Ceramic tile soaking device for constructional engineering
By designing the inclined bottom plate and longitudinal spacer strips in the box to separate the ceramic tiles, combined with the driving mechanism, it facilitates efficient soaking and convenient removal of the ceramic tiles, solving the problems of low water absorption efficiency and inconvenient removal in the prior art.
Patent Information
- Application Number
- CN202422576359.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-10-24
AI Technical Summary
The existing tiles are soaked in a way that causes low water absorption and inconvenient removal, especially when the tiles are clinged together.
A tile soaking device including a box, a support seat, an immersion chamber and a driving mechanism is designed. The tiles are separated by inclined bottom plates and longitudinal spacers, thereby increasing the water absorption area, and facilitating the removal of the tiles through the driving mechanism.
It improves the water absorption efficiency of ceramic tiles and facilitates the removal of ceramic tiles, ensuring the stability and convenience of ceramic tiles during the soaking process.
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Figure CN223269551U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, in particular to a tile soaking device for construction engineering. Background Art
[0002] Building tiles are a commonly used material in the construction industry. By using building tiles, the interior of the building can be properly decorated, making the interior of the building look neater and more beautiful.
[0003] Ceramic tiles used in construction need to be soaked in water to absorb water in order to better bond with cement. After absorbing sufficient water, they are applied with cement mortar to prevent the moisture from being absorbed dry, so that the laying quality can reach a certain standard and it is not easy to have hollows, fall off, or even cracks. Especially for wall laying, the wall needs to be sprinkled with water before laying.
[0004] The existing method of soaking tiles is generally for construction workers to fill a large basin with water and stack the tiles flatly in the basin. Although it is simple to use, the tiles placed in this way are tightly together, the water absorption efficiency is slow, and it is inconvenient to take out the tiles. Utility Model Content
[0005] In order to solve the deficiencies in the prior art, the utility model provides a ceramic tile soaking device for construction engineering, which is convenient for fully soaking and taking out the ceramic tiles.
[0006] To achieve the above-mentioned purpose, the present invention is implemented through the following technical solutions: A ceramic tile soaking device for construction engineering, comprising a box body, a support seat arranged in the box body, a soaking chamber, and a driving mechanism for pushing the soaking chamber to move up and down in the box body;
[0007] The bottom plate of the soaking chamber is tilted downward, and a plurality of longitudinal spacer strips are provided on the bottom plate;
[0008] A plurality of drainage holes are arranged at the lower end of the bottom plate, and a water blocking column adapted to the drainage holes is arranged on the upper end surface of the support seat, and the water blocking column is inserted into the drainage hole.
[0009] The support seat, soaking chamber and driving mechanism are all arranged in the box. Under normal conditions, the driving mechanism is retracted and does not work. The tiles are placed in the soaking chamber filled with water along the inclined bottom plate. The adjacent tiles are separated according to the longitudinal spacers to increase the water absorption area of each tile. The soaking chamber is supported in the box by the support seat and the driving mechanism. The drainage holes of the soaking chamber are blocked by the water blocking columns on the support seat, and the water in the soaking chamber does not flow into the box; when soaking, the tiles are placed obliquely along the inclined bottom plate, and the tiles are separated by the longitudinal spacers in turn. Smaller-sized tiles can be placed on the uppermost bottom plate, and larger-sized tiles can be placed on the lower side of the soaking box. After soaking, the soaking chamber needs to be moved up to facilitate the removal of the tiles. The soaking chamber is separated from the support seat, and the drainage holes discharge the water in the soaking chamber into the box to reduce the total amount of the soaking chamber. A water outlet is opened on one side of the bottom of the box for water outflow.
[0010] Preferably, the spacing between adjacent longitudinal spacers is greater than the thickness of the ceramic tile, the longitudinal spacers extend along the width direction of the bottom plate, and the cross section of the longitudinal spacers is arc-shaped.
[0011] The longitudinal spacers are arranged longitudinally on the bottom plate at equal intervals. The longitudinal spacers are used to space the tilted tiles, thereby increasing the water absorption area of the tiles. The arc-shaped longitudinal spacers facilitate the tiles placed later to slide down in sequence, slide to the next longitudinal spacer, and be blocked by the bottom of the next longitudinal spacer.
[0012] Preferably, a side of the longitudinal spacer at a higher position is provided with an anti-slip surface, and the anti-slip surface extends along the length direction of the longitudinal spacer.
[0013] The arc-shaped longitudinal spacers may cause one tile to slip off multiple longitudinal spacers due to improper placement by construction workers, affecting the arrangement of tiles on the base plate. Providing an anti-slip surface is conducive to placing the tiles on the anti-slip surface on the side with higher height of the longitudinal spacers, preventing one tile from slipping off multiple longitudinal spacers.
[0014] Preferably, two groups of driving mechanisms are provided.
[0015] Two sets of driving mechanisms are distributed along the length direction of the bottom plate to better support and push the soaking chamber.
[0016] Preferably, the driving mechanism includes a protective sleeve and an electric push rod, the protective sleeve includes two straight cylinders and a rubber telescopic hose, the two ends of the rubber telescopic hose are respectively sealed with one end of the two straight cylinders, the other end of one straight cylinder is sealed and arranged on the bottom surface of the box, and the other end of the other straight cylinder is sealed and connected to the bottom plate, the electric push rod is arranged in the protective sleeve, and the shell of the electric push rod is fixed on the bottom surface of the box.
[0017] The electric push rod is arranged in a protective sleeve. The protective sleeve protects the electric push rod and prevents the electric push rod from being corroded by water. The longest extended length of the electric push rod is greater than the total length of the two straight sections of the protective sleeve. The end of the extended rod of the electric push rod can be fixed to the bottom surface of the base plate or not. The extended rod of the electric push rod extends to the top of the bottom surface of the base plate, pushing the immersion chamber to move upward; the extended rod of the electric push rod retracts and the immersion chamber follows and moves downward. In order to improve the stability of the electric push rod during operation, the shell of the electric push rod is fixed to the bottom surface of the box.
[0018] Preferably, the driving mechanism includes a protective sleeve and an electric push rod, the protective sleeve includes a straight tube and a rubber telescopic hose, one end of the rubber telescopic hose is sealed to the base plate, and the other end is sealed to one end of the straight tube, and the other end of the straight tube is sealed on the bottom surface of the box.
[0019] Another installation method of the straight tube and the rubber telescopic hose of the protective sleeve is that one end of the rubber telescopic hose is sealed on the bottom plate, and the other end is sealed on one end of the straight tube. The other end of the straight tube is sealed on the bottom surface of the box, thereby reducing the use of one straight tube.
[0020] Compared with the existing technology, the beneficial effects of the present invention are: ceramic tiles are placed in a immersion chamber filled with water along the inclined bottom plate, and adjacent ceramic tiles are separated according to longitudinal spacers to increase the water absorption area of each ceramic tile. Smaller ceramic tiles can be placed at the higher end of the bottom plate of the immersion chamber; the drainage hole of the immersion chamber is blocked by the water blocking column on the support seat, and the water in the immersion chamber does not flow into the box; during immersion, the immersion chamber needs to be moved up to facilitate the removal of the tiles after soaking. The immersion chamber is separated from the support seat through the driving mechanism, and the drainage hole discharges the water in the immersion chamber into the box to reduce the total amount of the immersion chamber; the protective sleeve protects the electric push rod to prevent the electric push rod from being corroded by water. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Attachment Figure 1 This is a schematic diagram of the three-dimensional structure of the first embodiment of the present utility model;
[0022] Attachment Figure 2 This is the left side view of the utility model;
[0023] Attachment Figure 3 For this utility model Figure 2 Middle AA section view;
[0024] Attachment Figure 4 This is a schematic diagram of the structure of the soaking chamber of the utility model;
[0025] Attachment Figure 5 For this utility model Figure 4 A in the middle is an enlarged structural diagram;
[0026] Attachment Figure 6This is a structural diagram of the support seat of the utility model.
[0027] The numbers shown in the accompanying drawings are: 1. Box body; 101. Water outlet; 2. Soaking chamber; 201. Bottom plate; 202. Drain hole; 3. Support seat; 301. Water blocking column; 4. Longitudinal spacer; 401. Anti-slip surface; 5. Electric push rod; 6. Protective sleeve; 601. Straight cylinder; 602. Rubber telescopic hose. DETAILED DESCRIPTION
[0028] The present invention will be further described below with reference to specific embodiments. Figures 1 to 6 As shown, embodiment 1: a ceramic tile immersion device for construction projects, comprising a box body 1, a support base 3 arranged in the box body 1, a immersion chamber 2, and a driving mechanism for pushing the immersion chamber 2 to move up and down in the box body 1, the support base 3, the immersion chamber 2 and the driving mechanism are all arranged in the box body 1, the bottom plate 201 of the immersion chamber 2 is tilted downward, and a plurality of longitudinal spacer strips 4 are provided on the bottom plate 201; a plurality of drainage holes 202 are provided at the lower end of the bottom plate 201, and a water blocking column 301 adapted to the drainage hole 202 is provided on the upper end face of the support base 3, and the water blocking column 301 is inserted in the drainage hole 202; there are two groups of driving mechanisms, and the two groups of driving mechanisms are distributed along the length direction of the bottom plate 201.
[0029] The spacing between adjacent longitudinal spacers 4 is greater than the thickness of the tiles. The longitudinal spacers 4 extend along the width of the base plate 201 and have an arcuate cross-section. The longitudinal spacers 4 are evenly spaced longitudinally on the base plate 201. They serve to separate the tilted tiles, increasing their water absorption surface. The arcuate shape of the longitudinal spacers 4 facilitates the sliding of subsequent tiles, allowing them to slide onto the next longitudinal spacer 4 and be blocked by the bottom of the next longitudinal spacer 4.
[0030] The higher side of the longitudinal spacer 4 is provided with an anti-slip surface 401, which extends along the length of the longitudinal spacer 4. The curved longitudinal spacer 4 may cause a tile to slip off multiple longitudinal spacers 4 due to improper placement by construction workers, affecting the arrangement of tiles on the base plate 201. The provision of the anti-slip surface 401 facilitates the placement of tiles on the higher side of the longitudinal spacer 4, preventing a tile from slipping off multiple longitudinal spacers 4.
[0031] The driving mechanism includes a protective sleeve 6 and an electric push rod 5. The protective sleeve 6 includes two straight cylinders 601 and a rubber telescopic hose 602. The two ends of the rubber telescopic hose 602 are respectively sealed with one end of the two straight cylinders 601. The other end of one straight cylinder 601 is sealed and set on the bottom surface of the box body 1, and the other end of the other straight cylinder 601 is sealed and connected to the bottom plate 201. The electric push rod 5 is set in the protective sleeve 6, and the shell of the electric push rod 5 is fixed on the bottom surface of the box body 1.
[0032] The electric push rod 5 is arranged in the protective sleeve 6. The protective sleeve 6 protects the electric push rod 5 and prevents the electric push rod 5 from being corroded by water. The longest extended length of the electric push rod 5 is greater than the total length of the two straight tubes 601 of the protective sleeve 6. The end of the extended rod of the electric push rod 5 can be fixedly connected to the bottom surface of the base plate 201 or not. The extended rod of the electric push rod 5 extends to the top of the bottom surface of the base plate 201, pushing the immersion chamber 2 to move upward; the extended rod of the electric push rod 5 retracts and the immersion chamber 2 follows and moves downward. In order to improve the stability of the electric push rod 5 during operation, the shell of the electric push rod 5 is fixedly provided on the bottom surface of the box body 1.
[0033] Working process: Under normal conditions, the drive mechanism is retracted and not working. The tiles are placed in the soaking chamber 2 filled with water along the inclined bottom plate 201. The adjacent tiles are separated by the longitudinal spacers 4. The soaking chamber 2 is supported in the box body 1 by the support base 3 and the drive mechanism. The drainage hole 202 of the soaking chamber 2 is blocked by the water blocking column 301 on the support base 3. The water in the soaking chamber 2 does not flow into the box body 1.
[0034] During soaking, the tiles are placed tilted along the inclined bottom plate 201. Smaller tiles can be placed on the uppermost bottom plate 201, and larger tiles can be placed on the lower side of the soaking box. After soaking, the soaking chamber 2 needs to be moved up to facilitate the removal of the tiles. The soaking chamber 2 is separated from the support seat 3 by the electric push rod 5, and the drainage hole 202 drains the water in the soaking chamber 2 into the box body 1 to reduce the total amount of the soaking chamber 2. A water outlet hole 101 is opened on one side of the bottom of the box body 1 for water outflow.
[0035] Example 2: Example 2 differs from Example 1 in the combination and installation position of the protective sleeve 6. This embodiment has a simple structure and is not shown in the figures. The drive mechanism of Example 2 includes a protective sleeve 6 and an electric push rod 5. The protective sleeve 6 includes a straight tube 601 and a rubber telescopic hose 602. One end of the rubber telescopic hose 602 is sealed to the bottom plate 201, and the other end is sealed to one end of the straight tube 601. The other end of the straight tube 601 is sealed to the bottom surface of the box body 1. Another installation method for the straight tube 601 and the rubber telescopic hose 602 of the protective sleeve 6 reduces the use of one straight tube 601 and also serves to protect the electric push rod 5 and achieve telescopic movement.
[0036] It should be understood that these embodiments are only used to illustrate the present invention and are not intended to limit the scope of the present invention. In addition, it should be understood that after reading the contents of the present invention, those skilled in the art may make various changes or modifications to the present invention, and these equivalent forms also fall within the scope defined in this application.
Claims
1. A tile soaking device for construction engineering, characterized by: It comprises a box body (1), a support base (3) arranged in the box body (1), a soaking chamber (2), and a driving mechanism for pushing the soaking chamber (2) to move up and down in the box body (1); The bottom plate (201) of the soaking chamber (2) is arranged to be tilted downward, and a plurality of longitudinal spacer strips (4) are arranged on the bottom plate (201); The lower end of the bottom plate (201) is provided with a plurality of drainage holes (202), and the upper end surface of the support seat (3) is provided with a water blocking column (301) adapted to the drainage holes (202), and the water blocking column (301) is inserted into the drainage hole (202).
2. A ceramic tile soaking device for construction engineering according to claim 1, characterized in that: The spacing between adjacent longitudinal spacers (4) is greater than the thickness of the ceramic tile; the longitudinal spacers (4) extend along the width direction of the bottom plate (201); and the cross section of the longitudinal spacers (4) is arc-shaped.
3. A tile soaking device according to claim 2, characterized in that: A non-slip surface (401) is provided on a side of the longitudinal spacer (4) at a higher position, and the non-slip surface (401) extends along the length direction of the longitudinal spacer (4).
4. The ceramic tile soaking device for construction engineering according to claim 1, characterized in that: The driving mechanism is provided with two groups.
5. A ceramic tile soaking device for construction engineering according to claim 4, characterized in that: The driving mechanism comprises a protective sleeve (6) and an electric push rod (5); the protective sleeve (6) comprises two straight cylinders (601) and a rubber telescopic hose (602); the two ends of the rubber telescopic hose (602) are respectively sealed with one end of the two straight cylinders (601); the other end of one straight cylinder (601) is sealed and arranged on the bottom surface of the box (1); the other end of the other straight cylinder (601) is sealed and connected to the bottom plate (201); the electric push rod (5) is arranged in the protective sleeve (6), and the housing of the electric push rod (5) is fixed to the bottom surface of the box (1).
6. The ceramic tile soaking device for construction engineering according to claim 4, characterized in that: The driving mechanism comprises a protective sleeve (6) and an electric push rod (5); the protective sleeve (6) comprises a straight cylinder (601) and a rubber telescopic hose (602); one end of the rubber telescopic hose (602) is sealedly connected to the bottom plate (201), and the other end is sealedly connected to one end of the straight cylinder (601); the other end of the straight cylinder (601) is sealed and arranged on the bottom surface of the box body (1).