Magnesium-chromium sand product sorting equipment

By setting up a specification detection mechanism on the magnesium sand conveyor belt, the width and height of the magnesium sand products are automatically detected, and the unqualified products are picked out by using a motor-driven push rod, which solves the problem of low manual picking efficiency and achieves the improvement of automated picking and production efficiency.

CN223234435UActive Publication Date: 2025-08-19YINKOU PINRUI COMPOUND FIRE RESISTANCE MATERIALS
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Patent Information

Application Number
CN202422049576.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-08-19
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

The selection of existing magnesium sand products mainly relies on manual verification, resulting in large workload and low efficiency, which affects production efficiency.

Method used

A specification detection mechanism is set on the material barrier plate of the magnesium sand conveyor belt, and the specifications of the magnesium sand product are detected in real time through the width and height detection components. The electrical signal is transmitted to the picking mechanism. The power supply motor drives the telescopic push rod to push the unqualified product to the discharge port and falls into the discharge channel.

Benefits of technology

It realizes automatic picking of magnesium sand products, reduces manual participation, improves picking efficiency, and indirectly improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223234435U_ABST
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Abstract

The magnesium-chromium sand product sorting equipment comprises a magnesia conveying belt, a striker plate is installed on the magnesia conveying belt, a sorting mechanism is arranged between the magnesia conveying belt and the striker plate, a discharge port is formed in the striker plate corresponding to the sorting mechanism, and a specification detection mechanism is arranged at the end, close to the sorting mechanism, of the striker plate. The specification detection mechanism comprises a width detection assembly and a height detection assembly, the sorting mechanism comprises an extended material plate, and the specification detection mechanism arranged on a material baffle of the magnesia conveying belt is used for performing specification detection on the width and the height of a magnesia product in the conveying process; in the detection process, information of unqualified magnesia products is transmitted into the sorting mechanism through electric signals, a power supply motor in the sorting mechanism supplies power to operate, finally, a material pushing hand pushes out the unqualified magnesia products from the discharging port end, the unqualified magnesia products fall into a discharging channel, sorting is completed, manual participation is reduced, the sorting efficiency is improved, and the labor intensity of workers is reduced. And the production efficiency of magnesia products is indirectly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of sorting equipment, in particular to a magnesia-chrome sand product sorting equipment. Background Art

[0002] During the production process of magnesia products, the magnesia products after production and molding need to be inspected for quality and specifications, and the magnesia products that do not meet the production specifications need to be sorted and eliminated. Most of the existing magnesia product picking is done through manual verification, resulting in a large workload for picking magnesia products and poor picking efficiency, which affects the production efficiency of magnesia products.

[0003] Therefore, in view of the shortcomings of the existing technology, it is necessary to provide a magnesia-chrome sand product sorting equipment to solve the shortcomings of the existing technology. Utility Model Content

[0004] The purpose of the present invention is to avoid the deficiencies of the prior art and to provide a magnesia-chrome sand product picking device, which performs specification detection on the width and height of the magnesia product during the conveying process through a specification detection mechanism arranged on the baffle plate of the magnesia conveyor belt. During the detection process, the information of unqualified magnesia products is transmitted to the picking mechanism through an electrical signal, and the power supply motor in the picking mechanism is powered and operated, so that the material pusher finally pushes the unqualified magnesia product out from the discharge port end and drops it into the unloading channel to complete the picking, thereby reducing manual participation, improving the picking efficiency, and indirectly increasing the production efficiency of magnesia products.

[0005] The above-mentioned purpose of the present invention is achieved through the following technical means.

[0006] Provided is a magnesia-chrome sand product picking device, comprising a magnesia sand conveyor belt, a baffle plate installed on the magnesia sand conveyor belt, a picking mechanism provided in the middle of the magnesia sand conveyor belt and the baffle plate, and a discharge port provided on the baffle plate corresponding to the picking mechanism;

[0007] A specification detection mechanism is provided on the baffle plate near the picking mechanism end, and the specification detection mechanism includes a width detection component and a height detection component;

[0008] The picking mechanism includes an extended material plate, on which a control electrical box is installed, a power supply motor is provided inside the control electrical box, the power supply motor is connected to an electric pressure pump, a telescopic push rod is installed on the electric pressure pump, the telescopic push rod passes through the extended material plate, and a material pushing hand is installed on the top of the telescopic push rod.

[0009] Specifically, the width detection component includes an extension block, which is obliquely installed on the material blocking plate and close to the picking mechanism. An infrared sensor is installed on the extension block.

[0010] Specifically, the height detection component includes two groups of special-shaped blocks, the two groups of special-shaped blocks are arranged inside the baffle plate, the two groups of special-shaped blocks are installed correspondingly, and sensors are provided on the two groups of special-shaped blocks.

[0011] Specifically, rubber buffer layers are provided at both ends of the material pushing hand, and a buffer groove is provided at the top of the material pushing hand.

[0012] Specifically, a material discharge channel is installed at the discharge port end, the bottom of the material discharge channel is inclined and diffused, and the material discharge channel corresponds to the material pushing hand.

[0013] The utility model detects the specifications of the width and height of the magnesia products during the conveying process through a specification detection mechanism arranged on the baffle plate of the magnesia conveyor belt. During the detection process, the information of unqualified magnesia products is transmitted to the picking mechanism through an electric signal. The power supply motor in the picking mechanism is powered and operated, and finally the material pushing hand pushes the unqualified magnesia products out from the discharge port end and drops them into the unloading channel to complete the picking, reducing manual participation, improving the picking efficiency, and indirectly increasing the production efficiency of magnesia products. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] The present invention is further described with reference to the accompanying drawings, but the contents in the accompanying drawings do not constitute any limitation to the present invention.

[0015] Figure 1 This is a structural diagram of a magnesia-chrome sand product sorting device of the utility model.

[0016] Figure 2 The utility model is a structural diagram of a specification detection mechanism of magnesia-chrome sand product sorting equipment.

[0017] Figure 3 The utility model is a structural diagram of a picking mechanism in a magnesia-chrome sand product picking device.

[0018] from Figures 1 to 3 Including:

[0019] 1. Magnesia conveyor belt;

[0020] 2. Baffle plate;

[0021] 3. Selection mechanism;

[0022] 4. Discharge port;

[0023] 5. Specification testing agency;

[0024] 6. Height detection component;

[0025] 7. Width detection component;

[0026] 8. Extend the material plate;

[0027] 9. Control electrical box;

[0028] 10. Power supply motor;

[0029] 11. Electric pressure pump;

[0030] 12. Telescopic push rod;

[0031] 13. Material pusher;

[0032] 14. Extension block;

[0033] 15. Infrared sensor;

[0034] 16. Special-shaped blocks;

[0035] 17. Sensor;

[0036] 18. Rubber buffer layer;

[0037] 19. Buffer groove;

[0038] 20. Unloading channel. DETAILED DESCRIPTION

[0039] The present invention will be further described with reference to the following embodiments.

[0040] Example 1.

[0041] like Figure 1-3 As shown, a magnesia-chrome sand product picking device includes a magnesia sand conveyor belt 1, a baffle plate 2 is installed on the magnesia sand conveyor belt 1, a picking mechanism 3 is set in the center of the magnesia sand conveyor belt 1 and the baffle plate 2, and a discharge port 4 is opened on the baffle plate 2 corresponding to the picking mechanism 3.

[0042] The processed magnesia products will be conveyed on the magnesia conveyor belt 1. During the conveying process, the baffle plate 2 will limit the position to ensure that the magnesia products are conveyed and moved on the magnesia conveyor belt 1. After being sorted by the picking mechanism 3 installed on the magnesia conveyor belt 1, the unqualified magnesia products will be picked out from the discharge port 4. The fully automated picking process reduces manpower consumption.

[0043] A specification detection mechanism 5 is provided near the end of the baffle plate 2 near the picking mechanism 3. The specification detection mechanism 5 includes a width detection component 7 and a height detection component 6. The specification detection mechanism 5 provided on the baffle plate 2 gradually detects the height of the magnesia product through height detection, and the width of the magnesia product is detected by the width component. At the same time, the specification detection mechanism 5 can be transmitted through electrical signals.

[0044] The picking mechanism 3 includes an extended material plate 8, on which a control electrical box 9 is installed. A power supply motor 10 is provided inside the control electrical box 9. The power supply motor 10 is connected to an electric pressure pump 11, and a telescopic push rod 12 is installed on the electric pressure pump 11. The telescopic push rod 12 passes through the extended material plate 8, and a material pushing hand 13 is installed on the top of the telescopic push rod 12.

[0045] The electrical signal of the specification detection mechanism 5 is input into the control box 9, and the power supply motor 10 in the control box 9 drives the electric pressure pump 11, and the electric pressure pump 11 drives the telescopic push rod 12. The telescopic push rod 12 can push the material pushing hand 13, so that the material pushing hand 13 moves on the extended material plate 8, and the magnesia products on the magnesia conveyor belt 1 are discharged, so as to facilitate the picking of unqualified magnesia products.

[0046] The width detection component 7 includes an extension block 14, which is installed at an angle on the material blocking plate 2. The extension block 14 is close to the picking mechanism 3. An infrared sensor 15 is installed on the extension block 14. Since the height of the extension block 14 is fixed, the infrared sensor 15 set on the extension block 14 can sense horizontally and detect the height of the passing magnesia product in real time.

[0047] The height detection component 6 includes two groups of special-shaped blocks 16, which are arranged inside the baffle plate 2. The two groups of special-shaped blocks 16 are installed correspondingly. Sensors 17 are provided on the two groups of special-shaped blocks 16. Magnesium sand products can pass between the two groups of special-shaped blocks 16. The magnesia sand products passing through can be sensed by the sensor 17 and the signal of unqualified products can be transmitted to the control box 9.

[0048] Rubber buffer layers 18 are provided at both ends of the material pushing hand 13, and a buffer groove 19 is provided on the top of the material pushing hand 13. The setting of the rubber buffer layer 18 can prevent the material pushing hand 13 from rubbing against the extended material plate 8, and prevent the material pushing hand 13 from frictional deformation. The buffer groove 19 can continue to twist and buffer when the material pushing hand 13 collides with the magnesia product, thereby preventing damage to the magnesia product.

[0049] A feeding channel 20 is installed at the end of the discharge port 4. The bottom of the feeding channel 20 is inclined and diffused. The feeding channel 20 corresponds to the material pushing hand 13. The magnesia product pushed by the material pushing hand 13 can fall into the feeding channel 20 through the discharge port 4 to achieve rapid feeding.

[0050] During the production process, the width and height of the magnesia products are inspected during the conveying process by the specification inspection mechanism 5 set on the baffle plate 2 of the magnesia conveyor belt 1. During the inspection process, the information of unqualified magnesia products is transmitted to the picking mechanism 3 through an electrical signal. The power supply motor 10 in the picking mechanism 3 is powered and operated, and finally the material pushing hand 13 pushes the unqualified magnesia products out from the discharge port 4 and drops them into the unloading channel 20 to complete the picking, thereby reducing manual participation, improving the picking efficiency, and indirectly increasing the production efficiency of magnesia products.

[0051] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention and are not intended to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solution of the present invention may be modified or replaced by equivalents without departing from the essence and scope of the technical solution of the present invention.

Claims

1. A magnesia-chrome sand product sorting device, characterized by: It includes a magnesia conveyor belt, a baffle plate is installed on the magnesia conveyor belt, a picking mechanism is provided in the center of the magnesia conveyor belt and the baffle plate, and a discharge port is provided on the baffle plate corresponding to the picking mechanism; The baffle plate is provided with a specification detection mechanism near the picking mechanism end, and the specification detection mechanism includes a width detection component and a height detection component; The picking mechanism includes an extended material plate, a control electrical box is installed on the extended material plate, a power supply motor is provided inside the control electrical box, the power supply motor is connected to an electric pressure pump, a telescopic push rod is installed on the electric pressure pump, the telescopic push rod passes through the extended material plate, and a material pushing hand is installed on the top of the telescopic push rod.

2. The magnesia-chrome sand product sorting equipment according to claim 1, characterized in that: The width detection component includes an extension block, which is obliquely installed on the baffle plate and close to the picking mechanism. An infrared sensor is installed on the extension block.

3. The magnesia-chrome sand product sorting equipment according to claim 2, characterized in that: The height detection component includes two groups of special-shaped blocks, the two groups of special-shaped blocks are arranged inside the baffle plate, the two groups of special-shaped blocks are installed correspondingly, and sensors are arranged on the two groups of special-shaped blocks.

4. The magnesia-chrome sand product sorting equipment according to claim 3, characterized in that: Both ends of the material pushing hand are provided with rubber buffer layers, and the top of the material pushing hand is provided with a buffer groove.

5. The magnesia-chrome sand product sorting equipment according to claim 4, characterized in that: The discharge port end is provided with a material discharge channel, the bottom of the material discharge channel is in an inclined diffusion shape, and the material discharge channel corresponds to the material pushing hand.