Gypsum mortar storage tank with anti-settling layered structure

By using a circulation structure of stirring blades and spiral conveying pipes in the gypsum mortar storage tank, the problem of sedimentation and stratification during the storage process of gypsum mortar is solved, and the uniformity and angle of gypsum mortar are adjusted, thereby improving the performance and flexibility of use.

CN223949869UActive Publication Date: 2026-02-27SHANDONG CHENGHUA BUILDING MATERIAL TECH
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Patent Information

Application Number
CN202520685208.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-12
Publication Date
2026-02-27
Estimated Expiration
2035-04-12

AI Technical Summary

Technical Problem

Existing gypsum mortar storage tanks are prone to settling and stratification during long-term storage, which affects the uniformity and performance of the gypsum mortar. Furthermore, the fixed storage angle hinders the flexibility of use.

Method used

The gypsum mortar inside the storage tank is stirred by a stirring blade and circulated through a spiral conveying pipe, a circulation pipe and a discharge ring. The angle of the storage components can be adjusted by an adjusting component to achieve uniformity of gypsum mortar and flexibility of discharge angle.

Benefits of technology

It effectively avoids the settling and stratification of gypsum mortar, improves the uniformity of gypsum mortar, and enhances the performance and flexibility of gypsum mortar.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of gypsum mortar storage tanks, in particular to a gypsum mortar storage tank with an anti-sedimentation layered structure, which comprises a storage component, an adjusting component and a control console, the storage component comprises a storage tank main body, a spiral conveying pipe is arranged on one side of the storage tank main body, and a circulating pipe is arranged on the upper side of the spiral conveying pipe. A discharging ring is arranged at one end of the circulating pipe, stirring blades are arranged in the storage tank body, a discharging pipe is arranged on the lower side of the spiral conveying pipe, the adjusting component comprises a mounting frame, and an adjusting disc is arranged at the upper end of the mounting frame. According to the gypsum mortar storage tank, gypsum mortar in the storage tank body is stirred through the stirring blades, the gypsum mortar is circulated through the spiral conveying pipe, the circulating pipe and the discharging ring, the uniformity of the gypsum mortar is improved, the problem that the gypsum mortar settles and is layered when being static is solved, the angle of the storage component is adjusted through the adjusting component, and the using flexibility is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to gypsum mortar storage tank technical field, specifically is gypsum mortar storage tank with anti -settling layered structure. BACKGROUND

[0002] Gypsum mortar storage tank is a kind of equipment specially used for storing gypsum mortar, usually by tank body, feed inlet, discharge outlet, stirring device, liquid level meter, manhole etc.

[0003] Chinese patent discloses a kind of water-resistant gypsum mortar storage tank, (grant announcement number CN213169607U), the piston rod of the patent technology is pushed to side wall scraping mechanism in the water-resistant gypsum mortar of storage tank when using, annular scraper of side wall scraping mechanism front end is scraped to the mortar adhered on its storage tank inner wall, the device simple structure, convenient operation, can effectively realize the cleaning of its storage tank inner wall, reduce the labor loss, and greatly improve the efficiency of production, but, gypsum mortar in the above-mentioned storage tank is stationary, and there is the problem of sedimentation stratification in long-term storage, affect the uniformity of gypsum mortar after export, affect the use effect of gypsum mortar, the angle of storage tank is fixed, and the export angle of gypsum mortar is same, not conducive to the flexibility of use.Therefore, gypsum mortar storage tank with anti -settling layered structure is provided by the technical personnel in the art to solve the problems raised in the above background art. UTILITARIAN CONTENT

[0004] The utility model aims at providing gypsum mortar storage tank with anti -settling layered structure to solve the problems raised in the above background art.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] Gypsum mortar storage tank with anti -settling layered structure, including storage component, adjusting component and control platform, the adjusting component is located at the lower side position of storage component, the control platform is located at the lower side position of adjusting component, the storage component includes storage tank main body, one side of the storage tank main body is provided with spiral conveying pipe, the upper side of the spiral conveying pipe is provided with loop pipe, one end of the loop pipe is provided with discharge ring, the inside of the storage tank main body is provided with stirring blade, the lower side of the spiral conveying pipe is provided with discharge pipe, the adjusting component includes mounting frame, the upper end of the mounting frame is provided with adjusting disc, the upper side of the adjusting disc is provided with fixed seat, the inside of the mounting frame is provided with transmission wheel at the lower side position of adjusting disc.

[0007] As a further scheme of the utility model: the first motor is installed at the position corresponding to the stirring blade on one side of the storage tank main body, a spiral rod is arranged in the inside of the spiral conveying pipe, the third motor is installed at the position corresponding to the spiral rod on one side of the spiral conveying pipe, the first electromagnetic valve is installed at the position close to the spiral conveying pipe on one end of the loop pipe, the second electromagnetic valve is installed at the position close to the spiral conveying pipe on one end of the discharge pipe, the second motor is installed at the position corresponding to the transmission wheel on the front side of the mounting bracket, the electric adjusting telescopic rod is installed at the position corresponding to the adjusting disc on the front side of the mounting bracket.

[0008] As a further scheme of the utility model: the output end of the storage tank main body is communicated with the input end of the spiral conveying pipe, the output end of the spiral conveying pipe is respectively communicated with the input end of the loop pipe and the discharge pipe, the output end of the loop pipe is communicated with the input end of the discharge ring, the output end of the discharge ring is communicated with the inside of the storage tank main body, and the stirring blade rotates at the inside position of the storage tank main body.

[0009] As a further scheme of the utility model: the fixed seat is fixed at the outside position of the storage tank main body, the adjusting disc rotates at the inside position of the mounting bracket, the transmission wheel rotates at the inside position of the mounting bracket, and the outside of the transmission wheel is located at the outside position of the adjusting disc.

[0010] As a further scheme of the utility model: the stirring blade rotates at the inside position of the storage tank main body through the first motor, and the spiral rod rotates at the inside position of the spiral conveying pipe through the third motor.

[0011] As a further scheme of the utility model: the transmission wheel rotates at the inside position of the mounting bracket through the second motor, the rear end of the electric adjusting telescopic rod penetrates the mounting bracket and is located at the front side position of the adjusting disc, and the adjusting disc is fixed at the inside position of the mounting bracket through the electric adjusting telescopic rod.

[0012] Compared with the prior art, the utility model has the advantages that:

[0013] 1. The gypsum mortar storage tank with the anti-settling and layering structure has the advantages that the gypsum mortar in the inside of the storage tank main body is stirred through the stirring blade, the gypsum mortar is circulated through the spiral conveying pipe, the loop pipe and the discharge ring, the uniformity of the gypsum mortar is improved, the problem of settlement and layering of the gypsum mortar is avoided, and the use effect of the gypsum mortar is improved.

[0014] 2. The angle of the storage member is adjusted through the adjusting member, the gypsum mortar export angle is changed according to the requirement, and the flexibility of use is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0015] Fig. 1Structure diagram of gypsum mortar storage tank with anti-settling layered structure;

[0016] Fig. 2 Perspective view of storage member in gypsum mortar storage tank with anti-settling layered structure;

[0017] Fig. 3 Structure diagram of adjusting member in gypsum mortar storage tank with anti-settling layered structure.

[0018] In the figure: 1, storage member; 2, adjusting member; 3, control console; 4, storage tank main body; 5, spiral conveying pipe; 6, circulating pipe; 7, discharging ring; 8, stirring blade; 9, discharging pipe; 10, mounting frame; 11, adjusting disc; 12, fixing seat; 13, transmission wheel; 14, first motor; 15, screw rod; 16, third motor; 17, first electromagnetic valve; 18, second electromagnetic valve; 19, second motor; 20, electric adjusting telescopic rod. DETAILED DESCRIPTION

[0019] Please refer to Figs. 1-3The utility model discloses gypsum mortar storage tank with anti -settling stratification structure, including storage component 1, adjusting component 2 and control platform 3, adjusting component 2 is located the downside position at storage component 1, and control platform 3 is located the downside position at adjusting component 2, and storage component 1 includes storage tank main part 4, and one side of storage tank main part 4 is provided with spiral conveying pipe 5, and the upside of spiral conveying pipe 5 is provided with loop pipe 6, and one end of loop pipe 6 is provided with discharge ring 7, and the inside of storage tank main part 4 is provided with stirring vane 8, and the downside of spiral conveying pipe 5 is provided with discharge pipe 9, and adjusting component 2 includes mounting bracket 10, and the upper end of mounting bracket 10 is provided with dispensing disc 11, and the upside of dispensing disc 11 is provided with fixed seat 12, and the inside of mounting bracket 10 is provided with transmission wheel 13 at the downside position of dispensing disc 11, and the output of storage tank main part 4 is through with the input of spiral conveying pipe 5, and the output of spiral conveying pipe 5 is through with the input of loop pipe 6 and discharge pipe 9 respectively, and the output of loop pipe 6 is through with the input of discharge ring 7, and the output of discharge ring 7 is through with the inside of storage tank main part 4, and stirring vane 8 rotates at the inside position of storage tank main part 4, and fixed seat 12 is fixed at the outside position of storage tank main part 4, and dispensing disc 11 rotates at the inside position of mounting bracket 10, and transmission wheel 13 rotates at the inside position of mounting bracket 10, and the outside of transmission wheel 13 is located at the outside position of dispensing disc 11, first, gypsum mortar is guided into the inside of storage tank main part 4, then, transmission wheel 13 drives dispensing disc 11 to rotate, and dispensing disc 11 drives storage component 1 to incline through fixed seat 12, and dispensing disc 11 is fixed to the inside of mounting bracket 10, completes the positioning of the angle of storage component 1, and stirring vane 8 rotates in the inside of storage tank main part 4, and the gypsum mortar in the inside of storage tank main part 4 is stirred, and the gypsum mortar in the inside of storage tank main part 4 is guided into the inside of loop pipe 6 through spiral conveying pipe 5, and the gypsum mortar in the inside of loop pipe 6 is circulated to the inside of storage tank main part 4 through discharge ring 7, and the stirring of gypsum mortar is completed to avoid the stratification of settlement, and the gypsum mortar in the inside of storage tank main part 4 is guided into the inside of discharge pipe 9 through spiral conveying pipe 5, and the gypsum mortar in the inside of discharge pipe 9 is guided out.

[0020] In Fig. 2 、 3The first motor 14 is installed on one side of the storage tank body 4 corresponding to the position of the stirring blade 8, the inside of the spiral conveying pipe 5 is provided with a spiral rod 15, one side of the spiral conveying pipe 5 is installed with a third motor 16 corresponding to the position of the spiral rod 15, one end of the loop pipe 6 is installed with a first electromagnetic valve 17 near the position of the spiral conveying pipe 5, one end of the discharge pipe 9 is installed with a second electromagnetic valve 18 near the position of the spiral conveying pipe 5, the front side of the mounting bracket 10 is installed with a second motor 19 corresponding to the position of the transmission wheel 13, the front side of the mounting bracket 10 is installed with an electric adjusting telescopic rod 20 corresponding to the position of the regulating disc 11, the stirring blade 8 rotates in the inside of the storage tank body 4 through the first motor 14, the spiral rod 15 rotates in the inside of the spiral conveying pipe 5 through the third motor 16, the transmission wheel 13 rotates in the inside of the mounting bracket 10 through the second motor 19, the rear end of the electric adjusting telescopic rod 20 penetrates the mounting bracket 10 and is located at the front side of the regulating disc 11, the regulating disc 11 is fixed in the inside of the mounting bracket 10 through the electric adjusting telescopic rod 20, the second motor 19 drives the transmission wheel 13 to rotate in the inside of the mounting bracket 10, the transmission wheel 13 drives the regulating disc 11 to rotate, the regulating disc 11 drives the storage member 1 to tilt through the fixed seat 12, the electric adjusting telescopic rod 20 fixes the regulating disc 11 to the inside of the mounting bracket 10, completes the positioning of the angle of the storage member 1, the first motor 14 drives the stirring blade 8 to rotate in the inside of the storage tank body 4, stirs the gypsum mortar in the inside of the storage tank body 4, the third motor 16 drives the spiral rod 15 to rotate in the inside of the spiral conveying pipe 5, the first electromagnetic valve 17 is opened, the second electromagnetic valve 18 is closed, the gypsum mortar in the inside of the storage tank body 4 is guided into the inside of the loop pipe 6 through the spiral conveying pipe 5, the gypsum mortar in the inside of the loop pipe 6 is circulated to the inside of the storage tank body 4 through the discharge ring 7, completes the stirring of the gypsum mortar to avoid settlement and stratification, the first electromagnetic valve 17 is closed, the second electromagnetic valve 18 is opened, the gypsum mortar in the inside of the storage tank body 4 is guided into the inside of the discharge pipe 9 through the spiral conveying pipe 5, the gypsum mortar in the inside of the discharge pipe 9 is guided out.

[0021] The working principle of the utility model is: firstly, gypsum mortar is introduced into the inside of storage tank main body 4, then, the second motor 19 runs to drive the transmission wheel 13 to rotate in the inside of mounting frame 10, the transmission wheel 13 drives the dispensing disc 11 to rotate, the dispensing disc 11 drives the storage component 1 to incline through the fixed seat 12, the electrically-operated adjusting telescopic rod 20 runs to fix the dispensing disc 11 to the inside of mounting frame 10, the positioning of the angle of storage component 1 is completed, the first motor 14 runs to drive the stirring blade 8 to rotate in the inside of storage tank main body 4, the gypsum mortar in the inside of storage tank main body 4 is stirred, the third motor 16 runs to drive the screw rod 15 to rotate in the inside of screw conveying pipe 5, the first electromagnetic valve 17 is opened, the second electromagnetic valve 18 is closed, the gypsum mortar in the inside of storage tank main body 4 is introduced into the inside of loop pipe 6 through screw conveying pipe 5, the gypsum mortar in the inside of loop pipe 6 is circulated to the inside of storage tank main body 4 through the discharge ring 7, the stirring of gypsum mortar is completed to avoid settlement and stratification, the first electromagnetic valve 17 is closed, the second electromagnetic valve 18 is opened, the gypsum mortar in the inside of storage tank main body 4 is introduced into the inside of discharge pipe 9 through screw conveying pipe 5, the gypsum mortar in the inside of discharge pipe 9 is discharged.

[0022] The above is only the preferred specific implementation of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the utility model concept of the utility model within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model.

Claims

1. Gypsum mortar storage tank with anti-settling stratification structure, comprising a storage member (1), an adjusting member (2) and a control console (3), the adjusting member (2) is located at the lower side of the storage member (1), the control console (3) is located at the lower side of the adjusting member (2), characterized in that, The storage member (1) comprises a storage tank body (4), one side of the storage tank body (4) is provided with a spiral conveying pipe (5), the upper side of the spiral conveying pipe (5) is provided with a return pipe (6), one end of the return pipe (6) is provided with a discharging ring (7), the inside of the storage tank body (4) is provided with a stirring blade (8), the lower side of the spiral conveying pipe (5) is provided with a discharging pipe (9), the adjusting member (2) comprises a mounting frame (10), the upper end of the mounting frame (10) is provided with a dispensing disc (11), the upper side of the dispensing disc (11) is provided with a fixing seat (12), the inside of the mounting frame (10) is provided with a transmission wheel (13) at the lower side of the dispensing disc (11).

2. The gypsum slurry storage tank having a sedimentation-preventing stratification structure according to claim 1, characterized by, One side of the storage tank body (4) is provided with a first motor (14) corresponding to the position of the stirring blade (8), the inside of the spiral conveying pipe (5) is provided with a spiral rod (15), one side of the spiral conveying pipe (5) is provided with a third motor (16) corresponding to the position of the spiral rod (15), one end of the return pipe (6) is provided with a first electromagnetic valve (17) near the position of the spiral conveying pipe (5), one end of the discharging pipe (9) is provided with a second electromagnetic valve (18) near the position of the spiral conveying pipe (5), the front side of the mounting frame (10) is provided with a second motor (19) corresponding to the position of the transmission wheel (13), the front side of the mounting frame (10) is provided with an electrically-driven adjusting telescopic rod (20) corresponding to the position of the dispensing disc (11).

3. The gypsum slurry storage tank having an anti-settling layered structure according to claim 1, characterized by, The output end of the storage tank body (4) penetrates the input end of the spiral conveying pipe (5), the output end of the spiral conveying pipe (5) penetrates the input end of the return pipe (6) and the discharging pipe (9) respectively, the output end of the return pipe (6) penetrates the input end of the discharging ring (7), the output end of the discharging ring (7) penetrates the inside of the storage tank body (4), the stirring blade (8) rotates at the inside position of the storage tank body (4).

4. The gypsum slurry storage tank having an anti-settling layered structure according to claim 1, characterized by, The fixing seat (12) is fixed at the outside position of the storage tank body (4), the dispensing disc (11) rotates at the inside position of the mounting frame (10), the transmission wheel (13) rotates at the inside position of the mounting frame (10), the outside of the transmission wheel (13) is located at the outside position of the dispensing disc (11).

5. The gypsum slurry storage tank with anti-settling stratification structure according to claim 2, characterized in that, The stirring blade (8) rotates at the inside position of the storage tank body (4) through the first motor (14), the spiral rod (15) rotates at the inside position of the spiral conveying pipe (5) through the third motor (16).

6. The gypsum slurry storage tank with anti-settling stratification structure according to claim 2, characterized in that, The transmission wheel (13) rotates at the inside position of the mounting frame (10) through the second motor (19), the rear end of the electrically-driven adjusting telescopic rod (20) penetrates the mounting frame (10) and is located at the front side of the dispensing disc (11), the dispensing disc (11) is fixed at the inside position of the mounting frame (10) through the electrically-driven adjusting telescopic rod (20).

Citation Information

Patent Citations

  • Water-resistant gypsum mortar storage tank

    CN213169607U