Glazing pool
By designing a glaze pool containing parallel glaze liquid storage tank, pressure touch sensor and ceramic limit rod, the problem of glaze liquid entering the inner wall of the appliance during ceramic glaze is solved, and efficient and accurate glaze effect is achieved.
Patent Information
- Application Number
- CN202421323687.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-12
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-12
AI Technical Summary
During the ceramic glazing process, staff need to manually adjust the position of the ceramic utensils to avoid glaze liquid entering the inner wall of the utensils, resulting in inefficiency and uneven glaze liquid coverage.
A glazing pool was designed, including two glaze liquid storage pools arranged in parallel, a pressure touch sensor, a ceramic limit rod and an adjusting pressure spring. Through the adjustment of the ceramic limit rod and the control of the pressure touch sensor, the automatic transmission of glaze liquid and the positioning of ceramic utensils are realized, ensuring that the glaze liquid covers only the outside of the utensils.
Improve the efficiency of ceramic glazing, ensure that the glaze liquid does not enter the inner wall of the ceramic utensil, and maintain the accuracy and consistency of glazing.
Smart Images

Figure CN222904432U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of ceramic glazing, and in particular relates to a glazing pool. Background Art
[0002] During the ceramic processing process, the ceramics will be glazed. When fully glazed, the staff can directly immerse the ceramic utensils in the glaze. However, some ceramic utensils will only be glazed on the outside of the ceramic. To achieve the effect that the glaze covers the outside of the ceramic utensils but does not enter the inside of the ceramic utensils, experienced staff are required to manually and slowly sink the ceramic utensils opening upwards into the glaze. During the sinking process, the staff needs to pay attention to and adjust the sinking position of the ceramic utensils, which is not only inefficient, but a slight mistake in the process may cause the glaze to enter the inner wall of the ceramic utensils or the glazing line to be too low. Utility Model Content
[0003] The utility model provides a glazing pool, which has the characteristics of being able to significantly improve the glazing efficiency of workers on ceramics while effectively maintaining the accuracy of glazing on ceramic appliances.
[0004] The utility model provides the following technical solutions: a glazing pool, comprising two glaze liquid containing pools and two pressure touch sensors, the two glaze liquid containing pools are arranged in parallel, a drainage groove is opened on one side of the glaze liquid containing pools, two glaze liquid delivery pipes are installed at the bottom ends of the two glaze liquid containing pools, and glaze liquid delivery pumps are installed on the two glaze liquid delivery pipes, a limit plate is provided in the glaze liquid containing pools, a ceramic limit rod is inserted between the two glaze liquid containing pools, an adjusting compression spring is sleeved on the outer wall of the ceramic limit rod, a pressure plate is fixedly connected to the side wall of the ceramic limit rod, an extrusion contact is fixedly connected to the bottom end of the pressure plate, and the two pressure touch sensors are installed on the top ends of the glaze liquid containing pools.
[0005] Among them, a clearance groove is opened between the two glaze liquid containing pools, the ceramic limiting rod is inserted into the clearance groove, and one end of the adjusting compression spring is fixedly connected to the inner wall of the top end of the clearance groove.
[0006] Wherein, the side walls of the two glaze liquid containing pools are fixedly connected with residual liquid containing trough plates, and the residual liquid containing trough plates correspond to the positions of the drainage troughs.
[0007] Wherein, a support plate is provided at the bottom end of the limiting plate, and an adjusting vertical plate is threadedly connected to the side wall of the support plate, and the adjusting vertical plate is fixedly connected to the inner wall of the glaze liquid containing pool.
[0008] Wherein, a support frame is provided in the glaze liquid containing pool, and a support rod is fixedly connected to the side wall of the support frame, and the support rod is fixedly connected to the glaze liquid containing pool.
[0009] The beneficial effects of the present utility model are as follows: Two glaze liquid delivery pipes and two glaze liquid delivery pumps alternately extract the glaze liquid from one of the glaze liquid storage pools and transport it to the other glaze liquid storage pool. In cooperation with the pressing plate, the extrusion contact point, and the pressure contact sensor to adjust the opening and closing of the glaze liquid delivery pump, it enables the staff to take the ceramic utensils that have been glaze-dipped in the other glaze liquid storage pool during the process of dipping the ceramic utensils in one of the glaze liquid storage pools, which can greatly improve the glazing efficiency of the staff for ceramics. Moreover, with the aid of the limiting plate to limit the ceramic utensils and the drain groove to divert the excess glaze liquid, in cooperation with the glaze liquid dipping the ceramic utensils from bottom to top, when glazing the ceramic utensils, the glaze liquid will not enter the inner wall of the ceramic utensils, and it can effectively maintain the accuracy of glazing the ceramic utensils.
[0010] Parts not involved in this device are the same as or can be implemented using existing technologies. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 is a schematic structural diagram of the present utility model;
[0012] Figure 2 is Figure 1 an enlarged view of part A in
[0013] Figure 3 is a top view of the present utility model;
[0014] Figure 4 is a schematic diagram of the adjustment state of the ceramic limiting rod and the pressing plate in the present utility model.
[0015] In the figure: 1, glaze liquid storage pool; 11, drain groove; 12, relief groove; 13, surplus liquid storage tank plate; 2, glaze liquid delivery pipe; 21, glaze liquid delivery pump; 3, limiting plate; 31, support plate; 32, adjustment vertical plate; 4, ceramic limiting rod; 41, adjustment compression spring; 42, pressing plate; 43, extrusion contact point; 5, pressure contact sensor; 6, support frame; 61, support rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0016] Please refer to Figures 1-4 , the present utility model provides the following technical solutions: A glazing pool includes two glaze liquid storage pools 1 and two pressure contact sensors 5. The two glaze liquid storage pools 1 are arranged in parallel. A drain groove 11 is opened on one side of the glaze liquid storage pool 1. Two glaze liquid delivery pipes 2 are installed at the bottom ends of the two glaze liquid storage pools 1. Glaze liquid delivery pumps 21 are installed on both of the two glaze liquid delivery pipes 2. A limiting plate 3 is arranged inside the glaze liquid storage pool 1. A ceramic limiting rod 4 is inserted between the two glaze liquid storage pools 1. An adjustment compression spring 41 is sleeved on the outer wall of the ceramic limiting rod 4. A pressing plate 42 is fixedly connected to the side wall of the ceramic limiting rod 4. An extrusion contact point 43 is fixedly connected to the bottom end of the pressing plate 42. Both of the two pressure contact sensors 5 are installed on the top end of the glaze liquid storage pool 1.
[0017] In this implementation: Under normal conditions, both glaze liquid storage pools 1 are filled with a part of glaze liquid. The content of the glaze liquid is appropriate when the liquid level of the glaze liquid is slightly lower than the top of the ceramic ware after the staff installs the ceramic ware. The staff installs the ceramic ware in one of the glaze liquid storage pools 1, and the bottom end of the ceramic ware contacts the top end of the limit plate 3. Then the staff lifts the ceramic limit rod 4 upward and flips it to the corresponding position at the center of the ceramic ware. Subsequently, the ceramic limit rod 4 is gradually relaxed, and the ceramic limit rod 4 is pressed against the inner wall of the ceramic ware by the elastic force of the adjusting compression spring 41. After the adjustment of the ceramic limit rod 4 is completed, the pressure plate 42 and the extrusion contact point 43 squeeze the pressure contact sensor 5, and the pressure contact sensor 5 transmits a signal to the controller. The controller controls one of the glaze liquid delivery pumps 21 to draw the glaze liquid from the other glaze liquid storage pool 1 through the glaze liquid delivery pipe 2 and deliver it to the glaze liquid storage pool 1 where the ceramic ware is placed. Then the staff takes another ceramic ware and installs it in the other glaze liquid storage pool 1. The other glaze liquid delivery pump 21 draws the glaze liquid that has completed glaze dipping from the glaze liquid storage pool 1 and refluxes it. During the drawing process, the staff takes out the ceramic ware that has completed glaze dipping. During this process, the other ceramic ware automatically completes the glazing work. The staff repeats the above operations to glaze the ceramic ware. The two glaze liquid delivery pipes 2 and the two glaze liquid delivery pumps 21 alternately draw the glaze liquid from one of the glaze liquid storage pools 1 and deliver it to the other glaze liquid storage pool 1. The staff can take the ceramic ware that has completed glaze dipping in one of the glaze liquid storage pools 1 and place a new ware during the glaze dipping process of the ceramic ware in the other glaze liquid storage pool 1, which can greatly improve the glazing efficiency of the staff for ceramics. With the limit of the ceramic ware by the limit plate 3 and the diversion of the excess glaze liquid by the drain groove 11, combined with the glaze dipping of the ceramic ware from bottom to top by the glaze liquid, when glazing the ceramic ware, the glaze liquid will not enter the inner wall of the ceramic ware, which can effectively maintain the accuracy of glazing the ceramic ware. When the glaze liquid delivery pipe 2 and the glaze liquid delivery pump 21 draw the glaze liquid and deliver it to the other glaze liquid storage pool 1, the glaze liquid surges from bottom to top until the glaze liquid reaches the height corresponding to the drain groove 11, and the excess glaze liquid is discharged into the residual liquid storage trough plate 13 through the drain groove 11. During the working process, the staff can manually transfer the glaze liquid in the residual liquid storage trough plate 13 to the glaze liquid storage pool 1, or it can be pumped to one of the glaze liquid storage pools 1 through the installed pump body and pipeline.
[0018] A relief groove 12 is provided between two glaze liquid storage pools 1. A ceramic limiting rod 4 is inserted into the relief groove 12. One end of an adjusting compression spring 41 is fixedly connected to the inner wall of the top end of the relief groove 12. By providing the relief groove 12, a accommodating space can be provided for the ceramic limiting rod 4 and the adjusting compression spring 41. When the ceramic limiting rod 4 is lifted upward, the convex block at the bottom end of the ceramic limiting rod 4 squeezes the adjusting compression spring 41 to contract. After the ceramic limiting rod 4 is adjusted to a suitable position, the ceramic limiting rod 4 resets under the elastic force of the adjusting compression spring 41, driving the ceramic limiting rod 4 to move downward to squeeze and position the ceramic ware.
[0019] A surplus liquid storage tank plate 13 is fixedly connected to the side wall of two glaze liquid storage pools 1. The surplus liquid storage tank plate 13 corresponds to the position of the drain groove 11. By providing the surplus liquid storage tank plate 13, the surplus glaze liquid can be stored, avoiding waste of the glaze liquid.
[0020] A support plate 31 is provided at the bottom end of the limiting plate 3. An adjusting vertical plate 32 is threadedly connected to the side wall of the support plate 31. The adjusting vertical plate 32 is fixedly connected to the inner wall of the glaze liquid storage pool 1. By providing the support plate 31 and the adjusting vertical plate 32, the limiting plate 3 can be supported. The support plate 31 is bolted to the adjusting vertical plate 32. During actual use, the bolts can be loosened and the height of the support plate 31 can be adjusted to adjust the limiting plate 3. The limiting plate 3 is placed flat on the top end of the support plate 31. When adjusting the position of the support plate 31, the limiting plate 3 can be taken out, directly exposing the support plate 31. During the use process, the hole in the center of the limiting plate 3 and the gap between the limiting plate 3 and the inner wall of the glaze liquid storage pool 1 can provide a flowing space for the glaze liquid.
[0021] The glaze liquid storage pool 1 is provided with a support frame 6. A support rod 61 is fixedly connected to the side wall of the support frame 6. The support rod 61 is fixedly connected to the glaze liquid storage pool 1. By providing the support frame 6 and the support rod 61, the ceramic ware can be positioned, so that the center of the ceramic ware corresponds to the position of the ceramic limiting rod 4.
[0022] Working principle and usage process of the utility model: The staff adds an appropriate amount of glaze liquid into the two glaze liquid storage pools 1. The staff installs the ceramic ware in one of the glaze liquid storage pools 1, and the bottom end of the ceramic ware contacts the top end of the limit plate 3. Subsequently, the staff lifts the ceramic limit rod 4 upward and then flips it to the corresponding position at the center of the ceramic ware. Then, the ceramic limit rod 4 is gradually relaxed, and the ceramic limit rod 4 is pressed against the inner wall of the ceramic ware by the elastic force of the adjusting compression spring 41. After the adjustment of the ceramic limit rod 4 is completed, the pressing plate 42 and the extrusion contact point 43 press the pressure sensor 5, and the pressure sensor 5 transmits a signal to the controller. The controller controls one of the glaze liquid delivery pumps 21 to extract the glaze liquid from the other glaze liquid storage pool 1 through the glaze liquid delivery pipe 2 and deliver it to the glaze liquid storage pool 1 where the ceramic ware is placed. Subsequently, the staff takes another ceramic ware and installs it in the other glaze liquid storage pool 1. The other glaze liquid delivery pump 21 extracts the glaze liquid that has been glaze-dipped and refluxes it. During the extraction process, the staff takes out the ceramic ware that has been glaze-dipped. During this process, the other ceramic ware automatically completes the glazing work. The staff repeats the above operations to glaze the ceramic ware. When the staff dips the ceramic ware in one of the glaze liquid storage pools 1, they take and place a new ware for the ceramic ware that has been glaze-dipped in the other glaze liquid storage pool 1.
Claims
1. A glazing pool, comprising two glaze liquid containing pools (1) and two pressure touch sensors (5), characterized in that: The two glaze liquid containing pools (1) are arranged in parallel, and a drainage groove (11) is opened on one side of the glaze liquid containing pools (1). Two glaze liquid conveying pipes (2) are installed at the bottom of the two glaze liquid containing pools (1), and glaze liquid conveying pumps (21) are installed on the two glaze liquid conveying pipes (2). A limit plate (3) is provided in the glaze liquid containing pools (1), and a ceramic limit rod (4) is inserted between the two glaze liquid containing pools (1). The outer wall of the ceramic limit rod (4) is sleeved with an adjusting compression spring (41). The side wall of the ceramic limit rod (4) is fixedly connected with a pressure plate (42), and the bottom end of the pressure plate (42) is fixedly connected with an extrusion contact (43), and the two pressure touch sensors (5) are installed at the top of the glaze liquid containing pools (1).
2. A glazing pool according to claim 1, characterized in that: A clearance groove (12) is provided between the two glaze liquid containing pools (1), the ceramic limiting rod (4) is inserted into the clearance groove (12), and one end of the adjusting compression spring (41) is fixedly connected to the inner wall of the top end of the clearance groove (12).
3. A glazing pool according to claim 1, characterized in that: The side walls of the two glaze liquid containing pools (1) are fixedly connected with residual liquid containing groove plates (13), and the residual liquid containing groove plates (13) correspond in position to the drainage grooves (11).
4. A glazing pool according to claim 1, characterized in that: A support plate (31) is provided at the bottom end of the limiting plate (3), and an adjusting vertical plate (32) is threadedly connected to the side wall of the support plate (31), and the adjusting vertical plate (32) is fixedly connected to the inner wall of the glaze liquid holding pool (1).
5. The glazing pool according to claim 1, characterized in that: A support frame (6) is provided in the glaze liquid holding pool (1), and a support rod (61) is fixedly connected to the side wall of the support frame (6), and the support rod (61) is fixedly connected to the glaze liquid holding pool (1).