Processing device for attaching floor tiles

The moving block is driven by the first bidirectional screw and the second bidirectional screw, combined with the electric slide rail and the laser positioner, which solves the problem of poor adaptability of the existing floor tile fitting mechanical device, realizes flexible adaptation to floor tiles of different sizes and shapes, and improves work efficiency and accuracy.

CN223314632UActive Publication Date: 2025-09-09DONGGUAN QINGSHUANG ENERGY-SAVING MATERIALS CO LTD
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Patent Information

Application Number
CN202422710311.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-09-09
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

Existing floor tile laminating mechanical devices have complex structures and large volumes, making them inconvenient to use in narrow spaces. They also have high requirements on the size and shape of floor tiles and have limited adaptability.

Method used

The first and second bidirectional screws are used to drive the moving block, and the electric slide rails, laser positioners and suction cups are combined to achieve flexible adaptability of the device. The first and second handles simplify operation, and the rubber suction cups ensure stability and precision.

Benefits of technology

The applicability and practicality of the device are improved, the difficulty of operation is reduced, the work efficiency and the accuracy of floor tiles are improved, and the stability and convenience of the device in different environments are enhanced.

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Abstract

The utility model relates to the technical field of building construction, and discloses a floor tile fitting processing device which comprises a bottom plate, first sliding rails are fixedly connected to the two sides of the upper end of the bottom plate, a second sliding rail is fixedly connected to the upper end of the bottom plate, and a first two-way screw is rotationally connected into the second sliding rail; first moving blocks are in threaded connection with the two ends of the exterior of the first bidirectional screw rod, third sliding rails are fixedly connected to the upper ends of the two moving plates, second bidirectional screw rods are rotatably connected to the interiors of the two third sliding rails, and second moving blocks are in threaded connection with the two sides of the two second bidirectional screw rods. According to the processing device for attaching the floor tiles, the first two-way screw rod and the second two-way screw rod rotate to drive a first moving block and a second moving block to move relatively, so that the whole device can flexibly adapt to the floor tiles of different sizes and shapes; due to the flexibility, the applicability and the practicability of the device are improved.
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Description

Technical Field

[0001] The present application relates to the field of building construction technology, and specifically to a processing device for bonding floor tiles. Background Art

[0002] In building construction, the bonding of floor tiles is an important link. The traditional floor tile bonding process mainly relies on manual operation, which is not only inefficient, but also the construction quality is easily affected by human factors. In recent years, with the development of mechanized construction technology, some floor tile bonding mechanical devices have gradually appeared. They have improved construction efficiency and quality to a certain extent, but there are still problems such as complex operation and poor adaptability.

[0003] The floor tile bonding mechanical devices currently available on the market usually use suction cups or clamping mechanisms to grab and position floor tiles, and then use robotic arms or sliding rails to move the floor tiles to the predetermined position for bonding. Although these devices can achieve automated operation, they are often complex in structure and bulky in size, making them inconvenient to use in small spaces. They also have high requirements on the size and shape of floor tiles and have limited adaptability. Utility Model Content

[0004] In response to the shortcomings of the existing technology, the present application provides a processing device for fitting floor tiles, which has the advantages of being able to adapt to floor tiles of different sizes. It solves the problems of floor tile fitting mechanical devices currently available on the market, which usually use suction cups or clamping mechanisms to grab and position floor tiles, and then use robotic arms or sliding rails to move the floor tiles to predetermined positions for fitting. Although these devices can realize automated operation, they are often complex in structure and bulky in size, making them inconvenient to use in small spaces. They also have high requirements on the size and shape of floor tiles and have limited adaptability.

[0005] To achieve the above-mentioned objectives, the present application provides the following technical solutions: a processing device for bonding floor tiles, comprising a base plate, wherein both sides of the upper end of the base plate are fixedly connected to the first slide rail, the upper end of the base plate is fixedly connected to the second slide rail, the second slide rail is internally rotatably connected to the first bidirectional screw, both ends of the outer side of the first bidirectional screw are threadedly connected to the first moving block, one side of the first bidirectional screw passes through the second slide rail and is fixedly connected to the first handle, two first slide rails are internally slidably connected to sliders, the upper ends of the four sliders are fixedly connected to the moving plate in a group of two, the upper ends of the two moving plates are fixedly connected to the third slide rail, the two third slide rails are internally rotatably connected to the second bidirectional screw, the two second bidirectional screws are threadedly connected to the second moving blocks on both sides, the upper ends of the four second moving blocks are fixedly connected to the placement seat, and the two second bidirectional screws pass through one side of the third slide rail and are fixedly connected to the second handle.

[0006] Through the above scheme, the device drives the two first moving blocks and the second moving blocks to move relative to each other through the rotation of the first bidirectional screw and the second bidirectional screw, so that the entire device can flexibly adapt to floor tiles of different sizes and shapes. This flexibility increases the applicability and practicality of the device. The setting of the first handle and the second handle allows the operator to easily rotate the bidirectional screw and adjust the position, reducing the difficulty of operation and improving work efficiency. Four placement seats arranged in a rectangular array are used to support the floor tiles to be used, which improves the accuracy of the floor tiles and improves work efficiency by reducing the need for manual intervention.

[0007] Furthermore, a fixed frame is fixedly connected to one side of the base plate, and two support columns distributed in a mirror image are fixedly connected to one side of the upper end of the base plate and the fixed frame. The upper ends of the four support columns are fixedly connected to electric slide rails in groups of two.

[0008] Through the above solution, the support column serves as a key component connecting the base plate and the electric slide rail, providing the necessary supporting force and enhancing the structural stability of the entire device to ensure accuracy during the processing. The electric slide rail is used to drive the movement of the suction device.

[0009] Furthermore, the movable ends of the two electric slide rails are fixedly connected to a fixed plate, the upper end of the fixed plate is fixedly connected to a first electric push rod, the telescopic end of the first electric push rod passes through one end of the fixed plate and is fixedly connected to a bracket, the bottom end of the bracket is fixedly connected to a plurality of fixed columns, and the bottom ends of the plurality of fixed columns are fixedly connected to suction cups.

[0010] Through the above solution, the fixed plate and the workpiece thereon can be accurately moved to the specified position by moving the electric slide rail, and the telescopic function of the first electric push rod enables the bracket and the fixed column and suction cup below it to be adjusted in the vertical reverse direction.

[0011] Furthermore, two mirror-distributed fixing seats are fixedly connected to the upper end of the fixing plate, and second electric push rods are fixedly connected to both sides of the two fixing seats, and the telescopic ends of the four second electric push rods are fixedly connected to laser locators.

[0012] Through the above solution, the laser locator is a high-precision positioning tool. The collaborative work of four laser locators can accurately determine the fitting position of the floor tiles. The mirrored fixed seat makes the laser locator more stable and symmetrical during adjustment. At the same time, the electric push rod can adjust the position of the laser locator.

[0013] Furthermore, four first adjustment columns arranged in a rectangular array are fixedly connected to the bottom end of the base plate, and the bottom ends of the four first adjustment columns are rotatably connected to first moving wheels.

[0014] Through the above solution, the introduction of the first movable wheel enables the entire device to be mobile. The operator can easily move the device to the required working position without consuming a lot of manpower for carrying or dragging, thereby improving the flexibility and convenience of the device. Through the height adjustment function of the first adjustment column, the device can adapt to different heights and uneven working surfaces, which ensures that the device can maintain stability and reliability in different working environments.

[0015] Furthermore, two second adjustment columns distributed in a mirror image are fixedly connected to one side of the bottom end of the fixed frame, and the bottom ends of the two second adjustment columns are rotatably connected to second moving wheels.

[0016] Through the above solution, the second movable wheel is used to support the fixed frame, and can be adjusted by the second adjusting bolt to adapt to different working environments.

[0017] Furthermore, the upper ends of the two first moving blocks are fixedly connected to the moving plate.

[0018] Through the above solution, the two moving blocks respectively drive the two moving plates to move relative to each other.

[0019] Furthermore, the plurality of suction cups are all made of rubber material.

[0020] Through the above solution, the rubber material has good elasticity and sealing properties, which can ensure close contact between the suction cup and the surface of the workpiece, thereby effectively preventing air leakage and preventing the floor tiles from falling during the movement.

[0021] Compared with the existing technology, the technical solution of this application has the following beneficial effects:

[0022] The present invention relates to a processing device for fitting floor tiles. The device drives the two first movable blocks and the second movable blocks to move relative to each other through the rotation of the first bidirectional screw and the second bidirectional screw, so that the entire device can flexibly adapt to floor tiles of different sizes and shapes. This flexibility increases the applicability and practicality of the device. The setting of the first handle and the second handle allows the operator to easily rotate the bidirectional screw to adjust the position, reducing the difficulty of operation and improving work efficiency. Four placement seats arranged in a rectangular array are used to support the floor tiles to be used, which improves the accuracy of the floor tiles and improves work efficiency by reducing the need for manual intervention. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic diagram of the overall structure of this application;

[0024] Figure 2 This is a schematic diagram of the base plate structure of the structure of this application;

[0025] Figure 3This is a schematic diagram of the structure of the floor tile storage device of the present application;

[0026] Figure 4 This is a schematic diagram of the mobile device structure of this application.

[0027] In the picture:

[0028] 1. Base plate; 2. First slide rail; 3. Second slide rail; 4. First bidirectional screw; 5. First moving block; 6. First handle; 7. Slider; 8. Moving plate; 9. Third slide rail; 10. Second bidirectional screw; 11. Second moving block; 12. Placement seat; 13. Second handle; 14. Fixed frame; 15. Support column; 16. Electric slide rail; 17. Fixed plate; 18. First electric push rod; 19. Bracket; 20. Fixed column; 21. Suction cup; 22. Fixed seat; 23. Second electric push rod; 24. Laser locator; 25. First adjusting column; 26. First moving wheel; 27. Second adjusting column; 28. Second moving wheel. DETAILED DESCRIPTION

[0029] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0030] See also Figure 1 、 Figure 2 and Figure 3In this embodiment, a processing device for fitting floor tiles includes a bottom plate 1, both sides of the upper end of the bottom plate 1 are fixedly connected to the first slide rail 2, the upper end of the bottom plate 1 is fixedly connected to the second slide rail 3, the second slide rail 3 is rotatably connected to the first bidirectional screw 4, both ends of the outer side of the first bidirectional screw 4 are threadedly connected to the first moving block 5, one side of the first bidirectional screw 4 passes through the second slide rail 3 and is fixedly connected to the first handle 6, the two first slide rails 2 are slidably connected to the sliders 7 on both sides, the four sliders 7 are fixedly connected to the moving plate 8 on the upper ends of the two moving plates 8, the upper ends of the two moving plates 8 are fixedly connected to the third slide rail 9, the two third slide rails 9 are rotatably connected to the second bidirectional screw 10, and the two bidirectional screws 10 are threadedly connected to the second moving block 5 on both sides. Block 11, the upper ends of the four second moving blocks 11 are fixedly connected to a placement seat 12, and the four placement seats 12 arranged in a rectangular array are used to support the floor tiles to be used. The two second bidirectional screws 10 pass through one side of the third slide rail 9 and are fixedly connected to a second handle 13. The device drives the two first moving blocks 5 and the second moving blocks 11 to move relative to each other through the rotation of the first bidirectional screw 4 and the second bidirectional screw 10, so that the entire device can flexibly adapt to floor tiles of different sizes and shapes. This flexibility increases the applicability and practicality of the device. The setting of the first handle 6 and the second handle 13 allows the operator to easily rotate the bidirectional screw to adjust the position, reduces the difficulty of operation, and improves work efficiency.

[0031] See also Figure 2 、 Figure 3 and Figure 4 , one side of the base plate 1 is fixedly connected to a fixed frame 14, and one side of the upper end of the base plate 1 and the fixed frame 14 are fixedly connected to two support columns 15 distributed in a mirror image. The upper ends of the four support columns 15 are fixedly connected to an electric slide rail 16 in a group of two. The support column 15 is a key component connecting the base plate 1 and the electric slide rail 16, which provides the necessary supporting force and enhances the structural stability of the entire device to ensure the accuracy during the processing. The electric slide rail 16 is used to drive the movement of the suction device. The moving ends of the two electric slide rails 16 are fixedly connected to the fixed Plate 17, the upper end of the fixed plate 17 is fixedly connected to a first electric push rod 18, the telescopic end of the first electric push rod 18 passes through one end of the fixed plate 17 and is fixedly connected to a bracket 19, the bottom end of the bracket 19 is fixedly connected to a plurality of fixed columns 20, and the bottom ends of the plurality of fixed columns 20 are fixedly connected to a suction cup 21. Through the movement of the electric slide rail 16, the fixed plate 17 and the workpiece thereon can be accurately moved to the specified position. The telescopic function of the first electric push rod 18 enables the bracket 19 and the fixed columns 20 and suction cup 21 below it to be adjusted in the vertical reverse direction.

[0032] See also Figure 2 、 Figure 3 and Figure 4, the upper end of the fixed plate 17 is fixedly connected to two fixed seats 22 distributed in a mirror image, and the two fixed seats 22 are fixedly connected on both sides with a second electric push rod 23, and the telescopic ends of the four second electric push rods 23 are fixedly connected to a laser locator 24. The laser locator 24 is a high-precision positioning tool. The four laser locators 24 work together to accurately determine the fitting position of the floor tiles. The mirror image distribution of the fixed seats 22 makes the laser locator 24 more stable and symmetrical during adjustment. At the same time, the second electric push rod 23 can adjust the position of the laser locator 24. The bottom end of the base plate 1 is fixedly connected to four first adjustment columns 25 arranged in a rectangular array. The bottom ends of the four first adjustment columns 25 are rotatably connected to the first moving wheels 26. The introduction of the first moving wheels 26 makes the entire device mobile. The operator can easily move the device to the desired working position without consuming a lot of manpower for carrying or dragging. The flexibility and convenience of the device are improved. Through the height adjustment function of the first adjusting column 25, the device can adapt to different heights and uneven working floors, which ensures that the device can maintain stability and reliability in different working environments. Two second adjusting columns 27 with mirror distribution are fixedly connected to one side of the bottom end of the fixed frame 14. The bottom ends of the two second adjusting columns 27 are rotatably connected to the second moving wheels 28. The second moving wheels 28 are used to support the fixed frame 14 and can be adjusted to adapt to different working environments through the second adjusting bolts. The upper ends of the two first moving blocks 5 are fixedly connected to the moving plate 8, and the two moving blocks respectively drive the two moving plates 8 to move relative to each other. Multiple suction cups 21 are made of rubber material. The rubber material has good elasticity and sealing, which can ensure close contact between the suction cup 21 and the surface of the workpiece, thereby effectively preventing air leakage and preventing floor tiles from falling during movement.

[0033] In this embodiment, a processing device for fitting floor tiles is provided. The device drives the two first movable blocks 5 and the second movable blocks 11 to move relative to each other through the rotation of the first bidirectional screw 4 and the second bidirectional screw 10, so that the entire device can flexibly adapt to floor tiles of different sizes and shapes. This flexibility increases the applicability and practicality of the device. The setting of the first handle 6 and the second handle 13 allows the operator to easily rotate the bidirectional screw to adjust the position, reducing the difficulty of operation and improving work efficiency. Four placement seats 12 arranged in a rectangular array are used to support the floor tiles to be used, which improves the accuracy of the floor tiles and improves work efficiency by reducing the need for manual intervention.

[0034] It should be noted that the first bidirectional screw 4 rotating inside the second slide rail 3 is used to adjust the distance between the two movable plates 8, and the second bidirectional screw rotating inside the two third slide rails 9 is used to adjust the distance between the placement seats 12.

[0035] The working principle of the above embodiment is:

[0036] The floor tiles to be processed are placed on four placement seats 12 arranged in a rectangular array. These placement seats 12 can be slid and adjusted in the third slide rail 9 through the second bidirectional screw 10 and the corresponding second moving block 11 to adapt to floor tiles of different sizes. The operator drives the second bidirectional screw 10 to rotate by rotating the second handle 13, and then adjusts the distance between the placement seats 12 to ensure that the floor tiles are firmly placed on the device. Next, the laser locator 24 is used to accurately position the floor tiles. The laser locator 24 is adjusted in position through the second electric push rod 23 on the fixed seat 22 to ensure that the four laser locators 24 can work together to accurately determine the fitting position of the floor tiles. The operator can control the extension and retraction of the second electric push rod 23 to make the laser locator 24 reach the optimal positioning position. After the floor tiles are positioned , the electric slide 16 starts to work, driving the fixed plate 17 and the first electric push rod 18, bracket 19, fixed column 20 and suction cup 21 thereon to move above the floor tile, the first electric push rod 18 extends, so that the suction cup 21 contacts and adsorbs on the surface of the floor tile, the electric slide 16 continues to move, lifts the floor tile from the placement seat 12 and moves it to the designated position, after the floor tile is moved to the designated position, the first electric push rod 18 descends again to fit the floor tile in the designated position, after the fitting is completed, the first electric push rod 18 shortens, so that the suction cup 21 releases the floor tile, the electric slide 16 moves the fixed plate 17 and the components thereon back to the initial position, ready for the next round of operation, at the same time, the operator can use the first moving wheel 26 and the second moving wheel 28 to move the entire device to the desired working position, thereby improving the flexibility and convenience of the device.

[0037] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.

[0038] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A processing device for bonding floor tiles, comprising a bottom plate (1), characterized in that: The upper ends of the base plate (1) are fixedly connected to the first slide rails (2) on both sides, the upper end of the base plate (1) is fixedly connected to the second slide rail (3), the second slide rail (3) is rotatably connected to the first bidirectional screw (4), the outer ends of the first bidirectional screw (4) are threadedly connected to the first moving block (5), one side of the first bidirectional screw (4) passes through the second slide rail (3) and is fixedly connected to the first handle (6), the two first slide rails (2) are slidably connected to the sliders (7) on both sides, the four sliders (7) are fixedly connected to the moving plate (8) at the upper ends in pairs, the two moving plates (8) are fixedly connected to the third slide rail (9), the two third slide rails (9) are rotatably connected to the second bidirectional screws (10), the two second bidirectional screws (10) are threadedly connected to the second moving block (11), the upper ends of the four second moving blocks (11) are fixedly connected to the placement seat (12), and the two second bidirectional screws (10) are fixedly connected to the second handle (13) on one side passing through the third slide rail (9).

2. The processing device for bonding floor tiles according to claim 1, characterized in that: One side of the base plate (1) is fixedly connected to a fixed frame (14), and one side of the upper end of each of the base plate (1) and the fixed frame (14) is fixedly connected to two support columns (15) distributed in a mirror image, and the upper ends of the four support columns (15) are fixedly connected to an electric slide rail (16) in groups of two.

3. The processing device for bonding floor tiles according to claim 2, characterized in that: The movable ends of the two electric slide rails (16) are fixedly connected to a fixed plate (17), the upper end of the fixed plate (17) is fixedly connected to a first electric push rod (18), the telescopic end of the first electric push rod (18) passes through one end of the fixed plate (17) and is fixedly connected to a bracket (19), the bottom end of the bracket (19) is fixedly connected to a plurality of fixed columns (20), and the bottom ends of the plurality of fixed columns (20) are fixedly connected to suction cups (21).

4. The processing device for bonding floor tiles according to claim 3, characterized in that: The upper end of the fixing plate (17) is fixedly connected to two mirror-distributed fixing seats (22), both sides of the two fixing seats (22) are fixedly connected to second electric push rods (23), and the telescopic ends of the four second electric push rods (23) are fixedly connected to laser locators (24).

5. The processing device for bonding floor tiles according to claim 1, characterized in that: Four first adjustment columns (25) arranged in a rectangular array are fixedly connected to the bottom end of the base plate (1), and the bottom ends of the four first adjustment columns (25) are all rotatably connected to first moving wheels (26).

6. The processing device for bonding floor tiles according to claim 2, characterized in that: Two second adjustment columns (27) distributed in a mirror image are fixedly connected to one side of the bottom end of the fixed frame (14), and the bottom ends of the two second adjustment columns (27) are rotatably connected to second moving wheels (28).

7. The processing device for bonding floor tiles according to claim 1, characterized in that: The upper ends of the two first moving blocks (5) are fixedly connected to the moving plate (8).

8. The processing device for bonding floor tiles according to claim 3, characterized in that: The plurality of suction cups (21) are all made of rubber material.