Machine body structure of image screening machine

By installing protective devices on the image screening machine body, and utilizing gas compression buffering and multi-layer material combinations, the problem of easy deformation of the machine body has been solved, achieving higher impact resistance and reduced maintenance costs.

CN223662455UActive Publication Date: 2025-12-12NINGGUO WANCHANG METAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520205663.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2025-12-12
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

Existing image screening machines are prone to deformation due to collisions during transportation and use, increasing maintenance costs.

Method used

Protective devices are installed in the body structure of the image screening machine, including anti-collision plates, telescopic rods and mounting cavities. The collision force is consumed by the movement of the telescopic rods through a gas compression buffering mechanism, and support and buffering are provided by a combination of metal reinforcement layer, rubber honeycomb layer and adhesive layer.

Benefits of technology

It effectively reduces deformation of the machine body during collisions, lowers maintenance costs, improves the equipment's impact resistance, and enhances protection during use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a machine body structure of an image screening machine, which belongs to the technical field of image screening machines and comprises a screening machine and a feeding machine arranged on one side of the screening machine, a mounting seat is fixed between the bottom of the screening machine and the bottom of the feeding machine, and a protective device is arranged on the mounting seat. The protection device comprises four anti-collision plates arranged on the periphery of the installation base and telescopic rods arranged between the installation base and the anti-collision plates, installation cavities corresponding to the telescopic rods are formed in the outer wall of the installation base, one ends of the telescopic rods are installed in the installation cavities in a sliding mode, and the other ends of the telescopic rods are fixedly connected with the anti-collision plates. Through the arrangement of the protection device, the compressor rushes air into the cavity through the air tap at the bottom of the cavity, when the anti-collision plate is collided, the telescopic rod moves towards the interior of the mounting cavity, and a large amount of air in the mounting cavity is compressed in the moving process of the telescopic rod, so that a buffering effect is achieved; and a buffering protection effect is achieved when the device is impacted.
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Description

Technical Field

[0001] This utility model belongs to the field of image sorting machine technology, and specifically relates to the body structure of an image sorting machine. Background Technology

[0002] In today's era of rapid scientific and technological advancements and labor shortages, optical image sorting machines and other automated testing equipment are playing an increasingly important role in various industries. They effectively control product defect rates, improve product quality, reduce customer complaints, enhance the competitiveness of company products, facilitate market expansion, and reduce labor costs. Optical image sorting machines are widely used in modern manufacturing industries such as fasteners, hardware, electronics, automotive, powder metallurgy, instrumentation, medical equipment, aerospace, and communication equipment. They are also ideal equipment for grading, impurity removal, mixing, sorting, filtration, and solid-liquid separation in industries such as food, beverage, chemical, plastics, abrasives, ceramics, papermaking, and nanomaterials.

[0003] Currently, most image sorting machines on the market are made of sheet metal with glass windows, making them extremely prone to collisions during transportation and use. Since the machines lack anti-collision structures, they are easily deformed after a collision, increasing maintenance costs. Utility Model Content

[0004] The purpose of this utility model is to provide a body structure for an image sorting machine to solve the problems mentioned in the background art. To achieve the above objective, this utility model provides the following technical solution: it includes a sorting machine and a feeding machine disposed on one side of the sorting machine, a mounting base is fixed between the bottom of the sorting machine and the feeding machine, and a protective device is provided on the mounting base;

[0005] The protective device includes four anti-collision plates respectively disposed around the mounting base and a telescopic rod disposed between the mounting base and the anti-collision plates. The outer wall of the mounting base has a mounting cavity corresponding to the telescopic rod. One end of the telescopic rod is slidably installed in the mounting cavity, and the other end of the telescopic rod is fixedly connected to the anti-collision plate. The mounting base has a cavity inside, and a connecting pipe is disposed in the cavity. One end of the connecting pipe passes through the mounting cavity.

[0006] It should be noted in the solution that the outer wall of the end of the telescopic rod that enters the mounting cavity is provided with several mounting grooves, and a sealing ring is fixedly installed in the mounting groove.

[0007] It should be noted in the solution that four rectangularly distributed threaded support feet and movable rollers are fixedly installed on the bottom surface of the mounting base.

[0008] It should be noted in the solution that the anti-collision plate has a fixing sleeve that matches the telescopic rod on the side facing the mounting base. The fixing sleeve has a fixing hole, and the outer wall of the telescopic rod has a mounting hole corresponding to the fixing hole.

[0009] It should be noted in the solution that the anti-collision plate includes a metal reinforcement layer, an adhesive layer and a rubber honeycomb layer, with the adhesive layer installed between the metal reinforcement layer and the rubber honeycomb layer.

[0010] It should be noted in the solution that an air nozzle is installed at the bottom of the cavity.

[0011] Compared with the prior art, the image screening machine structure provided by this utility model has at least the following beneficial effects:

[0012] (1) With the installation of the protective device, when in use, the gas is injected into the cavity through the air nozzle at the bottom of the cavity by the compressor, so that one end of the telescopic rod in the cavity is inserted through the mounting seat. When the anti-collision plate is hit, the telescopic rod moves into the mounting cavity. During the movement of the telescopic rod, a large amount of air in the mounting cavity will be compressed. In this process, the impact force on the anti-collision plate will be consumed until the impact force on the anti-collision plate can no longer compress the air in the mounting cavity. At this time, the telescopic rod will move out of the mounting seat until the air in the mounting cavity returns to the state before compression, which plays a buffering role and has a buffering protection effect when hit.

[0013] (2) Through the setting of the anti-collision plate, the metal reinforcement layer can play a good supporting role in actual use, the rubber honeycomb layer can play a certain buffering role, and the rubber honeycomb layer can also protect the object that hits the rubber honeycomb layer. The adhesive layer can effectively connect the metal reinforcement layer and the rubber honeycomb layer together. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the product of this utility model;

[0015] Figure 2 This is a bottom view structural diagram of the product of this utility model;

[0016] Figure 3 This is a top view cross-sectional structural diagram of the product of this utility model;

[0017] Figure 4 This is a schematic diagram of the anti-collision plate of the present invention;

[0018] Figure 5 This is an enlarged structural diagram of section A of the product of this utility model.

[0019] In the diagram: 1. Screening machine; 2. Feeding machine; 3. Mounting base; 4. Telescopic rod; 5. Anti-collision plate; 501. Metal reinforcement layer; 502. Adhesive layer; 503. Rubber honeycomb layer; 6. Fixing sleeve; 7. Fixing hole; 8. Mounting cavity; 9. Cavity; 10. Connecting pipe; 11. Sealing ring; 12. Threaded support foot; 13. Moving roller. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0021] Please see Figure 1-5 The body structure of an image sorting machine includes a sorting machine 1 and a feeder 2 disposed on one side of the sorting machine 1;

[0022] The feeder 2 feeds the products to be screened into the trough, which can position and hold products of various specifications. It can detect and screen products of various specifications. The light-transmitting tray component inside the screening machine 1 is made of light-transmitting material. The rotation of the light-transmitting tray component drives the products to be screened to rotate at a certain angle. When the product moves above the light source component, the product is located between the camera component and the light source component. The camera component captures and identifies the product, and the light source component emits light, which can improve the clarity of the image and facilitate accurate identification, further improving the accuracy of screening. The equipment inside the screening machine 1 has high precision requirements. During transportation or use, collisions with the surroundings of the screening machine 1 and the feeder 2 can easily cause damage and increase the cost of use.

[0023] Furthermore, referring to Figure 1-5 As shown, a mounting base 3 is fixed between the bottom of the screening machine 1 and the feeding machine 2. The mounting base 3 is equipped with a protective device, which includes four anti-collision plates 5 respectively arranged around the mounting base 3 and a telescopic rod 4 arranged between the mounting base 3 and the anti-collision plates 5. The outer wall of the mounting base 3 is provided with a mounting cavity 8 corresponding to the telescopic rod 4. One end of the telescopic rod 4 is slidably installed in the mounting cavity 8, and the other end of the telescopic rod 4 is fixedly connected to the anti-collision plates 5. The mounting base 3 is provided with a cavity 9. A connecting pipe 10 is provided in the cavity 9. One end of the connecting pipe 10 passes through the mounting cavity 8. An air nozzle is installed at the bottom of the cavity 9.

[0024] With the protective device in place, during use, gas is forced into cavity 9 through a nozzle at the bottom of cavity 9 by a compressor. An electronic valve is connected to the nozzle, allowing one end of the telescopic rod 4 in the mounting cavity 8 to extend out of the mounting base 3. When the anti-collision plate 5 is impacted, the telescopic rod 4 moves into the mounting cavity 8. During the movement of the telescopic rod 4, a large amount of air in the mounting cavity 8 is compressed. This process consumes the impact force on the anti-collision plate 5 until the impact force on the anti-collision plate 5 can no longer compress the air in the mounting cavity 8. At this point, the telescopic rod 4 moves out of the mounting base 3 until the air in the mounting cavity 8 returns to its pre-compression state, thus providing a buffering effect and offering cushioning protection when impacted.

[0025] Furthermore, referring to Figure 1-5 As shown, it is worth noting that the outer wall of the end of the telescopic rod 4 that enters the mounting cavity 8 is provided with several mounting grooves, and a sealing ring 11 is fixedly installed in the mounting groove;

[0026] By setting the sealing ring 11, during use, the sealing ring 11 can enhance the sealing effect between the telescopic rod 4 and the mounting base 3, so that the air in the mounting cavity 8 will not escape, and the gas in the mounting cavity 8 will not escape when the anti-collision plate 5 is impacted.

[0027] Furthermore, referring to Figure 1-5 As shown, it is worth noting that four rectangularly distributed threaded support feet 12 and movable rollers 13 are fixedly installed on the bottom surface of the mounting base 3;

[0028] With the threaded support feet 12 and the movable rollers 13, the movable rollers 13 allow the screening machine 1 and the feeder 2 to move easily and quickly during actual use, and the feeder 2 allows the screening machine 1 and the feeder 2 to be quickly installed and fixed.

[0029] Furthermore, referring to Figure 1-5 As shown, it is worth noting that the anti-collision plate 5 is provided with a fixing sleeve 6 that matches the telescopic rod 4 on the side facing the mounting base 3. The fixing sleeve 6 is provided with a fixing hole 7, and the outer wall of the telescopic rod 4 is provided with a mounting hole corresponding to the fixing hole 7.

[0030] By setting the fixing sleeve 6, in actual use, the telescopic rod 4 is inserted into the fixing sleeve 6, and then the fixing sleeve 6 and the telescopic rod 4 are fixed together by bolts. This can stably connect the anti-collision plate 5 and the telescopic rod 4 together, so that when the anti-collision plate 5 is hit, the telescopic rod 4 can be stably connected with the anti-collision plate 5.

[0031] Furthermore, referring to Figure 1-5As shown, it is worth noting that the anti-collision plate 5 includes a metal reinforcement layer 501, an adhesive layer 502 and a rubber honeycomb layer 503. The adhesive layer 502 is installed between the metal reinforcement layer 501 and the rubber honeycomb layer 503.

[0032] With the installation of the anti-collision plate 5, in actual use, the metal reinforcement layer 501 can play a good supporting role, the rubber honeycomb layer 503 can play a certain buffering role, and the rubber honeycomb layer 503 can also protect the object that hits the rubber honeycomb layer 503. The adhesive layer 502 can effectively connect the metal reinforcement layer 501 and the rubber honeycomb layer 503 together.

[0033] The above describes the structure of an image screening machine provided by this utility model. Specific preferred embodiments have been used to illustrate the principle and implementation of this utility model. These embodiments are only used to help understand the principle and core idea of ​​this utility model. It should be noted that for those skilled in the art, the implementation schemes in the above embodiments can be further combined or replaced without departing from the design concept of this utility model, and several improvements and modifications can be made to this utility model. These improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A machine body structure of an image screening machine, comprising a screening machine (1) and a feeding machine (2) arranged at one side of the screening machine (1), characterized in that: The bottom between the screening machine (1) and the feeding machine (2) is fixed with a mounting seat (3), and the mounting seat (3) is provided with a protection device; The protection device comprises four anti-collision plates (5) respectively arranged around the mounting seat (3) and telescopic rods (4) arranged between the mounting seat (3) and the anti-collision plates (5), the outer wall of the mounting seat (3) is provided with mounting cavities (8) corresponding to the telescopic rods (4), one end of the telescopic rod (4) is slidably installed in the mounting cavity (8), the other end of the telescopic rod (4) is fixedly connected with the anti-collision plate (5), the mounting seat (3) is internally provided with a cavity (9), the cavity (9) is provided with a connecting pipe (10), and one end of the connecting pipe (10) penetrates into the mounting cavity (8).

2. The body structure of the image screening machine according to claim 1, wherein: The outer wall of one end of the telescopic rod (4) penetrating into the mounting cavity (8) is provided with a plurality of mounting grooves, and the mounting grooves are fixedly installed with sealing rings (11).

3. The body structure of the image screening machine according to claim 2, wherein: The bottom surface of the mounting seat (3) is fixedly installed with four threaded support feet (12) and moving rollers (13) distributed in a rectangular shape.

4. The body structure of the image screening machine according to claim 3, wherein: The side of the anti-collision plate (5) facing the mounting seat (3) is provided with a fixed sleeve (6) matched with the telescopic rod (4), the fixed sleeve (6) is provided with a fixed hole (7), and the outer wall of the telescopic rod (4) is provided with a mounting hole corresponding to the fixed hole (7).

5. The body structure of the image screening machine according to claim 4, wherein: The anti-collision plate (5) comprises a metal reinforcing layer (501), a glue layer (502) and a rubber honeycomb layer (503), and the glue layer (502) is installed between the metal reinforcing layer (501) and the rubber honeycomb layer (503).

6. The body structure of the video screening machine according to claim 1, wherein: The bottom of the cavity (9) is provided with an air nozzle.