Super-large material recognition device

By designing an oversized material identification device, which utilizes components such as connecting rods, rotating shafts, housings, and identification mechanisms, the problem of identifying and collecting oversized materials is solved, preventing conveyor belt blockage and improving material processing efficiency.

CN223571370UActive Publication Date: 2025-11-21ZAOZHUANG HAINA TECH
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Patent Information

Application Number
CN202422715253.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-11-21
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

Existing material type identification devices lack a structure for identifying and collecting oversized materials, leading to conveyor belt blockage and affecting the efficiency of subsequent material processing.

Method used

An oversized material identification device was designed, including components such as a connecting rod, a rotating shaft, a housing, a conveyor belt, and an identification mechanism. By setting up structures such as a placement plate, connecting holes, tension springs, a moving frame, a moving disk, a support plate, and a stop block, the device can identify and collect oversized materials and prevent the conveyor belt from getting blocked.

Benefits of technology

It effectively identifies and collects oversized materials, preventing conveyor belt blockage and improving the efficiency of subsequent material processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an ultra-large material identification device, which belongs to the technical field of identification devices, and comprises a connecting rod and an identification mechanism, the two sides of the connecting rod are respectively bolted with a rotating shaft, one side, far away from the connecting rod, of each rotating shaft is bolted with a shell, the surface of each rotating shaft is rotatably connected with a conveyor belt, and the conveyor belts are connected with the identification mechanism. The recognition mechanism is slidably connected to the surface of the conveying belt, a supporting frame is connected to the bottom of the shell in a bolting mode, a collecting box is connected to the bottom of the inner side of the supporting frame in a clamped mode, and a motor is connected to the right side of the shell in a bolting mode. The rotating shaft can support and limit the conveying belt and can drive the conveying belt to do reciprocating motion, the shell can support and limit the rotating shaft and the supporting plate, the conveying belt can drive the recognition mechanism to move, and the supporting frame can support and limit the shell and the collecting box.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of identification device, especially relates to a super large block material identification device. BACKGROUND

[0002] The super large block material identification device has a wide range of applications and can be used in mining, construction, logistics and other fields, for example, in the mining field, the device can be used to automatically identify the ore type, grade and other information of a mine, thereby improving the mining efficiency, and in the construction field, the device can be used to automatically identify the type, size and other information of building materials, thereby improving the construction efficiency.

[0003] At present, the Chinese utility model with publication number CN210207691U discloses a material type identification device, which comprises a fixed disc, a rotating disc coaxially connected to the fixed disc, the rotating disc rotating around the central axis of the fixed disc, at least two carriers respectively used for accommodating different types of materials arranged along the circumference of the rotating disc, an inductive sheet corresponding to the carriers arranged along the circumference of the rotating disc, at least two inductors arranged along the circumference of the fixed disc and corresponding to the carriers and used for sensing the rotation angle of the inductive sheet, and a control assembly in which the types of materials on the carriers before the rotation of the rotating disc are pre-stored, the control assembly being electrically connected to the inductors and used for calculating the types of materials on the carriers after the rotation of the rotating disc according to the pre-stored types of materials and the rotation angle.

[0004] When identifying super large block materials, a material type identification device is used, and a super large block material identification device is one of the devices, but the existing material type identification device lacks a structure for identifying and collecting super large block materials, so that the super large materials can block the conveyor belt, affecting the efficiency of subsequent users in processing the materials. UTILITY MODEL CONTENTS

[0005] The utility model provides a super large block material identification device, which aims to solve the problem that the existing material type identification device lacks a structure for identifying and collecting super large block materials, so that the super large materials can block the conveyor belt, affecting the efficiency of subsequent users in processing the materials.

[0006] The utility model is implemented as follows: a super large block material identification device comprises a connecting rod and an identification mechanism, rotating shafts are attached to the left and right sides of the connecting rod, a shell is attached to the side of the rotating shaft away from the connecting rod, a conveyor belt is sleeved on the surface of the rotating shaft, the identification mechanism is slidingly connected to the surface of the conveyor belt, a support frame is attached to the bottom of the shell, a collection box is clamped to the bottom of the inner side of the support frame, and a motor is attached to the right side of the shell.

[0007] The recognition mechanism comprises a placing disc, a connecting hole, a pull spring, a moving frame, a moving disc, a supporting plate and a stopper, the placing disc is slidably connected to the surface of the conveying belt, the connecting hole is formed in the inner side of the placing disc, the spring is bolted to the bottom of the placing disc, the moving frame is bolted to the bottom of the spring, the moving disc is slidably connected to the inner side of the moving frame, the supporting plate is bolted to the inner side of the shell, and the stopper is bolted to the top of the supporting plate.

[0008] In order to protect the limiting plate, preferably, the front side of the stopper is provided with a buffer pad, and the surface of the buffer pad is coated with anticorrosive paint.

[0009] In order to protect the placing disc, preferably, the surface of the placing disc is provided with a protective pad, and the surface of the protective pad is coated with anticorrosive paint.

[0010] In order to reset the moving disc, preferably, the front side of the inner side of the moving frame is provided with a spring, and the surface of the spring is coated with anticorrosive paint.

[0011] In order to buffer the moving disc, preferably, the rear side of the inner side of the moving frame is provided with a rubber pad, and the surface of the rubber pad is coated with anticorrosive paint.

[0012] In order to prevent the support frame from slipping, preferably, the bottom of the support frame is provided with a protective pad, and the surface of the protective pad is provided with anti-skid lines.

[0013] In order to protect the rotating shaft, preferably, the surface of the rotating shaft is provided with a protective shell, the surface of the protective shell is provided with anti-skid lines, and the side, away from the rotating shaft, of the protective shell is rotatably connected to the conveying belt.

[0014] In order to increase the stability of the bolt connection between the motor and the shell, preferably, the bottom of the motor is provided with a base, and the side, away from the motor, of the base is bolted to the right side of the shell.

[0015] Compared with the prior art, the utility model has the advantages that:

[0016] The super large block material identification device, through the setting connecting rod, the connecting rod can support and limit the rotating shaft and the shell, the rotating shaft can support and limit the conveying belt and can drive the conveying belt to reciprocating motion, the shell can support and limit the rotating shaft and the supporting plate, the conveying belt can drive the identification mechanism to move, the supporting frame can support and limit the shell and the collection box, the collection box can collect the super large block material, the motor can drive the rotating shaft to rotate, the placing disc can allow the user to place the material, the connecting hole can make the material from the placing disc enter the surface on the top of the moving disc, the tension spring can drive the moving frame to reset, the moving frame can limit and support the moving disc and the limiting plate, and can move downward through the weight of the super large block material, the moving disc can drive the super large block material to move to the front side, the supporting plate can limit and support the abutting block, and when the abutting block on the surface of the moving disc drives the moving frame to move downward, the limiting plate at the bottom of the moving frame is clamped, the moving plate moves to the front side, so that the super large block material is identified and collected, and the conveying belt is prevented from being blocked, thereby improving the efficiency of the user in subsequent processing of the material. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is an overall structural diagram of the super large block material identification device of the utility model;

[0018] Figure 2 It is a structural schematic view of the placing disc in the utility model;

[0019] Figure 3 It is a structural schematic view of the shell in the utility model;

[0020] Figure 4 It is a structural schematic view of the protective shell in the utility model;

[0021] Figure 5 It is a structural schematic view of the rubber pad in the utility model;

[0022] Figure 6 It is the utility model Figure 3 The enlarged schematic view in A is shown.

[0023] In the drawing, 1, connecting rod; 2, identification mechanism; 201, placing disc; 202, connecting hole; 203, tension spring; 204, moving frame; 205, moving disc; 206, supporting plate; 207, abutting block; 208, limiting plate; 3, rotating shaft; 4, shell; 5, conveying belt; 6, supporting frame; 7, collection box; 8, motor; 9, buffer pad; 10, protective pad; 11, spring; 12, rubber pad; 13, protective pad; 14, protective shell; 15, base. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical scheme and advantages of the utility model clearer and more apparent, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and are not used to limit the utility model.

[0025] In the description of the utility model, it should be understood that the directions or position relations indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like are the directions or position relations shown in the drawings, and are only used to facilitate the description of the utility model and simplify the description, and are not used to indicate or imply that the devices or elements indicated must have a particular direction, be constructed and operated in a particular direction, and therefore cannot be understood as a limitation on the utility model. In addition, in the description of the utility model, the meaning of "multiple" is two or more than two, unless otherwise specifically limited.

[0026] Please refer to Figures 1-5 The utility model provides technical scheme: a kind of super large block material identification device, connecting rod 1 and identification mechanism 2 are included, both sides of connecting rod 1 are bolted with rotating shaft 3, rotating shaft 3 is bolted with shell 4 on the side away from connecting rod 1, rotating shaft 3 is equipped with conveyor belt 5 on the surface, identification mechanism 2 is slidably connected on the surface of conveyor belt 5, the bottom of shell 4 is bolted with support frame 6, the bottom of the inner side of support frame 6 is clamped with collection box 7, motor 8 is bolted with the right side of shell 4;

[0027] Identification mechanism 2 includes placing disc 201, connecting hole 202, tension spring 203, moving frame 204, moving disc 205, support plate 206, block 207 and limit plate 208, placing disc 201 is slidably connected on the surface of conveyor belt 5, connecting hole 202 is opened in the inner side of placing disc 201, tension spring 203 is bolted on the bottom of placing disc 201, moving frame 204 is bolted on the bottom of tension spring 203, moving disc 205 is slidably connected on the inner side of moving frame 204, support plate 206 is bolted on the inner side of shell 4, block 207 is bolted on the top of support plate 206, limit plate 208 is bolted on the bottom of moving disc 205.

[0028] In the embodiment, the connecting rod 1 can support and limit the rotating shaft 3 and the shell 4, the rotating shaft 3 can support and limit the conveying belt 5 and drive the conveying belt 5 to reciprocate, the shell 4 can support and limit the rotating shaft 3 and the supporting plate 206, the conveying belt 5 can drive the identification mechanism 2 to move, the supporting frame 6 can support and limit the shell 4 and the collecting box 7, the collecting box 7 can collect oversized materials, the motor 8 can drive the rotating shaft 3 to rotate, the placing disc 201 can place materials, the connecting hole 202 can make the materials enter the surface on the top of the moving disc 205 from the placing disc 201, the tension spring 203 can drive the moving frame 204 to reset, the moving frame 204 can limit and support the moving disc 205 and the limiting plate 208 and can move downwards under the weight of the oversized materials, the moving disc 205 can drive the oversized materials to move towards the front side, the supporting plate 206 can limit and support the resisting block 207, and when the moving frame 204 moves downwards under the driving of the oversized materials on the surface of the moving disc 205, the resisting block 207 can clamp the limiting plate 208 at the bottom of the moving frame 204, so that the moving plate moves towards the front side, thereby identifying and collecting the oversized materials and preventing the conveying belt 5 from being blocked, and the efficiency of subsequent processing of the materials by the user is improved.

[0029] As a technical optimization scheme of the utility model, the front side of the resisting block 207 is bolted with a buffer pad 9, and the surface of the buffer pad 9 is coated with anticorrosive paint.

[0030] In the embodiment, the buffer pad 9 can reduce the impact force when the resisting block 207 is clamped with the limiting plate 208, increase the service life of the resisting block 207 and the limiting plate 208, and the anticorrosive paint can prevent the buffer pad 9 from rusting after long-term use.

[0031] As a technical optimization scheme of the utility model, the surface of the placing disc 201 is bolted with a protective pad 10, and the surface of the protective pad 10 is coated with anticorrosive paint.

[0032] In the embodiment, the protective pad 10 can protect the surface of the placing disc 201 from being in contact with the oversized materials for a long time, thereby preventing the placing disc 201 from being damaged due to abrasion, and the anticorrosive paint can prevent the protective pad 10 from rusting after long-term use.

[0033] As a technical optimization scheme of the utility model, the front side of the inner side of the moving frame 204 is bolted with a spring 11, and the surface of the spring 11 is coated with anticorrosive paint.

[0034] In the embodiment, the spring 11 is arranged, when the moving disc 205 is moved forward, the spring 11 is pressed, after the large material on the surface of the moving disc 205 falls, the spring 11 rebounds the moving disc 205 to the rear side, the moving disc 205 is reset, the anticorrosive paint is arranged, and the spring 11 is prevented from rusting after long time use.

[0035] As the technical optimization scheme of the utility model, the rear of the inner side of the moving frame 204 is bolted with a rubber pad 12, and the surface of the rubber pad 12 is coated with anticorrosive paint.

[0036] In the embodiment, the rubber pad 12 is arranged, when the moving disc 205 is reset by the spring 11, the moving disc 205 is protected, the moving disc 205 is prevented from impacting the inner side of the moving frame 204, the impact force of the moving disc 205 is reduced, the moving disc 205 is prevented from rebounding to the front side, the anticorrosive paint is arranged, and the rubber pad 12 is prevented from rusting after long time use.

[0037] As the technical optimization scheme of the utility model, the bottom of the support frame 6 is bolted with a protective pad 13, and the surface of the protective pad 13 is engraved with anti-skid lines.

[0038] In the embodiment, the bottom of the support frame 6 is protected by the protective pad 13, the friction of the protective pad 13 is increased by the anti-skid lines, and the support frame 6 is prevented from slipping accidentally.

[0039] As the technical optimization scheme of the utility model, the surface of the rotating shaft 3 is bolted with a protective shell 14, the surface of the protective shell 14 is engraved with anti-skid lines, and the side, away from the rotating shaft 3, of the protective shell 14 is rotationally connected with the conveying belt 5.

[0040] In the embodiment, the rotating shaft 3 is protected by the protective shell 14, the friction of the surface of the protective shell 14 is increased by the anti-skid lines, and the conveying belt 5 and the rotating shaft 3 are prevented from slipping.

[0041] As the technical optimization scheme of the utility model, the bottom of the motor 8 is bolted with a base 15, and the side, away from the motor 8, of the base 15 is bolted with the right side of the shell 4.

[0042] In the embodiment, the stability of the bolted connection between the motor 8 and the shell 4 is increased by the base 15.

[0043] Working principle: first, the user will support frame 6 to the required work site, will be collected box 7 card to the bottom of the inside of support frame 6, then the user power on and start the motor 8, the motor 8 will drive the connecting rod 1 rotation, connecting rod 1 will drive the rotation shaft 3 rotation, rotation shaft 3 will drive the conveyor belt 5 rotation, in the conveyor belt 5 rotation, will drive the placement disc 201 move, after the user will material placed in the surface of the placement disc 201, small material will be conveyed to the next processing site by conveyor belt 5, large processing material will be due to its own weight from the connecting hole 202 drop into the surface of the moving disc 205, the moving disc 205 will drive the moving frame 204 to move down, in the moving frame 204 and moving disc 205 move down, the conveyor belt 5 drive the placement disc 201 forward movement, the limit plate 208 at the bottom of the moving disc 205 will be in contact with the block 207 on the top of the support plate 206 card, then the conveyor belt 5 drive the placement disc 201 forward movement will be moving disc 205 forward push, while moving disc 205 forward push will extrude the spring 11, the spring 11 generates pressure, moving disc 205 in moving to the front side of the moving frame 204, due to the weight of the super large block material will tilt, super large block material will drop into the inside of the collection box 7, finally due to the super large block material drop into the collection box 7, the surface of the moving disc 205 has no weight pressure, the pressure of the spring 11 will release the moving disc 205 reset, when the moving disc 205 reset will be in contact with the rubber pad 12, the rubber pad 12 will absorb the impact force of the moving disc 205, prevent the moving disc 205 in front of the side movement, after the moving disc 205 reset, the moving frame 204 due to no gravity pressure, will be reset to the bottom of the placement disc 201 by the tension spring 203 moving frame 204 reset can.

[0044] The above is only the preferred embodiment of the present application, and does not limit the present application, any modification, equivalent replacement and improvement within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A device for identifying supermassive objects, comprising a connecting rod (1) and an identification mechanism (2), characterized in that: Both sides of the connecting rod (1) are bolted with rotating shaft (3), the side away from the connecting rod (1) of rotating shaft (3) is bolted with shell (4), the surface of rotating shaft (3) is sleeved with conveyor belt (5), the surface of identification mechanism (2) is slidably connected with conveyor belt (5), the bottom of shell (4) is bolted with support frame (6), the bottom of the inner side of support frame (6) is clamped with collecting box (7), the right side of shell (4) is bolted with motor (8). The identification mechanism (2) includes placement disc (201), connecting hole (202), tension spring (203), moving frame (204), moving disc (205), support plate (206), abutment block (207) and limiting plate (208), the surface of placement disc (201) is slidably connected with conveyor belt (5), the inner side of placement disc (201) is provided with connecting hole (202), the bottom of placement disc (201) is bolted with tension spring (203), the bottom of tension spring (203) is bolted with moving frame (204), the inner side of moving frame (204) is slidably connected with moving disc (205), the inner side of shell (4) is bolted with support plate (206), the top of support plate (206) is bolted with abutment block (207), the bottom of moving disc (205) is bolted with limiting plate (208).

2. The apparatus of claim 1, wherein: The front side of abutment block (207) is bolted with buffer pad (9), the surface of buffer pad (9) is coated with anticorrosive paint.

3. The apparatus of claim 1, wherein: The surface of placement disc (201) is bolted with protective pad (10), the surface of protective pad (10) is coated with anticorrosive paint.

4. The apparatus of claim 1, wherein: The front side of the inner side of moving frame (204) is bolted with spring (11), the surface of spring (11) is coated with anticorrosive paint.

5. The apparatus of claim 1, wherein: The rear side of the inner side of moving frame (204) is bolted with rubber pad (12), the surface of rubber pad (12) is coated with anticorrosive paint.

6. The apparatus of claim 1, wherein: The bottom of support frame (6) is bolted with protective pad (13), the surface of protective pad (13) is engraved with anti-skid lines.

7. The apparatus of claim 1, wherein: The surface of rotating shaft (3) is bolted with protective shell (14), the surface of protective shell (14) is engraved with anti-skid lines, the side away from rotating shaft (3) of protective shell (14) is rotatably connected with conveyor belt (5).

8. The apparatus of claim 1, wherein: The bottom of motor (8) is bolted with base (15), the side away from motor (8) of base (15) is bolted with the right side of shell (4).

Citation Information

Patent Citations

  • Material type identification device

    CN210207691U