CN214016703U - Intelligent pipe cabinet - Google Patents

Intelligent pipe cabinet Download PDF

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Publication number
CN214016703U
CN214016703U CN202022796034.XU CN202022796034U CN214016703U CN 214016703 U CN214016703 U CN 214016703U CN 202022796034 U CN202022796034 U CN 202022796034U CN 214016703 U CN214016703 U CN 214016703U
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CN
China
Prior art keywords
cabinet
sub
door
cabinet door
cabinets
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CN202022796034.XU
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Chinese (zh)
Inventor
任超峰
袁涛
郭春保
王高峰
段芊芊
张君兰
任艳
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Changsha Minrong Information Technology Co ltd
Beijing Minrong Changtai Technology Co ltd
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Changsha Minrong Information Technology Co ltd
Beijing Minrong Changtai Technology Co ltd
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Priority to CN202022796034.XU priority Critical patent/CN214016703U/en
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Publication of CN214016703U publication Critical patent/CN214016703U/en
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Abstract

The utility model relates to an extract the cabinet field, especially, relate to an intelligence thing pipe cabinet, including a plurality of sub-cabinets and with a plurality of rectangle cabinet doors that sub-cabinet one-to-one set up, every sub-cabinet correspondence is provided with the pivot, can realize that the clearance between the sub-cabinet from top to bottom is only 0-2mm, the side of opening the door at the frame department of cupboard and sub-cabinet forms the interior chamfer face that has certain circular arc radius simultaneously, can realize the rotation of cabinet door ingeniously, thereby make between the sub-cabinet about, the clearance control between sub-cabinet and the frame is 0-2mm, let between the positive sub-cabinet of whole thing pipe cabinet, present between sub-cabinet and the frame and be close seamless state, because of independent setting between a plurality of sub-cabinets that can solve the thing pipe cabinet on the existing market, and not adopt integrative integrated form design, lead to have obvious baffle between the sub-cabinet and cabinet side, make thing pipe cabinet openly whole outward appearance exquisite enough, The problem of compactness.

Description

Intelligent pipe cabinet
Technical Field
The utility model relates to a draw the cabinet field, especially relate to an intelligence thing pipe cabinet.
Background
In the financial industry, strict requirements are imposed on the storage and the acquisition of articles, and a careless course is ensured in all aspects of operation flow, security and the like. At present, when an article is picked up, a user needs to bring a corresponding certificate to a bank outlet for making an appointment, and after the article reaches a bank store, the user needs to go to a corresponding counter of the bank store again to pick up the article, and when the number of picked-up people is large, the user needs to queue up in sequence. The appearance of intelligence thing pipe cabinet, the deposit article and the parcel of public place have been made things convenient for greatly, and the security and the intellectuality that article were kept have been improved to very big degree, it is used for depositing article to manage the cabinet to be provided with a plurality of sub-cabinets usually, the size of sub-cabinet can be set for according to actual conditions, but because of independent setting between a plurality of sub-cabinets of thing pipe cabinet on the current market, and do not adopt integrative integrated form design, lead to between the sub-cabinet and cabinet side have obvious baffle, make thing pipe cabinet openly whole outward appearance exquisite inadequately, inseparable.
In view of the above, there is a need to provide a smart rack to solve the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a main aim at provides an intelligence thing pipe cabinet to solve and be independent setting between a plurality of sub-cabinets of thing pipe cabinet on the existing market, do not adopt integrative integrated form design, there is obvious baffle between the sub-cabinet and cabinet side limit, so that the positive whole outward appearance of thing pipe cabinet is exquisite, inseparable problem inadequately.
In order to achieve the purpose, the utility model provides an intelligent pipe cabinet, wherein the pipe cabinet body comprises a plurality of sub-cabinets and a plurality of rectangular cabinet doors which are arranged in one-to-one correspondence with the sub-cabinets; preferably, notches are arranged at the corners of the front sides of the cabinet bottom plate and the cabinet top plate of the sub-cabinet, which are close to the rotating side of the cabinet door, and blind holes are arranged at the positions of the cabinet bottom plate and the cabinet top plate, which are close to the notches and the cabinet door;
the pipe cabinet body also comprises shafts which are arranged in one-to-one correspondence with the sub-cabinets, and each shaft is fixedly arranged at the blind holes of the cabinet bottom plate and the cabinet top plate of each sub-cabinet;
the cabinet door is rotatably connected with the shaft through a rotating arm, the rotating arm is provided with a shaft hole for the shaft to pass through, the rotating arm is fixedly connected with the inner side face of the cabinet door, when the cabinet door is closed, the inner surface of the cabinet door and the front side of the sub cabinet are arranged at intervals of a preset distance, the size of the cabinet door is larger than that of the opening of the sub cabinet, and the gap between the adjacent cabinet doors is 0-2 mm;
an inner chamfer surface facing the rotating side is formed on the side surface of the opening side of the cabinet door;
the front side of thing pipe cabinet body still is equipped with the frame, the frame encircles the cabinet door sets up, the front surface of frame with the setting of the front surface parallel and level of cabinet door, and frame and adjacent clearance between the cabinet door is 0 ~ 2mm, the frame be close to adjacent the rotation side face of cabinet door is formed with the orientation and deviates from interior chamfer face that the direction of cabinet door set up.
Preferably, still include automatically controlled lock module, automatically controlled lock module include host system, power and with a plurality of sub-cabinet locks that host system and power are connected, every sub-cabinet lock includes latch hook and automatically controlled lock body, the setting of electrically controlled lock body is in corresponding be close to of sub-cabinet be close to on the inner wall of the side of opening the door of cabinet door or set up between two adjacent sub-cabinets, the latch hook is fixed in on the medial surface of cabinet door.
Preferably, the inner chamfer surface is arc-shaped, and the arc radius of the inner chamfer surface is 5-50 mm.
Preferably, the pipe cabinet body comprises a row of cabinet columns, each row of cabinet columns comprises a plurality of vertically stacked sub-cabinets with the same width and depth, and the side surface of the door opening side of the cabinet door corresponding to the sub-cabinet of the cabinet column is formed with the inner chamfer surface facing the rotating side; the heights of the plurality of sub-cabinets are the same or different.
Preferably, the tube cabinet body comprises at least one row of cabinet columns, each row of cabinet columns comprises a plurality of vertically stacked sub-cabinets with the same width and depth, the number of the cabinet columns is two, and the two rows of cabinet columns are respectively a first cabinet column close to the rotating side and a second cabinet column close to the opening side; the side surface of the door opening side of the cabinet door corresponding to the sub-cabinet of the first cabinet row and the second cabinet row is provided with the inner chamfer surface facing the rotating side.
Preferably, the tube cabinet body comprises at least one row of cabinet columns, each row of cabinet columns comprises a plurality of vertically stacked sub-cabinets with the same width and depth, the number of the cabinet columns is three or more, and the number of the cabinet columns is a first cabinet column close to the rotating side, at least one middle cabinet column and a second cabinet column close to the opening side; the side surfaces of the cabinet doors on the opening side, corresponding to the sub-cabinets of the first cabinet row, the second cabinet row and the middle cabinet row, are provided with the inner chamfer surfaces facing the rotating side.
Preferably, the rotor arm include with free end transitional coupling's stiff end, the shaft hole is seted up on the stiff end, the free end passes through bolted connection, screw connection, riveting, welding, sticky one or more modes of connecting on the cabinet door medial surface.
Preferably, the number of the rotating arms is one or more.
Preferably, the preset interval is 0-1 mm.
Preferably, a plurality of shafts on each sub-cabinet are arranged on the same vertical line, and the thickness of the cabinet door is 5-12 mm.
Compared with the prior art, the utility model provides an intelligence thing pipe cabinet has following beneficial effect:
this height that the cabinet column of thing pipe cabinet was listed as the number and the sub-cabinet can set up according to actual conditions, can adapt to the different demands that the article were drawed in the storage in a flexible way, the sub-cabinet correspondence that every cabinet was listed as is provided with the pivot, every axle sets up the blind hole department at the cabinet bottom plate of every sub-cabinet and cabinet roof, can realize that the clearance between the sub-cabinet is only 0-2mm from top to bottom, frame department and the side of opening the door of sub-cabinet at the cupboard are formed with the interior chamfer face of certain circular arc radius simultaneously, can realize the rotation of cabinet door ingeniously, thereby make between the sub-cabinet about, clearance control between sub-cabinet and the frame is at 0-2mm, let between the positive sub-cabinet of whole thing pipe cabinet, present between sub-cabinet and the frame and be close seamless state, and then greatly promote the aesthetic property of intelligence thing pipe cabinet outward appearance.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
Fig. 1 is an overall schematic diagram of a smart rack in an embodiment of the present invention;
fig. 2 is an overall schematic view of the intelligent material cabinet according to an embodiment of the present invention, when the cabinet door is removed;
fig. 3 is a perspective view of a cabinet bottom plate of the intelligent pipe cabinet in an embodiment of the present invention;
fig. 4 is a perspective view of a cabinet door of the intelligent pipe cabinet in an embodiment of the present invention;
fig. 5 is an axis schematic diagram of a smart rack in an embodiment of the invention;
fig. 6 is a perspective view of a swivel arm of the intelligent pipe cabinet according to an embodiment of the present invention;
fig. 7 is a perspective view of a frame of the intelligent pipe cabinet according to an embodiment of the present invention;
fig. 8 is a cross-sectional view of a frame a-a of the intelligent pipe cabinet in an embodiment of the present invention;
fig. 9 is an overall front view of a smart concierge cabinet in an embodiment of the present invention;
fig. 10 is a B-B cross-sectional view of a smart pipe cabinet in an embodiment of the invention;
fig. 11 is an enlarged view of a smart rack in an embodiment of the present invention.
The purpose of the present invention is to provide a novel and improved method and apparatus for operating a computer.
The reference numbers illustrate:
a body 10;
a cabinet row 100; a first cabinet column 110; a second cabinet column 111; a middle cabinet column 112;
a sub-cabinet 130; a cabinet base plate 131; a notch 132; a blind hole 133;
a cabinet door 140; the rotating side 141; an open door side 142; the inner side 143 of the cabinet door; a sub-cabinet opening 144; an inner chamfered surface 145 on the door opening side;
a shaft 150;
a rotating arm 160; shaft hole 161; a free end 162; a fixed end 163;
a frame 170; inner chamfered surfaces 171 of the bezel;
an electronic control lock module 200; a sub-cabinet door lock 230; a latch hook 231; an electrically controlled lock 232.
Detailed Description
It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that all the directional indicators (such as upper, lower, left, right, front and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicit ly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
Referring to fig. 1-11, an embodiment of the present invention provides an intelligent article cabinet, including: the tube cabinet comprises a tube cabinet body 10, wherein the tube cabinet body 10 comprises a plurality of sub-cabinets 130 and a plurality of rectangular cabinet doors 140 which are arranged corresponding to the sub-cabinets 130 one by one. Namely, the cabinet door 140 is correspondingly arranged outside each sub-cabinet 130, and the shape of the cabinet door 140 needs to correspond to the shape of the opening of the sub-cabinet 140, so that the cabinet door 140 is rectangular.
Notches 132 are formed in the corners of the front sides of the cabinet bottom plate 131 and the cabinet top plate (not shown) of the sub-cabinet 130, which are close to the rotating side 141 of the cabinet door 140, and blind holes 133 are formed in the positions, which are close to the notches 132 and the cabinet door 140, of the cabinet bottom plate 131 and the cabinet top plate; the tube cabinet body 10 further includes shafts 150 disposed in one-to-one correspondence with the sub-cabinets 130, and each shaft 150 is fixedly disposed at the blind holes 133 of the cabinet bottom plate 131 and the cabinet top plate of each sub-cabinet 130.
Referring to fig. 3, specifically, the diameter of the blind hole in this embodiment is 6mm, and since the rotating side 141 of the cabinet door 140 needs to have a certain rotating radius when rotating, the purpose of providing the notch 132 on the cabinet bottom plate 131 can ensure that the cabinet door 140 has a sufficient reserved space when rotating.
The cabinet bottom plate 131 can be used as the bottom plate of the sub-cabinet 130 and as the cabinet top plate of the sub-cabinet 130 below. Of course, each sub-cabinet 130 may also be provided with a cabinet bottom plate and a cabinet top plate separately, in this case, the corners of the front sides of the cabinet bottom plate 131 and the cabinet top plate of the sub-cabinet 130, which are close to the rotating side 141 of the cabinet door 140, are both provided with the notches 132.
The upper end and the lower end of each shaft 150 are fixedly mounted at the blind holes 133 of the cabinet bottom plate 131 and the cabinet top plate of the corresponding sub-cabinet 130, so that the shafts 150 are fixed, and each rotating arm 160 rotates around the corresponding shaft 150 to drive the cabinet door 140 to open and close. The plurality of shafts 150 on each cabinet row 100 are arranged on the same vertical line, so that the vertical arrangement is more tidy, the vertical gap between the sub-cabinets 130 is 0-2mm, the vertical spacing distance between the sub-cabinets 130 is close to a seamless state, and the front attractiveness of the pipe cabinet is improved.
Referring to fig. 5 and 6 together, the cabinet door 140 is rotatably connected to the shaft 150 through a rotating arm 160, the rotating arm 160 is provided with a shaft hole 161 for the shaft 150 to pass through, a free end 162 of the rotating arm 160 is fixedly connected to an inner side 143 of the cabinet door, when the cabinet door 140 is closed, a preset distance is set between an inner surface of the cabinet door 140 and the cabinet body, the size of the cabinet door 140 is larger than that of the sub-cabinet opening 144, and a gap between adjacent cabinet doors 140 is 0-2 mm; it should be noted that the rotating arm 160 includes a free end 162 and a fixed end 163 transitionally connected to the free end 162; one or more rotating arms 160 are correspondingly disposed inside each cabinet door 140, and the rotating arms 160 rotate around the shafts 150 to drive the cabinet doors 140 to rotate, thereby opening and closing the cabinet doors 140. The size of the cabinet door 140 needs to be slightly larger than the opening 144 of the sub-cabinet and there is a predetermined distance between the inner surface of the sub-cabinet 130 and the sub-cabinet 130, so that the sub-cabinet 130 can be completely shielded at the rear side of the cabinet door 140, and when the cabinet door 140 is closed, the portion of the sub-cabinet 130 cannot be seen when the cabinet is viewed from the front, thereby further improving the aesthetic property of the cabinet.
Referring to fig. 4, an inner chamfered surface 145 facing the rotation side 141 is formed on a side surface of the door opening side 142 of the cabinet door 140; specifically, the cabinet door 140 is divided into an opening side 142 and a rotating side 141, where the rotating side 141 is a relatively fixed side of the cabinet door 140 as the name implies, and the opening side 142 is a side for opening and closing the cabinet door 140. Through setting up interior chamfer 145, can make adjacent cabinet door 140 can enough space realize the rotation of cabinet door 140 when rotating.
Referring to fig. 7, in this embodiment, the frame 170 is integrally formed with the side of the cabinet body 10. The front side of the tube cabinet body 10 is further provided with a frame 170, the frame 170 is arranged around the cabinet door 140, the front surface of the frame 170 is arranged flush with the front surface of the cabinet door 140, a gap between the frame 170 and the adjacent cabinet door 140 is 0-2mm, and an inner chamfer surface 171 arranged in a direction away from the cabinet door 140 is formed on the side surface of the frame 170 close to the rotating side 141 of the adjacent cabinet door 140; the inner chamfer surface 171 is arranged at the position, so that the cabinet door 140 close to the frame 170 can be ensured to have enough space to realize the rotation of the cabinet door 140, and in addition, the design can realize that the gap between the frame 170 and the cabinet door 140 of the adjacent cabinet column 100 is controlled to be 0-2mm, so that the seamless state between the frame 170 and the cabinet door 140 close to the frame 170 is close to, and the attractiveness of the pipe cabinet is improved.
As another preferred embodiment of the present invention, the tube cabinet body 10 further includes an electric control lock module 200, the electric control lock module 200 includes a main control module, a power supply and a plurality of sub-cabinet door locks 230 connected to the main control module and the power supply, each of the sub-cabinet door locks 230 includes a lock hook 231 and an electric control lock body 232, the electric control lock body 232 is disposed correspondingly to the sub-cabinet 130 close to the inner wall of the door opening side 142 of the cabinet door 140 or disposed between two adjacent sub-cabinets 130, and the lock hook 231 is fixed on the inner side 143 of the cabinet door. Referring to fig. 10-11, the electric control lock module 200 is used to intelligently control the opening and closing of the doors 140 of the sub-cabinets 130 corresponding to each cabinet column 100. Specifically, the electric lock 232 of the present embodiment is disposed on an inner wall disposed adjacent to the other opening side 142.
As a specific embodiment of the present invention, the inner chamfer surface is circular arc, and the circular arc radius of the inner chamfer surface is 5-50 mm. The inner chamfer surfaces include two types, one type is that the opening side 142 of the cabinet door 140 has the inner chamfer surface 145 formed toward the rotating side 141 of the cabinet door 140, and the other type is that the frame 170 is close to the adjacent cabinet row and has the inner chamfer surface 171 formed away from the rotating side 141 of the cabinet door 140, where it should be noted that the inner chamfer surface may be an arc-shaped chamfer surface or a planar arc surface, the preferred inner chamfer surface of the embodiment is an arc-shaped inner chamfer surface, and specifically, referring to fig. 4 and 8, the arc radius of the inner chamfer surface needs to ensure that the adjacent cabinet door 140 can normally rotate, thereby realizing the opening and closing of the cabinet door 140. Specifically, the arc radius of the inner chamfer surface on the door opening side 142 of the cabinet door 140 is 6mm, and the arc radius of the inner chamfer surface on the frame 170 close to the rotating side 141 of the adjacent cabinet door 140 is 10 mm.
Further, as a specific embodiment of the present invention, the number of the cabinet rows 100 is one, and the inner chamfer 145 facing the rotation side 141 is formed on the side surface of the door opening side 142 of the cabinet door 140 corresponding to the sub-cabinet 130 of the cabinet row 100; the heights of the plurality of sub-cabinets 130 are the same or different. It should be noted that the number of cabinet columns 100 of the intelligent logistics cabinet can be set according to actual situations, and can be a single cabinet column 100, two cabinet columns 100, or multiple cabinet columns 100, and the flexibility of the number of cabinet columns can greatly improve the applicability of the intelligent logistics cabinet. Meanwhile, each row of cabinets 100 includes a plurality of small sub-cabinets 130 stacked vertically, and the height direction of the sub-cabinets 130 is not limited, that is, the height can be set according to practical situations, for example, the height of the lowest sub-cabinet 130 in a single cabinet row 100 is suitably increased to store large articles, and small articles can be stored in the sub-cabinet 130 with a smaller upper height, which also greatly increases the applicability and flexibility of the tube cabinet.
As another preferred embodiment of the present invention, the number of the cabinet rows 100 is two, that is, a first cabinet row 110 close to the rotating side 141 and a second cabinet row 111 close to the door opening side 142; the inner chamfered surface 145 facing the turning side 141 is formed on the side surface of the door opening side 142 of the cabinet door 140 corresponding to the sub-cabinet 130 of the first cabinet row 110 and the second cabinet row 111. Specifically, when the number of cabinet rows of the cabinet is two, the two cabinet rows are closely arranged adjacent to each other, and particularly, an inner chamfer 145 facing the rotating side 141 is formed on the side surface of the opening side 142 of the cabinet door 140 of the sub-cabinet 130 of the first cabinet row 110 and the second cabinet row 111, so that the cabinet door 140 of the second cabinet row 111 has a sufficient rotating space during rotation, and thus, the gap between the sub-cabinets 130 of the first cabinet row 110 and the second cabinet row 111 can be controlled to be 0-2mm, and the first cabinet row 110 and the second cabinet row 111 are close to a seamless state, thereby improving the aesthetic property of the front surface of the cabinet.
As another preferred embodiment of the present invention, the number of the cabinet rows is three or more, and the cabinet rows are a first cabinet row 110 close to the rotating side 141, at least one intermediate cabinet row 112, and a second cabinet row 111 close to the opening side 142; the inner chamfered surface 145 facing the turning side 141 is formed on the side surface of the door opening side 142 of the cabinet door 140 corresponding to the sub-cabinet 130 of the first cabinet row 110, the second cabinet row 111, and the middle cabinet row 112. Specifically, please refer to fig. 1, taking three columns of cabinet columns with the number of the middle cabinet column 112 being 1 as an example, the side surface of the door opening side 142 of each cabinet column is formed with an inner chamfer facing the rotating side 141, so that the cabinet doors 140 of the second cabinet column 111 and the middle cabinet column 112 have sufficient rotating space during rotation, and thus the gap between the sub-cabinets 130 of the first cabinet column 110, the second cabinet column 111 and the middle cabinet column 112 can be controlled to be 0-2mm, so that the first cabinet column 110, the second cabinet column 111 and the middle cabinet column 112 are in a nearly seamless state, thereby improving the aesthetic property of the front surface of the cabinet.
Referring to fig. 6 again, as a preferred embodiment of the present invention, the rotating arm 160 includes a fixed end 163 transitionally connected to the free end 162, the shaft hole 161 is formed on the fixed end 163, and the free end 162 is connected to the inner side surface 143 of the cabinet door by one or more of bolting, screwing, riveting, welding, and gluing. Specifically, the rotating arm 160 includes two parts, namely a free end 162 and a fixed end 163 transitionally connected to the free end 162, and the fixed end 163 is provided with a shaft hole 161 capable of penetrating the shaft 150. The corresponding cabinet door 140 is rotated by the rotation of the rotation arm 160 around the shaft 150, thereby achieving the opening and closing of the cabinet door 140. In addition, the free end 162 and the cabinet door 140 can be connected in many ways, such as riveting, screwing, etc., so that the rotating arm 160 can firmly connect the corresponding cabinet doors 140, and the free end 162 is connected to the inner side of the sub-cabinet 130 by screws in this embodiment.
Further, the number of the rotating arms 160 is one or more. Specifically, the rotating arms 160 need to be able to rotate normally and smoothly around the shaft 150, and it should be noted that the number of the rotating arms 160 can be set according to the actual situation, that is, as long as the opening and closing of the cabinet door 140 under the rotation of the rotating arms 160 can be ensured, the number of the rotating arms 160 can be freely set. Specifically, in this example, the number of the rotating arms 160 is 1.
As the utility model discloses preferred embodiment, the interval is preset the interval and is 0 ~ 1 mm. Specifically, the spacing distance is the closest distance from the inner side 143 of the cabinet door to the sub-cabinet opening 144, and the predetermined spacing distance is set to allow the sub-cabinet 130 to be located behind the corresponding cabinet door 140, so that the sub-cabinet 130 cannot be seen when the cabinet door 140 is closed and the cabinet is viewed from the front, thereby further improving the aesthetic property of the cabinet.
As a preferred embodiment of the present invention, the plurality of shafts 150 of each sub-cabinet 130 are disposed on the same vertical line, and the thickness of the cabinet door 140 is 5-12 mm. The shafts 150 on each cabinet row 100 may be disposed on the same vertical line, or may be disposed in different linear directions, as long as the rotating arm 160 rotates around the shaft 150 to open and close the cabinet door 140. In addition, the thickness of the cabinet door 140 can be set according to actual conditions, but the thickness cannot be too thick and too thin, the cabinet door 140 becomes very heavy due to the too thick thickness, the cabinet door 140 is not enough in strength due to the too light thickness, and the external impact bearing capacity is reduced. The thickness of the cabinet door 140 in the preferred embodiment is 10 mm.
The above is only the preferred embodiment of the present invention, and not the scope of the present invention, all the equivalent structures or equivalent flow changes made by the contents of the specification and the drawings or the direct or indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims (10)

1. An intelligent pipe cabinet comprises a pipe cabinet body, wherein the pipe cabinet body comprises a plurality of sub-cabinets and a plurality of rectangular cabinet doors which are arranged in one-to-one correspondence with the sub-cabinets; it is characterized in that the preparation method is characterized in that,
the front side edges of the cabinet bottom plate and the cabinet top plate of the sub-cabinet are provided with notches close to the corners of the rotating side of the cabinet door, and the positions of the cabinet bottom plate and the cabinet top plate close to the notches and the cabinet door are provided with blind holes;
the pipe cabinet body also comprises shafts which are arranged in one-to-one correspondence with the sub-cabinets, and each shaft is fixedly arranged at the blind holes of the cabinet bottom plate and the cabinet top plate of each sub-cabinet;
the cabinet door is rotatably connected with the shaft through a rotating arm, the rotating arm is provided with a shaft hole for the shaft to pass through, the free end of the rotating arm is fixedly connected with the inner side face of the cabinet door, when the cabinet door is closed, the inner surface of the cabinet door and the front side of the sub-cabinet are arranged at a preset interval, the size of the cabinet door is larger than that of the opening of the sub-cabinet, and the gap between the adjacent cabinet doors is 0-2 mm;
an inner chamfer surface facing the rotating side is formed on the side surface of the opening side of the cabinet door;
the front side of thing pipe cabinet body still is equipped with the frame, the frame encircles the cabinet door sets up, the front surface of frame with the setting of the front surface parallel and level of cabinet door, and frame and adjacent clearance between the cabinet door is 0 ~ 2mm, the frame be close to adjacent the rotation side face of cabinet door is formed with the orientation and deviates from interior chamfer face that the direction of cabinet door set up.
2. The intelligent pipe cabinet according to claim 1, further comprising an electrically controlled lock module, wherein the electrically controlled lock module comprises a main control module, a power supply and a plurality of sub-cabinet door locks connected to the main control module and the power supply, each sub-cabinet door lock comprises a lock hook and an electrically controlled lock body, the electrically controlled lock body is disposed on an inner wall of the corresponding sub-cabinet close to the door opening side of the cabinet door or between two adjacent sub-cabinets, and the lock hook is fixed on an inner side surface of the cabinet door.
3. The cabinet according to claim 1, wherein the inner chamfer is circular arc shaped with a circular arc radius of 5-50 mm.
4. The intelligent pipe cabinet according to claim 3, wherein the pipe cabinet body comprises a row of cabinet columns, each row of the cabinet columns comprises a plurality of vertically stacked sub-cabinets with the same width and depth, and the side surface of the door opening side of the cabinet door corresponding to the sub-cabinet of the cabinet column is formed with the inner chamfer surface facing the rotating side; the heights of the plurality of sub-cabinets are the same or different.
5. The intelligent pipe cabinet of claim 3, wherein the pipe cabinet body comprises at least one row of cabinet columns, each row of cabinet columns comprises a plurality of vertically stacked sub-cabinets with the same width and depth, wherein the number of cabinet columns is two, namely a first cabinet column close to the rotating side and a second cabinet column close to the opening side; the side surface of the door opening side of the cabinet door corresponding to the sub-cabinet of the first cabinet row and the second cabinet row is provided with the inner chamfer surface facing the rotating side.
6. The intelligent pipe cabinet of claim 3, wherein the pipe cabinet body comprises at least one row of cabinet columns, each row of cabinet columns comprises a plurality of vertically stacked sub-cabinets with the same width and depth, the number of the cabinet columns is three or more, namely a first cabinet column close to the rotating side, at least one middle cabinet column and a second cabinet column close to the opening side; the side surfaces of the cabinet doors on the opening side, corresponding to the sub-cabinets of the first cabinet row, the second cabinet row and the middle cabinet row, are provided with the inner chamfer surfaces facing the rotating side.
7. The cabinet according to claim 3, wherein the rotating arm comprises a fixed end in transitional connection with the free end, the shaft hole is opened on the fixed end, and the free end is connected to the inner side surface of the cabinet door through one or more of bolting, screwing, riveting, welding and gluing.
8. The intelligent pipe cabinet of claim 7, wherein the number of said swivel arms is one or more.
9. A smart pipe cabinet according to claim 8, wherein the predetermined spacing is 0-1 mm.
10. The cabinet according to claim 9, wherein the plurality of shafts on each of the sub-cabinets are disposed on the same vertical line, and the thickness of the cabinet door is 5-12 mm.
CN202022796034.XU 2020-11-27 2020-11-27 Intelligent pipe cabinet Active CN214016703U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022796034.XU CN214016703U (en) 2020-11-27 2020-11-27 Intelligent pipe cabinet

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Application Number Priority Date Filing Date Title
CN202022796034.XU CN214016703U (en) 2020-11-27 2020-11-27 Intelligent pipe cabinet

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Publication Number Publication Date
CN214016703U true CN214016703U (en) 2021-08-24

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Application Number Title Priority Date Filing Date
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Country Link
CN (1) CN214016703U (en)

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