembly comprises a cabinet body, the cabinet body is provided with a first opening and a first cavity, the first cavity is communicated with the first opening, and the door body assembly is rotatably connected to the cabinet body so that the articles are sealed in the first cavity; a door frame assembly disposed on a sidewall forming the first cavity; the first cavity is divided into at least two accommodating grooves by the partition plate; and at least one first door panel rotatably connected to one side of the door frame assembly to seal the article twice. The utility model discloses can realize convenient to use, the security is good and can the advantage of secondary seal article through effectively utilizing its self structural configuration.

Description

Intelligent storage and management safety cabinet
Technical Field
The application relates to the field of anti-theft equipment, in particular to an intelligent storage and management safety cabinet.
Background
The safe is a special container for placing money, jewelry and other important properties, wherein the safe is also a safe and is mainly divided into a fireproof safe, an anti-theft safe, an antimagnetic safe, a fireproof anti-theft safe and the like according to the functions. At present, in order to improve the safety coefficient of the safety box, most of the safety boxes adopt various anti-theft technologies and structures. For example, the possibility that the safe is damaged by external force and is stolen is reduced by constructing a solid cabinet body and a cabinet door; and the condition that the safe is illegally unlocked is reduced by improving the complexity of the lock cylinder. Most current safes, however, typically have only one cavity for holding the contents, in other words, only one seal to protect the contents of the safe. The contents of the safe are directly removed when the external protection device is broken, and thus the structure is less secure. In view of this, it is necessary to design an intelligent storage and management safety cabinet capable of secondary sealing.
Therefore, the intelligent storage and management safety cabinet which is convenient to use, good in safety and capable of sealing objects secondarily is needed.
SUMMERY OF THE UTILITY MODEL
The present application is directed to a safe, wherein the safe can effectively use its own structural configuration to achieve the advantages of convenience in use and secondary sealing of the article.
Another object of the present application is to provide an intelligent storage and management safety cabinet, wherein the intelligent storage and management safety cabinet includes a cabinet body assembly, the cabinet body assembly includes a cabinet body, the cabinet body has a first opening and a first cavity, the first opening is communicated with the outside, and the first cavity is communicated with the first opening, wherein the door body assembly is rotatably connected to the cabinet body, so that the door body assembly seals the first cavity, so that the article is sealed in the first cavity.
Another object of the present application is to provide an intelligent storage and management safety cabinet, wherein the cabinet body assembly further includes at least one partition plate and at least one first door plate, the partition plate separates the first cavity into at least two holding tanks to hold the articles, wherein the first door plate can rotate by a predetermined angle to close the holding tanks, so as to seal the articles placed in the holding tanks twice.
Another object of the present application is to provide an intelligent safe deposit and management cabinet, wherein the intelligent safe deposit and management cabinet has a simple structure, is easy and convenient to operate, does not involve complicated manufacturing processes and expensive materials, has high economical efficiency, and is easy to popularize and use.
In order to achieve at least one of the above objects, the present application provides an intelligent storage and management safe for storing articles, wherein the intelligent storage and management safe comprises:
a door body assembly;
a cabinet assembly, the door assembly is rotatably connected to the cabinet assembly, wherein the cabinet assembly comprises
The cabinet body is provided with a first opening and a first cavity, the first opening is communicated with the outside, and the first cavity is communicated with the first opening;
a door frame assembly disposed on a sidewall forming the first cavity;
at least one partition plate, both sides of which are snap-coupled to a sidewall forming the first cavity, wherein a front side of the partition plate is detachably coupled to the door frame assembly, and the partition plate divides the first cavity into at least two receiving grooves to receive the article; and
the first door plate is rotatably connected to one side of the doorframe assembly, and can rotate for a preset angle to close the accommodating groove, so that an object placed in the accommodating groove is sealed twice.
In one or more embodiments of the present application, the door frame assembly includes a left side plate and a right side plate, the left side plate and the right side plate are fixedly coupled to the side wall forming the first cavity, respectively, and the left side plate and the right side plate are adjacent to the first opening, wherein both ends of the front side of the partition plate are detachably coupled to the left side plate and the right side plate, respectively, and wherein the first door panel is rotatably coupled to the right side plate.
In one or more embodiments of the present application, the cabinet assembly further comprises a door lock assembly, the door lock assembly comprises a first door lock, a rotating member and a first connecting rod, the first door lock is rotatably connected to the left side plate of the door frame assembly, one end of the first door lock is arranged at the outer side of the left side plate, the other end of the first door lock is arranged at the inner side of the left side plate, the bottom end of the rotating member is installed at the end of the first door lock positioned at the inner side of the left side plate, wherein when the first door lock is rotated by a force, the top end of the rotating member rotates around the axis of the first door lock, wherein the first connecting rod is fixedly connected to one end of the rotating member, and the rotating member is positioned between the first door lock and the first connecting rod, wherein the axis of the first connecting rod is parallel to the axis of the first door lock, when the door lock assembly is stressed to rotate, the door lock assembly drives the rotating piece to rotate for a preset angle, so that the rotating piece drives the first connecting rod to rotate for a preset angle, and the first connecting rod rotates for a preset angle around the axis of the first door lock.
In one or more embodiments of the present application, the cabinet assembly further includes a moving plate capable of sliding up and down, the moving plate is installed inside the left side plate, wherein the moving plate further has a connection end and a second connection rod, the connection end extends outward in a direction close to the first opening, the second connection rod is perpendicular to the connection end, and the second connection rod extends in a direction away from the edge of the cabinet, and the second connection rod is higher than the connection end.
In one or more embodiments of this application, the link has a spout, the spout with the head rod joint is connected, just the spout is transverse arrangement, wherein works as when the head rod receives outside torsion and clockwise turning, the head rod drives rotate the predetermined angle of rotation, so that the head rod winds the axis clockwise turning predetermined angle of head rod, and then makes the head rod directly extrudees and forms the lateral wall of spout, thereby makes the movable plate atress moves the predetermined distance downwards.
In one or more embodiments of the present application, the cabinet assembly further includes an electric control latch installed inside the left side plate, wherein the electric control latch includes a housing, a groove is formed at a left end of the housing, a width of the groove decreases from left to right, the housing further has a second opening and a second cavity, the second cavity is communicated with the second opening, and the second opening is communicated with the groove.
In one or more embodiments of the present application, the electronic control latch further includes a fastening member, a controller and a swing switch, the fastening member is rotatably connected to the side wall forming the second cavity, and the left end of the fastening member is located in the groove, wherein the controller is also installed on the side wall forming the second cavity, and one end of the controller is connected to the right end of the fastening member, the other end of the controller is connected to the swing switch, wherein the swing switch is located on the right side forming the second cavity, and the top of the swing switch is located outside the second cavity.
In one or more embodiments of this application, cabinet body subassembly still includes a buckle spare, the hasp spare can be dismantled connect in the left end of first door plant, first door plant can rotate predetermined angle, so that the hasp spare inserts in the casing the recess, and the hasp spare in buckle spare joint, wherein when the hasp spare extrusion buckle spare, the buckle spare receives the extrusion of hasp spare and carries out clockwise rotation, and then makes the one end rebound of buckle spare, so that the buckle spare joint in the hasp spare, wherein work as the buckle spare with when the hasp spare joint is connected, the holding tank is by first door plant is sealed, and at this moment first door plant can't be opened.
In one or more embodiments of the present application, the door assembly includes a second door panel, a frame panel, and an inner panel, the inner panel is fixedly connected to the frame panel, the frame panel is fixedly connected to the second door panel, and the frame panel is located between the second door panel and the inner panel.
In one or more embodiments of the present application, the door assembly includes a rotating handle, a second door lock, and a combination lock, one end of the rotating handle is rotatably installed on the second door panel, the second door lock is rotatably installed on the second door panel, the combination lock is installed on the second door panel, and one end of the combination lock is disposed at an outer side of the second door panel, wherein centers of the rotating handle, the second door lock, and the combination lock are located on a same straight line.
Drawings
These and/or other aspects and advantages of the present application will become more apparent and more readily appreciated from the following detailed description of the embodiments of the present application, taken in conjunction with the accompanying drawings of which:
fig. 1 illustrates a first structural schematic diagram of an intelligent safe deposit and management cabinet.
Fig. 2 illustrates a structural schematic diagram two of an intelligent safe deposit and management cabinet.
Fig. 3 illustrates a schematic structural diagram three of an intelligent safe deposit and management cabinet.
Fig. 4 illustrates a partial structural schematic diagram of an intelligent safe deposit and keeping cabinet.
Fig. 5 illustrates a schematic diagram of a partial structure of an intelligent safe deposit and management cabinet.
Figure 6 illustrates a schematic view of an electrically controlled latch arrangement.
Fig. 7 and 8 illustrate a schematic diagram of the use of an intelligent safe deposit box.
Detailed Description
The terms and words used in the following specification and claims are not limited to the literal meanings, but are used only by the inventors to enable a clear and consistent understanding of the application. Accordingly, it will be apparent to those skilled in the art that the following descriptions of the various embodiments of the present application are provided for illustration only and not for the purpose of limiting the application as defined by the appended claims and their equivalents.
It is understood that the terms "a" and "an" should be interpreted as meaning that a number of one element or element is one in one embodiment, while a number of other elements is one in another embodiment, and the terms "a" and "an" should not be interpreted as limiting the number.
While ordinal numbers such as "first," "second," etc., will be used to describe various components, those components are not limited herein. The term is used only to distinguish one element from another. For example, a first component could be termed a second component, and, similarly, a second component could be termed a first component, without departing from the teachings of the present inventive concept. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
The terminology used herein is for the purpose of describing various embodiments only and is not intended to be limiting. As used herein, the singular forms are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and/or "comprising," when used in this specification, specify the presence of stated features, numbers, steps, operations, components, elements, or combinations thereof, but do not preclude the presence or addition of one or more other features, numbers, steps, operations, components, elements, or groups thereof.
Summary of the application
The safe is a special container for placing money, jewelry and other important properties, wherein the safe is also a safe and is mainly divided into a fireproof safe, an anti-theft safe, an antimagnetic safe, a fireproof anti-theft safe and the like according to the functions. At present, in order to improve the safety coefficient of the safety box, most of the safety boxes adopt various anti-theft technologies and structures. For example, the possibility that the safe is damaged by external force and is stolen is reduced by constructing a solid cabinet body and a cabinet door; and the condition that the safe is illegally unlocked is reduced by improving the complexity of the lock cylinder. Most current safes, however, typically have only one cavity for holding the contents, in other words, only one seal to protect the contents of the safe. The contents of the safe are directly removed when the external protection device is broken, and thus the structure is less secure. In view of this, it is necessary to design an intelligent storage and management safety cabinet capable of secondary sealing.
Based on this, an intelligent storage and management safety cabinet which is convenient to use, good in safety and capable of sealing objects secondarily is needed.
Based on the technical problem, the application provides an intelligent storage and management safety cabinet, wherein the intelligent storage and management safety cabinet is simple in structure, does not relate to complex manufacturing process and expensive materials, and has high economical efficiency.
Schematic intelligent storage and management safety cabinet
Fig. 1 to 8 illustrate an intelligent storage and management security cabinet, which is used to store articles.
Specifically, the intelligent storage and management safety cabinet comprises a door body assembly 10 and a cabinet body assembly 20, wherein the cabinet body assembly 20 can be used for storing the articles, the door body assembly 10 is rotatably connected to the cabinet body assembly 20, and further the cabinet body assembly 20 is closed, so that the articles are closed in the cabinet body assembly 20.
Specifically, the cabinet assembly 20 includes a cabinet 21, the cabinet 21 has a first opening 211 and a first cavity 212, the first opening 211 is communicated with the outside, and the first cavity 212 is communicated with the first opening 211, wherein the door assembly 10 can rotate by a predetermined angle to seal the first opening 211, so that the first cavity 212 becomes a closed space.
Further, the cabinet assembly 20 further includes a door frame assembly 22, the door frame assembly 22 is disposed on the side wall forming the first cavity 212, wherein the door frame assembly 22 includes a left side plate 221 and a right side plate 222, the left side plate 221 and the right side plate 222 are respectively fixedly connected to the side wall forming the first cavity 212, and the left side plate 221 and the right side plate 222 are close to the first opening 211.
Further, the cabinet assembly 20 includes at least one partition 23, both sides of the partition 23 are connected to the sidewalls forming the first cavity 212 by being snapped, wherein both left and right ends of the front side of the partition plate 23 are detachably coupled to the left side plate 221 and the right side plate 222 of the door frame assembly 22, and the partition 23 partitions the first chamber 212 into at least two receiving grooves 2121, the receiving slot 2121 is used for storing the articles, and further, the cabinet assembly 20 further comprises at least a first door panel 24, the first door panel 24 is rotatably coupled to the right side panel 222 of the door frame assembly 22, wherein the first door panel 24 can rotate a predetermined angle, so that the first door panel 24 closes the receiving groove 2121, and the article placed in the receiving groove 2121 is sealed twice, thereby enhancing the security of the safe.
Further, the cabinet assembly 20 further comprises a door lock assembly 24, the door lock assembly 24 comprises a first door lock 241, the first door lock 241 is rotatably connected to the left side plate 221 of the door frame assembly 22, and one end of the first door lock 241 is disposed on the outer side of the left side plate 221, and the other end is disposed on the inner side of the left side plate 221.
Further, the door lock assembly 24 further includes a rotating member 242, a bottom end of the rotating member 242 is mounted at one end of the first door lock 241, and the rotating member 242 is located inside the left side plate 221, wherein when the first door lock 241 is forced to rotate, a top end of the rotating member 242 rotates around an axis of the first door lock 241.
Further, the door lock assembly 24 further includes a first connecting rod 243, the first connecting rod 243 is fixedly connected to one end of the rotating member 242, and the rotating member 242 is located between the first door lock 241 and the first connecting rod 243, wherein an axis of the first connecting rod 243 is parallel to an axis of the first door lock, when the door lock assembly 24 is forced to rotate, the door lock assembly 24 drives the rotating member 242 to rotate by a predetermined angle, so that the rotating member 242 drives the first connecting rod 243 to rotate by a predetermined angle, and thus the first connecting rod 243 rotates by a predetermined angle around the axis of the first door lock 241.
The utility model discloses a, cabinet body subassembly 20 still includes a gliding movable plate 25 from top to bottom, movable plate 25 is installed the inboard of left side board 221, it is worth mentioning that movable plate 25 still has a link 251, link 251 is toward being close to the outside extension of direction of first opening 211, wherein link 251 has a spout 2511, spout 2511 with first connecting rod 243 joint is connected. Further, the diameter of the first connecting rod 243 is smaller than the width of the sliding slot 2511, thereby allowing the first connecting rod 243 to slide in the sliding slot 2511, wherein the sliding slot 2511 is arranged transversely. Further, when the first door lock 241 is rotated clockwise by an external torque force, the first door lock 241 drives the rotating member 242 to rotate by a predetermined angle, so that the rotating member 242 drives the first connecting rod 243 to rotate by a predetermined angle, so that the first connecting rod 243 rotates clockwise by a predetermined angle around the axis of the first door lock 241. Further, when the first connecting rod 243 rotates clockwise, the first connecting rod 243 directly presses the side wall forming the sliding slot 2511, and thus the moving plate 25 is forced to move downward by a predetermined distance. Further, when the first door lock 241 is rotated counterclockwise by an external torque force, the first door lock 241 drives the rotating member 242 to rotate by a predetermined angle, so that the rotating member 242 drives the first connecting rod 243 to rotate by a predetermined angle, so that the first connecting rod 243 rotates counterclockwise by a predetermined angle around the axis of the first door lock 241. Further, when the first connecting rod 243 rotates counterclockwise, the first connecting rod 243 directly presses the side wall forming the sliding slot 2511, so that the moving plate 25 is forced to move downward by a predetermined distance.
Further, the moving plate 25 further has a second connecting rod 252, and the second connecting rod 252 extends outward from the right side of the moving plate 25.
Further, the cabinet assembly 20 further includes an electrically controlled latch 26, the electrically controlled latch 26 is mounted on the inner side of the left side plate 221, wherein the electrically controlled latch 26 includes a housing 261, the left end of the housing 216 has a groove 2611, and the width of the groove 2611 decreases from left to right. It is worth mentioning that the housing 261 further has a second opening 2612 and a second cavity 2613, the second cavity 2613 is communicated with the second opening 2612, and the second opening 2612 is communicated with the groove 2611.
Further, the electrically controlled latch 26 further includes a latch 262, a controller 263 and a swing switch 264, the latch 262 is rotatably connected to the sidewall forming the second cavity 2613, wherein the controller 263 is also installed on the sidewall forming the second cavity 2613, one end of the controller 263 is connected to the right end of the latch 262, the other end of the controller 263 is connected to the swing switch 264, wherein the swing switch 264 is located at the right side forming the second cavity 2613, and the top of the swing switch 264 is located outside the second cavity.
Further, the cabinet assembly 20 further comprises a locking member 27, and the locking member 27 is detachably connected to the left end of the first door panel 24. It should be noted that the first door panel 24 can rotate by a predetermined angle to enable the locking element 27 to be inserted into the groove 2611 of the housing 261, wherein when the locking element 27 presses the fastening element 262, the fastening element 262 is pressed by the locking element 27 to rotate clockwise, so that one end of the fastening element 262 moves upward to enable the fastening element 262 to be fastened to the locking element 27, wherein when the fastening element 262 is fastened to the locking element 27, the accommodating groove 2121 is sealed by the first door panel 24, and at this time, the first door panel 24 cannot be opened.
It should be noted that, when it is required to open the first door panel 24, a user may manually insert an external key into the first door lock 241 and rotate the external key clockwise by a predetermined distance, so that the first door lock 241 drives the turning piece 242 to rotate by a predetermined angle, and thus the turning piece 242 drives the first connecting rod 243 to rotate by a predetermined angle, so that the first connecting rod 243 rotates clockwise by a predetermined angle around the axis of the first door lock 241. Further, when the first connecting rod 243 rotates clockwise, the first connecting rod 243 directly presses the sidewall forming the groove 2611, so that the moving plate 25 is forced to move downward by a predetermined distance. Meanwhile, since the moving plate 25 moves downward by a predetermined distance, the second connecting link 252 follows the moving plate 25 to move downward by a predetermined distance, so that the second connecting link 252 presses the swing switch 264. Further, the swing switch 264 is pressed by the second connecting rod 252, so that the swing switch 264 swings downwards by a predetermined angle, and the controller 263 is triggered, so that the controller 263 pushes a right end of the fastener 262. Further, the right end of the fastening member 262 is subjected to a thrust action, so that the fastening member 262 rotates counterclockwise by a predetermined angle, and then one end of the fastening member 262 is separated from the locking member 27, and the fastening member 262 and the locking member 27 are not connected in a clamping manner. Meanwhile, due to the rotation of the fastening member 262, the surface of the fastening member 262 presses the locking member 27, so that the locking member 27 is separated from the groove 2611 of the housing 261, and the first door panel 24 is opened.
Specifically, the door body assembly 10 includes a second door panel 11, a frame plate 12 and an inner panel 13, the inner panel 13 is fixedly connected to the frame plate 12, the frame plate 12 is fixedly connected to the second door panel 11, and the frame plate 12 is located between the second door panel 11 and the inner panel 13.
Further, the door body assembly 10 includes a rotating handle 14, and one end of the rotating handle 14 is rotatably mounted on the outer side of the second door panel 11. Further, the door assembly 10 further includes a second door lock 15, and the second door lock 15 is rotatably mounted on the second door panel 11, wherein one end of the second door lock 15 is disposed on the outer side of the second door panel 11. Further, the door assembly 10 further includes a combination lock 16, the combination lock 16 is installed on the second door panel 11, and one end of the combination lock 16 is disposed on the outer side of the second door panel 11. It is worth mentioning that the centers of the turning handle 14, the second door lock 15 and the combination lock 16 are on the same line.
It should be noted that the door assembly 10 further includes a door lock mechanism, which is installed inside the second door panel 11 and located between the second door panel 11 and the inner panel 13, wherein the door lock mechanism is connected to the turning handle 14, the second door lock 15 and the combination lock 16 respectively. Further, the door lock mechanism comprises at least one retractable limiting protrusion, the limiting protrusion is telescopically mounted on the side wall of the frame plate 12, wherein when the rotating handle 14 rotates, the rotating handle 14 can control the retraction of the limiting protrusion, and thus the opening or closing of the second door panel 11 is controlled. Further, the combination lock 16 can control the extension and retraction of the limit protrusion, wherein when the user does not input the combination on the combination lock 16, the rotating handle 14 cannot rotate, so that the limit protrusion cannot retract, and the second door panel 11 cannot be opened. Further, the door lock may control the rotation of the turning handle 14, wherein when the user forgets to input the password, the user may manually insert an external key into the door lock and rotate the key by a predetermined angle, so that the stopper protrusion is no longer limited by the password lock 16, and then the user may manually turn the handle 14 so that the stopper protrusion is retracted, so that the second door panel 11 is opened. It should be further noted that the peripheral sidewall forming the first cavity 212 further has at least one slot, wherein when the limiting protrusion is inserted into the slot, the first cavity 212 is sealed by the second door panel 11.
Fig. 7 and 8 are schematic diagrams illustrating the using process of the intelligent safe deposit box. In the use process, the rotating handle 14 is manually rotated clockwise to disengage the limiting protrusion from the clamping groove, so that the second door panel 11 is opened. Then, an external key is manually inserted into the first door lock 241 and rotated clockwise by a predetermined distance, so that the first door lock 241 rotates the turn piece 242 by a predetermined angle, and thus the turn piece 242 rotates the first connecting rod 243 by a predetermined angle, so that the first connecting rod 243 rotates clockwise by a predetermined angle around the axis of the first door lock 241. Meanwhile, the first connecting rod 243 directly presses the sidewall forming the groove 2611, so that the moving plate 25 is forced to move downward by a predetermined distance. Thereby moving the second connecting link 252 downward by a predetermined distance following the moving plate 25 so that the second connecting link 252 presses the swing switch 264. Then the swing switch 264 is pressed by the second connecting rod 252, so that the swing switch 264 swings downwards by a predetermined angle, and the controller 263 is triggered, so that the controller 263 pushes the right end of the latch 262. Meanwhile, the right end of the fastening member 262 is subjected to a thrust action, so that the fastening member 262 rotates counterclockwise by a predetermined angle, and one end of the fastening member 262 is separated from the locking member 27. Due to the rotation of the locking member 262, the surface of the locking member 262 presses the surface of the locking member 27, so that the locking member 27 is disengaged from the groove 2611 of the housing 261, and the first door 24 is opened, so that the user can put the article into the accommodating groove 2121 or take the article out of the accommodating groove 2121.
In conclusion, the intelligent storage and management safety cabinet based on the embodiment of the application is clarified, and the intelligent storage and management safety cabinet has the advantages of convenience in use, good safety, secondary object sealing and the like.
It is worth mentioning that, in the embodiment of the present application, the intelligent storage and management safety cabinet has a simple structure, does not involve a complicated manufacturing process and expensive materials, and has high economical efficiency. Meanwhile, for manufacturers, the intelligent storage and management safety cabinet is easy to produce, low in cost, more beneficial to controlling production cost and further beneficial to product popularization and use.
It will be understood by those skilled in the art that the embodiments of the present invention as described above and shown in the drawings are given by way of example only and are not limiting of the present invention. The objects of the present invention have been fully and effectively accomplished. The functional and structural principles of the present invention have been shown and described in the embodiments, and any variations or modifications may be made without departing from the principles of the present invention.

Claims (10)

1. An intelligent storage and management safety cabinet for storing articles, comprising:
a door body assembly;
a cabinet assembly, the door assembly is rotatably connected to the cabinet assembly, wherein the cabinet assembly comprises
The cabinet body is provided with a first opening and a first cavity, the first opening is communicated with the outside, and the first cavity is communicated with the first opening;
a door frame assembly disposed on a sidewall forming the first cavity;
at least one partition plate, both sides of which are snap-coupled to a sidewall forming the first cavity, wherein a front side of the partition plate is detachably coupled to the door frame assembly, and the partition plate divides the first cavity into at least two receiving grooves to receive the article; and
the first door plate is rotatably connected to one side of the doorframe assembly, and can rotate for a preset angle to close the accommodating groove so as to perform secondary sealing on an article placed in the accommodating groove.
2. The intelligent storage and keeping safety cabinet of claim 1, wherein the door frame assembly comprises a left side plate and a right side plate, the left side plate and the right side plate are fixedly connected to the side walls forming the first cavity, respectively, and the left side plate and the right side plate are adjacent to the first opening, wherein both ends of the front side of the partition plate are detachably connected to the left side plate and the right side plate, respectively, wherein the first door panel is rotatably connected to the right side plate.
3. The intelligent storage and security cabinet of claim 2, wherein the cabinet body assembly further comprises a door lock assembly, the door lock assembly comprises a first door lock, a rotating member and a first connecting rod, the first door lock is rotatably connected to the left side plate of the door frame assembly, one end of the first door lock is disposed at the outer side of the left side plate, the other end of the first door lock is disposed at the inner side of the left side plate, the bottom end of the rotating member is mounted at the end of the first door lock positioned at the inner side of the left side plate, wherein when the first door lock is forced to rotate, the top end of the rotating member rotates around the axis of the first door lock, wherein the first connecting rod is fixedly connected to one end of the rotating member, and the rotating member is positioned between the first door lock and the first connecting rod, wherein the axis of the first connecting rod is parallel to the axis of the first door lock, when the door lock assembly is stressed to rotate, the door lock assembly drives the rotating piece to rotate for a preset angle, so that the rotating piece drives the first connecting rod to rotate for a preset angle, and the first connecting rod rotates for a preset angle around the axis of the first door lock.
4. The intelligent storage and management security cabinet of claim 3, wherein the cabinet assembly further comprises a movable plate that is slidable up and down and mounted inside the left side plate, wherein the movable plate further comprises a connecting end and a second connecting rod, the connecting end extends outward in a direction close to the first opening, wherein the second connecting rod is perpendicular to the connecting end, and the second connecting rod extends in a direction away from the edge of the cabinet, wherein the second connecting rod is higher than the connecting end.
5. The intelligent storage and management safety cabinet as claimed in claim 4, wherein the connecting end has a sliding slot, the sliding slot is connected with the first connecting rod in a clamping manner, and the sliding slot is arranged in a transverse manner, wherein when the first door lock is rotated clockwise by an external torque force, the first door lock drives the rotating member to rotate by a predetermined angle, so that the first connecting rod rotates clockwise by a predetermined angle around the axis of the first door lock, and the first connecting rod directly extrudes the side wall forming the sliding slot, so that the moving plate is forced to move downwards by a predetermined distance.
6. The intelligent storage and management safety cabinet as recited in claim 2, wherein the cabinet assembly further comprises an electrically controlled latch mounted inside the left side plate, wherein the electrically controlled latch comprises a housing having a groove at a left end thereof, the groove having a width that decreases from left to right, wherein the housing further has a second opening and a second cavity, the second cavity is in communication with the second opening, and the second opening is in communication with the groove.
7. The intelligent storage and management safety cabinet according to claim 6, wherein the electrically controlled latch further comprises a latch member, a controller and a swing switch, the latch member is rotatably connected to the sidewall forming the second cavity, and the left end of the latch member is located in the groove, wherein the controller is also installed on the sidewall forming the second cavity, and one end of the controller is connected to the right end of the latch member, and the other end of the controller is connected to the swing switch, wherein the swing switch is located on the right side forming the second cavity, wherein the top of the swing switch is located outside the second cavity.
8. The intelligent storage and management safety cabinet according to claim 7, wherein the cabinet body assembly further comprises a locking member detachably connected to a left end of the first door panel, the first door panel can rotate by a predetermined angle so that the locking member is inserted into the groove of the housing, and the locking member is clamped to the locking member, wherein when the locking member presses the locking member, the locking member is pressed by the locking member to rotate clockwise, so that one end of the locking member moves upward to clamp the locking member, wherein when the locking member is clamped to the locking member, the accommodating groove is sealed by the first door panel, and at this time, the first door panel cannot be opened.
9. The intelligent storage and management security cabinet of claim 1, wherein the door assembly comprises a second door panel, a bezel and an inner panel, the inner panel being fixedly attached to the bezel, the bezel being fixedly attached to the second door panel, wherein the bezel is positioned between the second door panel and the inner panel.
10. The intelligent storage and management security cabinet of claim 9, wherein the door assembly comprises a swing handle, a second door lock, and a combination lock, wherein one end of the swing handle is rotatably mounted on the second door panel, the second door lock is rotatably mounted on the second door panel, the combination lock is mounted on the second door panel, and one end of the combination lock is disposed on an outer side of the second door panel, wherein centers of the swing handle, the second door lock, and the combination lock are aligned.
CN202021040679.4U 2020-06-08 2020-06-08 Intelligent storage and management safety cabinet Active CN213087759U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021040679.4U CN213087759U (en) 2020-06-08 2020-06-08 Intelligent storage and management safety cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021040679.4U CN213087759U (en) 2020-06-08 2020-06-08 Intelligent storage and management safety cabinet

Publications (1)

Publication Number Publication Date
CN213087759U true CN213087759U (en) 2021-04-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021040679.4U Active CN213087759U (en) 2020-06-08 2020-06-08 Intelligent storage and management safety cabinet

Country Status (1)

Country Link
CN (1) CN213087759U (en)

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