Silica stone plate intelligent installation equipment
By employing technologies such as electric rollers, telescopic airbag cleaning, limit block positioning, and buffer block shock absorption in intelligent installation equipment, the problems of inaccurate installation and low manual efficiency caused by terrain deviations during the installation of silicon crystal stone walkway panels have been solved, achieving efficient and stable installation of silicon crystal stone walkway panels.
Patent Information
- Application Number
- CN202411424537.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2044-10-12
AI Technical Summary
During the installation of the silicon crystal walkway, the terrain factors caused deviations in the frame position, and the adjustment space was limited after the hole positions were fixed, which affected the accurate connection of the installation. In addition, the silicon crystal walkway panels were heavy, and the efficiency of manual handling and adjustment was low, resulting in a large workload.
The intelligent installation equipment, which includes components such as mounting base, clamping block, electric roller, drive assembly, push plate, mounting block, fixing assembly, drill bit, and motor, achieves precise alignment and stable installation of silicon crystal walkway panels through technologies such as electric roller movement, motor drive, telescopic airbag for cleaning sand and gravel, limit block positioning, and buffer block for shock absorption.
It improves the fit and stability of the silicon crystal walkway panels and the frame, reduces manual labor, improves installation efficiency and safety, ensures accurate hole alignment, and enhances the aesthetics of the installation.
Smart Images

Figure CN119243555B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of silicon crystal installation, and more particularly to a smart installation device for silicon crystal panels. Background Technology
[0002] Silicon crystal stone walkways are mainly used in outdoor walkways and garden landscape projects. During the installation of silicon crystal stone walkways, it is often necessary to pre-drill holes in the silicon crystal stone walkway panels to securely fix the panels to the frame structure during subsequent installation. However, when installing the frame on site, the position may inevitably deviate due to terrain factors. Therefore, once the hole positions are fixed, the room for adjustment will be greatly limited, which will seriously affect the precise alignment of the installation. At the same time, the silicon crystal stone walkway panels are heavy and need to be manually moved to the frame for alignment and adjustment, which is inefficient and labor-intensive. Summary of the Invention
[0003] To overcome the inherent deviations in the frame position due to terrain factors, which greatly limit the room for adjustment once the hole positions are fixed, thus severely affecting the precise alignment during installation, and the fact that silicon crystal walkway panels are heavy and require manual handling to move them onto the frame for alignment and adjustment, resulting in low efficiency and a large workload, this invention provides an intelligent installation device for silicon crystal panels.
[0004] The technical solution of this invention is: a smart installation device for silicon crystal plates, comprising a mounting base, clamping blocks, and electric rollers; a plurality of positioning blocks are provided on the mounting base; a plurality of clamping blocks are mounted on the mounting base, and adjacent clamping blocks are elastically connected by a spring; a plurality of electric rollers are provided on the lower side of the mounting base; it also includes a drive assembly, a push plate, mounting blocks, a fixing assembly, a drill bit, and a motor; a drive assembly is mounted on the mounting base; a push plate is connected to the drive assembly; a mounting block is provided on each positioning block of the mounting base; a motor is fixedly connected to each positioning block of the mounting base, and each mounting block is fixedly connected to the output end of an adjacent motor; a fixing assembly is mounted on each positioning block of the mounting base; a drill bit for drilling is mounted on the fixing assembly.
[0005] Furthermore, the drive assembly includes slide rails and electric sliders; two symmetrical slide rails are fixedly mounted on the mounting base; each slide rail is slidably connected to an electric slider, and the push plate is fixedly connected to the two electric sliders, which drive the push plate to move left and right.
[0006] Furthermore, the fixing assembly includes a mounting plate, a connecting rod, a connecting plate, and a connecting block; a mounting plate is fixedly attached to each positioning block of the mounting base; a connecting rod is fixedly attached to each mounting plate; a connecting plate is fixedly attached to each connecting rod; a connecting block is fixedly attached to the underside of each connecting plate, and each drill bit is detachably connected to the adjacent connecting block.
[0007] Furthermore, it also includes telescopic airbags; each mounting block is fixedly connected to an adjacent positioning block with a telescopic airbag; each telescopic airbag is provided with several air holes, and each air hole faces the surface of the skeleton.
[0008] Furthermore, it also includes a limiting block and a first driving component; a first driving component is fixedly connected to each positioning block; a number of limiting grooves are provided on the mounting base; a limiting block is fixedly connected to the output end of each first driving component, and each limiting block slides back and forth in adjacent limiting grooves.
[0009] Furthermore, each limit block is equipped with several ball bearings.
[0010] Furthermore, it also includes a second drive unit and an extrusion block; several second drive units are fixedly connected inside the mounting base; and all the output ends of the second drive units are jointly fixedly connected to an extrusion block for preventing the silicon crystal stack plate from shifting.
[0011] Furthermore, it also includes a fixing plate; several fixing plates are fixedly connected to the lower side of the mounting base.
[0012] Furthermore, it also includes buffer blocks and elastic elements; each fixed plate is fixedly connected to a buffer block, and each buffer block is made of elastic deformation material; several elastic elements for shock absorption are fixedly connected between each fixed plate and the buffer block.
[0013] Furthermore, it also includes a cutter; a cutter for clearing weeds is fixed to the lower side of the mounting base.
[0014] The beneficial effects are as follows: This invention enables the gas ejected from the air holes to clean the sand and gravel particles on the surface of the frame by squeezing the adjacent telescopic airbags through the installation block, thereby ensuring the flatness and cleanliness of the installation surface, improving the fit between the silicon crystal walkway board and the frame, and enhancing the overall stability of the installation process.
[0015] Limiting blocks are used to limit the installation position of silicon crystal walkway panels, so that there is a uniform gap between two adjacent silicon crystal walkway panels, reducing the amount of manual work and improving the aesthetics of the installation.
[0016] By filling the gaps between the frames with fixed plates, workers can use the fixed plates as footholds during installation, which improves the safety of the installation process and reduces the occurrence of accidents.
[0017] By absorbing and dispersing the vibration energy generated during the drilling process using buffer blocks and elastic elements, the direct impact of vibration on the silicon crystal walkway slab is reduced, thereby achieving a shock absorption effect. This minimizes the offset of the silicon crystal walkway slab, ensures accurate alignment between the holes on the silicon crystal walkway slab and the holes on the frame, and improves installation efficiency. Attached Figure Description
[0018] Figure 1This is a three-dimensional structural diagram of the intelligent installation device for silicon crystal stone panels of the present invention;
[0019] Figure 2 This is a first-view three-dimensional structural diagram of the intelligent installation device for silicon crystal stone panels of the present invention.
[0020] Figure 3 This is a two-dimensional structural diagram of the silicon crystal stone plate intelligent installation device of the present invention from a second perspective.
[0021] Figure 4 This is a three-dimensional structural diagram of the fixing component and drill bit assembly of the present invention;
[0022] Figure 5 This is a schematic diagram of the three-dimensional structure of the clamping block and push plate combination of the present invention;
[0023] Figure 6 This is a three-dimensional structural diagram of the mounting block and telescopic airbag assembly of the present invention;
[0024] Figure 7 This is a three-dimensional structural diagram of the combination of the limiting block and the first driving component of the present invention;
[0025] Figure 8 This is a schematic diagram of the three-dimensional structure of the extrusion block of the present invention;
[0026] Figure 9 This is a three-dimensional structural diagram of the combination of buffer block and elastic element of the present invention.
[0027] Component names and serial numbers in the diagram: 1-Mounting base, 1001-Positioning block, 1002-Limiting groove, 2-Clamping block, 3-Electric roller, 4-Push plate, 5-Mounting block, 6-Drill bit, 7-Frame, 7001-Mounting hole, 8-Silicon crystal walkway plate, 9-Motor, 101-Slide rail, 102-Electric slider, 301-Mounting plate, 302-Connecting rod, 303-Connecting plate, 304-Connecting block, 401-Telescopic airbag, 40101-Air hole, 501-Limiting block, 50101-Ball bearing, 502-First driving component, 601-Second driving component, 602-Extrusion block, 701-Fixing plate, 702-Buffer block, 703-Elastic component, 704-Cutter. Detailed Implementation
[0028] The preferred technical solution of the present invention will be described in detail below with reference to the accompanying drawings.
[0029] Example 1
[0030] A smart installation device for silicon crystal slabs, such as Figures 1-6As shown, it includes a mounting base 1, clamping blocks 2, and electric rollers 3; the mounting base 1 is provided with two symmetrical positioning blocks 1001; the mounting base 1 is provided with two symmetrical clamping blocks 2, and adjacent clamping blocks 2 are elastically connected by a spring; four electric rollers 3 are provided on the lower side of the mounting base 1.
[0031] It also includes a drive assembly, a push plate 4, a mounting block 5, a fixing assembly, a drill bit 6, and a motor 9; the drive assembly is mounted on the mounting base 1; the push plate 4 is connected to the drive assembly, and the push plate 4 is moved left and right by the drive assembly; each positioning block 1001 of the mounting base 1 is provided with a mounting block 5; each positioning block 1001 of the mounting base 1 is fixedly connected to a motor 9, and each mounting block 5 is fixedly connected to the output end of the adjacent motor 9; each positioning block 1001 of the mounting base 1 is mounted with a fixing assembly; the drill bit 6 is mounted on the fixing assembly.
[0032] The drive assembly includes a slide rail 101 and an electric slider 102; two symmetrical slide rails 101 are fixedly mounted on the mounting base 1; an electric slider 102 is slidably connected to each slide rail 101, and the push plate 4 is fixedly connected to the two electric sliders 102, and the push plate 4 is driven to move left and right by the electric sliders 102.
[0033] The fixing assembly includes a mounting plate 301, a connecting rod 302, a connecting plate 303, and a connecting block 304; a mounting plate 301 is fixedly connected to each positioning block 1001 of the mounting base 1; a connecting rod 302 is fixedly connected to each mounting plate 301; a connecting plate 303 is fixedly connected to each connecting rod 302; a connecting block 304 is fixedly connected to the lower side of each connecting plate 303, and each drill bit 6 is detachably connected to the adjacent connecting block 304.
[0034] It also includes a telescopic airbag 401; each mounting block 5 is fixedly connected to the adjacent positioning block 1001 with a telescopic airbag 401; each telescopic airbag 401 is provided with three air holes 40101, and each air hole 40101 faces the surface of the frame 7.
[0035] The working steps of this embodiment are as follows:
[0036] First, manually place the mounting base 1 on the frame 7, so that the electric roller 3 is close to the front and back of the frame 7. Then, place an appropriate amount of silicon crystal walkway plate 8 between the two clamping blocks 2 and the two mounting blocks 5, and use the elastic force of the spring to limit and fix the silicon crystal walkway plate 8.
[0037] The second step involves fixing an appropriate number of silicon crystal walkway panels 8. Then, the electric roller 3 is used to move the mounting base 1 and the silicon crystal walkway panels 8 on the frame 7 until the mounting base 1 reaches its installation position. At this point, the motor 9 is started, causing the adjacent mounting block 5 to rotate 90 degrees to the right, changing the mounting block 5 from a vertical to a horizontal position. This allows the mounting block 5 to hold the silicon crystal walkway panels 8 and rotate together, changing the silicon crystal walkway panels 8 from a vertical to a horizontal position, and placing them stably on the frame 7. At this point, the positioning blocks 1001 of the mounting base 1 are located in front of and behind the placed silicon crystal walkway panels 8, respectively. Then, the position of the placed silicon crystal walkway panels 8 is slightly adjusted manually.
[0038] The third step involves manually stepping onto the surface of the placed silicon crystal walkway 8, removing the drill bit 6 from the connecting block 304, aligning it with the mounting hole 7001 on the frame 7, and then drilling holes in the surface of the silicon crystal walkway 8 to ensure that the holes on the silicon crystal walkway 8 coincide with the mounting holes 7001 on the frame 7.
[0039] Fourth, control the electric roller 3 to move away from the placed silicon crystal walkway plate 8, so that the mounting block 5 gradually separates from the silicon crystal walkway plate 8 until the mounting base 1 moves to the next installation point. At the same time, control the motor 9 to drive the adjacent mounting block 5 to rotate and return to the initial position. Then control the electric slider 102 to drive the push plate 4 to move to the right, so that the push plate 4 squeezes the silicon crystal walkway plate 8 on the mounting base 1 until the rightmost silicon crystal walkway plate 8 separates from the clamping block 2 and moves between the two mounting blocks 5. Repeat the above steps to realize the placement and installation of the silicon crystal walkway plate 8.
[0040] Considering that the frame 7 is usually located outdoors, sand and gravel particles often fall onto the surface of the frame 7 during the material handling process. Since the sand and gravel particles are small, they are difficult for people to detect. If the sand and gravel particles on the surface of the frame 7 are not treated, the silicon crystal walkway 8 will not be able to fit perfectly with the frame 7, resulting in gaps or tilting after installation, affecting the overall stability and appearance.
[0041] To solve the above problems, in the second step: when the motor 9 drives the adjacent mounting block 5 to rotate 90 degrees to the right, the mounting block 5 will squeeze the adjacent telescopic airbag 401, causing the gas inside the telescopic airbag 401 to be ejected outward through the air hole 40101. Since the air hole 40101 faces the surface of the frame 7, the ejected gas will clean the sand and gravel particles on the surface of the frame 7, ensuring the flatness and cleanliness of the mounting surface, improving the fit between the silicon crystal walkway plate 8 and the frame 7, and enhancing the overall stability of the installation process. When the motor 9 drives the adjacent mounting block 5 to rotate and return to the initial position, the volume of the telescopic airbag 401 increases, and external gas enters the telescopic airbag 401 through the air hole 40101, and the telescopic airbag 401 returns to its initial state.
[0042] Example 2
[0043] Based on Example 1, such as Figures 1-3 and Figures 7-9 As shown, it also includes a limiting block 501 and a first driving member 502; each positioning block 1001 is fixedly connected to a first driving member 502, and the first driving member 502 is an electric push rod; the mounting base 1 is provided with two front-to-back symmetrical limiting grooves 1002; each output end of the first driving member 502 is fixedly connected to a limiting block 501, and each limiting block 501 slides back and forth within the adjacent limiting groove 1002.
[0044] Each limit block 501 is equipped with several ball bearings 50101.
[0045] It also includes a second drive unit 601 and an extrusion block 602; two second drive units 601 are fixedly connected in the mounting base 1, and the second drive unit 601 is an electric push rod; the output end of all the second drive units 601 is fixedly connected to the extrusion block 602.
[0046] It also includes a fixing plate 701; three fixing plates 701 are fixedly connected to the lower side of the mounting base 1.
[0047] It also includes a buffer block 702 and an elastic element 703; a buffer block 702 is fixedly connected to each fixed plate 701, and each buffer block 702 is made of elastic deformation material; several elastic elements 703 are fixedly connected between each fixed plate 701 and the buffer block 702, and the elastic element 703 is a spring.
[0048] It also includes a cutter 704; the cutter 704 is fixedly attached to the lower side of the mounting base 1.
[0049] The working principle of this embodiment is as follows:
[0050] In the second step of Example 1: During the installation of silicon crystal walkway 8, in order to facilitate the drainage of moisture and reduce corrosion and structural damage caused by water vapor accumulation, an appropriate gap needs to be left between adjacent silicon crystal walkway 8 during installation. However, due to the weight of the silicon crystal walkway 8, it is difficult to control the interval between adjacent silicon crystal walkway 8 when manually adjusting its position, resulting in inconsistent intervals between adjacent silicon crystal walkway 8, which affects the aesthetics. At the same time, manual adjustment can easily cause the silicon crystal walkway 8 to shift, resulting in the silicon crystal walkway 8 being placed tilted, which affects the subsequent installation of silicon crystal walkway 8.
[0051] To solve the above problem, when the electric roller 3 drives the mounting base 1 to move closer to the silicon crystal walkway plate 8 fixed to the right on the frame 7, as... Figure 7As shown, the operation of the limiting block 501 located at the front is explained. At this time, the first driving component 502 is controlled to move the limiting block 501 backward. At the same time, when the right side of the limiting block 501 contacts the left side of the silicon crystal walkway plate 8 fixed on the right, the electric roller 3 is controlled to stop. Then, the motor 9 is controlled to drive the mounting block 5 and the silicon crystal walkway plate 8 to rotate 90 degrees to the right, so that the silicon crystal walkway plate 8 is placed to the left of the silicon crystal walkway plate 8 fixed on the right. At this time, the gap between two adjacent silicon crystal walkway plates 8 is the width of the limiting block 501. After the silicon crystal walkway plate 8 on the left is placed, the first driving component 502 is controlled to drive the limiting block 501 forward, so that the limiting block 501 is gradually pulled out from between the two adjacent silicon crystal walkway plates 8, thereby leaving a uniform gap between the two adjacent silicon crystal walkway plates 8, reducing the amount of manual work and improving the aesthetics of the installation; at the same time, the ball bearing 50101 reduces the friction between the limiting block 501 and the silicon crystal walkway plate 8, increases the extraction speed of the limiting block 501, and reduces the wear of the silicon crystal walkway plate 8 on the equipment.
[0052] In the fourth step of Example 1: when the electric roller 3 drives the mounting base 1 to move to the left, and the mounting base 1 drives the mounting block 5 to move to the left and disengage from the silicon crystal walkway 8, the clamping friction between the mounting block 5 and the silicon crystal walkway 8 can easily drive the placed silicon crystal walkway 8 to move together, thereby changing the interval between the silicon crystal walkway 8.
[0053] To address the above situation, when the mounting base 1 moves the mounting block 5 to the left and detaches it from the silicon crystal walkway plate 8, the second driving component 601 is controlled to extend the pressing block 602 to the right to press and block the placed silicon crystal walkway plate 8, thereby preventing the mounting block 5 from moving the silicon crystal walkway plate 8 together and avoiding inconsistent spacing between adjacent silicon crystal walkway plates 8, which would affect the overall aesthetics.
[0054] During the installation of the silicon crystal walkway 8, the frame 7 is usually higher than the ground, and the middle of the frame 7 is unobstructed. It is easy for workers to step into empty spaces during the installation process, which may lead to safety accidents. In order to avoid the above situation, when the electric roller 3 moves the mounting base 1 and the silicon crystal walkway 8 on the frame 7, the gap between the frames 7 is filled by the fixing plate 701. This allows workers to use the fixing plate 701 as a foothold during the installation process, which can act as a stepping stone, improve the safety of the installation process, and reduce the occurrence of accidents.
[0055] In the third step of Example 1: When a worker manually drills the silicon crystal walkway plate 8 with drill bit 6, the vibration generated between drill bit 6 and silicon crystal walkway plate 8 will cause the entire silicon crystal walkway plate 8 to shift, which is difficult for the worker to notice. As a result, the holes drilled on the silicon crystal walkway plate 8 cannot be accurately aligned with the mounting holes 7001 of the frame 7, requiring the silicon crystal walkway plate 8 to be replaced, increasing the workload. To solve the above problem, when the mounting block 5 rotates the silicon crystal walkway plate 8 90 degrees to the right and places it on the frame 7, the lower surface of the silicon crystal walkway plate 8 will press against the buffer block 702 below. When the buffer block 702 is compressed, it will deform downwards and compress the elastic element 703. At this time, the buffer block 702 and the lower surface of the silicon crystal walkway 8 are in close contact. When the drill bit 6 is manually drilled into the silicon crystal walkway 8, the buffer block 702 and the elastic element 703 absorb and disperse the vibration energy generated during the drilling process, reducing the direct impact of vibration on the silicon crystal walkway 8, thereby achieving the effect of shock absorption. This minimizes the degree of displacement of the silicon crystal walkway 8, ensures that the holes on the silicon crystal walkway 8 are accurately aligned with the holes on the frame 7, and improves installation efficiency.
[0056] During the installation of the silicon crystal walkway 8, since the installation site is located outdoors and the road surface is covered with weeds, the weeds can easily push upwards through the gap between the frame 7 and the fixing plate 701 as the electric roller 3 drives the mounting base 1 to move. At this time, as the electric roller 3 drives the mounting base 1 to move to the left, the cutter 704 cuts the weeds to prevent them from pushing upwards and obstructing the operation of the device, thus affecting the installation efficiency.
[0057] The present application has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of the present application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of the present application. Therefore, the content of this specification should not be construed as a limitation of the present application.
Claims
1. A smart installation device for silicon crystal plates, comprising a mounting base (1), clamping blocks (2), and electric rollers (3); the mounting base (1) is provided with a plurality of positioning blocks (1001); the mounting base (1) is provided with a plurality of clamping blocks (2), and adjacent clamping blocks (2) are elastically connected by a spring; the mounting base (1) is provided with a plurality of electric rollers (3) on its lower side; characterized in that, It also includes a drive assembly, a push plate (4), a mounting block (5), a fixing assembly, a drill bit (6), and a motor (9); the drive assembly is mounted on the mounting base (1); the push plate (4) is connected to the drive assembly; each positioning block (1001) of the mounting base (1) is provided with a mounting block (5); each positioning block (1001) of the mounting base (1) is fixedly connected to a motor (9), and each mounting block (5) is fixedly connected to the output end of the adjacent motor (9); each positioning block (1001) of the mounting base (1) is mounted with a fixing assembly; a drill bit (6) for drilling is mounted on the fixing assembly; It also includes a fixing plate (701); several fixing plates (701) are fixedly connected to the lower side of the mounting base (1); It also includes a buffer block (702) and an elastic element (703); a buffer block (702) is fixedly connected to each fixed plate (701), and each buffer block (702) is made of elastic deformation material; several elastic elements (703) for shock absorption are fixedly connected between each fixed plate (701) and the buffer block (702). After the appropriate amount of silicon crystal walkway board (8) is fixed, the electric roller (3) is controlled to drive the mounting base (1) and silicon crystal walkway board (8) to move on the frame (7) until the mounting base (1) moves to the installation position. Then the motor (9) is started, so that the motor (9) drives the adjacent mounting block (5) to rotate 90 degrees to the right, so that the mounting block (5) changes from a vertical state to a horizontal state, and then the mounting block (5) clamps the silicon crystal walkway board (8) and rotates together, so that the silicon crystal walkway board (8) changes from a vertical state to a horizontal state and is placed stably on the frame (7). At this time, the positioning block (1001) of the mounting base (1) is located in front of and behind the placed silicon crystal walkway board (8) respectively. Then the position of the placed silicon crystal walkway board (8) is slightly adjusted manually.
2. The intelligent installation equipment for silicon crystal slabs according to claim 1, characterized in that, The drive assembly includes a slide rail (101) and an electric slider (102); two symmetrical slide rails (101) are fixedly connected to the mounting base (1); an electric slider (102) is slidably connected to each slide rail (101), and the push plate (4) is fixedly connected to the two electric sliders (102), and the push plate (4) is driven to move left and right by the electric sliders (102).
3. The intelligent installation equipment for silicon crystal slabs according to claim 1, characterized in that, The fixing components include a mounting plate (301), a connecting rod (302), a connecting plate (303), and a connecting block (304); a mounting plate (301) is fixedly attached to each positioning block (1001) of the mounting base (1); a connecting rod (302) is fixedly attached to each mounting plate (301); a connecting plate (303) is fixedly attached to each connecting rod (302); a connecting block (304) is fixedly attached to the underside of each connecting plate (303), and each drill bit (6) is detachably connected to the adjacent connecting block (304).
4. The intelligent installation equipment for silicon crystal slabs according to claim 1, characterized in that, It also includes a telescopic airbag (401); each mounting block (5) is fixedly connected to an adjacent positioning block (1001) with a telescopic airbag (401); each telescopic airbag (401) is provided with several air holes (40101), and each air hole (40101) faces the surface of the skeleton (7).
5. The intelligent installation equipment for silicon crystal slabs according to claim 1, characterized in that, It also includes a limiting block (501) and a first driving member (502); a first driving member (502) is fixedly connected to each positioning block (1001); a number of limiting grooves (1002) are provided on the mounting base (1); a limiting block (501) is fixedly connected to the output end of each first driving member (502), and each limiting block (501) slides back and forth in the adjacent limiting groove (1002).
6. The intelligent installation equipment for silicon crystal panels according to claim 5, characterized in that, Each limit block (501) is equipped with several balls (50101).
7. The intelligent installation equipment for silicon crystal slabs according to claim 1, characterized in that, It also includes a second drive unit (601) and an extrusion block (602); a number of second drive units (601) are fixedly connected inside the mounting base (1); the output ends of all the second drive units (601) are fixedly connected to an extrusion block (602) for preventing the silicon crystal walkway plate (8) from shifting.
8. The intelligent installation equipment for silicon crystal slabs according to claim 1, characterized in that, It also includes a cutter (704); the cutter (704) for clearing weeds is fixed to the underside of the mounting base (1).
Citation Information
Patent Citations
Blind way floor tile laying device
CN108385484A
Indoor auxiliary decoration device for housing construction
CN115653261A