Drying equipment for carclazyte pretreatment

By designing a drying equipment for pretreatment of white clay, including vacuuming, dispersion and screening mechanisms, the problems of dust rise and uneven drying during the drying of white clay are solved, and a more uniform drying effect and a better working environment are achieved.

CN222849689UActive Publication Date: 2025-05-09HANGZHOU YONGSHENG ACTIVATOR CO LTD
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Patent Information

Application Number
CN202421820342.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-05-09
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

During the drying process of activated clay, clay is easily raised to form dust, affecting the environment and health; at the same time, the existing drying equipment has not been dispersed and spread out, and the drying is uneven, affecting the product quality.

Method used

A drying equipment for pretreatment of white clay is designed, including a drying barrel, feed outlet, vacuuming mechanism, a clay dispersion mechanism and a screening mechanism. The vacuum cleaner prevents dust from rising, and the white soil dispersion mechanism causes the white soil to be evenly developed and heated and dried; the screening mechanism prevents blockage through dynamic screening, improving the drying effect.

Benefits of technology

Through the design of the dispersion and screening mechanism, the heating uniformity of the drying of the clay is achieved, dust rise is reduced, drying effect and product quality are improved, and the working environment is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of carclazyte processing, and belongs to drying equipment for carclazyte pretreatment. Comprising a drying barrel, a feeding port and a dust suction mechanism are arranged on the drying barrel, a carclazyte dispersing mechanism is arranged below the dust suction mechanism, a screening mechanism is arranged below the carclazyte dispersing mechanism, the carclazyte dispersing mechanism and the screening mechanism are both located in the drying barrel, the screening mechanism comprises a soil receiving disc, and a drying assembly is arranged on the soil receiving disc. According to the carclazyte drying device, carclazyte raw materials added into the drying device are dispersed through the carclazyte dispersing mechanism, so that the carclazyte raw materials are uniformly heated and dried, the heating uniformity of carclazyte drying is ensured, and the drying effect is improved. And the carclazyte can be prevented from forming flying dust in the drying process, the working environment is prevented from being damaged, the body health of workers is guaranteed, and the environment-friendly performance of the device is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of clay processing, and belongs to drying equipment for clay pretreatment. Background Art

[0002] As a kind of soil or mineral material, activated clay has many characteristics and uses. Activated clay is an adsorbent made from clay (mainly bentonite) through inorganic acidification, water rinsing and drying. It has a large specific surface area and pore volume, as well as special adsorption capacity and ion exchange performance.

[0003] During the drying process of activated clay, the clay will inevitably be lifted up, which will easily cause dust to float, resulting in poor air quality in the environment and affecting the health of the workers. In addition, the existing clay drying device does not spread the clay after it is fed in, so it is easy to be unevenly heated during drying after being piled up, resulting in poor drying effect and affecting product quality. Utility Model Content

[0004] In view of the above technical problems, the utility model provides a drying device for pre-treatment of white clay.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] The present application provides a drying device for clay pretreatment, comprising a drying barrel, wherein the drying barrel is provided with a feeding port and a dust suction mechanism, a clay dispersion mechanism is provided below the dust suction mechanism, a screening mechanism is provided below the clay dispersion mechanism, the clay dispersion mechanism and the screening mechanism are both located in the drying barrel, the screening mechanism comprises a soil receiving tray, and a drying component is provided on the soil receiving tray.

[0007] Preferably, a disturbance component is provided on the feed port, and the disturbance component includes a disturbance motor, a disturbance shaft and a disturbance rod, the output end of the disturbance motor is connected to the disturbance shaft, the disturbance shaft is connected to the feed port, the disturbance shaft is provided with a bushing, and the disturbance rod is connected to the bushing.

[0008] Preferably, the dust suction mechanism comprises a dust removal port, a dust suction pump is connected to the dust removal port via a connecting frame, and the dust suction pump is connected to the dust suction port.

[0009] Preferably, the white clay dispersion mechanism includes a dispersion plate, which is connected to a drying barrel, a connecting column is provided in the middle of the dispersion plate, a driving shaft is provided on the connecting column, a driving motor is connected to the driving shaft, a stirring scraper is provided on the connecting column, a soil dropping groove is opened on the dispersion plate, and a smooth opening is provided on the upper part of the soil dropping groove.

[0010] Preferably, the screening mechanism further comprises a screening layer, the screening layer is connected to the soil receiving plate, a connecting rod is provided on the screening layer, a slider is connected to the end of the connecting rod, a guide groove is provided on the inner wall of the drying barrel, and the slider is cooperatively connected to the guide groove.

[0011] Preferably, the lower end of the guide groove is connected to a connecting block, the connecting block is connected to a transmission shaft, one end of the transmission shaft is connected to a screening motor via a coupling, the other end of the transmission shaft is movably connected to the drying barrel, a cam is provided on the transmission shaft, a support rod is connected to the connecting rod, the lower end of the support rod is connected to a rotating shaft, the rotating shaft is connected to a rotating wheel, and the rotating wheel is cooperatively connected to the cam.

[0012] Compared with the prior art, the present invention provides a drying device for clay pretreatment, which has the following beneficial effects:

[0013] 1. The utility model is provided with a clay dispersing mechanism, through which the clay raw material added into the drying device is dispersed so that it can be evenly heated and dried, thereby ensuring the heat uniformity of the clay drying and improving the drying effect.

[0014] 2. The utility model is provided with a dust suction mechanism to prevent the clay from generating dust during the drying process, thereby damaging the working environment, ensuring the health of the staff, and improving the environmental protection performance of the device.

[0015] 3. The utility model is provided with a screening mechanism, and the drying layer can be driven to move back and forth to realize dynamic screening of the white clay, which can effectively prevent the screening layer from being blocked during screening and affecting subsequent drying, thereby improving the practicability of the device.

[0016] The features and advantages of the present invention will be described in detail through embodiments in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 It is a cross-sectional view of the utility model;

[0019] Figure 3 for Figure 2 A partial enlarged view of the middle A;

[0020] Figure 4 for Figure 1 The partial enlarged view at B is a schematic diagram of the structure of the screening mechanism of the utility model;

[0021] In the figure: 1. drying barrel; 2. feeding port; 3. dust suction mechanism; 4. clay dispersion mechanism; 5. screening mechanism; 6. drying assembly; 21. disturbance assembly; 211. disturbance motor; 212. disturbance shaft; 213. disturbance rod; 214. bushing; 31. dust removal port; 32. connecting frame; 33. dust suction pump; 34. dust suction port; 41. dispersion plate; 42. connecting column; 43. drive shaft; 44. drive motor; 45. stirring scraper; 46. soil trough; 47. smooth mouth; 51. soil receiving plate; 52. screening layer; 53. connecting rod; 54. slider; 55. guide groove; 551. connecting block; 56. transmission shaft; 57. screening motor; 58. cam; 59. support rod; 591. rotating shaft; 592. rotating wheel. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the present invention more clear, the present invention is further described in detail below through the accompanying drawings and embodiments. However, it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the scope of the present invention. In addition, in the following description, the description of the known structures and technologies is omitted to avoid unnecessary confusion of the concept of the present invention.

[0023] See also Figure 1 The utility model provides a drying device for pretreatment of white clay, comprising a drying barrel 1, the drying barrel 1 is provided with a feeding port 2 and a dust suction mechanism 3, a white clay dispersion mechanism 4 is provided below the dust suction mechanism 3, a screening mechanism 5 is provided below the white clay dispersion mechanism 4, the white clay dispersion mechanism 4 and the screening mechanism 5 are both located in the drying barrel 1, the screening mechanism 5 comprises a soil receiving tray 51, the soil receiving tray 51 is provided with a drying component 6, and the drying component 6 is used for heating and drying the white clay.

[0024] See also Figure 3 Specifically, a disturbance component 21 is provided on the feed port 2, and the disturbance component 21 includes a disturbance motor 211, a disturbance shaft 212 and a disturbance rod 213. The output end of the disturbance motor 211 is connected to the disturbance shaft 212, and the disturbance shaft 212 is connected to the feed port 2. A shaft sleeve 214 is provided on the disturbance shaft 212, and the disturbance rod 213 is connected to the shaft sleeve 214. The disturbance component 21 can stir the white clay in the channel of the feed port 2 to prevent material blockage during the feeding process.

[0025] See also Figure 2 Specifically, the dust suction mechanism 3 includes a dust removal port 31, a dust suction pump 33 is connected to the dust removal port 31 through a connecting frame 32, and a dust suction port 34 is connected to the dust suction pump 33. The dust suction pump 33 can form a negative pressure at the dust removal port 31 to collect the dust in the drying barrel 1.

[0026] See also Figure 2 Specifically, the clay dispersing mechanism 4 includes a dispersing plate 41, which is connected to the drying barrel 1. A connecting column 42 is provided in the middle of the dispersing plate 41, and a driving shaft 43 is provided on the connecting column 42. A driving motor 44 is connected to the driving shaft 43. A stirring scraper 45 is provided on the connecting column 42. The stirring scraper 45 can rotate around the driving shaft 43 to scrape the accumulated clay to disperse and flatten it, so that it is heated more evenly. A soil dropping groove 46 is opened on the dispersing plate 41, and a smooth opening 47 is provided on the upper part of the soil dropping groove 46. The smooth opening 47 facilitates the clay to slide into the soil dropping groove 46.

[0027] See also Figure 2 Specifically, the screening mechanism 5 also includes a screening layer 52, which is connected to the soil receiving plate 51. A connecting rod 53 is provided on the screening layer 52, and a slider 54 is connected to the end of the connecting rod 53. A guide groove 55 is provided on the inner wall of the drying barrel 1, and the slider 54 is connected to the guide groove 55.

[0028] See also Figure 4 Specifically, a connecting block 551 is connected to the lower end of the guide groove 55, and a transmission shaft 56 is connected to the connecting block 551. One end of the transmission shaft 56 is connected to a screening motor 57 through a coupling, and the other end of the transmission shaft 56 is movably connected to the drying barrel 1. A cam 58 is provided on the transmission shaft 56, and a support rod 59 is connected to the connecting rod 53. A rotating shaft 591 is connected to the lower end of the support rod 59, and a rotating wheel 592 is connected to the rotating shaft 591. The rotating wheel 592 is cooperatively connected to the cam 58, and the rotating wheel 592 is rotatably connected to the rotating shaft 591. During the rotation of the cam 58, the rotating wheel 592 can be driven to reciprocate, and then the screening layer 52 reciprocates to dynamically screen the white clay.

[0029] The working principle of the utility model is as follows: white clay is added into the drying barrel 1 through the feeding port 2. During the feeding process, the disturbance motor 211 drives the disturbance shaft 212 to rotate, thereby driving the disturbance rod 213 to rotate around the disturbance shaft 212, thereby stirring the white clay to prevent the white clay from being blocked; the white clay added into the drying barrel 1 is powered by the driving motor 44, driving the stirring scraper 45 to rotate, thereby dispersing and flattening the accumulated white clay to make it evenly heated, and scraping the white clay off to fall into the screening layer 52 through the soil falling trough 46, and the screening motor 57 drives the transmission shaft 56 to rotate, thereby causing the cam 58 arranged on the transmission shaft 56 to rotate synchronously, and the cam 58 pushes the rotating wheel 592 to make it reciprocate up and down, thereby driving the screening layer 52 to reciprocate and screen the white clay. During the whole process, the drying component 6 heats and dries the white clay to ensure the drying effect.

[0030] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modification, equivalent substitution or improvement made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A drying device for clay pretreatment, characterized in that: The invention comprises a drying barrel (1), wherein the drying barrel (1) is provided with a material inlet (2) and a dust suction mechanism (3), a clay dispersion mechanism (4) is provided below the dust suction mechanism (3), a screening mechanism (5) is provided below the clay dispersion mechanism (4), the clay dispersion mechanism (4) and the screening mechanism (5) are both located in the drying barrel (1), the screening mechanism (5) comprises a soil receiving tray (51), and a drying assembly (6) is provided on the soil receiving tray (51).

2. A drying device for clay pretreatment as claimed in claim 1, characterized in that: The feed inlet (2) is provided with a disturbance component (21), the disturbance component (21) comprising a disturbance motor (211), a disturbance shaft (212) and a disturbance rod (213), the output end of the disturbance motor (211) is connected to the disturbance shaft (212), the disturbance shaft (212) is connected to the feed inlet (2), a shaft sleeve (214) is provided on the disturbance shaft (212), and the disturbance rod (213) is connected to the shaft sleeve (214).

3. A drying device for clay pretreatment as claimed in claim 1, characterized in that: The dust suction mechanism (3) comprises a dust removal port (31), a dust suction pump (33) is connected to the dust removal port (31) via a connecting frame (32), and the dust suction pump (33) is connected to the dust suction port (34).

4. A drying device for clay pretreatment as claimed in claim 1, characterized in that: The white clay dispersing mechanism (4) comprises a dispersing plate (41), the dispersing plate (41) being connected to the drying barrel (1), a connecting column (42) being provided in the middle of the dispersing plate (41), a driving shaft (43) being provided on the connecting column (42), a driving motor (44) being connected to the driving shaft (43), a stirring scraper (45) being provided on the connecting column (42), a soil dropping groove (46) being provided on the dispersing plate (41), and a smooth opening (47) being provided on the upper part of the soil dropping groove (46).

5. A drying device for clay pretreatment as claimed in claim 1, characterized in that: The screening mechanism (5) further comprises a screening layer (52), the screening layer (52) being connected to the soil receiving plate (51), the screening layer (52) being provided with a connecting rod (53), the end of the connecting rod (53) being connected to a sliding block (54), the inner wall of the drying barrel (1) being provided with a guide groove (55), the sliding block (54) being cooperatively connected to the guide groove (55).

6. A drying device for clay pretreatment as claimed in claim 5, characterized in that: The lower end of the guide groove (55) is connected to a connecting block (551), the connecting block (551) is connected to a transmission shaft (56), one end of the transmission shaft (56) is connected to a screening motor (57) via a coupling, the other end of the transmission shaft (56) is movably connected to the drying barrel (1), a cam (58) is provided on the transmission shaft (56), the connecting rod (53) is connected to a support rod (59), the lower end of the support rod (59) is connected to a rotating shaft (591), the rotating shaft (591) is connected to a rotating wheel (592), and the rotating wheel (592) is cooperatively connected to the cam (58).

Citation Information

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