Gypsum particle grading screening mechanism

By setting up a dust suction and flushing mechanism in the gypsum particle grading and screening mechanism, the problem of dust pollution during the vibration screening process is solved, and the effects of dust cleaning and equipment cleaning are achieved.

CN223300442UActive Publication Date: 2025-09-05WEIFANG XIANGDESHI NEW BUILDING MATERIALS CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422680300.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-09-05
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The existing gypsum particle grading and screening mechanism generates dust during the vibration screening process, resulting in fly ash inside the equipment polluting the processing environment.

Method used

A dust suction mechanism and a flushing mechanism are set up. The dust suction mechanism absorbs and filters the dust, and the flushing mechanism flushes the equipment to clean the dust and suppress dust pollution.

Benefits of technology

Effectively clean the dust generated during the gypsum particle grading and screening process, keep the equipment clean and prevent environmental pollution.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223300442U_ABST
    Figure CN223300442U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of classified screening of gypsum particles, in particular to a classified screening mechanism for gypsum particles, which is provided with a dust collection mechanism and a flushing mechanism, so that dust generated in a vibrating screening process can be cleaned in the classified screening process of the gypsum particles, and equipment can be flushed; comprising a screening mechanism; the filtering mechanism is installed at the lower end of the screening mechanism, the driving mechanism is installed on the screening mechanism, the dust collection mechanism is installed at the rear end of the screening mechanism, and the flushing mechanism is installed at the left end of the filtering mechanism; the screening mechanism conducts screening, the filtering mechanism conducts filtering, the driving mechanism drives the screening mechanism, the dust suction mechanism conducts dust suction, and the flushing mechanism conducts flushing.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of gypsum particle classification and screening, in particular to a gypsum particle classification and screening mechanism. Background Art

[0002] Gypsum is a monoclinic mineral and a hydrate whose main chemical component is calcium sulfate. Gypsum is a widely used industrial material and building material. It can be used as a cement retarder, gypsum building products, model making, medical food additive, sulfuric acid production, paper filler, paint filler, etc.

[0003] Among the existing gypsum particle grading and screening mechanisms, for example, a gypsum particle grading and screening mechanism disclosed in the utility model patent application number 202221106022.2, the utility model can screen the gypsum ore through the cooperation of the third screen box, the second screen box and the first screen box, and can screen and collect gypsum ores of different particle sizes at the same time, which is time-saving and efficient.

[0004] However, during the gypsum particle classification and screening process, vibration screening will cause the material fragments to generate dust, which will cause fly ash in the equipment to pollute the processing environment. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides a gypsum particle grading and screening mechanism which is equipped with a dust suction mechanism and a flushing mechanism, thereby making it possible to clean the dust generated during the vibration screening process and flush the equipment during the gypsum particle grading and screening process.

[0006] The utility model discloses a gypsum particle grading and screening mechanism, comprising a screening mechanism; a filtering mechanism, a driving mechanism, a dust collecting mechanism and a flushing mechanism, wherein the filtering mechanism is mounted at the lower end of the screening mechanism, the driving mechanism is mounted on the screening mechanism, the dust collecting mechanism is mounted at the rear end of the screening mechanism, and the flushing mechanism is mounted at the left end of the filtering mechanism;

[0007] The screening mechanism performs screening, the filtering mechanism performs filtering, the driving mechanism drives the screening mechanism, the dust suction mechanism performs dust suction, and the flushing mechanism performs flushing; the driving mechanism is turned on to drive the screening mechanism so that the screening mechanism screens the material, and at the same time, the dust is absorbed into the filtering mechanism by turning on the dust suction mechanism to suppress the dust, and the dust is filtered by the filtering mechanism. After the processing is completed, the flushing mechanism is turned on to flush the equipment, so that during the gypsum particle grading and screening process, the dust generated during the vibration screening process can be cleaned and the equipment can be flushed.

[0008] Preferably, the screening mechanism includes a box, multiple groups of screens, a stretcher and multiple groups of springs. The multiple groups of screens and the stretcher are installed in the box through multiple groups of springs, and the stretcher is located under the multiple groups of screens. The materials are graded and screened by the vibration of the multiple groups of screens and the stretcher.

[0009] Preferably, the filtering mechanism includes a water tank and a filter screen. The water tank is installed at the lower end of the box body, and the filter screen is slidably installed in the water tank; impurities in the water are filtered through the filter screen.

[0010] Preferably, the driving mechanism includes a connecting rod, a motor, a disc and a connecting rod, the connecting rod is installed at the rear end of multiple groups of screens and stretchers, the motor is installed at the upper end of the box, the disc is connected to the output end of the motor, the connecting rod is rotatably installed at the rear end of the disc, and the connecting rod is rotatably connected to the connecting rod; the disc is rotated by turning on the motor to drive the disc, and while the disc rotates, it cooperates with the connecting rod to drive the connecting rod so that the connecting rod drives the screen and stretcher to vibrate.

[0011] Preferably, the dust collection mechanism includes a fan and an air duct, the fan is installed at the rear end of the box, the air duct input end is connected to the fan output end, and the air duct output end extends into the water tank; by turning on the fan, the dust generated by the screening vibration is discharged into the water tank through the air duct to suppress dust.

[0012] Preferably, the flushing mechanism includes a pump, a nozzle and a water pipe, the pump is installed at the left end of the water tank, the nozzle is installed inside the tank, and the pump output end and the nozzle input end are connected through a water pipe; the inside of the equipment is flushed by turning on the pump through the water pipe and the nozzle.

[0013] Compared with the prior art, the beneficial effects of the utility model are as follows: the screening mechanism is driven by opening the driving mechanism so that the screening mechanism can screen the material, and at the same time, the dust is absorbed into the filtering mechanism by opening the dust suction mechanism to suppress the dust, and the dust is filtered by the filtering mechanism. After the processing is completed, the equipment is flushed by opening the flushing mechanism, so that during the gypsum particle grading and screening process, the dust generated during the vibration screening process can be cleaned and the equipment can be flushed. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a first axonometric structural diagram of the present invention;

[0015] Figure 2 This is a second axonometric structural diagram of the present invention;

[0016] Figure 3 This is a right-side sectional axonometric structural diagram of the present invention;

[0017] Figure 4 This is a schematic diagram of the rear-view cross-sectional axonometric structure of the present invention;

[0018] Markings in the accompanying drawings: 1. Screening mechanism; 11. Box; 12. Screen; 13. Stretcher; 14. Spring; 2. Filtering mechanism; 21. Water tank; 22. Filter; 3. Driving mechanism; 31. Connecting rod; 32. Motor; 33. Disc; 34. Connecting rod; 4. Duct suction mechanism; 41. Fan; 42. Air duct; 5. Flushing mechanism; 51. Pump; 52. Nozzle; 53. Water pipe. DETAILED DESCRIPTION

[0019] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention. Example

[0020] like Figures 1 to 4 As shown, a gypsum particle grading and screening mechanism includes a screening mechanism 1, a filtering mechanism 2, a driving mechanism 3, a dust collecting mechanism 4, and a flushing mechanism 5. The filtering mechanism 2 is mounted at the lower end of the screening mechanism 1, the driving mechanism 3 is mounted on the screening mechanism 1, the dust collecting mechanism 4 is mounted at the rear end of the screening mechanism 1, and the flushing mechanism 5 is mounted at the left end of the filtering mechanism 2.

[0021] The screening mechanism 1 performs screening, the filtering mechanism 2 performs filtering, the driving mechanism 3 drives the screening mechanism 1, the dust collection mechanism 4 performs dust collection, and the flushing mechanism 5 performs flushing;

[0022] The screening mechanism 1 includes a box 11, multiple sets of screens 12, a stretcher 13 and multiple sets of springs 14. The multiple sets of screens 12 and the stretcher 13 are installed in the box 11 through the multiple sets of springs 14, and the stretcher 13 is located under the multiple sets of screens 12.

[0023] The filter mechanism 2 includes a water tank 21 and a filter screen 22. The water tank 21 is installed at the lower end of the box body 11, and the filter screen 22 is slidably installed in the water tank 21.

[0024] The driving mechanism 3 includes a connecting rod 31, a motor 32, a disc 33 and a connecting rod 34. The connecting rod 31 is installed at the rear end of the multiple groups of screens 12 and the stretcher 13. The motor 32 is installed at the upper end of the box 11. The disc 33 is connected to the output end of the motor 32. The connecting rod 34 is rotatably installed at the rear end of the disc 33 and is rotationally connected to the connecting rod 31.

[0025] The dust collection mechanism 4 includes a fan 41 and an air duct 42. The fan 41 is installed at the rear end of the box body 11. The input end of the air duct 42 is connected to the output end of the fan 41, and the output end of the air duct 42 extends into the water tank 21.

[0026] The flushing mechanism 5 includes a pump 51, a nozzle 52 and a water pipe 53. The pump 51 is installed at the left end of the water tank 21, and the nozzle 52 is installed in the box body 11. The output end of the pump 51 is connected to the input end of the nozzle 52 through the water pipe 53.

[0027] The disc 33 is driven by turning on the motor 32 to rotate the disc 33. While the disc 33 is rotating, the connecting rod 34 is cooperated to drive the connecting rod 31 so that the connecting rod 31 drives the screen 12 and the stretcher 13 to vibrate. The materials are graded and screened by vibrating multiple groups of screens 12 and stretchers 13. At the same time, the dust generated by the screening vibration is discharged into the water tank 21 through the air duct 42 by turning on the fan 41 for dust suppression. The impurities in the water are filtered through the filter 22. After the processing is completed, the pump 51 is turned on to flush the inside of the equipment through the water pipe 53 in cooperation with the nozzle 52. Therefore, during the grading and screening of gypsum particles, the dust generated during the vibration screening process can be cleaned and the equipment can be flushed.

[0028] like Figures 1 to 4 As shown, the utility model is a gypsum particle grading and screening mechanism, which, when working, drives the disc 33 by turning on the motor 32 to rotate the disc 33, and while the disc 33 rotates, cooperates with the connecting rod 34 to drive the connecting rod 31 so that the connecting rod 31 drives the screen 12 and the stretcher 13 to vibrate, and the materials are graded and screened by the vibration of multiple groups of screens 12 and stretchers 13. At the same time, the dust generated by the screening vibration is discharged into the water tank 21 through the air duct 42 by turning on the fan 41 for dust suppression, and the impurities in the water are filtered through the filter 22. After the processing is completed, the inside of the equipment is flushed by turning on the pump 51 through the water pipe 53 and the nozzle 52.

[0029] The motor 32, fan 41 and pump 51 of the utility model are purchased on the market, and technicians in this industry only need to install and operate them according to the accompanying instruction manuals, without the need for technicians in this field to make creative efforts.

[0030] The main functions achieved by the utility model are: during the gypsum particle grading and screening process, by arranging a dust suction mechanism and a flushing mechanism, the dust generated during the vibration screening process can be cleaned and the equipment can be flushed.

[0031] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. A gypsum particle grading and screening mechanism, comprising a screening mechanism (1); characterized in that: It also includes a filtering mechanism (2), a driving mechanism (3), a dust collecting mechanism (4) and a flushing mechanism (5), wherein the filtering mechanism (2) is mounted on the lower end of the screening mechanism (1), the driving mechanism (3) is mounted on the screening mechanism (1), the dust collecting mechanism (4) is mounted on the rear end of the screening mechanism (1), and the flushing mechanism (5) is mounted on the left end of the filtering mechanism (2); The screening mechanism (1) performs screening, the filtering mechanism (2) performs filtering, the driving mechanism (3) drives the screening mechanism (1), the dust collection mechanism (4) performs dust collection, and the flushing mechanism (5) performs flushing.

2. A gypsum particle classification and screening mechanism according to claim 1, characterized in that: The screening mechanism (1) comprises a box (11), multiple sets of screens (12), a stretcher (13) and multiple sets of springs (14). The multiple sets of screens (12) and the stretcher (13) are installed in the box (11) through the multiple sets of springs (14), and the stretcher (13) is located under the multiple sets of screens (12).

3. A gypsum particle classification and screening mechanism according to claim 2, characterized in that: The filtering mechanism (2) comprises a water tank (21) and a filter screen (22). The water tank (21) is mounted at the lower end of the box body (11), and the filter screen (22) is slidably mounted in the water tank (21).

4. A gypsum particle classification and screening mechanism according to claim 2, characterized in that: The driving mechanism (3) includes a connecting rod (31), a motor (32), a disc (33) and a connecting rod (34), wherein the connecting rod (31) is mounted on the rear ends of the plurality of screens (12) and the stretcher (13), the motor (32) is mounted on the upper end of the box (11), the disc (33) is connected to the output end of the motor (32), the connecting rod (34) is rotatably mounted on the rear end of the disc (33), and the connecting rod (34) is rotatably connected to the connecting rod (31).

5. A gypsum particle classification and screening mechanism according to claim 2, characterized in that: The dust collection mechanism (4) includes a fan (41) and an air duct (42). The fan (41) is installed at the rear end of the box body (11). The input end of the air duct (42) is connected to the output end of the fan (41), and the output end of the air duct (42) extends into the water tank (21).

6. A gypsum particle classification and screening mechanism according to claim 3, characterized in that: The flushing mechanism (5) includes a pump (51), a nozzle (52) and a water pipe (53). The pump (51) is installed at the left end of the water tank (21), the nozzle (52) is installed in the tank body (11), and the output end of the pump (51) and the input end of the nozzle (52) are connected through the water pipe (53).

Citation Information

Patent Citations

  • Gypsum ore classification screening device

    CN217094396U