A Carbide Universal Feeding Mechanism

By designing a general material feeding agency for card books, the problem of unified management of this type of documents and card documents is solved, and flexible access and access of documents is realized, increasing application scenarios and saving costs.

CN110533121BActive Publication Date: 2025-06-27INT SECURITY TECH SHENZHEN +2
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Patent Information

Application Number
CN201910025099.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-01-11
Publication Date
2025-06-27
Estimated Expiration
2039-01-11

AI Technical Summary

Technical Problem

The prior art is difficult to manage the present and card documents in a unified manner, resulting in waste of resources, and it is difficult to use the card entry and exit device uniformly.

Method used

A cardboard general feeding mechanism is designed, including the first and second feeding devices, and a waste silo, and the flexible clamping and access of documents is achieved through the power device and the transmission device.

Benefits of technology

It realizes the access to ordinary cards and passports, and the access to documents is flexible and stable, which increases application scenarios and saves the cost of government or enterprise procurement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a Carbone general feeding mechanism, comprising: a first feeding device, a second feeding device located below the first feeding device, and a waste bin located below the second feeding device. The present invention has the following beneficial effects: Since the Carbone general feeding mechanism of the present invention can be applied to the access of ordinary cards and document types such as passports, the clamping is flexible and stable, the application scenarios are increased, and the procurement costs of the government or enterprises are saved.
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Description

Technical Field

[0001] The present invention relates to an intelligent access device, specifically a feeding mechanism of an intelligent access device.

Background Art

[0002] At present, various certificates widely exist in our lives, such as identity cards, social security cards, health cards, passports, and so on. With the development of technology and the popularization of the government's big data platform, the application scenarios of certificates are diversified. In the scenarios where passports are usually used, identity cards and other certificates may also be used. Generally speaking, if these certificates are managed in a single scenario, it will cause waste of resources. If the book-type certificates and card-type certificates can be unifiedly managed, a considerable amount of resources can be saved. For the unified management of book-type certificates and card-type certificates, the first thing to solve is the unified utilization of the certificate access end devices. Therefore, a card-book feeding mechanism is needed to solve the feeding problem.

Summary of the Invention

[0003] In view of the above technical defects, the present invention provides a feeding mechanism for a card-book hybrid access device, and the specific technical solutions are as follows:

[0004] A card-book universal feeding mechanism includes: a first feeding device, a second feeding device located below the first feeding device, and a waste bin located below the second feeding device.

[0005] A card-book universal feeding mechanism is provided, wherein the first feeding device includes a first bin, a first feeding assembly located below the first bin. The first feeding assembly includes a first flat plate support portion, and a first power device and a first transmission device fixedly connected to the first flat plate support portion.

[0006] A card-book universal feeding mechanism is provided, wherein the first power device is located above the first flat plate support portion. The first transmission device includes a first rotating wheel assembly arranged in a triangular shape and a first conveyor belt hermetically connected to the first transmission wheel assembly. A first power transmission plate is fixedly connected to the first conveyor belt. A needle-like structure is provided at one end of the first transmission plate. A first chute device is provided on the upper portion of the first transmission plate. A first slide rail assembly connected to the first chute assembly is provided on the bottom surface of the first support portion.

[0007] A card-book universal feeding mechanism is provided, wherein a vertically penetrating hollow portion is provided near the middle of the first flat plate support portion.

[0008] Provide a Carbun general feeding mechanism. One end of the first flat plate supporting part away from the first bin is provided with a first card body access mechanism. The first card body access mechanism includes a card slot and a blocking mechanism located below the card slot, inside a hollow part near the middle of the first flat plate supporting part, and fixed on the first power transmission plate.

[0009] Provide a Carbun general feeding mechanism. A card body reading device is provided above the card body access mechanism.

[0010] Provide a Carbun general feeding mechanism. The second feeding device includes a second bin and a second feeding assembly located below the second bin. The second feeding assembly includes a second flat plate supporting part, and a second power device and a second transmission device fixedly connected to the second flat plate supporting part.

[0011] Provide a Carbun general feeding mechanism. The second power device is located above the second flat plate supporting part. The second transmission device includes a second rotating wheel assembly arranged in a triangle and a second conveyor belt hermetically connected to the second transmission wheel assembly. A second power transmission plate is fixedly connected to the second conveyor belt. A needle-like structure is arranged at one end of the second transmission plate. A second chute device is arranged above the second transmission plate. A second slide rail assembly connected to the second chute assembly is arranged on the bottom surface of the second support part.

[0012] Provide a Carbun general feeding mechanism. A vertically penetrating hollow part is provided near the middle of the second flat plate supporting part.

[0013] Provide a Carbun general feeding mechanism. One end of the second flat plate supporting part away from the second bin is provided with a second card body access mechanism. The second card body access mechanism includes a card slot and a blocking mechanism located below the card slot, inside a hollow part near the middle of the second flat plate supporting part, and fixed on the second power transmission plate.

[0014] Provide a Carbun general feeding mechanism. The second bin includes a body pressing device with a handle. The body pressing device includes a plate-shaped object and a pressure bar located below the plate-shaped object and fixed on the lower surface of the plate-shaped object.

[0015] Provide a Carbun general feeding mechanism. A reading device is provided above the card body access mechanism.

[0016] The present invention has the following beneficial effects: Since the Carbun general feeding mechanism of the present invention can be applied to the access of ordinary cards and documents such as passports, it is flexible and stable in clamping, increases the application scenarios, and saves the procurement costs of the government or enterprises.

[0017]

Explanation of the Drawings

[0018] Figure 1 It is a schematic diagram of the overall structure of the carbon card feeding mechanism of the present invention.

[0019] Figure 2 It is a schematic diagram of the structure of the first feeding device of the carbon card feeding mechanism of the present invention.

[0020] Figure 3 It is a schematic diagram of the transmission device structure of the first feeding device of the carbon card feeding mechanism of the present invention Figure 1 .

[0021] Figure 4 It is a schematic diagram of the transmission device structure of the first feeding device of the carbon card feeding mechanism of the present invention Figure 2 .

[0022] Figure 5 It is a schematic diagram of the inlet and outlet structure of the card-type certificate of the first feeding device of the carbon card feeding mechanism of the present invention.

[0023] Figure 6 It is a schematic diagram of the structure of the second feeding device of the carbon card feeding mechanism of the present invention.

[0024] Figure 7 It is a schematic diagram of the transmission device structure of the second feeding device of the carbon card feeding mechanism of the present invention.

[0025] Figure 8 It is a schematic diagram of the inlet and outlet structure of the book-type certificate of the second feeding device of the carbon card feeding mechanism of the present invention.

[0026] Figure 9 It is a schematic diagram of the body pressing device structure of the second feeding device of the carbon card feeding mechanism of the present invention.

[0027] Figure 10 It is a schematic diagram of the waste bin structure of the carbon card feeding mechanism of the present invention.

Detailed implementation manners

[0028] Next, in combination with the attached Figure 1-10 the technical solution of the present invention will be described in detail.

[0029] As Figure 1 shown, a carbon card universal feeding mechanism includes: a first feeding device 100, a second feeding device 200 located below the first feeding device, and a waste bin 300 located below the second feeding device.

[0030] Next, in combination with Figures 2-5 the first feeding device of the technical solution of the present invention will be described

[0031] As Figure 2As shown in the figure, the first feeding device includes a first bin 110, a first feeding component 120 located below the first bin. The first feeding component 120 includes a first flat plate support part 130, a first power device 121 fixedly connected to the first flat plate support part, and a first transmission device 122.

[0032] The first power device 121 is fixedly located above the first flat plate support part 130 and is an inverted motor. The first transmission device 122 includes a first rotating wheel assembly 1221 arranged in a triangle and a first conveyor belt 1222 hermetically connected to the first rotating wheel assembly. The motor is connected to a transmission wheel below the flat plate support part through a power output end. A first power transmission plate 1223 is fixedly connected to the first conveyor belt. A needle-like structure 12231 is arranged at one end of the first transmission plate. Two induction devices 12232 are arranged below the first flat plate support part 130. The ends of the two induction parts close to the needle-like structure are concave and are respectively located at the front and rear ends of the first flat plate support part. A first chute device 1224 is arranged above the first transmission plate, and a first slide rail assembly 1225 connected to the first chute assembly is arranged on the bottom surface of the first support. When the first power transmission plate 1223 moves back and forth on the slide rail 1225, the needle-like structure 12231 can pass through the concave structure of the induction device 12232.

[0033] A vertically penetrating hollow part 131 is arranged near the middle part of the first flat plate support part. A card body access mechanism 1226 is arranged at one end of the first flat plate support part far from the first bin. The card body access mechanism includes a card slot 12261 and a card blocking mechanism 12262 located below the card slot, inside the hollow part near the middle part of the first flat plate support part, and fixed to the first power transmission plate.

[0034] A roughly circular disc 12263 is fixedly arranged above the card slot 12261. Four ears are fixed on the upper surface of the card slot. An annular body is arranged above the disc. The left and right ears and the left and right sides of the annular body are fixed on the upper surface of the card slot through fasteners. An annular body 12264 is fixedly arranged above the disc 12263. The left and right ears of the annular body 12263 are fixed below the annular body 12264.

[0035] A card body reading device 1227 is arranged above the card body access mechanism. The card reading device is located on the side wall of the first bin.

[0036] The following combines Figures 6-9 to describe the first feeding device of the technical solution of the present invention

[0037] The second feeding device 200 includes a second bin 210, a second feeding assembly 220 located below the second bin. The second feeding assembly includes a second flat plate support portion 230, and a second power device 221 and a second transmission device 222 fixedly connected to the second flat plate support portion.

[0038] The second power device 221 is fixedly located above the second flat plate support portion 230 and is an inverted motor. The second transmission device 222 includes a second rotating wheel assembly 2221 arranged in a triangle and a second conveyor belt 2222 hermetically connected to the second rotating wheel assembly. The motor is connected to the rotating wheel at the lower part of the flat plate support portion through a power output end. A second power transmission plate 2223 is fixedly connected to the second conveyor belt. A needle-like structure 22231 is provided at one end of the second transmission plate. Two induction devices 22232 are provided below the second flat plate support portion 230. The ends of the two induction members close to the needle-like structure are concave and are respectively located at the front and rear ends of the second flat plate support portion. A second chute device 2224 is provided on the upper part of the second transmission plate. A second slide rail assembly 2225 connected to the second chute assembly is provided on the bottom surface of the second support.

[0039] A vertically penetrating hollow portion 231 is provided near the middle part of the second flat plate support portion. A second card body inlet and outlet mechanism 2226 is provided at one end of the second flat plate support portion away from the second bin. The second card body inlet and outlet mechanism includes a card slot 22261 and a blocking mechanism 22262 located below the card slot, inside the hollow portion near the middle part of the second flat plate support portion, and fixed to the second power transmission plate. The card slot 22261 is composed of two relatively arranged block-shaped bodies in an inverted "L" shape and fixed to the second flat plate support portion.

[0040] The second bin includes a body pressing device 211 with a handle. The body pressing device includes a plate-shaped object 2111 and a handle 2112 located above the plate-shaped object and fixed to the upper surface of the plate-shaped object.

[0041] The following combines Figure 10 to describe in detail the waste bin of the technical solution of the card body feeding mechanism of the present invention

[0042] The waste bin 300 includes an inclined chute 310 and a vertical storage bin 320. An induction device is provided on the outer side wall of the chute 310.

[0043] The above embodiments are the preferred embodiments of the present invention. The present invention is not limited to the above embodiments. For those of ordinary skill in the art, any obvious changes made without departing from the technical principle of the present invention fall within the scope of the concept of the present invention and the protection scope of the appended claims.

Claims

1. A general feeding mechanism for carbene, characterized in that Comprising: A first feeding device, a second feeding device located below the first feeding device, and a waste bin located below the second feeding device; The first feeding device includes a first bin and a first feeding assembly located below the first bin. The first feeding assembly includes a first flat plate support portion, a first power device and a first transmission device fixedly connected to the first flat plate support portion. A first card body entry and exit mechanism is provided at one end of the first flat plate support portion away from the first bin. The first card body entry and exit mechanism includes a first entry slot; a disc is fixed on the first entry slot, a ring is provided on the upper part of the disc, and a card body reading device is provided on the upper part of the first card body entry and exit mechanism; The second feeding device includes a second bin and a second feeding assembly located below the second bin. The second feeding assembly includes a second flat plate support portion, a second power device and a second transmission device fixedly connected to the second flat plate support portion; A second card body entry and exit mechanism is provided at one end of the second flat plate support portion away from the second bin. The second card body entry and exit mechanism includes a second entry slot, a hollow portion at a position near the middle of the second flat plate support portion below the second entry slot, and a blocking mechanism fixed on the second power transmission plate; Another card body reading device is provided on the upper part of the second card body entry and exit mechanism; Among them, the waste bin includes a chute and a storage bin, and a sensing device is provided on the outer side wall of the chute.

2. The Carbide general feeding mechanism according to claim 1, characterized in that: The first power device is located above the first flat plate support portion. The first transmission device includes a first rotating wheel assembly arranged in a triangle and a first conveyor belt hermetically connected to the first rotating wheel assembly. A first power transmission plate is fixedly connected to the first conveyor belt. A needle-like structure is provided at one end of the first power transmission plate. A first chute device is provided on the upper part of the first power transmission plate. A first slide rail assembly connected to the first chute device is provided on the bottom surface of the first flat plate support portion.

3. The Carbide general feeding mechanism according to claim 1, characterized in that: A vertically penetrating hollow portion is provided at a position near the middle of the first flat plate support portion.

4. The Carbide general feeding mechanism according to claim 3, characterized in that: A first card body entry and exit mechanism is provided at one end of the first flat plate support portion away from the first bin. The first card body entry and exit mechanism includes a first entry slot, a hollow portion at a position near the middle of the first flat plate support portion below the first entry slot, and a blocking mechanism fixed on the first power transmission plate.

5. The Carbide general feeding mechanism according to claim 1, characterized in that: A card body pressing device with a handle is included in the first bin. The card body pressing device includes a plate-like object with a hole in the middle, and a handle that tilts upward is provided at one end of the plate-like object.

6. The carbene general feeding mechanism according to claim 1, wherein: The second power device is located above the second flat plate support portion. The second transmission device includes a second rotating wheel assembly arranged in a triangle and a second conveyor belt hermetically connected to the second rotating wheel assembly. A second power transmission plate is fixedly connected to the second conveyor belt. A needle-like structure is provided at one end of the second power transmission plate. A second chute device is provided on the upper part of the second power transmission plate. A second slide rail assembly connected to the second chute device is provided on the bottom surface of the second flat plate support portion.

7. The Carbide general feeding mechanism according to claim 1, wherein: A vertically penetrating hollow portion is provided at a position near the middle of the second flat plate support portion.

8. The Carbide General Feeding Mechanism according to claim 1, characterized in that: The second bin includes a body pressing device with a handle. The body pressing device includes a plate-shaped object and a pressure bar located below the plate-shaped object and fixed to the lower surface of the plate-shaped object.

Citation Information

Patent Citations

  • Monocular certificate automatic issuing device

    CN107480732A

  • Universal card book feeding mechanism

    CN210222784U