A device for masonry joint construction
By designing a masonry grouting construction device, the grouting and wiping components can be easily switched and aligned using reversing and leveling components. This solves the problem of inconsistent forming caused by non-fixed grouting tools, and improves construction efficiency and the aesthetics of masonry.
Patent Information
- Application Number
- CN202310620934.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-30
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2043-05-30
AI Technical Summary
In current masonry construction, the grouting tools are not fixed, resulting in large differences in grouting depth and shape, which affects the masonry forming effect and reduces work efficiency.
A masonry grouting construction device was designed, comprising a mounting base, grouting components, and grouting components. The device enables convenient reversing through a reversing component, and ensures consistency between grouting and grouting by combining a leveling component and a displacement adjustment component. Furthermore, it enables simultaneous processing of multiple mortar joints through a motor and a threaded rod.
It improves the efficiency of grouting and grouting, ensures that multiple mortar joints are formed in a consistent manner, saves labor costs, and enhances the neatness and aesthetics of the masonry.
Smart Images

Figure CN116752783B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of grouting construction technology, and specifically to a masonry grouting construction device. Background Technology
[0002] Grouting refers to filling the gaps between two adjacent masonry blocks with mortar. Its purpose is to effectively strengthen the connection between the masonry blocks on all sides, prevent wind and rain from penetrating the interior of the wall, and make the wall surface clean, neat and beautiful.
[0003] After the construction of the masonry blocks is completed, the conventional practice is to use the erected scaffolding. Construction workers stand on the scaffolding and use tools such as steel bars or plastic water pipes to grout the mortar joints of the masonry one by one. This method is inefficient and affects the construction speed. In addition, the tools used for grouting are not fixed. Different workers use different grouting tools, which leads to large differences in the depth and shape of the grouting, affecting the overall forming effect of the masonry and resulting in poor final appearance quality. Summary of the Invention
[0004] To address the aforementioned technical problems in the existing technology, a masonry grouting construction device is provided. The grouting component and the wiping component are easy to switch directions, and the device can also help construction workers quickly align the grouting component and the wiping component with the mortar joints. Furthermore, the device can grout and wipe multiple mortar joints at once, ensuring consistent grouting and wiping effects across multiple mortar joints, while improving work efficiency and saving labor costs.
[0005] The objectives and effects of this invention are achieved by the following specific technical means:
[0006] A masonry grouting construction device includes a mounting base, grouting components, and grouting components. The grouting components and grouting components are provided in several groups and are staggered. The mounting base is located on one side of the grouting components and grouting components.
[0007] A reversing component is installed on the mounting base. Both the grouting component and the grouting component are installed on the reversing component. The reversing component is used to change the direction of the grouting component and the grouting component.
[0008] The reversing component includes several displacement adjusting components. The grouting component and the wiping component can be detachably connected to the adjacent displacement adjusting components. The displacement adjusting components are used to adjust the displacement of the grouting component and the wiping component.
[0009] One of the displacement adjustment components is equipped with a leveling component, which is used for leveling the grouting component and the grouting component. A control module is installed on the side of the mounting base through an opening.
[0010] The reversing component also includes a motor and a threaded rod. Several displacement adjusting components are threadedly connected to the outside of the threaded rod. The motor is fixed inside the mounting base, and the motor output end extends outside the mounting base and is fixed at the middle position of the threaded rod. The motor is a geared motor.
[0011] The displacement adjusting component includes a threaded ring and a support rod. The threaded ring is threaded to the outside of the threaded rod, and the support rod is welded to the threaded ring. Both the grouting component and the rubbing component are detachably connected to the support rod.
[0012] The leveling component includes a support, a laser, and a camera. The support is fixed to one of the displacement adjustment components. The laser and the camera are both fixed to the support and are electrically connected to the control module. A crosshair pattern is provided at the laser's emission port.
[0013] The control module is a control panel.
[0014] A battery box is fixed on the mounting base, and a storage battery is installed inside the battery box.
[0015] A number of the support rods have positioning holes at the same point, and a limiting rod is inserted between the positioning holes. One of the positioning holes and the outer wall of the limiting rod are both threaded with several turns, and the limiting rod is threaded into the positioning hole with the threads.
[0016] The grouting component includes a mounting head and grouting balls. The mounting head is detachably connected to the adjacent support rod, and the grouting balls are rotatably connected to the outer end of the mounting head.
[0017] The grout-cleaning component includes a scraper, a mounting rod, and a spring. There are two mounting rods and two springs. The two mounting rods are detachably connected to both sides of the support rod. The outer end of each mounting rod has a slot. There are two scrapers. The mounting end of the scraper is inserted into the adjacent slot. The spring is fixed between the bottom of the adjacent slot and the mounting end of the scraper.
[0018] A handle is fixed on the mounting base.
[0019] Compared with the prior art, the beneficial effects of the present invention are:
[0020] 1. This type of masonry grouting construction device allows for the reversing of the grouting and wiping components when switching between grouting horizontal and vertical mortar joints. This eliminates the need for construction personnel to change the overall orientation of the construction device, making the reversing of the grouting and wiping components more convenient.
[0021] 2. In order to help construction workers quickly align the grouting and wiping components with the mortar joints, this solution incorporates a leveling component on one of the displacement adjustment parts. This makes the grouting neat and aesthetically pleasing, and the wiping treatment effect excellent. During use, construction workers only need to check the control panel to quickly see whether the grouting and wiping components are aligned with the mortar joints, without having to constantly and laboriously stare at the relatively distant mortar joints.
[0022] 3. It facilitates the displacement adjustment of the support rod by construction personnel. Multiple displacement adjustment components are installed with multiple sets of grouting and wiping components. The purpose is to enable construction personnel to use this construction device to grout and wipe multiple mortar joints at one time, so that the grouting and wiping effect of multiple mortar joints is consistent, while improving work efficiency and saving labor costs. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall main structure of the present invention;
[0024] Figure 2 This is a three-dimensional structural diagram of the mounting base of the present invention;
[0025] Figure 3 This is a schematic diagram of the main cross-sectional structure of the support rod of the present invention;
[0026] Figure 4 For the present invention Figure 1 A partial structural diagram at point A.
[0027] The markings in the diagram are: 1. Mounting base; 2. Handle; 3. Motor; 4. Battery box; 5. Threaded rod; 6. Threaded ring; 7. Support rod; 8. Mounting head; 9. Grouting ball; 10. Scraper; 11. Limiting rod; 12. Support component; 13. Laser; 14. Camera; 15. Mounting rod; 16. Groove; 17. Spring; 18. Control panel; 19. Positioning hole. Detailed Implementation
[0028] Please see Figure 1-4 The embodiments of the present invention will be further described below;
[0029] A masonry grouting construction device includes a mounting base 1, grouting components, and grouting wiping components. Several sets of grouting components and grouting components are provided and staggered. The mounting base 1 is located on one side of the grouting components and grouting components. Grouting is the process of filling the gap between two adjacent masonry blocks with mortar. Its function is to effectively make the connection between the masonry blocks in the upper, lower, left, and right directions more secure, prevent wind and rain from penetrating the interior of the wall, and make the wall surface clean, neat, and beautiful. The grouting components are used for grouting the wall surface or the base plate. After grouting is completed, the grouting components can scrape off the mortar squeezed out by grouting.
[0030] like Figure 1As shown, a reversing component is installed on the mounting base 1. Both the grouting component and the grout wiping component are installed on the reversing component. The reversing component is used to change the direction of the grouting component and the grout wiping component. Normally, the wall and the base plate have horizontal grout joints and vertical grout joints. When switching between grouting the horizontal grout joints and the vertical grout joints, the reversing component is used to change the direction of the grouting component and the grout wiping component. The construction personnel do not need to change the position of the construction device as a whole, which makes it more convenient to change the direction of the grouting component and the grout wiping component.
[0031] like Figure 1 As shown, the reversing component includes several displacement adjustment components. Both the grouting component and the grouting component can be detachably connected to the adjacent displacement adjustment components. The displacement adjustment components are used to adjust the displacement of the grouting component and the grouting component. Since the length and width of the masonry blocks are different, multiple sets of grouting components and multiple sets of grouting components need to be adjusted so that the grouting component can grout multiple transverse and longitudinal mortar joints, and the grouting component can grout multiple transverse and longitudinal mortar joints.
[0032] like Figure 1 and 4 As shown, a leveling component is installed on one of the displacement adjustment components. The leveling component is used to level the grouting component and the grout wiping component. A control module is installed on the side of the mounting base 1 through an opening. In order to help construction workers quickly align the grouting component and the grout wiping component with the mortar joint, this solution designs a leveling component on one of the displacement adjustment components, which is conducive to the neat and beautiful grouting of the construction device and the good grout wiping treatment effect.
[0033] like Figure 1 As shown, the reversing component also includes a motor 3 and a threaded rod 5. Several displacement adjustment components are threadedly connected to the outside of the threaded rod 5. The motor 3 is fixed inside the mounting base 1, and the output end of the motor 3 extends to the outside of the mounting base 1 and is fixed in the middle position of the threaded rod 5. The motor 3 is a geared motor. A battery box 4 is fixed on the mounting base 1, and a storage battery is installed in the battery box 4. The storage battery is electrically connected to the motor 3 through wires, and the storage battery provides power to the motor 3. The output end of the motor 3 rotates 90° every time it rotates once. When the grouting component and the grouting component need to reverse, the motor 3 is powered on. The motor 3 will drive the threaded rod 5, several displacement adjustment components, the grouting component and the grouting component to rotate together. After the rotation is completed, the power of the motor 3 is turned off, and the reversing can be completed automatically, making the grouting component and the grouting component more flexible and convenient to use.
[0034] The displacement adjustment component includes a threaded ring 6 and a support rod 7. The threaded ring 6 is threadedly connected to the outside of the threaded rod 5, and the support rod 7 is welded to the threaded ring 6. Both the grouting component and the grouting component are detachably connected to the support rod 7. When it is necessary to adjust the distance between the support rods 7 to change the distance between the grouting components, since the threaded ring 6 is threadedly connected to the threaded rod 5, the construction worker can hold the support rod 7 and rotate it. The support rod 7 will drive the threaded ring 6 to rotate on the threaded rod 5, thereby changing the distance between the support rods 7. The operation is simple and convenient for the construction worker to adjust the displacement of the support rod 7. Multiple displacement adjustment components are installed with multiple sets of grouting and grouting components. The purpose is to allow the construction worker to use this construction device to grout and grout multiple mortar joints at one time, so that the grouting and grouting effect of multiple mortar joints is consistent, while improving work efficiency and saving labor costs.
[0035] The leveling component includes a support 12, a laser 13, and a camera 14. The support 12 is fixed to one of the displacement adjustment components. Both the laser 13 and the camera 14 are fixed to the support 12 and are electrically connected to the control module. A crosshair pattern is provided at the laser 13's emission port. The control module is a control panel 18. The support 12 is used to support and fix the laser 13 and the camera 14. The construction worker holds the construction device and brings the grouting and grouting components close to and aligns them with the mortar joints. It is important to emphasize that the grouting component closest to the laser 13 should be positioned at the junction of the horizontal and vertical mortar joints. At this point, the laser 13 will be aligned with either the horizontal or vertical mortar joint. The laser 13 and camera are activated via the control panel 18. The head 14 and the laser 13 emit lasers. Since the laser 13 has a crosshair pattern at its emission port, the light emitted by the laser 13 onto the wall will form a crosshair pattern. The camera 14 will then photograph the wall surface illuminated by the crosshair and transmit the photographed information to the control panel 18. Because the camera 14 is close to the wall, the wall information displayed on the control panel 18 is very clear, and it can photograph the grout joints and crosshair at close range. Judging whether the crosshair is aligned with the horizontal and vertical grout joints is a standard for checking whether the grouting and grouting components are aligned with the grout joints. Construction workers only need to check the control panel 18 to quickly see whether the grouting and grouting components are aligned with the grout joints, without having to constantly and painstakingly stare at the relatively far grout joints.
[0036] Positioning holes 19 are opened at the same point on several support rods 7. Limiting rods 11 are inserted between the several positioning holes 19. One of the positioning holes 19 and the outer wall of the limiting rod 11 are both threaded. The limiting rod 11 is threaded into the threaded positioning hole 19. The thread makes the limiting rod 11 positioned in the several positioning holes 19. The setting of the limiting rod 11 and the several positioning holes 19 is to align the several support rods 7 so that the several support rods 7 are located on the same plane. This is conducive to the alignment of several sets of grouting components and grouting components. This is conducive to the simultaneous and accurate grouting of several sets of grouting components and the accurate scraping of mortar squeezed out from the mortar joints by several sets of grouting components on the masonry blocks next to multiple mortar joints.
[0037] The grouting component includes a mounting head 8 and a grouting ball 9. The mounting head 8 is detachably connected to an adjacent support rod 7. The grouting ball 9 is rotatably connected to the outer end of the mounting head 8. For example, the mounting head 8 can be installed on the support rod 7 by means of threaded connection, or by means of interlocking or snap-fit, which makes it convenient for construction personnel to replace the mounting head 8 and the grouting ball 9 later. The grouting ball 9 is used for grouting treatment.
[0038] The grout-cleaning component includes a scraper 10, mounting rods 15, and springs 17. Two mounting rods 15 and two springs 17 are provided. The two mounting rods 15 are detachably connected to both sides of the support rod 7. Each mounting rod 15 has a slot 16 at its outer end. Two scrapers 10 are provided, with their mounting ends inserted into adjacent slots 16. Springs 17 are fixed between the bottom of the adjacent slots 16 and the mounting ends of the scrapers 10. The scrapers 10 on both sides of the support rod 7 can scrape away mortar squeezed out from both sides of the grout joint. For example, the mounting rods 15 can be connected by threads... The scraper 10 can also be installed on the support rod 7 by means of interlocking or snap-fitting, which facilitates the replacement of the scraper 10 later. When the grouting ball 9 enters the mortar joint, the scraper 10 adheres to the masonry block next to the mortar joint. As the support rod 7 and the grouting ball 9 continue to advance, the scraper 10 will be forced to squeeze the spring 17 in the groove 16. The elastic force of the spring 17 will act on the scraper 10, so that the scraper 10 continues to adhere to the surface of the masonry block next to the mortar joint. This not only helps to achieve a better grouting effect, but also allows for scraping off the mortar on the surface of the masonry block for mortar joints of different depths.
[0039] The mounting base 1 is fixed with a handle 2. When using the construction device, one hand can hold the mounting base 1 and the other hand can hold the handle 2, making it convenient for construction workers to hold the construction device.
[0040] It should be noted that this construction device can also be mounted on the vehicle body, electric guide rail, electric push rod or other power components via the mounting base 1. The appropriate option can be selected based on the actual situation, and this construction device can be used flexibly.
Claims
1. A masonry grouting construction device, comprising a mounting base (1), grouting components, and grouting components, wherein the grouting components and grouting components are provided in several groups and are staggered, and the mounting base (1) is located on one side of the grouting components and grouting components, characterized in that: A reversing component is installed on the mounting base (1). The grouting component and the grouting component are both installed on the reversing component. The reversing component is used to change the direction of the grouting component and the grouting component. The reversing component includes several displacement adjusting components. The grouting component and the wiping component can be detachably connected to the adjacent displacement adjusting components. The displacement adjusting components are used to adjust the displacement of the grouting component and the wiping component. One of the displacement adjustment components is equipped with a leveling component, which is used for leveling the grouting component and the wiping component. The side of the mounting base (1) is equipped with a control module through an opening. The reversing component also includes a motor (3) and a threaded rod (5). Several displacement adjustment components are connected to the outside of the threaded rod (5) by threads. The motor (3) is fixed inside the mounting base (1), and the output end of the motor (3) extends to the outside of the mounting base (1) and is fixed in the middle position of the threaded rod (5). The motor (3) is a geared motor. The displacement adjustment component includes a threaded ring (6) and a support rod (7). The threaded ring (6) is threaded to the outside of the threaded rod (5). The support rod (7) is welded to the threaded ring (6). The grouting component and the rubbing component can be detachably connected to the support rod (7). A positioning hole (19) is opened at the same position of several of the support rods (7), and a limiting rod (11) is inserted between the several positioning holes (19). A number of threads are opened on the outer wall of one of the positioning holes (19) and the limiting rod (11), and the limiting rod (11) is threadedly connected to the positioning hole (19) with threads. The grouting component includes a scraper (10), a mounting rod (15), and a spring (17). There are two mounting rods (15) and two springs (17). The two mounting rods (15) are detachably connected to both sides of the support rod (7). The outer end of each mounting rod (15) has a slot (16). There are two scrapers (10). The mounting end of the scraper (10) is inserted into the adjacent slot (16). The spring (17) is fixed between the bottom of the adjacent slot (16) and the mounting end of the scraper (10).
2. The masonry pointing construction device according to claim 1, characterized in that: The leveling component includes a support (12), a laser (13), and a camera (14). The support (12) is fixed on one of the displacement adjustment components. The laser (13) and the camera (14) are both fixed on the support (12) and are electrically connected to the control module. A crosshair pattern is provided at the emission port of the laser (13).
3. The masonry pointing construction device according to claim 1, characterized in that: The control module is a control panel (18).
4. The masonry pointing construction device according to claim 1, characterized in that: A battery box (4) is fixed on the mounting base (1), and a storage battery is installed inside the battery box (4).
5. A masonry pointing construction device according to claim 1, characterized in that: The grouting component includes a mounting head (8) and a grouting ball (9). The mounting head (8) is detachably connected to the adjacent support rod (7), and the grouting ball (9) is rotatably connected to the outer end of the mounting head (8).
6. The masonry pointing construction device according to claim 1, characterized in that: A handle (2) is fixed on the mounting base (1).
Citation Information
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Multifunctional pointing tool for filling wall mortar joint
CN208918317U
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