Grouting equipment for ceramic production
The ceramic production equipment addresses flowability and discharge issues by using a slurry distribution mechanism with a movable press plate and scraper edge, enhancing flow and reducing residual slurry adherence, thus improving pumping efficiency and discharge completeness.
Patent Information
- Application Number
- CN202421945536.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The slurry flowability in the slurry storage box in the existing ceramic production grouting equipment is poor, resulting in a large extraction pressure of the grouting pump, incomplete extraction when the slurry residual is insufficient, and it is difficult to clean the sticky wall residue.
A grouting equipment including a slurry storage box, a grouting pump group, and a feeding mechanism is designed to improve the slurry flowability through the slurry booster plate and scraper blade in the feeding mechanism, reduce sticky wall residues, and ensure that the slurry is fully discharged.
It improves the fluidity of the slurry, reduces the suction pressure of the grouting pump, ensures the full discharge of the slurry, and avoids the problem of sticky wall residue.
Smart Images

Figure CN223099502U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of ceramic production, and particularly relates to a grouting device for ceramic production. Background Art
[0002] Ceramics are materials and various products made from clay as the main raw material and various natural minerals through crushing, mixing, shaping, and calcination. In ceramic production, molds are needed to produce ceramics with specific shapes, and when using molds, grouting is required for the molds. Generally, a grouting pump is used to pump out the slurry inside the storage container and inject it into the mold.
[0003] In the existing grouting equipment, the fluidity of the slurry in the slurry storage tank is poor. In this way, the extraction pressure of the grouting pump during grouting work is relatively large. When the height of the slurry in the slurry storage tank is lower than the outlet, it affects the extraction effect of the grouting pump. And when there is too little slurry, it is easy to have incomplete extraction of some remaining materials. Also, as the slurry level drops in the slurry storage tank, there will be some sticky wall residues that cannot be discharged. Especially after the sticky wall residues dry up, there are disadvantages that are not convenient for manual cleaning. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a grouting device for ceramic production to solve the problems put forward in the above background art.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A grouting device for ceramic production, including a slurry storage box. One side of the slurry storage box is provided with a grouting pump group. The inside of the slurry storage box is provided with a material storage chamber. The inside of the slurry storage box is provided with a material stirring mechanism. The material stirring mechanism includes a closed cover shell, a slurry pressure increasing plate, an adjustment sliding table, and an adjustment lead screw. The closed cover shell is arranged at the upper end of the slurry storage box. The slurry pressure increasing plate is arranged in the material storage chamber of the slurry storage box. The adjustment sliding table is fixed at the upper end of the slurry pressure increasing plate. The adjustment lead screw is arranged in the adjustment sliding table. Scraping blades are arranged on both sides of the slurry pressure increasing plate, and the scraping blades are attached to the inner side wall of the slurry storage box.
[0006] It should be noted in the solution that a guiding sliding groove is opened on the lower end surface of the closed cover shell, and the adjustment sliding table is slidably connected in the guiding sliding groove of the closed cover shell.
[0007] Furthermore, it is worth noting that guiding sliding blocks are arranged on both sides of the upper end surface of the slurry pressure increasing plate and located at both sides of the adjustment sliding table. The guiding sliding blocks are also slidably connected in the guiding sliding groove of the closed cover shell.
[0008] Furthermore, it should be noted that a rotating bearing is fixed in the middle of one side surface of the closed cover shell. One end of the adjustment lead screw extends to the rotating bearing, and the adjustment lead screw is rotatably connected in the closed cover shell.
[0009] As a preferred embodiment, an adjustment screw hole is formed on one side surface of the adjustment sliding table, and the adjustment lead screw is threadedly connected to the adjustment screw hole of the adjustment sliding table.
[0010] As a preferred embodiment, a driving motor is fixed on one side surface of the closing cover away from the rotating bearing, and the output end of the adjustment lead screw is fixed on the output end of the driving motor.
[0011] As a preferred embodiment, discharge ports are formed on the inner walls at both ends of the slurry storage box, a slurry outlet pipe is fixed between the discharge ports and the grouting pump set, and a grouting pipe is arranged at the output end of the grouting pump set.
[0012] As a preferred embodiment, support bases are fixed below both the grouting pump set and the slurry storage box, and a feed port is arranged on one side surface of the slurry storage box.
[0013] Compared with the prior art, a grouting device for ceramic production provided by the present utility model has at least the following beneficial effects:
[0014] ⑴ By arranging the material stirring mechanism, the adjustment sliding table threadedly connected to the adjustment lead screw controls the short-stroke reciprocating movement of the slurry pressure-increasing plate inside the slurry storage box. The reciprocating slurry pressure-increasing plate can improve the fluidity of the slurry, and promoting the slurry flow can reduce the suction processing pressure of the grouting pump set. Especially when the static height of the slurry in the slurry storage box is lower than the discharge port, it has the ability to push and supply the remaining material.
[0015] ⑵ By arranging the slurry pressure-increasing plate and the scraping blade, the scraping blade on the side of the slurry pressure-increasing plate scraping along the inner wall of the slurry storage box can reduce the trouble of slurry sticking to the wall and remaining, thereby ensuring the full discharge of the slurry inside the slurry storage box. Description of the Drawings
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for describing the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model, and those of ordinary skill in the art can also obtain other drawings based on these drawings without creative efforts.
[0017] Figure 1 It is a three-dimensional structure diagram of the overall structure of a grouting device for ceramic production of the present utility model;
[0018] Figure 2 It is a three-dimensional structure diagram of the sectional structure of the slurry storage box of a grouting device for ceramic production of the present utility model;
[0019] Figure 3Stereoscopic sectional view of the closing cover of a slip casting device for ceramic production of the present utility model;
[0020] Figure 4 Stereoscopic view of the scraping blade structure of a slip casting device for ceramic production of the present utility model.
[0021] In the figure: 1, slurry storage box; 2, slurry outlet pipe; 3, slip casting pump group; 4, slip casting pipe; 5, support base; 6, closing cover; 7, drive motor; 8, position adjustment lead screw; 9, rotating bearing; 10, guiding chute; 11, position adjustment slide; 12, guiding slider; 13, slurry pressure increasing plate; 14, position adjustment screw hole; 15, scraping blade; 16, stock storage chamber; 17, discharge port. Detailed implementation manners
[0022] The following further describes the present utility model in conjunction with embodiments.
[0023] Please refer to Figures 1-4 , the present utility model provides a slip casting device for ceramic production, including a slurry storage box 1, a slip casting pump group 3 is arranged on one side of the slurry storage box 1, the slip casting pump group 3 sucks the slurry inside the slurry storage box 1 through the slurry outlet pipe 2 and injects it into the ceramic preparation mold by using the slip casting pump group 3, a stock storage chamber 16 is arranged inside the slurry storage box 1, and a material stirring mechanism is arranged inside the slurry storage box 1;
[0024] The material stirring mechanism includes a closing cover 6, a slurry pressure increasing plate 13, a position adjustment slide 11 and a position adjustment lead screw 8. The closing cover 6 is arranged on the upper end of the slurry storage box 1, the slurry pressure increasing plate 13 is arranged in the stock storage chamber 16 of the slurry storage box 1, the position adjustment slide 11 is fixed on the upper end of the slurry pressure increasing plate 13, the position adjustment lead screw 8 is arranged in the position adjustment slide 11, and the position adjustment slide 11 threadedly connected with the position adjustment lead screw 8 controls the short-stroke reciprocating movement of the slurry pressure increasing plate 13 inside the slurry storage box 1. The reciprocating movement of the slurry pressure increasing plate 13 can improve the fluidity of the slurry;
[0025] Scraping blades 15 are arranged on both sides of the slurry pressure increasing plate 13, the scraping blades 15 are attached to the inner side wall of the slurry storage box 1, and during the operation of the slurry pressure increasing plate 13, the scraping blades 15 on the side of the slurry pressure increasing plate 13 scraping along the inner wall of the slurry storage box 1 can reduce the trouble of slurry sticking to the wall and remaining.
[0026] Further as Figure 1 , Figure 2 and Figure 3 shown, it is specifically noted that a guiding chute 10 is opened on the lower end surface of the closing cover 6, and the position adjustment slide 11 is slidably connected in the guiding chute 10 of the closing cover 6.
[0027] Further as Figure 3As shown, it is worth specifically stating that guiding sliders 12 are provided on both sides of the upper end surface of the slurry pressure-increasing plate 13 and are located at the guiding slide table 11. The guiding sliders 12 are also slidably connected in the guiding chute 10 of the closing cover 6.
[0028] Further, as shown in Figure 1 , Figure 2 and Figure 4 it is worth specifically stating that a rotating bearing 9 is fixed in the middle of one side surface of the closing cover 6. One end of the position-adjusting lead screw 8 extends to the rotating bearing 9, and the position-adjusting lead screw 8 is rotatably connected in the closing cover 6.
[0029] Further, as shown in Figure 4 it is worth specifically stating that a position-adjusting screw hole 14 is provided on one side surface of the position-adjusting slide table 11, and the position-adjusting lead screw 8 is threadedly connected to the position-adjusting screw hole 14 of the position-adjusting slide table 11.
[0030] Further, as shown in Figure 1 it is worth specifically stating that a driving motor 7 is fixed on one side surface of the closing cover 6 away from the rotating bearing 9, and the output end of the position-adjusting lead screw 8 is fixed on the output end of the driving motor 7.
[0031] Further, as shown in Figure 1 it is worth specifically stating that discharge ports 17 are provided on the inner walls at both ends of the slurry storage box 1. A slurry outlet pipe 2 is fixed between the discharge ports 17 and the grouting pump group 3, and a grouting pipe 4 is provided at the output end of the grouting pump group 3.
[0032] Further, as shown in Figure 1 it is worth specifically stating that support bases 5 are fixed below both the grouting pump group 3 and the slurry storage box 1, and a feed port is provided on one side surface of the slurry storage box 1.
[0033] This solution has the following working process: Before use, the prepared slurry is stored in the storage chamber 16 of the slurry storage box 1. During use, the grouting pump group 3 sucks the slurry inside the slurry storage box 1 through the slurry outlet pipe 2 and injects it into the ceramic preparation mold using the grouting pump group 3. During use, the driving motor 7 is used to control the alternating forward and reverse rotation of the position-adjusting lead screw 8. In this way, the position-adjusting slide table 11 threadedly connected to the position-adjusting lead screw 8 controls the short-stroke reciprocating movement of the slurry pressure-increasing plate 13 inside the slurry storage box 1. The reciprocating slurry pressure-increasing plate 13 can improve the fluidity of the slurry, and promoting the flow of the slurry can reduce the suction pressure of the grouting pump group 3. Especially when the static height of the slurry inside the slurry storage box 1 is lower than the discharge port 17, it has the ability to push and supply the remaining material; during the operation of the slurry pressure-increasing plate 13, the scraping blade 15 on the side of the slurry pressure-increasing plate 13 fits against the inner wall of the slurry storage box 1 and scrapes to reduce the trouble of slurry sticking to the wall and residue, thereby ensuring the full discharge of the slurry inside the slurry storage box 1.
[0034] In summary: The adjustment slide table 11 is threadedly connected to the adjustment lead screw 8 to control the short-stroke reciprocating movement of the slurry pressurizing plate 13 inside the slurry storage box 1. The reciprocating slurry pressurizing plate 13 can improve the fluidity of the slurry, and promoting the slurry flow can reduce the suction pressure of the grouting pump set 3. Especially when the static height of the slurry in the slurry storage box 1 is lower than the discharge port 17, it has the ability to push and supply the remaining material; the scraping edge 15 on the side of the slurry pressurizing plate 13 scraping against the inner wall of the slurry storage box 1 can reduce the trouble of slurry sticking to the wall and residue, thus ensuring the full discharge of the slurry inside the slurry storage box 1.
[0035] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered within the protection scope of the present invention.
Claims
1. A pouring equipment for ceramic production, including a slurry storage box (1), and a pouring pump group (3) is arranged on one side of the slurry storage box (1), and is characterized in that: Inside the slurry storage box (1), there is a material storage chamber (16). Inside the slurry storage box (1), there is a material pushing mechanism, which includes a closing cover (6), a slurry pressure increasing plate (13), an adjustment slide (11) and an adjustment lead screw (8). The closing cover (6) is arranged at the upper end of the slurry storage box (1). The slurry pressure increasing plate (13) is arranged in the material storage chamber (16) of the slurry storage box (1). The adjustment slide (11) is fixed at the upper end of the slurry pressure increasing plate (13). The adjustment lead screw (8) is arranged in the adjustment slide (11). Scraping blades (15) are arranged on both sides of the slurry pressure increasing plate (13), and the scraping blades (15) are attached to the inner side wall of the slurry storage box (1).
2. The slip casting equipment for ceramic production according to claim 1, characterized in that: A guiding chute (10) is formed on the lower end surface of the closing cover (6), and the adjustment slide (11) is slidably connected in the guiding chute (10) of the closing cover (6).
3. The slip casting equipment for ceramic production according to claim 2, characterized in that: Guiding sliders (12) are arranged on both sides of the upper end surface of the slurry pressure increasing plate (13) where the adjustment slide (11) is located, and the guiding sliders (12) are also slidably connected in the guiding chute (10) of the closing cover (6).
4. The slip casting device for ceramic production according to claim 3, characterized in that: A rotating bearing (9) is fixed in the middle of one side surface of the closing cover (6), and one end of the adjustment lead screw (8) extends to the rotating bearing (9), and the adjustment lead screw (8) is rotatably connected in the closing cover (6).
5. The grouting device for ceramic production according to claim 4, characterized in that: An adjustment screw hole (14) is formed on one side surface of the adjustment slide (11), and the adjustment lead screw (8) is threadedly connected to the adjustment screw hole (14) of the adjustment slide (11).
6. The slip casting equipment for ceramic production according to claim 5, characterized in that: A driving motor (7) is fixed on the side surface of the closing cover (6) away from the rotating bearing (9), and the output end of the adjustment lead screw (8) is fixed on the output end of the driving motor (7).
7. The slip casting equipment for ceramic production according to claim 6, characterized in that: Discharge ports (17) are formed on the inner walls at both ends of the slurry storage box (1). A slurry outlet pipe (2) is fixed between the discharge ports (17) and the grouting pump group (3). A grouting pipe (4) is arranged at the output end of the grouting pump group (3).
8. A slip casting device for ceramic production according to claim 7, characterized in that: Support bases (5) are fixed below both the grouting pump group (3) and the slurry storage box (1). An inlet is arranged on one side surface of the slurry storage box (1).