CN111508131B - Storage device sharing system based on IC chip - Google Patents

Storage device sharing system based on IC chip Download PDF

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Publication number
CN111508131B
CN111508131B CN202010345952.2A CN202010345952A CN111508131B CN 111508131 B CN111508131 B CN 111508131B CN 202010345952 A CN202010345952 A CN 202010345952A CN 111508131 B CN111508131 B CN 111508131B
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storage device
plate
storage
chip
folding
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CN111508131A (en
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曾建宏
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Huizhou Aibaote Intelligent Technology Co ltd
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Huizhou Aibaote Intelligent Technology Co ltd
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F7/00Mechanisms actuated by objects other than coins to free or to actuate vending, hiring, coin or paper currency dispensing or refunding apparatus
    • G07F7/06Mechanisms actuated by objects other than coins to free or to actuate vending, hiring, coin or paper currency dispensing or refunding apparatus by returnable containers, i.e. reverse vending systems in which a user is rewarded for returning a container that serves as a token of value, e.g. bottles

Abstract

A storage device sharing system based on an IC chip comprises a storage device, a storage base station, a lifting device, a mobile terminal and a monitoring device; the storage device is provided with a plurality of IC chips, and the IC chips are internally provided with positioning modules; the storage base station comprises an accommodating groove body and an electronic door, wherein the accommodating groove body is arranged below the ground, and the electronic door is arranged at a notch of the accommodating groove body; the lifting device and the storage device are arranged in the containing groove body, the storage device is arranged above the lifting device, and the controller is in communication connection with the lifting device; and the mobile terminal is provided with a position sharing module, and the position sharing module is in communication connection with the positioning module. Through storing device with the storing basic station in for storing device can obtain at the storing basic station, need not obtain storing device from very far place before the transport goods, perhaps takes storing device to go very far place after the discharge and returns storing device, has reduced transit time and cost of transportation.

Description

Storage device sharing system based on IC chip
Technical Field
The invention relates to the technical field of storage devices, in particular to a storage device sharing system based on an IC chip.
Background
In the goods transportation industry, need use goods frame or layer board as the carrier transportation goods, the condition that often appears in real life has: the goods are transported to the site B from the site A, the goods are firstly placed in the goods frame at the site A, then the goods frame and the goods are transported to the site B together, and the goods are unloaded from the site B and then the goods frame is transported back to the site A; if no goods frame exists in the site A in advance and the goods frame needs to be transported to the site A from other places with the goods frame in advance, the turnover of the goods frame needs to consume a large amount of transportation time and transportation cost.
Disclosure of Invention
In view of the above, there is a need for an IC chip-based storage device sharing system that can reduce transportation time and transportation cost.
An IC chip based storage device sharing system, comprising: the system comprises a storage device, a storage base station, a lifting device, a mobile terminal and a monitoring device;
the device comprises a plurality of storage devices, a positioning module and a control module, wherein the storage devices are vertically stacked, an IC chip is arranged on each storage device, and the IC chip is internally provided with the positioning module;
the storage device includes: the thickness difference compensation device comprises a square base, two thickness difference compensation blocks, two first side plates, two second side plates, a frame body and a plurality of pin joint devices, wherein the bottoms of the two first side plates are respectively arranged on two opposite sides of the base through the pin joint devices, the two thickness difference compensation blocks are arranged on the other two opposite sides of the base, and the height of each thickness difference compensation block is 1-2 times of the thickness of each first side plate; the second side plate comprises a folding positive plate and a folding negative plate, one side edge of the folding positive plate is arranged on one side edge of the folding negative plate through the pin joint device, the other side edge of the folding negative plate, which is far away from the folding positive plate, is arranged on the thickness difference compensation block through the pin joint device, and the other side edge of the folding positive plate, which is far away from the folding negative plate, is connected with the frame body through the pin joint device;
the storage base station comprises an accommodating groove body and an electronic door, the accommodating groove body is arranged below the ground, the electronic door is arranged at a notch of the accommodating groove body, and the electronic door comprises an electronic lock for controlling the electronic door to open and close;
the lifting device and the storage device are arranged in the accommodating groove body, the lifting device comprises a lifting cylinder, a controller and a bearing plate, the lifting cylinder is arranged at the bottom of the accommodating groove body, the bearing plate is arranged above the lifting cylinder, the storage device is arranged above the bearing plate, the controller is in control connection with the lifting cylinder, and the controller is used for controlling the lifting cylinder to drive the bearing plate to lift; the controller is in communication connection with the monitoring device;
the monitoring device comprises a gravity sensor and a background control system which are arranged at the bottom of the bearing plate, and the background control system is in communication connection with the gravity sensor, the mobile terminal, the positioning module, the controller and the electronic lock;
and a position sharing module is arranged on the mobile terminal and is in communication connection with the positioning module.
In one embodiment, a placing groove is formed in one side surface of the frame body, which is far away from the base.
In one embodiment, the placing groove is rectangular, four placing legs are arranged at four corners below the base, four clamping protrusions are arranged on the four placing legs respectively, the four clamping protrusions are arranged corresponding to the four corners of the placing groove respectively, and the structures of the clamping protrusions are matched with the structures of the four corners of the placing groove.
In one embodiment, the storage device further comprises a latch and two latch pipes, the two latch pipes are respectively arranged on the folding positive plate and the folding negative plate, the two latch pipes are arranged in an aligned manner, the latch pipes are provided with latch holes, and the latch holes are matched with the latches.
In one embodiment, the fastening device further comprises a limiting fastening clip, the limiting fastening clip comprises a fixing sheet and an elastic sheet, the fixing sheet is arranged parallel to the plane where the first side plate is located, one end of the fixing sheet is arranged on the second side plate, one end of the elastic sheet is arranged at one end, far away from the second side plate, of the fixing sheet, the elastic sheet, the fixing sheet and the second side plate form an opening, reinforcing surrounding rods are fixedly arranged around one side face, far away from the first side plate, of the two first side plates, the opening is right opposite to the reinforcing surrounding rods, the caliber of the opening is smaller than the width of the reinforcing surrounding rods, and the opening is used for the reinforcing surrounding rods to pass through.
In one embodiment, the monitoring device further comprises a rain shelter, the rain shelter is arranged above the accommodating groove body, the video monitor is arranged on the rain shelter, the video monitor is arranged right opposite to the notch, and the video monitor is in communication connection with the background control system.
In one embodiment, the positioning module is a global positioning system or a beidou positioning system.
In one embodiment, the background control system is provided with a lifting height control module, the lifting height control module stores the height of each storage device in advance, and the lifting height control module is in communication connection with the mobile terminal and the controller.
In one embodiment, a two-dimensional code is arranged on the storage base station, and a webpage link entering the background control system is arranged on the two-dimensional code.
The invention has the beneficial effects that: by storing the storage devices in the storage base station, the storage devices can be obtained at the storage base station, and the storage base station is arranged at a plurality of places, so long as the storage base station exists at a target place, the storage devices can be obtained or returned at the target place without obtaining the storage devices from a far place before carrying goods or returning the storage devices to the far place with the storage devices after unloading, and the transportation time and the transportation cost are reduced.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.
FIG. 1 is a schematic structural diagram of an IC chip-based storage device sharing system according to the present invention;
fig. 2 is a schematic structural diagram illustrating a storage device in a folded state according to the IC chip-based storage device sharing system of the present invention;
FIG. 3 is a schematic structural diagram of a storage device in a half-unfolded state of the storage device sharing system based on IC chips according to the present invention;
FIG. 4 is a schematic structural diagram illustrating an unfolded state of a storage device of the storage device sharing system based on IC chips according to the present invention;
fig. 5 is a schematic structural diagram of an IC chip-based storage device sharing system of the present invention in a folded state from another perspective;
FIG. 6 is a schematic view showing a structure of two storage devices stacked together in a storage device sharing system based on an IC chip according to the present invention;
fig. 7 is a schematic structural view of a limit clamp of a top frame of a storage device sharing system based on an IC chip according to the present invention.
Reference numerals:
10. a storage device sharing system; 100. a storage device; 200. a storage base station; 300. a lifting device; 210. an accommodating tank body; 220. an electronic door; 211. a notch; 310. a lifting cylinder; 320. a controller; 330. a support plate; 110. a base; 120. a thickness difference compensation block; 130. a first side plate; 140. a second side plate; 150. a frame body; 160. a pivoting device; 141. folding the front plate; 142. folding the negative plate; 151. a placement groove; 111. putting feet; 112. a clamping bulge; 170. a bolt; 180. a latch tube; 181. a pin hole; 131. reinforcing the surrounding rod; 190. limiting and fastening clips; 191. a fixing sheet; 192. a spring plate; 193. and (4) opening.
Detailed Description
To facilitate an understanding of the invention, the invention will now be described more fully with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only and do not represent the only embodiments.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1, a storage device sharing system 10 based on an IC chip is provided with a storage device 100, a storage base station 200, a lifting device 300, a mobile terminal and a monitoring device;
the number of the storage devices 100 is multiple, the storage devices 100 are vertically stacked, an IC chip is arranged on each storage device 100, and a positioning module is arranged in each IC chip;
specifically, the positioning module enables each storage device 100 to be positioned individually, so that each storage device 100 is not easy to lose and can be tracked to the position.
The storage base station 200 comprises an accommodating tank body 210 and an electronic door 220, wherein the accommodating tank body 210 is arranged below the ground, the electronic door 220 is arranged at a notch 211 of the accommodating tank body 210, and the electronic door 220 comprises an electronic lock for controlling the opening and closing of the electronic door 220;
specifically, the storage base stations 200 are distributed at each freight concentration point in a city, each storage device 100 is disposed in the accommodating slot 210, the electronic lock enables the electronic door 220 to block the accommodating slot 210, so that the accommodating slot 210 is located in a closed space, each storage device 100 cannot be taken by any person, and only a user who opens the electronic lock can obtain the storage device 100 in the accommodating slot 210; moreover, the accommodating groove body 210 is arranged below the ground, so that the ground surface space can be greatly saved, and the appearance and the neatness of a city can be facilitated.
The lifting device 300 and the storage device 100 are arranged in the accommodating groove body 210, the lifting device 300 comprises a lifting cylinder 310, a controller 320 and a bearing plate 330, the lifting cylinder 310 is arranged at the bottom of the accommodating groove body 210, the bearing plate 330 is arranged above the lifting cylinder 310, the storage device 100 is arranged above the bearing plate 330, the controller 320 is in control connection with the lifting cylinder 310, and the controller 320 is used for controlling the lifting cylinder 310 to drive the bearing plate 330 to lift; the controller 320 is in communication connection with the monitoring device;
specifically, the controller 320 controls the lifting cylinder 310 to drive the supporting plate 330 to move up and down, and further drives the storage device 100 above the supporting plate 330 to move up and down, so that the storage device 100 is higher than or lower than the notch 211 of the accommodating groove 210, and a user can conveniently borrow or return the storage device 100.
The monitoring device comprises a gravity sensor and a background control system which are arranged at the bottom of the supporting plate 330, and the background control system is in communication connection with the gravity sensor, the mobile terminal, the positioning module, the controller 320 and the electronic lock;
specifically, gravity sensor can detect each storing device 100's weight above bearing board 330, can learn each through the plus-minus change of detection weight the plus-minus change condition of storing device 100 quantity, through gravity sensor with backstage control system communication connection, gravity sensor will the weight data transfer of bearing board 330 top gives backstage control system, backstage control system is through dividing received weight data by single storing device 100's weight, just can acquire each storing device 100's total amount above bearing board 330, and the staff of being convenient for adds or shifts storing device 100 adaptively, simultaneously, also be convenient for the user to compare the demand quantity of storing device 100, has promoted storing basic station 200's practicality.
Further, the positioning module is in communication connection with the background control system, so that the background control system can acquire the position of each storage device 100, and is convenient to manage each storage device 100, and the mobile terminal is in communication connection with the background control system, so that the mobile terminal can check the position of each storage device 100.
Still further, the controller 320 is in communication connection with the background control system, so that the background control system can send a command to the controller 320, and further, the controller 320 can control the lifting device 300 to lift; the electronic lock is in communication connection with the background control system, so that the background control system can send a command to the electronic lock, and the electronic door 220 can be controlled to be opened or closed through the electronic lock; the mobile terminal is in communication connection with the background control system, so that the controller 320 and the electronic lock can be controlled through the mobile terminal, the electronic door 220 can be opened or closed through the mobile terminal, the storage devices 100 in the accommodating groove 210 can be lifted, the user can conveniently borrow the storage devices 100, the user can also lower the storage devices 100 in the accommodating groove 210, and the user can conveniently return the storage devices 100.
And a position sharing module is arranged on the mobile terminal and is in communication connection with the positioning module.
Specifically, through the position sharing module, a user can view the position of each storage device 100 at a nearby position or a target position on the mobile terminal, the user can go to a position closest to a goods taking place to obtain the storage device 100 to carry goods, or the user can go to a position closest to a goods taking place to return the storage device 100, and therefore transportation cost and time cost of the user are reduced.
In order to save the internal space of the accommodating slot 210 and place the storage device 100 as much as possible, in one embodiment, please refer to fig. 2, 3 and 4, the storage device 100 includes: a square base 110, two thickness difference compensation blocks 120, two first side plates 130, two second side plates 140, a frame 150 and a plurality of pivoting devices 160,
the bottoms of the two first side plates 130 are respectively arranged on two opposite sides of the base 110 through the pivoting device 160, the two thickness difference compensation blocks 120 are arranged on the other two opposite sides of the base 110, and the height of the thickness difference compensation block 120 is 1-2 times of the thickness of the first side plate 130;
specifically, the first side plate 130 and the second side plate 140 are stainless steel plates, the bottom of the first side plate 130 is connected to the base 110 through the pivot joint 160, the first side plate 130 can rotate around the pivot joint of the pivot joint 160, the first side plate 130 can be rotatably placed on the base 110 in a direction close to the base 110, the thickness difference compensation block 120 increases the height of the base 110, so that when the second side plate 140 rotates around the pivot joint 160 toward the base 110, the second side plate 140 is not supported by the first side plate 130, so that the second side plate 140 can be flatly placed, specifically, the height of the thickness difference compensation block 120 is 1-2 times the thickness of the first side plate 130, so that the height of the first side plate 130 rotatably placed on the base 110 does not exceed the thickness of the thickness difference compensation block 120, so that the second side plate 140 cannot be pried up when placed on the first side plate 130.
Further, when the height of the first side plate 130 is less than 1/2 of the length of the second side plate 140, and two opposite first side plates 130 are laid on the base 110 in a rotating manner, the height of one first side plate 130 is only increased on the base 110, that is, when the height of the thickness difference compensation block 120 is 1 time of the thickness of the first side plate 130, the second side plate 140 disposed on the thickness difference compensation block 120 can be laid on the first side plate 130 in a flat manner after rotating;
when the height of the first side plate 130 is greater than 1/2 of the length of the second side plate 140, and when two opposite first side plates 130 are laid on the base 110 in a rotating manner, one of the first side plates 130 is superposed on the other first side plate 130, the height of the two first side plates 130 is increased on the base 110, that is, when the height of the thickness difference compensation block 120 is 1 time of the thickness of the first side plate 130, the second side plate 140 arranged on the thickness difference compensation block 120 can be laid on the first side plate 130 in a flat manner after rotating
The second side plate 140 includes a folding positive plate 141 and a folding negative plate 142, one side of the folding positive plate 141 is disposed on one side of the folding negative plate 142 through the pivot joint device 160, the other side of the folding negative plate 142 away from the folding positive plate 141 is disposed on the thickness difference compensation block 120 through the pivot joint device 160, and the other side of the folding positive plate 141 away from the folding negative plate 142 is connected to the frame 150 through the pivot joint device 160.
Specifically, the bottom of the folded negative plate 142 is connected to the thickness difference compensation block 120 through the pivot joint device 160, the folded negative plate 142 can rotate in a direction close to the base 110 and is placed on the first side plate 130, the folded positive plate 141 and the folded negative plate 142 are connected through the pivot joint device 160, the folded positive plate 141 rotates in a direction opposite to the direction in which the folded negative plate 142 rotates, so that the folded positive plate 141 can rotate and is placed on the folded negative plate 142, and when the folded positive plate 141 is placed on the folded negative plate 142, the frame 150 is pressed down and placed on the folded positive plate 141 along with the trend, so that the storage device 100 can be folded under the function of protecting the safety of goods, so that the space occupation is reduced, and the storage device is convenient to carry and transport.
In one embodiment, referring to fig. 5 and fig. 6, a placement groove 151 is disposed on a side surface of the frame 150 away from the base 110.
In this embodiment, the placing groove 151 is rectangular, four placing legs 111 are provided at four corners of the lower side of the base 110, four locking protrusions 112 are provided at the four placing legs 111, the four locking protrusions 112 are provided corresponding to the four corners of the placing groove 151, respectively, and the locking protrusions 112 are configured to be matched with the four corners of the placing groove 151.
Specifically, in order to facilitate the mutual stacking of the storage devices 100 and facilitate the transportation and storage, when one storage device 100 is stacked on another storage device 100, the locking protrusions 112 can be locked in the four corners of the placement groove 151, so that the shipping storage device 100 located above can be firmly stacked on the storage device 100 located below.
In one embodiment, the storage device 100 further includes a plug 170 and two plug 170 tubes, the two plug 170 tubes are respectively disposed on the folding positive plate 141 and the folding negative plate 142, the two plug 170 tubes are aligned, the plug 170 tubes are provided with plug 170 holes, and the plug 170 holes are matched with the plug 170.
Specifically, when the storage device 100 is in the unfolded state, in order to stabilize the folding positive plate 141 and the folding negative plate 142 and prevent the folding positive plate 141 and the folding negative plate 142 from being folded, the pin 170 is inserted into the pin 170 hole, so that the two pins 170 cannot be displaced relative to each other, and the folding positive plate 141 and the folding negative plate 142 cannot be folded.
In one embodiment, please refer to fig. 7, the apparatus further includes a limiting fastening clip 190, the limiting fastening clip 190 includes a fixing plate 191 and a spring plate 192, the fixing plate 191 is disposed parallel to the plane where the first side plate 130 is located, one end of the fixing plate 191 is disposed on the second side plate 140, one end of the spring plate 192 is disposed on one end of the fixing plate 191 far away from the second side plate 140, the spring plate 192, the fixing plate 191 and the second side plate 140 form an opening 193, a reinforcing surrounding rod 131 is fixedly disposed around one relatively far side surface of the two first side plates 130, the opening 193 is disposed opposite to the reinforcing surrounding rod 131, a caliber of the opening 193 is smaller than a width of the reinforcing surrounding rod 131, and the opening 193 is used for the reinforcing surrounding rod 131 to pass through.
Specifically, in order to prevent the first side plate 130 from rotating when the storage device 100 is in the unfolded state, the reinforcing surrounding rod 131 of the first side plate 130 is inserted into the opening 193, since the elastic sheet 192 has elasticity, the aperture of the opening 193 is smaller than the width of the reinforcing surrounding rod 131, when the reinforcing surrounding rod 131 is in the opening 193, the elastic sheet 192 always has a clamping and fastening force on the reinforcing surrounding rod 131, and the first side plate 130 can be fixed; when the storage device 100 needs to be put into the folded state, the first side plate 130 is pushed to disengage the first side plate 130 from the opening 193, so that the first side plate 130 can freely rotate around the pivoting device 160.
In one embodiment, in order to protect the storage device 100 in the accommodating tank 210, prevent the storage device 100 from being corroded by rain, and facilitate a user to access the storage device 100 in rainy days, the rain shelter is further included, and the rain shelter is arranged above the accommodating tank 210; to protect the storage device 100 from damage or theft; the monitoring device further comprises a video monitor, the video monitor is arranged on the rain shelter, the video monitor is right opposite to the notch 211, and the video monitor is in communication connection with the background control system.
In order to improve the positioning accuracy and ensure the communication stability of positioning, in one embodiment, the positioning module is a global positioning system or a beidou positioning system, and the global positioning system and the beidou positioning system are the most widely used global positioning systems.
In one embodiment, the background control system is provided with a lifting height control module, the lifting height control module stores the height of the single storage device 100 in advance, and the lifting height control module is in communication connection with the mobile terminal and the controller 320.
Specifically, the lifting height control module sends a command to the controller 320, the controller 320 controls the lifting device 300 to lift the height of a single storage device 100, so that a user sends the number of the storage devices 100 to be accessed to the lifting height control module at the mobile terminal, the lifting height control module sends the same number of commands to the controller 320, and the controller 320 controls the lifting device 300 to lift the same number of the storage devices 100, so that the user can take the required number of the storage devices 100 to protrude out of the accommodating slot 211, or the user can return the required number of the storage devices 100 to the accommodating slot 211, thereby facilitating the user to access the storage devices 100.
In one embodiment, a two-dimensional code is arranged on the storage base station 200, and a web page link entering the background control system is arranged on the two-dimensional code.
Specifically, the user enters the background control system by scanning the two-dimensional code, so as to control the electronic lock and the lifting device 300, thereby borrowing or returning the storage device 100.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above embodiments only express a few embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (9)

1. An IC chip-based storage device sharing system, comprising: the system comprises a storage device, a storage base station, a lifting device, a mobile terminal and a monitoring device;
the storage device includes: the thickness difference compensation device comprises a square base, two thickness difference compensation blocks, two first side plates, two second side plates, a frame body and a plurality of pin joint devices, wherein the bottoms of the two first side plates are respectively arranged on two opposite sides of the base through the pin joint devices, the two thickness difference compensation blocks are arranged on the other two opposite sides of the base, and the height of each thickness difference compensation block is 1-2 times of the thickness of each first side plate; the second side plate comprises a folding positive plate and a folding negative plate, one side edge of the folding positive plate is arranged on one side edge of the folding negative plate through the pin joint device, the other side edge of the folding negative plate, which is far away from the folding positive plate, is arranged on the thickness difference compensation block through the pin joint device, and the other side edge of the folding positive plate, which is far away from the folding negative plate, is connected with the frame body through the pin joint device;
the device comprises a plurality of storage devices, a positioning module and a control module, wherein the storage devices are vertically stacked, an IC chip is arranged on each storage device, and the IC chip is internally provided with the positioning module;
the storage base station comprises an accommodating groove body and an electronic door, the accommodating groove body is arranged below the ground, the electronic door is arranged at a notch of the accommodating groove body, and the electronic door comprises an electronic lock for controlling the electronic door to open and close;
the lifting device and the storage device are arranged in the accommodating groove body, the lifting device comprises a lifting cylinder, a controller and a bearing plate, the lifting cylinder is arranged at the bottom of the accommodating groove body, the bearing plate is arranged above the lifting cylinder, the storage device is arranged above the bearing plate, the controller is in control connection with the lifting cylinder, and the controller is used for controlling the lifting cylinder to drive the bearing plate to lift; the controller is in communication connection with the monitoring device;
the monitoring device comprises a gravity sensor and a background control system which are arranged at the bottom of the bearing plate, and the background control system is in communication connection with the gravity sensor, the mobile terminal, the positioning module, the controller and the electronic lock;
and a position sharing module is arranged on the mobile terminal and is in communication connection with the positioning module.
2. The system of claim 1, wherein a placement slot is formed in a side of the frame body away from the base.
3. The sharing system of storage devices based on IC chips as claimed in claim 2, wherein the placement groove is rectangular, four placement legs are disposed at four corners of the bottom of the base, four locking protrusions are disposed on the four placement legs, the four locking protrusions are disposed corresponding to the four corners of the placement groove, and the locking protrusions are adapted to the four corners of the placement groove.
4. The system as claimed in claim 3, further comprising a latch and two latch tubes, wherein the two latch tubes are respectively disposed on the folding positive plate and the folding negative plate, the two latch tubes are aligned, the latch tubes are disposed with latch holes, and the latch holes are adapted to the latch.
5. The storage device sharing system based on the IC chip according to claim 4, further comprising a limiting fastening clip, wherein the limiting fastening clip comprises a fixing piece and an elastic piece, the fixing piece is parallel to the plane where the first side plate is located, one end of the fixing piece is arranged on the second side plate, one end of the elastic piece is arranged at one end, far away from the second side plate, of the fixing piece, the elastic piece, the fixing piece and the second side plate form an opening, reinforcing surrounding rods are fixedly arranged around one side face, far away from the first side plate, of the two first side plates, the opening is right opposite to the reinforcing surrounding rods, the caliber of the opening is smaller than the width of the reinforcing surrounding rods, and the opening is used for the reinforcing surrounding rods to pass through.
6. The storage device sharing system based on the IC chip as claimed in claim 1, further comprising a canopy disposed above the accommodating tank, the monitoring device further comprising a video monitor disposed on the canopy, the video monitor being disposed opposite to the notch, the video monitor being in communication connection with the background control system.
7. The IC chip-based storage device sharing system of claim 1, wherein the positioning module is a global positioning system.
8. The IC chip-based storage device sharing system according to claim 1, wherein the background control system is provided with a lifting height control module, the lifting height control module stores the height of the single storage device in advance, and the lifting height control module is in communication connection with the mobile terminal and the controller.
9. The storage device sharing system based on the IC chip as claimed in claim 1, wherein a two-dimensional code is arranged on the storage base station, and a web link entering the background control system is arranged on the two-dimensional code.
CN202010345952.2A 2020-04-27 2020-04-27 Storage device sharing system based on IC chip Active CN111508131B (en)

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