Auxiliary device for paving acid-proof bricks
By designing an auxiliary device for laying acid-resistant bricks, the problem of bricks detaching from the mortar is solved by using clamping and pressing mechanisms, thus achieving tight bonding of acid-resistant bricks and improving construction efficiency, adapting to the construction needs of various brick sizes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- INNER MONGOLIA XINGTAI CONSTRAL GRP CO LTD
- Filing Date
- 2025-05-13
- Publication Date
- 2026-04-17
AI Technical Summary
Traditional methods for laying acid-resistant bricks can cause the bricks to detach from the mortar, leading to problems such as hollowing and warping, and the construction period is long and difficult to control.
An acid-resistant brick laying auxiliary device is adopted, including a main frame, a cross frame, a clamping mechanism, a pressing mechanism, and a rolling mechanism. The clamping mechanism fixes the bricks, the pressing mechanism provides pressure, and the rolling mechanism facilitates movement, ensuring that the bricks are tightly attached to the wall and preventing delamination and hollowing.
It effectively prevents acid-resistant bricks from detaching from the mortar, reduces hollowing and warping, improves construction efficiency, and adapts to the paving needs of bricks of different sizes.
Smart Images

Figure CN224134163U_ABST
Abstract
Description
Technical fields:
[0001] This utility model relates to the field of building construction technology, and in particular to an auxiliary device for laying acid-resistant bricks. Background technology:
[0002] Using acid-resistant bricks for exterior wall decoration in industrial buildings not only makes the building facade more beautiful, but also because acid-resistant bricks have good corrosion resistance and high strength. Therefore, they are widely used in the exterior building decoration of some factory parks, such as walls and ground.
[0003] Acid-resistant bricks have a high density, requiring resin mortar for adhesion during wall installation. During the curing process, stress release occurs, causing the bricks to shift downwards under gravity. When the brickwork is high, the upper layers sink and compress the lower layers, and this downward force causes slight warping of the lower tiles, leading to the bricks detaching from the mortar. This results in hollow spots and uneven joints on the acid-resistant brick wall surface. Traditional installation methods involve laying bricks no more than two rows high along the wall's length, with the daily installation height limited to two rows. Therefore, acid-resistant brick installation is time-consuming and prone to hollow spots. Utility Model Content:
[0004] The purpose of this invention is to provide an auxiliary device for laying acid-resistant bricks to solve the problems existing in the prior art.
[0005] This utility model is implemented by the following technical solution: an acid-resistant brick laying auxiliary device, including a main frame, a cross frame, a clamping mechanism, a pressing mechanism and a rolling mechanism. The main frame includes a side frame and several vertically arranged vertical beams. Cross frames are fixedly connected to the upper ends of the vertical ends on both sides of the side frame. Several parallel cross beams are fixedly arranged between the two cross frames. A rolling mechanism is installed between the two cross beams at the same horizontal height below. A clamping mechanism is provided at the free ends of the two cross frames. Several pressing mechanisms are movably arranged from top to bottom on the side frame of the main frame.
[0006] Furthermore, the clamping mechanism includes a support arm, a connecting part, a screw, and a rotating wheel. The support arm is vertically fixed downward on one side of the free end of the two spanning frames, and the connecting part is fixed between the two support arms. Two through slots are vertically downward on the top surface of the connecting part, and two through holes are horizontally opened on the side of the connecting part, passing through the through slots. The screw is freely inserted into the through holes, and the rotating wheel is provided in the through slot. The rotating wheel is threadedly connected to the screw.
[0007] Furthermore, a disc is provided at the end of the screw that passes through the connecting part near the main frame.
[0008] Furthermore, the pressing mechanism includes a crossbar and pins at both ends of the crossbar. Several insertion holes are provided from top to bottom on the vertical part on both sides of the main frame frame. The pins at both ends of the crossbar are movably inserted into the insertion holes. A top spring is sleeved on the pin. One end of the top spring abuts against the crossbar, and the other end of the top spring abuts against the frame of the main frame.
[0009] Furthermore, the rolling mechanism includes a rod, a roller, and a lock nut. One end of the rod is integrally formed with a cap, and the other end of the rod is threaded. The rod passes through two crossbeams in sequence, and the cap abuts against one of the crossbeams. A lock nut is threadedly connected to the threaded end of the rod, and the lock nut abuts against the other crossbeam. A roller is fitted on the rod between the two crossbeams.
[0010] The advantages of this utility model are as follows: A bracket consisting of a main frame, a transverse frame, and a clamping mechanism is formed and hung on the top of the wall. The pressing mechanism on the main frame applies a certain pressure to the freshly laid acid-resistant bricks, ensuring that the acid-resistant bricks adhere tightly to the wall. This can prevent the acid-resistant bricks from delaminating, becoming hollow, or falling off. After the adhesive on the back of the acid-resistant bricks has initially hardened, they can be moved laterally along the wall. The transverse frame and rolling mechanism facilitate the movement and rotation of the entire device along the wall, making operation more convenient. At the same time, the pressing mechanism can be adjusted in position on the main frame according to the size of different acid-resistant bricks, thus adapting to the laying of acid-resistant bricks of various sizes. Attached image description:
[0011] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0012] Figure 2 This is a schematic diagram illustrating the use of this utility model.
[0013] Figure 3 This is a partial structural diagram of the clamping mechanism.
[0014] Figure 4 This is a partial structural diagram of the suppression mechanism.
[0015] Figure 5 This is a partial structural diagram of the rolling mechanism.
[0016] In the diagram: 1. Main frame; 2. Cross frame; 3. Clamping mechanism; 4. Pressing mechanism; 5. Rolling mechanism; 6. Acid-resistant brick; 7. Wall; 101. Frame; 1011. Insertion hole; 102. Vertical beam; 201. Horizontal beam; 301. Support arm; 302. Connecting part; 3021. Through groove; 303. Screw; 3031. Disc; 304. Rotary wheel; 401. Crossbar; 402. Pin; 403. Top spring; 501. Insert rod; 502. Roller; 503. Lock nut; 504. Cap. Detailed implementation method:
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] like Figure 1 , Figure 2 As shown: An auxiliary device for laying acid-resistant bricks includes a main frame 1, a transverse frame 2, a clamping mechanism 3, a pressing mechanism 4, and a rolling mechanism 5. The main frame 1 includes a side frame 101 and several vertically arranged vertical beams 102. The transverse frame 2 is fixedly connected to the upper end of the vertical ends on both sides of the side frame 101. The transverse frame 2 is placed above the top surface of the wall 7. The main frame 1 is placed on one side of the wall 7. Several parallel horizontal beams 201 are fixedly arranged between two transverse frames 2. The rolling mechanism 5 is installed between two horizontal beams 201 at the same horizontal height below. The rolling mechanism 5 is rolled on the top surface of the wall 7. This allows the entire structure to move along the length of the wall 7. Clamping mechanisms 3 are provided at the free ends of the two cross-frames 2. Several pressing mechanisms 4 are movably installed from top to bottom on the side frame 101 of the main frame 1. The clamping mechanisms 3 are located on the other side of the wall 7. When in use, the clamping mechanisms 3 clamp the wall 7 and press the pressing mechanisms 4 on the main frame 1 to press the wall 7, so that the pressing mechanisms 4 apply a certain pressure to the acid-resistant bricks 6. After the acid-resistant bricks 6 are laid, the adhesive has high fluidity. The pressing mechanisms 4 can prevent the acid-resistant bricks 6 from overturning or shifting, thereby reducing the problems of hollowing and falling bricks after the acid-resistant bricks 6 are laid.
[0019] like Figure 3As shown: The clamping mechanism 3 includes a support arm 301, a connecting part 302, a screw 303, and a rotating wheel 304. Support arms 301 are vertically fixed downwards on one side of the free ends of the two transverse frames 2, extending downwards to one side of the wall 7. The support arms 301 and the main frame 1 are respectively placed on both sides of the wall 7, with the main frame 1 placed on the side of the wall 7 where acid-resistant bricks 6 are laid. A connecting part 302 is fixed between the two support arms 301. Two through slots 3021 are vertically downwards on the top surface of the connecting part 302. Two through holes 3022 are horizontally formed on the side of the connecting part 302, passing through the through slots 3021. A screw 303 moves freely through the through holes 3022. A rotating wheel 304 is provided in the through slots 3021. The screw 303 is threadedly connected to the connecting part 302. A disc 3031 is provided at one end of the screw 303 near the main frame 1. The disc 3031 contacts the wall 7. The disc 3031 can be made of rubber to increase the friction between the disc 3031 and the wall 7. In use, the main frame 1 is moved to the position where the acid-resistant brick 6 is laid. Then, the rotating wheel 304 is rotated to move the screw 303 toward the wall 7, gradually pressing the pressing mechanism 4 against the acid-resistant brick 6. The number of pressing mechanisms 4 is increased or decreased according to the position of the acid-resistant brick 6, so that each acid-resistant brick 6 is pressed tightly by the pressing mechanism 4. After the mortar has initially set, the two rotating wheels 304 are rotated in the opposite direction to make the disc 3031 detach from the surface of the wall 7, and then the machine can move toward the wall 7 to the next area.
[0020] like Figure 4 As shown: The pressing mechanism 4 includes a crossbar 401 and pins 402 at both ends of the crossbar 401. Several insertion holes 1011 are provided from top to bottom on the vertical part of both sides of the frame 101 of the main frame 1. The pins 402 at both ends of the crossbar 401 are movably inserted into the insertion holes 1011. The number of crossbars 401 can be selected according to the size of the acid-resistant brick 6, and the position of the crossbars 401 can be adjusted arbitrarily. A top spring 403 is sleeved on the pin 402. One end of the top spring 403 abuts against the crossbar 401, and the other end of the top spring 403 abuts against the frame 101 of the main frame 1. When the clamping mechanism 3 gradually presses against the wall 7, the main frame 1 gradually approaches the wall 7, and the crossbar 401 presses against the surface of the acid-resistant brick 6. The top spring 403 keeps the force applied to each crossbar 401 and the acid-resistant brick 6 approximately uniform.
[0021] like Figure 5As shown: The rolling mechanism 5 includes a rod 501, a roller 502, and a lock nut 503. One end of the rod 501 is integrally formed with a cap 504, and the other end of the rod 501 is threaded. The rod 501 passes through two crossbeams 201 in sequence. The cap 504 abuts against one of the crossbeams 201. The threaded end of the rod 501 is threadedly connected to the lock nut 503, which abuts against the other crossbeam 201. The roller 502 is sleeved on the rod 501 between the two crossbeams 201. The roller 502 rotates freely around the rod 501, so that the cross frame 2 and the main frame 1 can slide back and forth along the length of the wall 7, which facilitates turnover operation during construction.
[0022] In the description of this utility model, it should be noted that the terms "center", "upper", "lower", "front", "rear", "top", "bottom", "left", "right", "vertical", "horizontal", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
Claims
1. An auxiliary device for laying acid-resistant bricks, characterized in that, It includes a main frame (1), a cross frame (2), a clamping mechanism (3), a pressing mechanism (4) and a rolling mechanism (5). The main frame (1) includes a side frame (101) and several vertical beams (102) set vertically. The cross frame (2) is fixedly connected to the upper end of the vertical end of both sides of the side frame (101). Several parallel beams (201) are fixedly arranged between the two cross frames (2). A rolling mechanism (5) is installed between the two beams (201) at the same horizontal height below. A clamping mechanism (3) is provided at the free end of the two cross frames (2). Several pressing mechanisms (4) are movably arranged from top to bottom on the side frame (101) of the main frame (1).
2. An acid-resistant tile laying aid according to claim 1, wherein The clamping mechanism (3) includes a support arm (301), a connecting part (302), a screw (303), and a rotating wheel (304). The support arm (301) is vertically fixed downward on one side of the free end of the two cross-frames (2). The connecting part (302) is fixed between the two support arms (301). Two through slots (3021) are vertically downward on the top surface of the connecting part (302). Two through holes (3022) are horizontally opened on the side of the connecting part (302) through the through slots (3021). The screw (303) is freely inserted in the through holes (3022). The rotating wheel (304) is provided in the through slots (3021). The rotating wheel (304) is threadedly connected to the screw (303).
3. An acid-resistant tile laying aid according to claim 2, wherein The screw (303) passes through the connecting part (302) and has a disc (3031) at one end near the main frame (1).
4. The acid-resistant tile laying aid according to claim 3, wherein The pressing mechanism (4) includes a crossbar (401) and pins (402) set at both ends of the crossbar (401). Several insertion holes (1011) are opened from top to bottom on the vertical part of the side frame (101) of the main frame (1). The pins (402) at both ends of the crossbar (401) are movably inserted into the insertion holes (1011). A top spring (403) is sleeved on the pin (402). One end of the top spring (403) abuts against the crossbar (401), and the other end of the top spring (403) abuts against the side frame (101) of the main frame (1).
5. An acid-resistant tile laying aid according to claim 4, wherein The rolling mechanism (5) includes a rod (501), a roller (502) and a lock nut (503). One end of the rod (501) is integrally formed with a cap (504), and the other end of the rod (501) is threaded. The rod (501) passes through two crossbeams (201) in sequence. The cap (504) abuts against one of the crossbeams (201). A lock nut (503) is threadedly connected to the threaded end of the rod (501). The lock nut (503) abuts against the other crossbeam (201). A roller (502) is sleeved on the rod (501) between the two crossbeams (201).