Intelligent storage cabinet with closed type material guiding and conveying mechanism

By introducing an electronically controlled telescopic storage box and an electronically controlled material conveying belt into the storage cabinet, combined with the lateral frame and elastic extrusion module, the problems of low space utilization and insufficient conveying efficiency of the storage cabinet are solved, and efficient and safe diversified material conduction operations are achieved.

CN120348623AInactive Publication Date: 2025-07-22JIANGSU PANASIA MEDICAL TECH GRP CO LTD
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Patent Information

Application Number
CN202510866567.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing storage cabinets require a large amount of internal or external space, resulting in low space utilization and limited type and efficiency of single delivery.

Method used

An intelligent storage cabinet with a closed material conduction conveyor is designed, using an electronically controlled telescopic storage box and an electronically controlled material conveyor belt, combining a lateral frame and an elastic extrusion module to achieve diversified material conduction and efficient transportation of goods.

Benefits of technology

It improves the functional integration and space utilization of the cabinet, enhances the safety and stability of the material, and improves the efficiency and adaptability of loading and unloading.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of material storage and conveying, in particular to an intelligent storage cabinet with a closed material guiding and conveying mechanism, which comprises a main cabinet body, a front telescopic opening is formed in the front surface of the main cabinet body, and an electric control telescopic storage box for storing goods is inserted into the front telescopic opening in a sliding manner. According to the intelligent storage cabinet with the closed type material guiding and conveying mechanism, goods can be stored through the electric control telescopic storage box, feeding and discharging can be conducted in cooperation with an electric control type material conveying belt at the lower end of the front face of the main cabinet body, and the function integration degree is greatly improved; the electric control telescopic storage box extends outwards, so that a loading and unloading opening in the front end of the storage box can be opened, a longitudinal channel can be formed in the outer side of the main cabinet body, and materials can be conveniently guided.
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Description

Technical Field

[0001] The present invention relates to the technical field of storage and material transportation, and in particular to an intelligent locker with a closed material guiding and conveying mechanism. Background Art

[0002] A locker, as the name implies, is a cabinet for storing items. Since its internal space is abundant, a large number of goods can be stored. It can provide enclosed storage for high-value and high-demand goods. However, in order to facilitate the loading and unloading operations, the existing lockers need to be provided with a material guiding mechanism on the outside or inside, which not only occupies a large amount of internal or external space, resulting in low space utilization rate, but also the types and efficiency of single-time transportation are very limited. Summary of the Invention

[0003] The technical problem to be solved by the present invention is that the existing lockers not only occupy a large amount of internal or external space, resulting in low space utilization rate, but also the types and efficiency of single-time transportation are very limited.

[0004] The technical solution adopted by the present invention to solve its technical problems is: an intelligent locker with a closed material guiding and conveying mechanism, including a main cabinet body. A front telescopic opening is provided on the front surface of the main cabinet body. An electric control telescopic storage box for storing goods is slidably inserted into the front telescopic opening. An external closing cover plate is fixed to the opening position on the outside of the electric control telescopic storage box through a side frame, and an electric control internal material conveying mechanism is movably assembled inside the side frame.

[0005] A bottom flip cover plate is movably assembled at the lower end of the front surface of the main cabinet body, and an electric control conveyor belt is installed on the side wall of the bottom flip cover plate.

[0006] Embedded guide grooves are symmetrically provided on the inner walls on both sides of the front telescopic opening.

[0007] The electric control telescopic storage box includes an internal storage frame with internal thread guide blocks on both sides, an electric control screw rod movably installed inside the embedded guide groove, an electric control flip extrusion frame movably installed on the inner walls on both sides of the internal storage frame, and an electric control conveyor belt installed on the side wall of the electric control flip extrusion frame.

[0008] The electric control flip extrusion frame includes a flip adjustment connecting rod movably installed on the inner walls on both sides of the internal storage frame, a side extrusion frame movably installed at the flip end of the flip adjustment connecting rod, a first adjustment support rod for controlling the flip adjustment connecting rod, and a second adjustment support rod for controlling the side extrusion frame.

[0009] The outer walls on both sides of the side frame have laterally protruding lateral transmission boxes, and lateral transmission ports communicating with the inside of the lateral transmission boxes are symmetrically provided on the side walls on both sides of the side frame.

[0010] Inside the lateral transmission box, a lateral elastic extrusion feeding module is movably assembled, and an internal support plate for supporting the lateral elastic extrusion feeding module is fixed on the inner wall of the lateral transmission box.

[0011] The lateral elastic extrusion feeding module includes a main driving wheel, a secondary driven wheel, a flexible feeding belt, a rigid support plate, an outer guiding cylinder, an elastic telescopic rod, and a rubber extrusion head that are movably installed inside the lateral transmission box.

[0012] The surface of the lateral frame has an embedded horizontal guide rail. The external closing cover plate includes a first closing cover plate, a second closing cover plate, an embedded adjusting screw rod installed inside the embedded horizontal guide rail, an upper threaded lifting block fixed on the inner wall of the first closing cover plate, and a lower threaded lifting block fixed on the inner wall of the second closing cover plate.

[0013] A lateral flipping groove for receiving the bottom flipping cover plate is opened at the lower end of the front surface of the main cabinet body. The bottom flipping cover plate includes an electrically controlled flipping telescopic frame movably installed inside the lateral flipping groove and an electrically controlled flipping assembly frame movably installed at the outer end of the electrically controlled flipping telescopic frame. The electrically controlled feeding belt is installed inside the electrically controlled flipping assembly frame.

[0014] The beneficial effects of the present invention are as follows: (1) The intelligent locker with a closed material guiding and conveying mechanism of the present invention can not only store goods through the electrically controlled telescopic storage box, but also cooperate with the electrically controlled feeding belt at the lower end of the front surface of the main cabinet body for loading and unloading, greatly improving the function integration degree; (2) By extending the electrically controlled telescopic storage box outward, not only can the front loading and unloading port be opened, but also a longitudinal channel can be formed outside the main cabinet body to facilitate material guiding; (3) The present application integrates manual and electrically controlled material guiding methods, and the means of conveying operation are more diverse; (4) By simultaneously extending the longitudinally arranged electrically controlled telescopic storage boxes, a closed material guiding channel can be formed, greatly improving the safety of loading and unloading; (5) The entire material guiding and conveying mechanism does not affect the internal space of the locker during storage, greatly improving the space utilization rate; (6) An electrically controlled internal feeding mechanism is movably assembled inside the lateral frame, which can elastically extrude and guide materials for goods from both sides. It can not only adapt to various specifications of goods, but also ensure the stability of material guiding; (7) Electrically controlled feeding belts controlled by electrically controlled flipping and extruding frames are installed on the inner walls of both sides of the internal storage frame, which can facilitate the internal material guiding of goods and improve the material guiding efficiency at the same time. Description of the Drawings

[0015] The present invention will be further described below with reference to the drawings and embodiments.

[0016] Figure 1 It is a schematic structural diagram of the present invention.

[0017] Figure 2 It is a schematic structural diagram of the bottom flip cover in the unfolded state of the present invention.

[0018] Figure 3 It is a schematic structural diagram of the interior of the front telescopic opening of the present invention.

[0019] Figure 4 It is a schematic structural diagram of the interior of the lateral drive box of the present invention.

[0020] Figure 5 It is a schematic structural diagram of the bottom flip cover of the present invention. Detailed implementation manners

[0021] Now, the present invention will be further described in detail with reference to the accompanying drawings. These drawings are all simplified schematic diagrams, only showing the basic structure of the present invention in a schematic manner, so they only show the components related to the present invention.

[0022] In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0023] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 As shown in Figure 5 , an intelligent storage locker with a closed material guiding and conveying mechanism includes a main cabinet body 1. A front telescopic opening is provided on the front surface of the main cabinet body 1. An electric control telescopic storage box 2 for storing goods is slidably inserted inside the front telescopic opening. An external closing cover 4 is fixed through a lateral frame 3 at the opening position on the outer side of the electric control telescopic storage box 2. An electric control internal material conveying mechanism is movably assembled inside the lateral frame 3.

[0024] Operating principle: When feeding is required, control all the electric control telescopic storage boxes 2 at the longitudinal position of this position to extend outwards to form a longitudinal material guiding channel. Then, stuff the goods into the lower opening of the lowest electric control telescopic storage box 2, and use the electric control internal material conveying mechanism to squeeze the goods to be fed from both sides, and guide the goods along the longitudinal material guiding channel upwards until they are guided to the front telescopic opening at the specified position. Then, the electric control telescopic storage box 2 at this position guides the goods into its interior, and then contracts towards the interior of the front storage opening, thus completing the feeding; Similarly for blanking, control all the electric telescopic storage boxes 2 at the longitudinal position of this location to extend outwards, forming a longitudinally arranged material guiding channel, then control the goods to be exported outwards from the electric telescopic storage box 2 at the specified position, and then use the electric internal feeding mechanism to guide the goods downwards, and then this leads to the lowermost end.

[0025] In order to cooperate with the bottom support and translational material guiding, a bottom flipping cover plate 6 is movably assembled at the lower end of the front side of the main cabinet body 1, and an electric feeding belt 7 is installed on the side wall of the bottom flipping cover plate 6.

[0026] The electric feeding belt 7 can control the goods to translate at the bottom, facilitating loading and unloading.

[0027] In order to reduce costs, the bottom flipping cover plate 6 and the electric feeding belt 7 can also be cancelled, and the goods are guided manually.

[0028] In order to improve the guiding property, embedded guiding grooves 8 are symmetrically arranged on the inner walls of both sides of the front telescopic opening.

[0029] In order to cooperate with the internal electric translation and material guiding, the electric telescopic storage box 2 includes an internal storage frame 22 with internal thread guiding blocks 21 on both sides, an electric control screw rod 23 movably installed inside the embedded guiding groove 8, an electric control flipping and squeezing frame 24 movably installed on the inner walls of both sides of the internal storage frame 22, and an electric feeding belt 25 installed on the side wall of the electric control flipping and squeezing frame 24.

[0030] The electric control screw rod 23 drives the internal thread guiding blocks on both sides of the internal storage frame 22 to translate along the embedded guiding groove 8 by rotation, so as to control the internal storage frame 22 to telescopically adjust inside the front telescopic opening. And the electric control flipping and squeezing frame 24 is used to control the electric feeding belt 25 to squeeze on both sides of the goods, so as to ensure the fitting degree between the electric feeding belt 25 and the outer wall of the goods, thereby improving the material guiding efficiency, and the electric feeding belt 25 is used to control the goods to translate and guide inside the internal storage frame 22.

[0031] In order to cooperate with the electric control flipping adjustment, the electric control flipping and squeezing frame 24 includes flipping adjustment connecting rods 241 movably installed on the inner walls of both sides of the internal storage frame 22, a lateral squeezing frame 242 movably installed at the flipping end of the flipping adjustment connecting rods 241, a first adjustment support rod 243 for controlling the flipping adjustment connecting rods 241, and a second adjustment support rod 244 for controlling the lateral squeezing frame 242.

[0032] The first adjustment support rod 243 controls the flipping adjustment of the flipping adjustment connecting rods 241 by telescoping, and the second adjustment support rod 244 controls the flipping adjustment of the lateral squeezing frame 242 by telescoping. The function of the first adjustment support rod 243 is to change the gap between the lateral squeezing frame 242 and the inner walls of both sides of the internal storage frame 22, and the function of the second adjustment support rod 244 is to maintain the squeezing and fitting property between the lateral squeezing frame 242 and the side wall of the goods.

[0033] In order to cooperate with the lateral transmission, on the outer walls on both sides of the lateral frame 3, there are laterally protruding lateral transmission boxes 9, and on the two side walls of the lateral frame 3, there are symmetrically arranged lateral transmission ports communicating with the inside of the lateral transmission boxes 9.

[0034] In order to cooperate with the lateral assembly and enhance the internal support, inside the lateral transmission box 9, there is a laterally elastic extrusion feeding module 10 movably assembled, and on the inner wall of the lateral transmission box 9, there is an internal support plate 11 fixed for supporting the laterally elastic extrusion feeding module 10.

[0035] The lateral transmission box 9 and the laterally elastic extrusion feeding module 10 form an electrically controlled internal feeding mechanism.

[0036] In order to cooperate with the elastic material guiding, the elastic extrusion feeding module 10 includes a main driving wheel 101, a secondary driven wheel 102, a flexible feeding belt 103, a rigid support plate 104, and an outer guiding cylinder 105, an elastic telescopic rod 106, and a rubber extrusion head 107 fixed on the outer side surface of the rigid support plate 104, which are movably installed inside the lateral transmission box 9.

[0037] By rotating, the main driving wheel 101 drives the flexible feeding belt 103 to drive along the main driving wheel 101 and the secondary driven wheel 102, and then uses the flexible feeding belt 103 to drive the rigid support plate 104 and the outer guiding cylinder 105, the elastic telescopic rod 106, and the rubber extrusion head 107 on its outer side for feeding adjustment. The elastic telescopic rod 106 squeezes both sides of the goods from both sides through the rubber extrusion head 107 at the outer end, so as to control the lifting adjustment of the goods inside the lateral frame 3.

[0038] The elastic telescopic rod 106 is inserted into the inner part of the outer guiding cylinder 105 and is elastically assembled with the extrusion spring inside the outer guiding cylinder 105.

[0039] The internal support plate 11 supports the flexible feeding belt 103 from the inner side, so as to ensure the lateral support force at the inner extrusion end.

[0040] In order to cooperate with the lifting adjustment and improve the closing effect at the upper and lower ends, on the surface of the lateral frame 3, there is an embedded horizontal guide rail 31. The external closing cover plate 4 includes a first closing cover plate 41, a second closing cover plate 42, an embedded adjustment screw rod 43 installed inside the embedded horizontal guide rail 31, an upper threaded lifting block 44 fixed on the inner wall of the first closing cover plate 41, and a lower threaded lifting block 45 fixed on the inner wall of the second closing cover plate 42.

[0041] By rotating the embedded adjusting screw rod 43, the translation of the upper threaded lifting block 44 and the lower threaded lifting block 45 is controlled in reverse, and the first closing cover plate 41 and the second closing cover plate 42 are synchronously controlled to translate in the reverse direction. By using the translation of the first closing cover plate 41 and the second closing cover plate 42, the gaps on both sides of the longitudinally arranged electric control telescopic storage box are closed, which can not only ensure the structural stability after extension, but also improve the safety during material guiding.

[0042] The first closing cover plate 41 and the second closing cover plate 42 are designed with a left-right two-section structure. When the first closing cover plate 41 and the second closing cover plate 42 translate outwards, the laterally closing cover plate elastically assembled on the outside will bend backward, thereby closing the lateral gap and forming a closed channel.

[0043] In order to cooperate with bottom flipping, height lifting and translational material guiding, a lateral flipping groove 12 for storing the bottom flipping cover plate 6 is opened at the lower end of the front surface of the main cabinet body 1. The bottom flipping cover plate 6 includes an electric control flipping telescopic frame 61 movably installed inside the lateral flipping groove 12 and an electric control flipping assembly frame 62 movably installed at the outer end of the electric control flipping telescopic frame 61. The electric control conveying belt 7 is installed inside the electric control flipping assembly frame 62.

[0044] The electric control flipping telescopic frame 61 includes a flipping cylinder movably installed inside the lateral flipping groove 12, a flipping cylinder strut for controlling the flipping cylinder, a flipping cylinder telescopic rod inserted inside the flipping cylinder, and an external telescopic frame controlled by the flipping cylinder telescopic rod.

[0045] The electric control flipping assembly frame 62 includes an external flipping adjustment frame axially movably connected to the outer end of the external telescopic frame and an outer edge angle control strut for controlling the external flipping adjustment frame.

[0046] The electric control conveying belt 7 is installed inside the external flipping adjustment frame.

[0047] The function of the electric control flipping telescopic frame 61 is to control the gap and height between the electric control conveying belt 7 and the front surface of the main cabinet body 1, facilitating the control of the flipping of the electric control conveying belt 7; while the electric control flipping assembly frame 62 is used to adjust the angle of the electric control conveying belt 7 to ensure storage and horizontal conveying.

[0048] Enlightened by the above ideal embodiments according to the present invention, through the above description, relevant staff can completely make various changes and modifications within the scope not deviating from the technical idea of this invention. The technical scope of this invention is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.

Claims

1. An intelligent storage locker with a closed material guiding and conveying mechanism, including a main cabinet body (1), characterized in that: A front side of the main cabinet body (1) is provided with a front telescopic opening, and an electric control telescopic storage box (2) for storing goods is slidably inserted inside the front telescopic opening. An external closing cover plate (4) is fixed at an opening position on an outer side of the electric control telescopic storage box (2) through a side frame (3), and an electric control internal feeding mechanism is movably assembled inside the side frame (3). On outer walls on two sides of the side frame (3), there are laterally protruding lateral transmission boxes (9), and laterally symmetrical transmission openings communicating with interiors of the lateral transmission boxes (9) are formed in two side walls of the side frame (3). A lateral elastic extrusion feeding module (10) is movably assembled inside the lateral transmission box (9). When loading and unloading materials, control all the electric control telescopic storage boxes (2) at the longitudinal position of this position to extend outwards to form a longitudinally arranged material guiding channel, and use the electric control internal feeding mechanism to extrude the materials to be loaded and unloaded from both sides to guide the materials along the longitudinally arranged material guiding channel.

2. The intelligent locker with a closed material guiding and conveying mechanism according to claim 1, characterized in that: A bottom flip cover plate (6) is movably assembled at a lower end of a front side of the main cabinet body (1), and an electric control conveyor belt (7) is installed on a side wall of the bottom flip cover plate (6).

3. The intelligent locker with a closed material guiding and conveying mechanism according to claim 1, wherein: Embedded guiding grooves (8) are symmetrically formed in two inner walls on two sides of the front telescopic opening.

4. The intelligent locker with a closed material guiding and conveying mechanism according to claim 2, characterized in that: The electric control telescopic storage box (2) includes an internal storage frame (22) having internal thread guiding blocks (21) on both sides, an electric control lead screw (23) movably installed inside the embedded guiding groove (8), electric control flip extrusion frames (24) movably installed on two inner walls on two sides of the internal storage frame (22), and an electric control conveyor belt (25) installed on a side wall of the electric control flip extrusion frame (24).

5. The intelligent locker with a closed material guiding and conveying mechanism according to claim 4, characterized in that: The electric control flip extrusion frame (24) includes flip adjusting connecting rods (241) movably installed on two inner walls on two sides of the internal storage frame (22), lateral extrusion frames (242) movably installed at flip ends of the flip adjusting connecting rods (241), a first adjusting support rod (243) for controlling the flip adjusting connecting rods (241), and a second adjusting support rod (244) for controlling the lateral extrusion frames (242).

6. The intelligent locker with a closed material guiding and conveying mechanism according to claim 1 is characterized in that: An internal support plate (11) for supporting the lateral elastic extrusion feeding module (10) is fixed on an inner wall of the lateral transmission box (9).

7. The intelligent locker with a closed material guiding and conveying mechanism according to claim 1, characterized in that: The lateral elastic extrusion feeding module (10) includes a main driving wheel (101), a secondary driven wheel (102), a flexible feeding belt (103), a hard support plate (104), an outer side guiding cylinder (105), an elastic telescopic rod (106), and a rubber extrusion head (107) which are movably installed inside the lateral transmission box (9).

8. An intelligent locker with a closed material guiding and conveying mechanism according to claim 1, characterized in that: An embedded horizontal guide rail (31) is provided on a surface of the side frame (3), and the external closing cover plate (4) includes a first closing cover plate (41), a second closing cover plate (42), an embedded adjusting lead screw (43) installed inside the embedded horizontal guide rail (31), an upper thread lifting block (44) fixed on an inner wall of the first closing cover plate (41), and a lower thread lifting block (45) fixed on an inner wall of the second closing cover plate (42).

9. The intelligent locker with a closed material guiding and conveying mechanism according to claim 2, wherein: A lateral flipping groove (12) for receiving a bottom flipping cover plate (6) is formed at the lower end of the front surface of the main cabinet body (1). The bottom flipping cover plate (6) includes an electric control flipping telescopic frame (61) movably installed inside the lateral flipping groove (12) and an electric control flipping assembly frame (62) movably installed at the outer end of the electric control flipping telescopic frame (61). The electric control type conveyor belt (7) is installed inside the electric control flipping assembly frame (62).

Citation Information

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