Intelligent recycling equipment and recycling devices

The intelligent recycling device, with its slanted sliding and buffer layer design, solves the problem of easy damage to mobile terminals such as tablets during recycling, enabling self-service and efficient terminal recycling. It is suitable for the automatic recycling of various mobile terminals.

CN116343391BActive Publication Date: 2025-12-02SHANGHAI WANWUXINSHENG ENVIRONMENTAL PROTECTION TECH GRP CO LTD
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Patent Information

Application Number
CN202310226378.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-09
Publication Date
2025-12-02
Estimated Expiration
2043-03-09

AI Technical Summary

Technical Problem

In existing technologies, mobile terminals such as tablets are easily damaged by collisions during recycling, and self-service recycling is difficult to achieve in places with high traffic, which increases the difficulty and cost of recycling and affects efficiency.

Method used

A recycling device for an intelligent recycling equipment is designed, including a buffer space, a storage space, and a toggle mechanism. The mobile terminal is gradually toggleed into the storage space by sliding at an angle. The device utilizes the pivotal connection between the toggle and the baffle, combined with the buffer layer and the detection mechanism, to achieve smooth toggle and detection.

Benefits of technology

It effectively reduces damage to mobile terminals during the recycling process, enables self-service recycling, improves recycling efficiency and equipment utilization, and is suitable for the automatic recycling of various mobile terminals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The purpose of this application is to provide a recycling device and a smart recycling equipment for intelligent recycling. The recycling device comprises a buffer space for receiving externally delivered mobile terminals, a storage space connected to the buffer space for storing the mobile terminals, and a sliding mechanism for sliding the mobile terminals from the buffer space into the storage space at an angle. The sliding mechanism further ensures that the angle between the sliding direction of the mobile terminal and the horizontal direction gradually increases and then gradually decreases until the mobile terminal is fully placed in the storage space. Compared with existing technologies, the recycling device for intelligent recycling provided in this application facilitates self-service recycling of mobile terminals.
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Description

Technical Field

[0001] This invention relates to the field of machinery, and more particularly to a recycling device and intelligent recycling equipment for intelligent recycling. Background Technology

[0002] In the recycling industry, electronic products such as mobile phones and tablets typically undergo various tests, including appearance and performance parameters, during the recycling process to determine whether they have resale value and to assess their resale value.

[0003] In existing technologies, due to the large size and weight of mobile terminals such as tablets, they are prone to significant damage during recycling and storage. This can easily result in collisions between tablets being stored at different locations. Therefore, existing technologies require manual recycling of tablets, making it difficult to deploy them in high-traffic areas such as supermarkets for automated recycling. This not only increases the difficulty and cost of recycling tablets but also seriously affects their recycling efficiency.

[0004] Therefore, the technical problem to be solved by this invention is how to provide a recycling device and a smart recycling equipment to facilitate self-service recycling via mobile terminals. Summary of the Invention

[0005] In view of the shortcomings or deficiencies of the prior art, the technical problem to be solved by the present invention is to provide a recycling device and a smart recycling equipment for convenient self-service recycling via mobile terminals.

[0006] To address the aforementioned technical problems, the present invention provides a recycling device for an intelligent recycling equipment, comprising:

[0007] Cache space, used by mobile terminals to receive external deliveries;

[0008] The storage space, connected to the cache space, is used to store the mobile terminal;

[0009] A sliding mechanism is used to slide the mobile terminal in the cache space into the storage space at an angle, such that the angle between the sliding direction of the mobile terminal and the horizontal direction gradually increases and then gradually decreases until the mobile terminal is completely placed in the storage space.

[0010] Further, as a preferred embodiment, the actuating mechanism includes: a paddle for moving the mobile terminal into the storage space, a baffle connected to the paddle, and a drive assembly connected to the baffle and disposed on a base for driving the baffle to reciprocate; wherein, the paddle is provided with a thrust-stopping part, and the thrust-stopping part is used to abut against the end of the mobile terminal that is flipped upward after it leaves the buffer space to form the oblique sliding.

[0011] Further, preferably, the paddle is pivotally connected to the baffle, and the pivot portion forming the pivot connection constitutes the thrust stop portion; wherein, the paddle is used to touch the mobile terminal and flip and fold upward during the process of moving from the departure station toward the starting station, so that after passing through the upper surface of the mobile terminal and leaving the mobile terminal, it automatically resets to the initial state, thereby actuating the mobile terminal during the process of moving with the baffle toward the departure station.

[0012] Further, as a preferred embodiment, the flip angle of the paddle is 0 to 180 degrees.

[0013] Further, as a preferred embodiment, it further includes: a first tray for forming the bottom of the cache space, a first buffer layer disposed on the first tray and for receiving the mobile terminal; a second tray for forming the bottom of the storage space, and a second buffer layer disposed on the second tray; wherein the first buffer layer is a foam layer or a rubber layer; and the second buffer layer is a foam layer or a rubber layer.

[0014] Furthermore, preferably, the first tray and the second tray are arranged in a stepped manner, and are respectively used to cooperate with the housing and / or side panels of the intelligent recycling device to enclose and form the storage space and the cache space.

[0015] Further, preferably, the mobile terminal is a tablet computer or a touch display terminal; the recycling device also includes a storage compartment door for separating and connecting the storage space with the outside.

[0016] Further, as a preferred embodiment, it further includes: a limiting side plate disposed on the first tray for limiting the mobile terminal, such that after the mobile terminal is released into the buffer space, when the lever of the toggle mechanism is in the toggle position, the mobile terminal is located between the lever and the storage space; wherein, at least a portion of the limiting side plate is bent upward toward the side away from the storage space to form a guide portion.

[0017] Further, as a preferred embodiment, it further includes: a support platform disposed above the cache space for receiving the mobile terminal, and a detection mechanism disposed above the support platform for detecting the mobile terminal; wherein the support platform is slidably or rotatably disposed on the base so as to release the mobile terminal into the cache space when it moves from the initial position to the open position.

[0018] Further, preferably, the drive assembly includes: a rotary motor disposed on the base, a transmission wheel for being driven by the rotary motor, a driven wheel cooperating with the transmission wheel, and a synchronous belt sleeved on the drive wheel and the driven wheel.

[0019] Further, preferably, the drive assembly further includes: a slider member disposed on the timing belt and connected to the support platform; a first fixing seat disposed on the base and used to fix the transmission wheel; and a second fixing seat disposed on the base and used to fix the driven wheel.

[0020] Further, as a preferred embodiment, it further includes: a limiting plate disposed on the base; the supporting platform being slidably disposed on the base; wherein one end of the supporting platform is connected to the baffle and the other end is connected to the driving component; when the supporting platform moves from the initial position toward the open position under the drive of the driving component, the mobile terminal falls into the buffer space due to the obstruction of the limiting plate.

[0021] Further, as a preferred embodiment, it further includes: a first limit sensor and a second limit sensor disposed on the base and electrically connected to the control device; wherein, when the slider component touches the first limit sensor, the supporting platform is in the initial position; when the slider component touches the second limit sensor, the supporting platform is in the open position.

[0022] Further, preferably, the detection mechanism is an image acquisition mechanism; wherein, the image acquisition mechanism includes: a sealed box with a delivery port for cooperating with the support platform to form a sealed image acquisition environment; a first camera disposed on the sealed box and located above the support platform; a plurality of light sources disposed within the sealed box, wherein the delivery port is used to form the image acquisition environment when closed; each light source is located on the top of the sealed box and its circumferential sidewalls; the first camera and each light source are electrically connected to a control device.

[0023] Furthermore, as a preferred embodiment, the image acquisition mechanism further includes: a plurality of second cameras arranged circumferentially in the sealed box, wherein each second camera is electrically connected to the control device and is used to acquire images of each side of the mobile terminal respectively.

[0024] This application also provides an intelligent recycling device, including: the recycling apparatus of the aforementioned intelligent recycling device.

[0025] Further, as a preferred embodiment, it also includes: a smart terminal recycling device; wherein the smart terminal recycling device includes: a receiving platform for receiving smart terminals delivered from the outside and disposed on a bracket; a cover with a delivery window for cooperating with the receiving platform to form a sealed image acquisition space; a storage compartment with a closed door for storing the smart terminals; and a pushing mechanism for pushing the smart terminals from the receiving platform into the storage compartment; wherein the smart terminal is a mobile phone or a watch.

[0026] Further, as a preferred embodiment, it also includes: a guide plate for guiding the smart terminal into the storage bin, and a monitoring device disposed above the storage bin and electrically connected to the control device; wherein the storage bin is located below the receiving platform; the guide plate is composed of one or more components to form a conveying channel for conveying the smart terminal.

[0027] Further, preferably, the pushing mechanism includes: a sliding component disposed above the receiving platform for pushing the smart terminal; a slider assembly for sliding the sliding component on the support; a transmission assembly connected to the slider assembly for driving the slider assembly to slide in a direction parallel to the supporting platform; and a drive motor connected to the transmission assembly and disposed on the base.

[0028] Further, preferably, there are at least two sets of both the transmission assembly and the slider assembly, and they are respectively disposed on opposite sides of the receiving platform; wherein, the transmission assembly includes: a drive roller for being driven by the drive shaft of the drive motor, a driven roller cooperating with the drive roller, and a synchronous belt sleeved on the drive roller and the driven roller; wherein, the slider assembly includes: a slider component for connecting to the receiving platform, and a connecting block disposed on the synchronous belt and connected to the slider component.

[0029] Further, preferably, the slider assembly further includes: a guide shaft disposed on the base and used to sleeve the slider component; a first limit sensor and a second limit sensor disposed on the bracket and electrically connected to the control device; wherein, when the slider component touches the first limit sensor, the slider component is located at the detection station; when the slider component touches the second limit sensor, the slider component is located at the release station.

[0030] Further, as a preferred embodiment, the sliding component is a frame member with a hollowed-out area for receiving the smart terminal, wherein at least a portion of the frame member has its upper and lower ends connected to the cover and the receiving platform respectively when it is located at the detection station, so as to form the image acquisition space after the delivery window is closed.

[0031] Further, as a preferred embodiment, it also includes: an image acquisition device disposed on the cover and located above the receiving platform; a plurality of supplementary lights disposed inside the cover, wherein each supplementary light is located on the top of the cover and its circumferential sidewalls; the image acquisition device and each light source are electrically connected to the control device.

[0032] Further, as a preferred embodiment, it also includes: a terminal device recycling device; wherein the terminal device recycling device includes: a support base slidably disposed within the intelligent recycling device and used for storing the terminal device; a data cable disposed within the storage compartment and used for electrically connecting the terminal device; and a communication interface disposed at the rear of the storage compartment and used for connecting the data cable, and also used for electrically connecting with the control device.

[0033] Further, as a preferred embodiment, it further includes: an electromagnetic lock disposed on the support base and used for self-locking the storage compartment; and slide rails disposed on opposite sides of the storage compartment and used to form the sliding connection; wherein the electromagnetic lock is electrically connected to the control device; the bottom of the storage compartment is provided with a sliding connection portion for slidingly connecting to the support base; and the sliding connection portion is provided with a latch for being locked and released by the electromagnetic lock.

[0034] Further, preferably, it also includes: an elastic device disposed on at least one side of the electromagnetic lock and used to abut against the sliding connection portion; wherein the elastic device is electrically connected to the control device to apply an elastic force to the storage compartment when the electromagnetic lock releases the latch.

[0035] Further, preferably, the terminal device is a laptop computer; there are at least two storage compartments arranged sequentially from top to bottom; the number and position of the storage compartments and the electromagnetic locks correspond one-to-one.

[0036] Further, as a preferred embodiment, it also includes: a drag chain disposed on the support base and used to extend and retract the data connection cable connecting the communication interface and the control device.

[0037] Further, as a preferred embodiment, it also includes: a limiting member disposed on the support base, and a limiting block disposed on the storage compartment and at least partially exposed from the bottom of the storage compartment; wherein, when the storage compartment is moved to a preset storage position, the limiting member is held against by the limiting block to prevent the storage compartment from detaching from the intelligent recycling device.

[0038] Further, preferably, the terminal device recycling device is located between the receiving platform of the smart terminal recycling device and the detection mechanism of the recycling device; the storage compartment of the smart terminal recycling device is located beside the detection mechanism of the recycling device and above the storage space.

[0039] Compared with the prior art, the intelligent recycling device and intelligent recycling equipment provided in this application facilitate self-service recycling via mobile terminals. Attached Figure Description

[0040] Other features, objects, and advantages of this application will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0041] Figure 1 : A schematic diagram of the structure of the recycling device of the intelligent recycling equipment in a preferred embodiment of the present invention;

[0042] Figure 2 Schematic diagram of the actuating mechanism in a preferred embodiment of the present invention Figure 1 ;

[0043] Figure 3 Schematic diagram of the actuating mechanism in a preferred embodiment of the present invention Figure 2 ;

[0044] Figure 4 A preferred embodiment of the present invention illustrates the state of the supporting platform as it moves from the initial position toward the open position. Figure 1 ;

[0045] Figure 5 A preferred embodiment of the present invention illustrates the state of the supporting platform as it moves from the initial position toward the open position. Figure 2 ;

[0046] Figure 6 A preferred embodiment of the present invention is shown in the schematic diagram of the state when the paddle moves from the departure station toward the starting station and passes the upper surface of the mobile terminal.

[0047] Figure 7A schematic diagram of the state when the lever moves to the starting position in a preferred embodiment of the present invention;

[0048] Figure 8 A preferred embodiment of the present invention is shown in the diagram of the state of the mobile terminal after the paddle moves the mobile terminal from the cache space to the storage space.

[0049] Figure 9 A preferred embodiment of the present invention is shown in a schematic diagram of a state in which the pick is tilted when moving the next mobile terminal from the cache space to the storage space.

[0050] Figure 10 A preferred embodiment of the present invention is shown in the diagram of the state when the paddle moves the next mobile terminal from the cache space to the upper surface of the mobile terminal that has been pre-entered in the storage space.

[0051] Figure 11 A schematic diagram of the image acquisition mechanism in a preferred embodiment of the present invention;

[0052] Figure 12 A schematic diagram of the structure of the intelligent recycling device in a preferred embodiment of the present invention;

[0053] Figure 13 : A schematic diagram of the image acquisition mechanism in a preferred embodiment of the present invention;

[0054] Figure 14 : A schematic diagram of the image acquisition mechanism in a preferred embodiment of the present invention;

[0055] Figure 15 : A schematic diagram of the structure of the intelligent terminal recycling device in a preferred embodiment of the present invention;

[0056] Figure 16 A schematic diagram of the structure of the receiving platform and the pushing mechanism in a preferred embodiment of the present invention;

[0057] Figure 17 A schematic diagram of the structure of the pushing mechanism pushing the smart terminal on the receiving platform in a preferred embodiment of the present invention. Figure 1 ;

[0058] Figure 18 A preferred embodiment of the present invention illustrates the structure of the pushing mechanism pushing the smart terminal on the receiving platform out of the guide plate. Figure 2 ;

[0059] Figure 19 A schematic diagram of the structure of the intelligent terminal recycling device in a preferred embodiment of the present invention;

[0060] Figure 20 : A schematic diagram of the internal structure of the intelligent terminal recycling device in a preferred embodiment of the present invention;

[0061] Figure 21 A schematic diagram of the closed compartment door when it is open in a preferred embodiment of the present invention;

[0062] Figure 22 A schematic diagram of the closed state of the sealed compartment door in a preferred embodiment of the present invention;

[0063] Figure 23 : A schematic diagram of the internal structure of the terminal equipment recycling device in a preferred embodiment of the present invention;

[0064] Figure 24 A preferred embodiment of the present invention shows the structure of the storage compartment when it is opened. Figure 1 ;

[0065] Figure 25 A schematic diagram of the structure of the data cable inside the storage compartment in a preferred embodiment of the present invention;

[0066] Figure 26 A schematic diagram of the tail structure of the storage compartment in a preferred embodiment of the present invention;

[0067] Figure 27 : A schematic diagram of the internal structure of the storage compartment in a preferred embodiment of the present invention;

[0068] Figure 28 : A schematic diagram of the bottom structure of the storage compartment in a preferred embodiment of the present invention;

[0069] Figure 29 : A schematic diagram of the structure of the intelligent terminal recycling device in a preferred embodiment of the present invention.

[0070] Reference numerals: Housing 100, Enclosed door 200, Display screen 300, Storage compartment door 500, Buffer space 10, Storage space 11, Actuating mechanism 12, Supporting platform 120, Actuator 121, Pivot part 1221, Baffle 122, Drive assembly 123, Rotary motor 1230, Transmission wheel 1231, Driven wheel 1232, Synchronous belt 1233, Slider component 1234, First fixed seat 1235, Second fixed seat 1236, First limit sensor 125 The following components are included: second limit sensor 126, limit plate 13, detection mechanism 15, sealed box 150, delivery port 1500, first camera 1501, second camera 1502, light source 1503, base 17, limit side plate 18, guide part 181, first tray 101, first buffer layer 102, second tray 111, camera hole 1505, bracket 21, receiving platform 22, cover 23, storage bin 24, pushing mechanism 25, sliding component 251, slider assembly. 252, slider component 2521, connecting block 2522, guide shaft 2523, first limit sensor 2524, second limit sensor 2525, transmission assembly 253, drive motor 254, drive roller 2531, driven roller 2532, synchronous belt 2533, drive shaft 2534, image acquisition device 26, supplementary light 27, guide plate 28, first guide component 28a, second guide component 28b, closed chamber door 900, flexible buffer 240. Support base 31, storage compartment 32, data cable 33, communication interface 34, electromagnetic lock 35, sliding connection part 36, buckle 361, elastic device 37, drag chain 38, limiting part 311, slide rail 321, limiting block 322, delivery window 700, cover plate 702, rotating shaft 703, drive device 800, drive cylinder 801, telescopic shaft 802, swing rod 803, first positioning sensor 804, second positioning sensor 805, tablet computer 19, mobile phone 29. Detailed Implementation

[0071] The following will further explain the concept, specific structure, and technical effects of the present invention in conjunction with the accompanying drawings, so as to fully understand the purpose, features, and effects of the present invention.

[0072] Example 1

[0073] like Figures 1 to 12 As shown, an embodiment of the present invention provides a recycling device for an intelligent recycling equipment, which may consist of a buffer space 10 for receiving mobile terminals delivered from outside, a storage space 11 connected to the buffer space 10 and used for storing mobile terminals, and a sliding mechanism 12 for sliding the mobile terminals in the buffer space 10 into the storage space 11 in an oblique manner.

[0074] The toggle mechanism 12 is also used to make the angle between the sliding direction of the mobile terminal and the horizontal direction gradually increase and then gradually decrease until the mobile terminal is fully placed in the storage space 11.

[0075] As can be seen from the above, when a mobile terminal falls into the buffer space, is pushed into the buffer space by other pushing mechanisms, or is manually placed into the buffer space, the mobile terminal is moved from the buffer space to the storage space 11 by the tossing mechanism 12. During this process, the angle between the sliding direction of the mobile terminal and the horizontal direction gradually increases and then gradually decreases until the mobile terminal is completely placed into the storage space 11. This avoids the mobile terminal falling directly into the storage space 11 or the upper surface of the mobile terminal that has been pre-slid into the storage space 11, thereby minimizing the damage to the mobile terminal.

[0076] Specifically, such as Figure 2 and Figure 3 As shown, the actuating mechanism 12 in this embodiment can be composed of a paddle 121 for moving the mobile terminal into the storage space 11, a baffle 122 connected to the paddle 121, and a drive assembly 123 connected to the baffle 122 and disposed on the base 17 for driving the baffle 122 to reciprocate. The paddle 121 has a thrust-stopping part, which abuts against the upward-flipped end of the mobile terminal after it has disengaged from the buffer space and one end has been flipped upwards to form an oblique slide.

[0077] While the mobile terminal is moved by the lever 121, the thrust part supports the mobile terminal, allowing it to slide into the storage space 11 at an angle. As the mobile terminal gradually leaves the buffer space, the angle between its sliding direction and the horizontal direction gradually increases and then gradually decreases, causing it to gradually slide down the bottom of the storage space 11 or the upper surface of the previously stored mobile terminal. Then, the other end falls into the storage space 11 at a smaller angle or a lower height, thus minimizing damage to the mobile terminal's casing 100 or screen and facilitating recycling by the intelligent recycling device.

[0078] Further, preferably, the paddle 121 is pivotally connected to the baffle 122, and the pivot portion 1221 forming the pivot connection constitutes a thrust portion. The paddle 121 is used to touch and fold upwards when moving from the departure station towards the starting station, so that after passing over the upper surface of the mobile terminal and detaching from the mobile terminal, it automatically returns to its initial state, thereby actuating the mobile terminal as it moves towards the departure station following the baffle 122.

[0079] The pivotal connection between the lever 121 and the baffle 122 via a hinge allows the lever 121 to automatically flip upwards and fold automatically when it touches a mobile terminal subsequently entering the buffer space during the process of pushing the mobile terminal into the storage space 11 and returning to the starting position. This effectively avoids collisions with mobile terminals and prevents scratches on their surfaces. Furthermore, when the lever 121 reaches the starting position and moves towards the departure position again under the drive of the drive assembly 123, its unidirectional pivotal connection allows it to directly push the mobile terminal without folding it, thus enabling the lever to move the mobile terminal. Therefore, the pivotal connection between the lever 121 and the baffle 122 simplifies the spatial structure while simultaneously allowing for the avoidance and pushing of mobile terminals. It also enables mobile terminals to enter the buffer space quickly during retrieval without excessive waiting, thereby improving retrieval efficiency.

[0080] Furthermore, as a preferred embodiment, the flip angle of the paddle 121 is 0 to 180 degrees. This flip angle allows for a better pivotal connection between the paddle 121 and the baffle 122.

[0081] Furthermore, as a preferred embodiment, the recycling device of the intelligent recycling equipment further includes: a first tray 101 forming the bottom of the buffer space 10, and a first buffer layer 102 disposed on the first tray 101 for receiving the mobile terminal. The first buffer layer 102 can reduce the impact generated when the mobile terminal falls from the support platform 120, so as to avoid damage to the mobile terminal.

[0082] Furthermore, as a preferred embodiment, the recycling device of the intelligent recycling equipment further includes: a second tray 111 for forming the bottom of the storage space 11, and a second buffer layer disposed on the second tray 111, etc.

[0083] The second buffer layer can further reduce the impact generated when the mobile terminal slides from the buffer space into the storage space 11, so as to minimize the damage caused by the mobile terminal during the sliding process by absorbing energy through the second buffer layer.

[0084] Further, preferably, the first buffer layer 102 is a foam layer or a rubber layer; the second buffer layer is a foam layer or a rubber layer.

[0085] Furthermore, preferably, the first tray 101 and the second tray 111 are arranged in a stepped manner, and are respectively used to cooperate with the housing 100 and / or side panels of the intelligent recycling device to form a storage space 11 and a buffer space 10.

[0086] Further, preferably, the mobile terminal is a tablet computer 19 or a touch display terminal.

[0087] Further, preferably, the recycling device also includes a storage compartment door 500 for separating and connecting the storage space 11 to the outside. The storage compartment door 500 can be locked and opened by an electromagnetic locking device electrically connected to a control device to meet recycling requirements. The electromagnetic locking device is preferably an electromagnetic lock and is mounted on the base 17 or on the housing 100 of the intelligent recycling device used to fix the first tray 101 and the second tray 111. Furthermore, the storage compartment door 500 may be provided with a latch for being engaged by the electromagnetic locking device.

[0088] Furthermore, preferably, the recycling device also includes a display screen 300 electrically connected to the control device, so that the user can operate according to the information displayed on the display screen 300.

[0089] Further, preferably, the recovery device further includes a limiting side plate 18 disposed on the first tray 101 for limiting the mobile terminal, so that after the mobile terminal is released into the buffer space 10, when the lever 121 of the toggle mechanism 12 is in the toggle position, the mobile terminal is located between the lever 121 and the storage space 11. At least a portion of the limiting side plate 18 is bent upwards toward the side opposite to the storage space 11 to form a guide portion 181. Through the limiting and guiding effect of the limiting side plate 18 and its guide portion 181 on the mobile terminal, it is possible to prevent the mobile terminal from falling into the buffer space and, due to its position being outside the preset range, causing the lever 121 to be in the starting position, the lever 121 not to automatically return to its initial state and thus unable to push the mobile terminal.

[0090] Further, preferably, the recycling device also includes: a support platform 120 disposed above the buffer space 10 for receiving the mobile terminal, and a detection mechanism 15 disposed above the support platform 120 for detecting the mobile terminal. The support platform 120 is slidably or rotatably disposed on the base 17 so that when it moves from the initial position to the open position, the mobile terminal is released into the buffer space 10. It should be noted that this embodiment only illustrates the example of the support platform 120 being slidably or rotatably disposed on the base 17; in practical applications, it can also be rotatably disposed on the base 17 to achieve the release and opening of the mobile terminal.

[0091] Further, as a preferred embodiment, the drive assembly 123 includes: a rotary motor 1230 mounted on the base 17, a transmission wheel 1231 driven by the rotary motor 1230, a driven wheel 1232 cooperating with the transmission wheel 1231, and a timing belt 1233 sleeved on the transmission wheel 1231 and the driven wheel 1232. The timing belt 1233 drives the drive assembly 123 to smoothly push the support platform 120, ensuring that the mobile terminal smoothly falls into the buffer space 10 when the support platform 120 is in the open position.

[0092] Furthermore, as a preferred embodiment, the drive assembly 123 further includes: a slider member 1234 disposed on the timing belt 1233 and connected to the support platform 120; a first fixing seat 1235 disposed on the base 17 and used to fix the transmission wheel 1231; and a second fixing seat 1236 disposed on the base 17 and used to fix the driven wheel 1232.

[0093] Further, preferably, the drive assembly 123 also includes a limiting plate 13 disposed on the base 17. The support platform 120 is slidably disposed on the base 17. One end of the support platform 120 is connected to the baffle 122 and the other end is connected to the drive assembly 123. When the support platform 120 moves from the initial position to the open position under the drive of the drive assembly 123, the mobile terminal falls into the buffer space 10 due to the obstruction of the limiting plate 13.

[0094] Further, preferably, the drive assembly 123 also includes: a first limit sensor 125 and a second limit sensor 126 disposed on the base 17 and electrically connected to the control device; wherein, when the slider member 1234 touches the first limit sensor 125, the support platform 120 is in the initial position; when the slider member 1234 touches the second limit sensor 126, the support platform 120 is in the open position.

[0095] Further, as a preferred embodiment, the detection mechanism 15 is an image acquisition mechanism; wherein, the image acquisition mechanism includes: a sealed box 150 with a delivery port 1500 for cooperating with the support platform 120 to form a sealed image acquisition environment, a first camera 1501 disposed on the sealed box 150 and located above the support platform 120, and a plurality of light sources 1503 disposed within the sealed box, etc. The delivery port 1500 is used to form an image acquisition environment when closed; each light source 1503 is located on the top and circumferential sidewalls of the sealed box 150; the first camera 1501 and each light source 1503 are electrically connected to a control device. It should be noted that, in this embodiment, the image acquisition environment can preferably be a completely dark lighting environment, so that the camera can take pictures of the smart terminal with the help of corresponding supplementary lighting to obtain clear images.

[0096] This structure enables real-time monitoring of the mobile terminal recycling process, allowing for recycling based on demand. When recycling is required, the support platform 120 is opened to move the mobile terminal to be recycled into the buffer space.

[0097] Furthermore, as a preferred embodiment, the display screen 300 can be a touch screen, so that the user can perform corresponding touch operations on the display screen 300 to open the sealing door 200 used to close the delivery port 1500, and the staff can perform corresponding touch operations on the display screen 300 to open the storage compartment door 500, thereby realizing human-computer interaction and improving the user experience.

[0098] Furthermore, it is worth mentioning that the closed door 200 in this embodiment can be locked and opened by an electromagnetic locking device electrically connected to the control device to meet the recycling requirements. The electromagnetic locking device is preferably an electromagnetic lock and is mounted on the base 17 or the housing 100 of the intelligent recycling device. Additionally, the closed door 200 may be provided with a locking ring for being engaged by the electromagnetic lock 35 locking device.

[0099] Example 2

[0100] like Figures 13 to 14 As shown, an embodiment of the present invention also provides a recycling device for an intelligent recycling equipment. This embodiment is a further improvement of the above embodiment. The improvement is that the image acquisition mechanism in this embodiment further includes: a plurality of second cameras 1502 arranged circumferentially in a sealed box 150, wherein each second camera 1502 is electrically connected to a control device and is used to acquire images of each side of the mobile terminal respectively.

[0101] Example 3

[0102] This embodiment also provides an intelligent recycling device. This embodiment is a further improvement on any of the above embodiments, and the improvement is as follows: Figures 15 to 22 As shown, in this embodiment, the intelligent recycling equipment further includes an intelligent terminal recycling device. The intelligent terminal recycling device includes: a receiving platform 22 for receiving intelligent terminals delivered from the outside and mounted on a bracket 21; a storage compartment 24 with a closed door 900 for storing the intelligent terminals; and a pushing mechanism 25 for pushing the intelligent terminals from the receiving platform 22 into the storage compartment 24. The intelligent terminal is a mobile phone 29 or a watch.

[0103] As can be seen from the above, the intelligent recycling device provided in this embodiment is a multi-functional intelligent recycling machine, which can not only recycle mobile terminals such as tablet computers 19, but also intelligent terminals such as mobile phones 29 and watches, so as to improve the utilization rate of the recycling machine.

[0104] Further, as a preferred option, such as Figures 15 to 16As shown, the smart terminal recycling device also includes a cover 23 with a delivery window 700 that cooperates with the receiving platform 22 to form a sealed image acquisition space. This structure allows the smart terminal recycling device to simultaneously recycle the smart terminal and close the delivery window 700, enabling real-time detection of the smart terminal and determining whether to recycle it based on demand. When recycling is required, the pushing mechanism 25 moves the smart terminal to be recycled into the storage compartment 24. It should be noted that the image acquisition space in this embodiment is preferably a completely dark environment, allowing the camera to take pictures of the smart terminal with the help of a corresponding supplementary light to obtain clear images.

[0105] Further, as a preferred option, such as Figures 15 to 16 As shown, the smart terminal recycling device also includes a guide plate 28 for guiding smart terminals into the storage bin 24. After the smart terminal is detected, the smart terminal can be directly pushed out from the receiving platform 22 by the pushing mechanism 25, and then fall onto the guide plate 28, and guided into the storage bin 24 for centralized processing, so as to realize the orderly detection of the smart terminals put in by the user in sequence.

[0106] Further, as a preferred option, such as Figure 20 As shown, to optimize the spatial layout and facilitate monitoring of smart terminals during pickup, the smart terminal recycling device also includes a monitoring device positioned above the storage compartment 24 and electrically connected to the control device. The storage compartment 24 is located below the receiving platform 22; the guide plate 28 is composed of one or more guide components to form a conveying channel for transporting smart terminals. A surveillance camera is preferred as the monitoring device. Furthermore, this spatial layout of the conveying channel fully utilizes the internal space of the smart recycling equipment to meet the needs of the multi-functional recycling machine and reduce its occupied area.

[0107] Further, as a preferred option, such as Figure 20 As shown, to reduce the impact of the smart terminal during its fall, the smart terminal recovery device further includes a flexible buffer body 240 disposed below the first guiding member 28a and above the second guiding member 28b, contacting the second guiding member 28b to block the smart terminal. The smart terminal must contact and pass through the flexible buffer body 240 as it slides from the upper surface of the second guiding member 28b toward the storage compartment 24. It should be noted that the flexible buffer body 240 in this embodiment can preferably be a fabric curtain or rubber sheet, etc.

[0108] Furthermore, a flexible buffer pad may be provided on the upper surface of the second guiding member 28b to support the smart terminal. Preferably, a guiding groove may be provided between the first guiding member 28a and the second guiding member 28b, so that the smart terminal falls vertically onto the second guiding member 28b. The second guiding member 28b may form a preset angle with the horizontal direction, such as 45 degrees or 60 degrees.

[0109] Furthermore, as a preferred embodiment, in order to meet the design and pushing requirements in practical applications, the pushing mechanism 25 in this embodiment includes: a sliding component 251 disposed above the receiving platform 22 for pushing the smart terminal, a slider assembly for sliding the sliding component 251 on the bracket 21, a transmission assembly 253 connected to the slider assembly 252 and used to drive the slider assembly 252 to slide in a direction parallel to the supporting platform 120, and a drive motor 254 connected to the transmission assembly 253 and disposed on the base 17, etc.

[0110] Further, preferably, there are at least two sets of both the transmission assembly 253 and the slider assembly 252, respectively disposed on opposite sides of the receiving platform 22. The transmission assembly 253 includes: a drive roller 2531 driven by the drive shaft 2534 of the drive motor 254; a driven roller 2532 cooperating with the drive roller 2531; and a synchronous belt 2533 sleeved on the drive roller 2531 and the driven roller 2532. The slider assembly 252 includes: a slider component 2521 connected to the receiving platform 22; and a connecting block 2522 disposed on the synchronous belt 2533 and connected to the slider component 2521. Through the cooperation of the transmission assembly 253 and the slider assembly 252, the sliding component 251 can smoothly and reciprocate during the process of pushing the smart terminal.

[0111] Further, as a preferred embodiment, to facilitate control of the sliding stroke of the sliding component 251 and prevent it from falling off the receiving platform 22, the slider assembly 252 further includes: a guide shaft 2523 disposed on the base 17 for mounting the slider component 2521, and a first limit sensor 2524 and a second limit sensor 2525 disposed on the bracket 21 and electrically connected to the control device. When the slider component 2521 touches the first limit sensor 2524, the slider component 251 is in the detection position; when the slider component 2521 touches the second limit sensor 2525, the slider component 251 is in the release position. By sliding the slider component 2521 along the axial direction of the guide shaft 2523, the slider component 2521 can be better guided, thereby reducing wear generated during the reciprocating motion of the slider component 2521.

[0112] Furthermore, as a preferred embodiment, the sliding component 251 is a frame member with a hollowed-out area for receiving the smart terminal. At least a portion of the frame member, such as the upper and lower ends of its tail, connects to the cover 23 and the receiving platform 22 respectively when it is in the detection station, forming an image acquisition space after the delivery window 700 is closed. This structure not only effectively propels the smart terminal but also prevents it from veering off course. Simultaneously, it works with the cover 23 to form a sealed image acquisition space, simplifying the structure, reducing costs, and facilitating image acquisition from the smart terminal.

[0113] It should be noted that, in this embodiment, the sealing door 900 used to close the delivery window 700 can be rotatably mounted on the housing 100 of the intelligent recycling device and driven to flip by the corresponding drive device 800, so as to realize the opening and closing of the sealing door 900.

[0114] Obviously, the cover 702 for closing the delivery window 700 in this embodiment can also be locked and opened by an electromagnetic lock electrically connected to the control device to meet the recycling requirements. The electromagnetic lock can be installed on the bracket 21 or the housing 100 of the intelligent recycling device. Furthermore, the cover 702 can be provided with a buckle for being locked by the electromagnetic locking device. In addition, the closing door 900 in this embodiment can also be opened and closed by performing a translational reciprocating motion through a corresponding drive device 800, which will not be elaborated further here.

[0115] Further, preferably, the drive device 800 may consist of a swing arm 803 for connecting to the closed compartment door 900, a drive cylinder 801, a telescopic shaft 802 with one end connected to the drive cylinder 801 and the other end rotatably connected to the swing arm 803, and a first positioning sensor 804 and a second positioning sensor 805 disposed within the housing 100 of the intelligent recycling device. When the swing arm 803, driven by the drive cylinder 801, rotates the closed compartment door 900 to the open position, the first positioning sensor 804 is triggered; and when rotated to the closed position, the second positioning sensor 805 is triggered. The first and second positioning sensors 804 and 805 are suspended on the housing 100 via corresponding fixed connectors. The closed compartment door 900 is rotatably mounted on the housing 100 via a rotating shaft 703. The end of the swing arm 803 has a trigger portion for contacting the first and second positioning sensors 804 and 805.

[0116] Furthermore, as a preferred embodiment, the smart terminal recycling device further includes: a cover plate 702 disposed on the housing 100 having the aforementioned delivery window 700 and for connecting the cover 23, so that when the closed door 900 is in the closed position, the aforementioned sealed image acquisition space is formed.

[0117] Furthermore, as a preferred embodiment, the intelligent terminal recycling device further includes: an image acquisition device 26 disposed on the cover 23 and located above the receiving platform 22, and a plurality of supplementary lights 27 disposed inside the cover 23. Each supplementary light 27 is located on the top of the cover 23 and its circumferential sidewalls. The image acquisition device 26 and each light source 1503 are electrically connected to the control device.

[0118] The above structure enables real-time image detection of smart terminals during the recycling process.

[0119] In this embodiment, the image acquisition device 26 can be composed of one camera or two or more cameras. This embodiment only uses the example of the image acquisition device 26 being composed of one camera. When there are multiple cameras, at least one is located directly above the detection station, and the other cameras are distributed along the circumferential sidewall of the cover. The sliding component is provided with through holes for cooperating with the corresponding camera to obtain the side image of the mobile terminal.

[0120] In addition, it is worth mentioning that, such as Figure 16 As shown, the bracket 21 in this embodiment can preferably be composed of a first frame plate 211, a second frame plate 212 disposed at the bottom of the cover, and a guide plate 28 for connecting the first frame plate 211 and the second frame plate 212. The first frame plate 211 and the second frame plate 212 are used to accommodate and mount the slider assembly 252 and the transmission assembly 253. Furthermore, the opposite sides of the receiving platform 22 are respectively connected to the first frame plate 211 and the second frame plate 212. The bracket 21 can be fixed and suspended within the housing of the intelligent terminal recycling machine via the first frame plate 211 and the second frame plate 212 or other components; specific limitations and descriptions will not be elaborated further here.

[0121] Example 4

[0122] like Figures 23 to 29 As shown, an embodiment of the present invention also provides a recycling device for an intelligent recycling equipment. This embodiment is a further improvement on the above embodiment, and the improvement is that it further includes a terminal device recycling device.

[0123] The terminal device recycling device includes: a support base 31 that is slidably disposed in the intelligent recycling device and a storage compartment 32 for storing terminal devices; a data cable 33 disposed in the storage compartment 32 and for electrically connecting the terminal devices; and a communication interface 34 disposed at the tail of the storage compartment 32 for connecting the data cable 33 and for electrically connecting to the control device.

[0124] As can be seen from the above, the intelligent recycling device provided in this embodiment is a multi-functional intelligent recycling machine, which can not only recycle mobile terminals such as tablet computers 19, but also intelligent terminals such as mobile phones 29 and watches, as well as terminal devices such as laptops, thereby greatly improving the utilization rate of the recycling machine.

[0125] Further, as a preferred embodiment, the terminal device recycling device further includes: an electromagnetic lock 35 disposed on the support base 31 for self-locking the storage compartment 32, and slide rails 321 disposed on opposite sides of the storage compartment 32 for forming a sliding connection. The electromagnetic lock 35 is electrically connected to a control device. The bottom of the storage compartment 32 is provided with a sliding connection portion 36 for slidingly connecting to the support base 31. The sliding connection portion 36 is provided with a latch 361 for locking and releasing by the electromagnetic lock 35. Through the cooperation of the electromagnetic lock 35 and the sliding connection portion 36, the terminal device recycling device can automatically push out the storage compartment 32 without the need for a power component, facilitating the placement of user terminal devices into the storage compartment 32 for recycling.

[0126] Furthermore, as a preferred embodiment, the terminal device recycling device further includes an elastic device 37 disposed on at least one side of the electromagnetic lock 35 and used to abut against the sliding connection portion 36. The elastic device 37 is electrically connected to a control device to apply a spring force to the storage compartment 32 when the electromagnetic lock 35 releases the latch 361, so as to push the storage compartment 32 to the outside when it is released.

[0127] Further, as a preferred embodiment, the terminal device is a laptop computer; there are at least two storage compartments 32, which are arranged sequentially from top to bottom; the number and position of the storage compartments 32 and the electromagnetic locks 35 correspond one-to-one, so as to facilitate the recycling of multiple terminal devices.

[0128] Furthermore, as a preferred embodiment, the terminal device recycling device further includes: a data connection cable for connecting the communication interface 34 and the control device, and a cable chain 38 disposed on the support base 31 for extending and retracting the data connection cable. The cable chain 38 prevents the data connection cable from becoming entangled as the storage compartment 32 moves outward.

[0129] Further, as a preferred option, such as Figure 27 As shown, the terminal device recycling device also includes: a limiting member 311 disposed on the support base 31, and a limiting block 322 disposed on the storage compartment 32 and at least partially exposed from the bottom of the storage compartment 32. When the storage compartment 32 is moved to a preset storage position, the limiting member 311 is held in place by the limiting block 322 to prevent the storage compartment 32 from detaching from the intelligent recycling device.

[0130] Furthermore, preferably, the terminal device recycling device is located between the receiving platform 22 of the smart terminal recycling device and the detection mechanism 15 of the recycling device; the storage compartment 24 of the smart terminal recycling device is located beside the detection mechanism 15 of the recycling device and above the storage space 11.

[0131] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. The present invention has been described in detail with reference to preferred embodiments. Those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the present invention, and all such modifications and substitutions should be covered within the scope of the claims of the present invention.

Claims

1. A recycling device for an intelligent recycling equipment, characterized in that, include: Cache space, used by mobile terminals to receive external deliveries; The storage space, connected to the cache space, is used to store the mobile terminal; A sliding mechanism is used to slide the mobile terminal in the cache space into the storage space at an angle, such that the angle between the sliding direction of the mobile terminal and the horizontal direction gradually increases and then gradually decreases until the mobile terminal is completely placed in the storage space. A paddle for moving the mobile terminal into the storage space, a baffle connected to the paddle, and a drive assembly connected to the baffle and disposed on a base for driving the baffle to reciprocate; wherein, the paddle is provided with a thrust stop, and the thrust stop is used to abut against the end of the mobile terminal that is flipped upward after it is disengaged from the cache space to form the oblique slide. The paddle is pivotally connected to the baffle, and the pivot portion forming the pivotal connection constitutes the thrust stop portion; wherein, the paddle is used to touch the mobile terminal and flip and fold upward during the process of moving from the departure station toward the starting station, so that after passing through the upper surface of the mobile terminal and leaving the mobile terminal, it automatically returns to the initial state, thereby actuating the mobile terminal during the process of moving with the baffle toward the departure station; It also includes: a first tray for forming the bottom of the cache space, a first buffer layer disposed on the first tray and for receiving the mobile terminal; a second tray for forming the bottom of the storage space, and a second buffer layer disposed on the second tray; wherein the first buffer layer is a foam layer or a rubber layer; and the second buffer layer is a foam layer or a rubber layer.

2. The recycling device of the intelligent recycling equipment according to claim 1, characterized in that, The flip angle of the paddle is 0~180 degrees.

3. The recycling device of the intelligent recycling equipment according to claim 1, characterized in that, The first tray and the second tray are arranged in a stepped manner, and are respectively used to cooperate with the shell and / or side plate of the intelligent recycling device to form the storage space and the cache space.

4. The recycling device of the intelligent recycling equipment according to claim 1, characterized in that, The mobile terminal is a tablet computer or a touch display terminal; The recycling device further includes: a storage compartment door for separating and connecting the storage space with the outside; A display screen that is electrically connected to the control device.

5. The recycling device of the intelligent recycling equipment according to claim 1, characterized in that, Also includes: A limiting side plate disposed on the first tray is used to limit the mobile terminal, such that after the mobile terminal is released into the buffer space, when the toggle of the toggle mechanism is in the toggle position, the mobile terminal is located between the toggle and the storage space; wherein, at least a portion of the limiting side plate is bent upward toward the side away from the storage space to form a guide portion.

6. The recycling device of the intelligent recycling equipment according to claim 1, characterized in that, Also includes: A support platform is disposed above the cache space and used to support the mobile terminal, and a detection mechanism is disposed above the support platform and used to detect the mobile terminal; wherein the support platform is slidably or rotatably disposed on the base so as to release the mobile terminal into the cache space when it moves from the initial position to the open position.

7. The recycling device of the intelligent recycling equipment according to claim 6, characterized in that, The drive assembly includes: a rotary motor mounted on the base, a transmission wheel driven by the rotary motor, a driven wheel cooperating with the transmission wheel, and a timing belt sleeved on the transmission wheel and the driven wheel; the drive assembly further includes: a slider component mounted on the timing belt and connected to the support platform, a first fixing seat mounted on the base for fixing the transmission wheel, and a second fixing seat mounted on the base for fixing the driven wheel.

8. The recycling device of the intelligent recycling equipment according to claim 6, characterized in that, It also includes: a limiting plate disposed on the base; the supporting platform is slidably disposed on the base; wherein one end of the supporting platform is connected to the baffle and the other end is connected to the driving component; when the supporting platform moves from the initial position toward the open position under the drive of the driving component, the mobile terminal falls into the buffer space due to the obstruction of the limiting plate.

9. The recycling device of the intelligent recycling equipment according to claim 6, characterized in that, It also includes: a first limit sensor and a second limit sensor disposed on the base and electrically connected to the control device; wherein, when the slider component touches the first limit sensor, the supporting platform is in the initial position; when the slider component touches the second limit sensor, the supporting platform is in the open position.

10. The recycling device of the intelligent recycling equipment according to claim 6, characterized in that, The detection mechanism is an image acquisition mechanism; wherein, the image acquisition mechanism includes: a sealed box with a delivery port for cooperating with the support platform to form a sealed image acquisition environment; a first camera disposed on the sealed box and located above the support platform; a plurality of light sources disposed within the sealed box, wherein the delivery port is used to form the image acquisition environment when closed; each light source is located on the top of the sealed box and its circumferential sidewalls; the first camera and each light source are electrically connected to a control device.

11. The recycling device of the intelligent recycling equipment according to claim 10, characterized in that, The image acquisition mechanism further includes: a plurality of second cameras arranged circumferentially in the sealed box, wherein each second camera is electrically connected to the control device and is used to acquire images of each side of the mobile terminal respectively.

12. An intelligent recycling device, characterized in that, include: The recycling apparatus of the intelligent recycling equipment according to any one of claims 1 to 11 further includes: an intelligent terminal recycling device; wherein the intelligent terminal recycling device includes: a receiving platform for receiving an intelligent terminal delivered from the outside and disposed on a bracket; a cover having a delivery window and for cooperating with the receiving platform to form a sealed image acquisition space; a storage compartment having a closed compartment door for storing the intelligent terminal; and a pushing mechanism for pushing the intelligent terminal from the receiving platform into the storage compartment; wherein the intelligent terminal is a mobile phone or a watch.

13. The intelligent recycling device according to claim 12, characterized in that, It also includes: a guide plate for guiding the smart terminal into the storage bin, and a monitoring device disposed above the storage bin and electrically connected to the control device; wherein the storage bin is located below the receiving platform; the guide plate is composed of one or more components to form a conveying channel for conveying the smart terminal.

14. The intelligent recycling device according to claim 13, characterized in that, The pushing mechanism includes: a sliding component disposed above the receiving platform for pushing the smart terminal; a slider assembly for sliding the sliding component on the support; a transmission assembly connected to the slider assembly for driving the slider assembly to slide in a direction parallel to the supporting platform; and a drive motor connected to the transmission assembly and disposed on the base.

15. The intelligent recycling device according to claim 14, characterized in that, There are at least two sets of both the transmission assembly and the slider assembly, and they are respectively disposed on opposite sides of the receiving platform; wherein, the transmission assembly includes: a drive roller for being driven by the drive shaft of the drive motor, a driven roller that cooperates with the drive roller, and a synchronous belt sleeved on the drive roller and the driven roller; wherein, the slider assembly includes: a slider component for being connected to the receiving platform, and a connecting block disposed on the synchronous belt and connected to the slider component.

16. The intelligent recycling device according to claim 15, characterized in that, The slider assembly further includes: a guide shaft disposed on the base and used to sleeve the slider component; a first limit sensor and a second limit sensor disposed on the bracket and electrically connected to the control device; wherein, when the slider component touches the first limit sensor, the slider component is located at the detection station; when the slider component touches the second limit sensor, the slider component is located at the release station.

17. The intelligent recycling device according to claim 14, characterized in that, The sliding component is a frame member with a hollowed-out area for receiving the smart terminal. At least a portion of the frame member has its upper and lower ends connected to the cover and the receiving platform respectively when it is in the detection station, so as to form the image acquisition space after the delivery window is closed.

18. The intelligent recycling device according to claim 12, characterized in that, Also includes: An image acquisition device is installed on the enclosure and above the receiving platform; several supplementary lights are installed inside the enclosure, wherein each supplementary light is located on the top of the enclosure and its circumferential sidewalls; the image acquisition device and each light source are electrically connected to the control device.

19. The intelligent recycling device according to claim 12, characterized in that, Also includes: A terminal device recycling device; wherein the terminal device recycling device includes: a support base slidably disposed within the intelligent recycling device and used for storing terminal devices; a data cable disposed within the storage compartment and used for electrically connecting the terminal devices; and a communication interface disposed at the rear of the storage compartment and used for connecting the data cable and simultaneously used for electrically connecting to a control device.

20. The intelligent recycling device according to claim 19, characterized in that, Also includes: An electromagnetic lock is mounted on the support base and used to self-lock the storage compartment; slide rails are mounted on opposite sides of the storage compartment and used to form a sliding connection; wherein the electromagnetic lock is electrically connected to a control device; the bottom of the storage compartment is provided with a sliding connection part for slidingly connecting to the support base; the sliding connection part is provided with a latch for being locked and released by the electromagnetic lock.

21. The intelligent recycling device according to claim 20, characterized in that, Also includes: An elastic device disposed on at least one side of the electromagnetic lock and used to abut against the sliding connection portion; wherein the elastic device is electrically connected to the control device to apply elastic force to the storage compartment when the electromagnetic lock releases the latch.

22. The intelligent recycling device according to claim 20, characterized in that, The terminal device is a laptop computer; there are at least two storage compartments arranged from top to bottom; the number and position of the storage compartments and the electromagnetic locks correspond one-to-one.

23. The intelligent recycling device according to claim 20, characterized in that, Also includes: A cable chain mounted on the support base for extending and retracting the data cable connecting the communication interface and the control device.

24. The intelligent recycling device according to claim 20, characterized in that, Also includes: A limiting member is provided on the support base, and a limiting block is provided on the storage compartment and at least part of it is exposed from the bottom of the storage compartment; wherein, when the storage compartment is moved to a preset storage position, the limiting member is held by the limiting block to prevent the storage compartment from detaching from the intelligent recycling device.

25. The intelligent recycling device according to claim 20, characterized in that, The terminal device recycling device is located between the receiving platform of the smart terminal recycling device and the detection mechanism of the recycling device; the storage compartment of the smart terminal recycling device is located beside the detection mechanism of the recycling device and above the storage space.

Citation Information

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