Wall brick pasting device
By using a vacuum pump and pressure sensor to adsorb wall tiles, combined with an ultrasonic detector to detect hollow areas, the problem of construction workers having difficulty controlling the force is solved, achieving uniform adhesion and high-quality tiling of wall tiles, and improving construction efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-04-07
AI Technical Summary
During home renovation, it is difficult for construction workers to control the force when manually laying wall tiles, resulting in uneven distribution of adhesive or loose adhesion, which affects the stability and quality of the wall tile installation.
A wall tile installation device is used, which combines a vacuum pump, a pressure sensor and an ultrasonic detector. It uses vacuum to adsorb wall tiles and detects the pressure to ensure appropriate pressure distribution. At the same time, it uses ultrasonic waves to detect hollow spots and provides real-time feedback to adjust the installation quality.
It achieves uniform and high-quality tile adhesion, avoids adhesive waste and hollow sound problems, and improves construction efficiency and the stability of tile installation.
Smart Images

Figure CN224092928U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of tile devices, specifically a kind of wall tile device belongs to indoor decoration technical field. BACKGROUND
[0002] In the process of house decoration, kitchen, washroom and other rooms that use water frequently, its wall is usually paved with wall tiles to prevent water vapor from penetrating into the wall body and avoid the wall body from being damp and moldy. Wall tiles are usually connected with the wall using adhesive. The effective amount of adhesive used is crucial to the stability of wall tiles adhered to the wall.
[0003] When laying wall tiles, construction personnel need to provide pressure to the wall tiles so that they can be connected with the adhesive. Then, the traditional way is to manually push the wall tiles by the construction personnel. The pressure on the wall tiles completely depends on the experience of the construction personnel, and the force varies. It is easy to cause the adhesive to be squeezed out too much and reduce the adhesion or the adhesion to be not tight enough due to too small pressure, which will reduce the installation stability of the wall tiles.
[0004] Therefore, we provide a wall tile device to solve the above problems. SUMMARY
[0005] To solve the above problems, the utility model provides a wall tile device to solve the above problems, and the specific technical scheme is as follows:
[0006] A wall tile device includes a cart, a vacuum pump box is arranged at the upper end of the cart, a hand-held device is arranged at the side end of the cart, the hand-held device includes a base plate, a frame is arranged at the side end of the base plate, a pressure sensor is connected to the rear end of the frame, an extension push cylinder is connected to the front end of the base plate, a suction cup is arranged in the frame, an ultrasonic detector is connected to one side of the base plate, and a terminal is connected to the other side of the base plate, and hand grips are connected to the two sides of the terminal.
[0007] Preferably, a roller is arranged at the lower end of the cart, a placing frame is connected to the upper end of the cart, the hand-held device can be placed on the upper end of the placing frame, a vacuum pump is arranged in the vacuum pump box, a gas guide hose is connected to the air suction end of the vacuum pump, and the gas guide hose is connected to the hand-held device.
[0008] Preferably, a fixing frame is connected to the rear end of the frame, the fixing frame is located at the outer end of the pressure sensor, a gas guide branch hose is connected to the rear end of the suction cup, and the gas guide branch hose is slidingly connected to the inside of the fixing frame.
[0009] Preferably, a spring is connected between the fixing frame and the suction cup, the gas guide branch hose is located in the spring, a fixing member is connected to the side end of the base plate, the fixing member is respectively connected to the gas guide hose and the gas guide branch hose, and the gas guide hose and the gas guide branch hose are in communication.
[0010] Preferably, the base plate is a high-strength stainless steel metal plate, the frame outer end is wrapped with a cotton pad, the telescopic push cylinder driving end is connected with a pressure sensor, and the suction cup is made of corrosion-resistant rubber material.
[0011] Preferably, the ultrasonic detector can reflect and receive ultrasonic signals, and the terminal is connected with the ultrasonic detector, the pressure sensor and the telescopic push cylinder respectively.
[0012] Preferably, a display screen is arranged in the terminal, and an operation button is arranged at the outer end of the handle, which controls the ultrasonic detector, the telescopic push cylinder and the vacuum pump respectively.
[0013] Compared with the prior art, the utility model has the following beneficial effects:
[0014] 1. The wall brick device is provided with a hand-held device, which can adsorb and fix the wall brick, and can use appropriate force to paste the wall brick on the wall. Specifically, the wall brick is placed on the frame, and the porcelain surface is connected with the suction cup. Then, the vacuum pump box is used to extract the vacuum inside the suction cup. Under the action of atmospheric pressure, the wall brick is adsorbed and fixed by the suction cup. Then, the worker pastes the wall brick on the wall by brushing the adhesive on the wall and the back of the wall brick, and holds the handle. The telescopic push cylinder provides a pushing force for the frame. The pressure sensor can detect the size of the pushing force. When the pushing force reaches a set value, the terminal stops the telescopic push cylinder from running, and the worker is reminded on the display screen. In this way, the wall brick is subjected to appropriate pressure during the pasting process, which helps the adhesive to be evenly distributed and improves the pasting quality. At the same time, the problem of excessive adhesive being squeezed out due to excessive pressure or poor adhesion due to insufficient pressure is avoided.
[0015] 2. The wall brick device is provided with an ultrasonic detector in the hand-held device. After the wall brick is pasted on the wall, the suction cup does not release the fixation of the wall brick. The ultrasonic detector sends ultrasonic waves to the wall brick and receives the return signal. Based on the propagation characteristics of ultrasonic waves in different media, when the ultrasonic waves meet the hollow, the ultrasonic waves will be reflected and refracted at the interface due to the large difference in acoustic impedance between air and the wall brick and the base material, thereby changing the received ultrasonic signal. The terminal analyzes the change of the return signal to determine whether there is a hollow, the position and degree of the hollow, and can simulate the image on the display screen to provide real-time feedback to the construction personnel. If there is a large hollow that affects the pasting of the wall brick, the construction personnel can timely disassemble the wall brick, reapply the adhesive and re-paste. If there is no hollow or the size of the hollow does not affect the pasting, the next wall brick can be pasted. In this way, the pasting quality of the wall brick can be effectively guaranteed. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1The overall structure schematic view of the utility model is shown in the figure.
[0017] Figure 2 The hand-held device structure schematic view of the utility model is shown in the figure.
[0018] Figure 3 The terminal structure schematic view of the utility model is shown in the figure.
[0019] Figure 4 The hand-held device side end structure schematic view of the utility model is shown in the figure.
[0020] Figure 5 The suction disc section structure schematic view of the utility model is shown in the figure.
[0021] BRIEF DESCRIPTION OF DRAWINGS: 1, trolley; 2, vacuum pump box; 3, hand-held device; 301, base plate; 302, frame; 303, pressure sensor; 304, telescopic push cylinder; 305, suction disc; 306, ultrasonic detector; 307, terminal; 308, handle; 309, fixing frame; 3010, air guide branch hose; 3011, spring; 3012, fixing part; 4, placing frame; 5, air guide hose. DETAILED DESCRIPTION
[0022] The utility model will be further described in combination with the drawings.
[0023] Please refer to Figure 1 — Figure 5 , including trolley 1, trolley 1 lower end is provided with the roller, so as to facilitate the movement of the device, trolley 1 upper end is provided with vacuum pump box 2, trolley 1 side end is provided with hand-held device 3, and the construction personnel can take hand-held device 3 and move.
[0024] Hand-held device 3 includes base plate 301, and the base plate 301 is high-strength stainless steel metal plate, so as to ensure its structural strength and service life, and the base plate 301 side end is provided with frame 302, and the frame 302 outer end is wrapped with cotton pad, and the wall brick is located at the frame 302 side end, and the cotton pad is used to avoid scratch to the wall brick, and the frame 302 rear end is connected with pressure sensor 303, and the base plate 301 front end is connected with telescopic push cylinder 304, and the telescopic push cylinder 304 driving end is connected with pressure sensor 303, and the pressure sensor 303 is used to detect the pressure of telescopic push cylinder 304 to frame 302, and the telescopic push cylinder 304 is used to replace the pressure of manual pressure of the construction personnel.
[0025] The frame 302 is provided with a suction cup 305 made of corrosion-resistant rubber material to ensure its service life. The vacuum pump box 2 is provided with a vacuum pump. The air guide hose 5 is connected to the air suction end of the vacuum pump. The air guide hose 5 is connected to the handheld device 3. The fixed frame 309 is connected to the rear end of the frame 302 and located outside the pressure sensor 303. The suction cup 305 is connected to the air guide branch hose 3010. The air guide branch hose 3010 is slidably connected to the fixed frame 309. The spring 3011 is connected between the fixed frame 309 and the suction cup 305. The air guide branch hose 3010 is located in the spring 3011. The spring 3011 is fixed to one end of the fixed frame 309. Thus, the spring 3011 can provide a pushing force for the suction cup 305. Thus, the suction cup 305 can be tightly attached to the wall brick. The fixed part 3012 is connected to the side end of the base plate 301. The fixed part 3012 is connected to the air guide hose 5 and the air guide branch hose 3010. The air guide hose 5 is in communication with the air guide branch hose 3010. When the vacuum pump box 2 is started, the suction cup 305 is vacuumized through the air guide hose 5 and the air guide branch hose 3010. Thus, the wall brick on the side end can be fixed by suction.
[0026] The ultrasonic detector 306 is connected to one side of the base plate 301. The terminal 307 is connected to the other side of the base plate 301. The terminal 307 is provided with a display screen. The terminal 307 is provided with a handle 308 on both sides. The handle 308 is provided with a control button on the outer end. The control button controls the ultrasonic detector 306, the telescopic push cylinder 304, and the vacuum pump. The handle 308 can facilitate the use of the handheld device 3 by the construction personnel. The ultrasonic detector 306 can reflect and receive ultrasonic signals. The terminal 307 is connected to the ultrasonic detector 306, the pressure sensor 303, and the telescopic push cylinder 304. Based on the propagation characteristics of ultrasonic waves in different media, when the ultrasonic wave encounters a hollow drum, the ultrasonic wave will be reflected and refracted at the interface due to the large difference in acoustic impedance between air and wall brick and base material. Thus, the received ultrasonic signal changes. The terminal 307 analyzes the change of the return signal to determine whether there is a hollow drum and the position and degree of the hollow drum. The terminal 307 can perform image simulation on the display screen to provide real-time feedback to the construction personnel.
[0027] The placing frame 4 is connected to the upper end of the trolley 1. The handheld device 3 can be placed on the upper end of the placing frame 4. The handheld device 3 is placed on the placing frame 4 with the frame 302 facing upwards. The terminal 307 can be located in the placing frame 4. The handle 308 is located on both sides of the placing frame 4.
[0028] The telescopic push cylinder 304 in the present application is a common electrical device in the prior art. The present application does not make too much repetition on its model or internal structure. It can also be replaced by other power sources.
[0029] The utility model discloses a hand-held device 3 is placed on the placing frame 4, and makes the frame 302 upwards, then the wall brick is placed on the frame 302, and makes its porcelain surface downward, at the moment under the action of spring 3011, the sucking disc 305 can be closely combined with the porcelain surface of wall brick, starts vacuum pump box 2, and it will be through the air hose 5, air hose branch hose 3010 and will be in the sucking disc 305 and extract into vacuum, can thus the wall brick on the frame 302 adsorbs and fixes, then the construction personnel respectively at the back of wall brick, wall paste and stick agent, and the construction personnel both hands hold handle 308, and the wall brick is lightly pasted on the wall, keeps hand-held device 3 unmoved, starts telescopic push cylinder 304, and it will provide the thrust for the frame 302, and pressure sensor 303 can detect the size of thrust, when the thrust reaches the set value, at the moment terminal 307 will stop telescopic push cylinder 304 and run, and the worker is reminded on the display screen, and this ensures that the wall brick receives the suitable pressure in the process of sticking, after the paving and sticking are completed, first do not release the adsorption and fixation of sucking disc 305 to wall brick, starts ultrasonic detector 306, and it sends ultrasonic wave to wall brick, and receives the back signal, and terminal 307 judges whether there is hollowing and the position and degree of hollowing by analyzing the back signal change, and can carry out image simulation on the display screen, provides real -time feedback for the construction personnel, if there is larger hollowing and affects wall brick to stick, then the construction personnel can dismantle the wall brick in time, re -brush paste and stick agent, re -pave and stick, if there is no hollowing or the size of hollowing does not affect, then can stop vacuum pump box 2, at the moment sucking disc 305 will release the fixation to the wall brick, and this continues to pave and stick the next wall brick, can effectively guarantee the paving and sticking quality of whole wall brick.
[0030] The technical principles of the utility model are described above in combination with specific embodiments. These descriptions are only for explaining the principles of the utility model, and cannot be explained as the limitation of the protection scope of the utility model in any way. Based on the explanation here, the person skilled in the art can think of other specific embodiments of the utility model without creative labor, and these embodiments will all fall into the protection scope of the claims of the utility model.
Claims
1. A wall tile application device, comprising a trolley (1), characterized in that: The trolley (1) is equipped with a vacuum pump box (2) at the top and a handheld device (3) at the side of the trolley (1). The handheld device (3) includes a base plate (301), a frame (302) at the side of the base plate (301), a pressure sensor (303) at the rear end of the frame (302), a telescopic push cylinder (304) at the front end of the base plate (301), a suction cup (305) inside the frame (302), an ultrasonic detector (306) at one side of the base plate (301), a terminal (307) at the other side, and handles (308) at both sides of the terminal (307).
2. The wall tile applicator according to claim 1, characterized in that: The trolley (1) is equipped with rollers at the lower end and a mounting frame (4) is connected to the upper end of the trolley (1). The handheld device (3) can be placed on the upper end of the mounting frame (4). A vacuum pump is installed inside the vacuum pump box (2). A gas guide hose (5) is connected to the suction end of the vacuum pump. The side end of the gas guide hose (5) is connected to the handheld device (3).
3. A wall tile applicator according to claim 2, characterized in that: The frame (302) is connected to a fixed frame (309) at its rear end. The fixed frame (309) is located at the outer end of the pressure sensor (303). The suction cup (305) is connected to a gas guide hose (3010) at its rear end. The gas guide hose (3010) is slidably connected inside the fixed frame (309).
4. A wall tile applicator according to claim 3, characterized in that: A spring (3011) is connected between the fixing frame (309) and the suction cup (305). The air guide hose (3010) is located inside the spring (3011). A fixing member (3012) is connected to the side end of the base plate (301). The fixing member (3012) is connected to the air guide hose (5) and the air guide hose (3010) respectively. The air guide hose (5) and the air guide hose (3010) are in communication.
5. A wall tile applicator according to claim 1, characterized in that: The base plate (301) is a high-strength stainless steel metal plate, the outer end of the frame (302) is wrapped with cotton pads, the drive end of the telescopic push cylinder (304) is connected to the pressure sensor (303), and the suction cup (305) is made of corrosion-resistant rubber material.
6. A wall tile applicator according to claim 1, characterized in that: The ultrasonic detector (306) can reflect and receive ultrasonic signals, and the terminal (307) is connected to the ultrasonic detector (306), the pressure sensor (303), and the telescopic push cylinder (304) respectively.
7. A wall tile applicator according to claim 1, characterized in that: The terminal (307) is equipped with a display screen, and the handle (308) is equipped with control buttons on its outer end. These control buttons control the ultrasonic detector (306), the telescopic push cylinder (304), and the vacuum pump, respectively.