Automatic collecting and cutting machine for stone plastic floor corner excess material

CN224659558UActive Publication Date: 2026-08-21ANHUI AIANDE NEW MATERIALS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521887141.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2026-08-21
Estimated Expiration
2035-09-03

AI Technical Summary

Technical Problem

[0003]一般的裁切机在进行切割时,切割位置的碎屑会随着刀片的转动向外溅出,从而导致加工的环境较差,同时也易影响到周围的设备,并且在切割完毕后不可以对边角余料进行自动清洁,从而在加工完毕后需要手动清洁收集,使得裁切机的加工效率较低,进而不利于设备的使用

Benefits of technology

[0014] This invention increases stability during the cutting process by using a pressing ball to press down on various parts of the floor. A fixing sleeve covers the cutting area to prevent debris from splashing out. After cutting, a magnetically attached collecting plate is used to move it, allowing for the collection of scrap material from the machine frame surface and cleaning of the frame for future processing.

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Abstract

The utility model discloses a kind of stone plastic floor edge corner excess material automatic collection cutting machine, belong to stone plastic floor processing technical field, including rack and cutting knife, the upper end both sides of the rack are provided with X-axis moving mechanism, the outside of X-axis moving mechanism is connected with Y-axis moving mechanism, the side surface of Y-axis moving mechanism is connected with height adjusting mechanism, the output end of cutting motor is connected with cutting knife, cutting knife rotation setting is inside the fixed disc.The utility model solves the problem that the processing efficiency of cutting machine is lower due to the fact that edge corner excess material cannot be automatically cleaned after cutting is completed, so manual cleaning collection is needed after processing is completed, so that the utility model is fixed to the collecting plate by magnetic attraction after cutting is completed, to drive the collecting plate to move, and then the collecting plate is moved after processing is completed, to collect the edge corner excess material on the surface of the rack, and the surface of the rack can be cleaned, for next processing.
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Description

Technical Field

[0001] This utility model relates to the field of stone plastic flooring processing technology, specifically to an automatic collection and cutting machine for stone plastic flooring scraps. Background Technology

[0002] Stone plastic (SPC) flooring has strong anti-slip and wear-resistant properties. However, when using SPC flooring, a cutting machine is needed to cut it into the required shape. But ordinary cutting machines have some drawbacks, such as:

[0003] When a typical cutting machine is cutting, the debris at the cutting position will splash outwards as the blade rotates, resulting in a poor processing environment and easily affecting surrounding equipment. Furthermore, it cannot automatically clean up the scraps after cutting, requiring manual cleaning and collection. This leads to low processing efficiency and is detrimental to the use of the equipment. Utility Model Content

[0004] The purpose of this utility model is to provide an automatic collection and cutting machine for stone plastic flooring scraps, which can prevent cutting debris from splashing out and can automatically collect and clean the scraps, thus solving the problems in the prior art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: including a frame and a cutting blade, wherein an X-axis moving mechanism is provided on both sides of the upper end of the frame, a Y-axis moving mechanism is connected to the outer side of the X-axis moving mechanism, a height adjustment mechanism is connected to the side of the Y-axis moving mechanism, a rotating frame is provided inside the height adjustment mechanism, a fixed plate is provided at the lower end of the rotating frame, a cutting motor is connected to the outer side of the fixed plate, a cutting blade is connected to the output end of the cutting motor, and the cutting blade is rotatably disposed inside the fixed plate;

[0006] The upper surface of the frame is provided with a collection plate, and the two sides of the frame surface are symmetrically provided with sliding grooves for the movement of the collection plate. The other two sides of the frame surface are symmetrically provided with collection holes.

[0007] Preferably, the X-axis moving mechanism includes a fixed frame, a first motor, and a first lead screw. The fixed frame is located at the upper end of the top corner of the frame. The first motor is connected to the outer side of the two fixed frames on one side. The output end of the first motor is connected to the first lead screw. The first lead screw is rotatably connected to the fixed frame on the other side.

[0008] Preferably, the Y-axis moving mechanism includes a connecting frame, a second motor, and a second lead screw. A connecting frame is provided on the outer side of the first lead screw, and a second motor is connected to the outer side of the connecting frame. The output end of the second motor is connected to the second lead screw. The second lead screw and the two connecting frames are rotatably connected. A positioning rod is provided between the fixed frames, and the positioning rod passes through the connecting frame.

[0009] Preferably, the height adjustment mechanism includes a support frame, a third motor, and a third lead screw. The support frame is connected to the outer side of the second lead screw, and a positioning rod is provided between the connecting frames. The positioning rod passes through the support frame. The third motor is provided at the upper end of the support frame, and the output end of the third motor is connected to the third lead screw. A rotating frame is connected to the outer side of the third lead screw, and a positioning rod is provided inside the support frame. The positioning rod passes through the rotating frame.

[0010] Preferably, a fixing sleeve is provided on the outer side of the fixing plate, a telescopic rod is provided inside the fixing sleeve, a pressing plate is connected to the lower end of the telescopic rod, and a pressing ball is provided inside the lower end of the pressing plate.

[0011] Preferably, a limiting block is provided at the bottom of the support frame, an electromagnet is provided inside the limiting block, a central column is provided at the upper end of the center of the collecting plate, and a magnetic block is provided inside the central column.

[0012] Preferably, the two sides of the collecting plate are arc-shaped.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] This invention increases stability during the cutting process by using a pressing ball to press down on various parts of the floor. A fixing sleeve covers the cutting area to prevent debris from splashing out. After cutting, a magnetically attached collecting plate is used to move it, allowing for the collection of scrap material from the machine frame surface and cleaning of the frame for future processing. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model;

[0016] Figure 2 This is a three-dimensional structural diagram of the support frame of this utility model;

[0017] Figure 3 This is a side view of the support frame of this utility model.

[0018] Figure 4 This is a top view schematic diagram of the collecting plate and central column of this utility model.

[0019] In the diagram: 1. Frame; 2. Fixing frame; 3. First motor; 4. First lead screw; 5. Connecting frame; 6. Second motor; 7. Second lead screw; 8. Support frame; 9. Third motor; 10. Third lead screw; 11. Rotating frame; 12. Fixing plate; 13. Cutting motor; 14. Cutting blade; 15. Fixing sleeve; 16. Telescopic rod; 17. Pressing plate; 18. Pressing ball; 19. Limiting block; 20. Electromagnet; 21. Collecting plate; 22. Central column; 23. Collecting hole. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. 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.

[0021] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings.

[0022] Combination Figures 1-4 This utility model discloses an automatic collection and cutting machine for scrap stone plastic flooring edges, comprising a frame 1 and a cutting blade 14. X-axis moving mechanisms are provided on both sides of the upper end of the frame 1. A Y-axis moving mechanism is connected to the outer side of the X-axis moving mechanism. A height adjustment mechanism is connected to the side of the Y-axis moving mechanism. A rotating frame 11 is provided inside the height adjustment mechanism. A fixed plate 12 is provided at the lower end of the rotating frame 11. A cutting motor 13 is connected to the outer side of the fixed plate 12. The output end of the cutting motor 13 is connected to the cutting blade 14. The cutting blade 14 is rotatably mounted inside the fixed plate 12.

[0023] A collection plate 21 is provided on the upper surface of the frame 1. Slide grooves for moving the collection plate 21 are symmetrically opened on both sides of the surface of the frame 1. Collection holes 23 are symmetrically opened on the other two sides of the surface of the frame 1.

[0024] It should be noted that the cutting motor 13 drives the cutting blade 14 to rotate, thereby cutting the base plate. After the cutting is completed, the collection plate 21 moves to move the remaining material automatically. The collection buckets are placed below the collection holes 23 on both sides to collect the remaining material.

[0025] In this embodiment, the X-axis moving mechanism includes a fixed frame 2, a first motor 3, and a first lead screw 4. The fixed frame 2 is located at the upper end of the top corner of the frame 1. The first motor 3 is connected to the outside of the two fixed frames 2 on one side. The output end of the first motor 3 is connected to the first lead screw 4. The first lead screw 4 is rotatably connected to the fixed frame 2 on the other side.

[0026] It should be noted that the first motor 3 can drive the first lead screw 4 to rotate. Since the first lead screw 4 is threadedly connected to the connecting frame 5 and the positioning rod passes through the connecting frame 5, the connecting frame 5 can be effectively limited to prevent it from rotating. Thus, the rotation of the first lead screw 4 drives the connecting frame 5 to move, thereby adjusting the position of the connecting frame 5 and the cutting blade 14.

[0027] In this embodiment, the Y-axis moving mechanism includes a connecting frame 5, a second motor 6, and a second lead screw 7. The connecting frame 5 is provided on the outer side of the first lead screw 4, and the second motor 6 is connected to the outer side of the connecting frame 5. The output end of the second motor 6 is connected to the second lead screw 7. The second lead screw 7 and the two connecting frames 5 are rotatably connected. A positioning rod is provided between the fixed frames 2, and the positioning rod passes through the connecting frame 5.

[0028] It should be noted that the second motor 6 drives the second lead screw 7 to rotate, and the positioning rod limits the support frame 8 to prevent the support frame 8 from rotating. Therefore, the position of the support frame 8 and the cutting blade 14 is adjusted by rotating the second lead screw 7.

[0029] In this embodiment, the height adjustment mechanism includes a support frame 8, a third motor 9, and a third lead screw 10. The support frame 8 is connected to the outside of the second lead screw 7. A positioning rod is provided between the connecting frames 5, and the positioning rod passes through the support frame 8. The third motor 9 is provided at the upper end of the support frame 8. The output end of the third motor 9 is connected to the third lead screw 10. A rotating frame 11 is connected to the outside of the third lead screw 10. A positioning rod is provided inside the support frame 8, and the positioning rod passes through the rotating frame 11.

[0030] It should be noted that the third motor 9 drives the third lead screw 10 to rotate. Since the third lead screw 10 and the rotating frame 11 are threadedly connected, and the rotating frame 11 is penetrated by the positioning rod, the height of the rotating frame 11 will be adjusted when the third lead screw 10 rotates. Furthermore, a stepper motor is installed inside the rotating frame 11. The angles of the fixed plate 12, the cutting motor 13, and the cutting blade 14 can be adjusted through the stepper motor, thereby adjusting the cutting angle.

[0031] In this embodiment, a fixing sleeve 15 is provided on the outer side of the fixing plate 12, a telescopic rod 16 is provided inside the fixing sleeve 15, a pressing plate 17 is connected to the lower end of the telescopic rod 16, and a pressing ball 18 is provided inside the lower end of the pressing plate 17.

[0032] It should be noted that when cutting the floor, the cutting motor 13 and the cutting blade 14 will descend, causing the pressing plate 17 and the pressing ball 18 to move downward first to press and fix the material. The telescopic rod 16 is a damping spring rod, so it can provide a certain downward pressure to ensure the stability of the processing. As the cutting blade 14 moves, the pressing ball 18 will also rotate, thereby reducing the resistance of the pressing plate 17 when it moves, so that the equipment can effectively cut the floor while fixing it.

[0033] In this embodiment, a limiting block 19 is provided at the bottom of the support frame 8, an electromagnet 20 is provided inside the limiting block 19, a central column 22 is provided at the upper end of the center of the collecting plate 21, and a magnetic block is provided inside the central column 22.

[0034] It should be noted that the central column 22 is internally equipped with a magnetic block. When the electromagnet 20 passes through, it generates a magnet. When the electromagnet 20 approaches the magnetic block, it will drive the magnetic block to move upward. Under normal conditions, the magnetic block is embedded in the limiting block 19. Then, the movement of the support frame 8 drives the collection plate 21 and the central column 22 to move for automatic collection and cleaning. When the collection plate 21 and the central column 22 are pre-misaligned, the electromagnet 20 can still drive the magnetic block to move upward when it approaches. The support frame 8 only needs to move along the "Y" axis to complete the automatic collection and cleaning work. Therefore, the movement of the limiting block 19 can still drive the collection plate 21 and the central column 22 to move.

[0035] In this embodiment, the two sides of the collecting plate 21 are arc-shaped.

[0036] It should be noted that, since the two sides of the collecting plate 21 are arc-shaped, when the collecting plate 21 moves, the residual material will move towards the center of the collecting plate 21, which makes it easier to collect the material.

[0037] Working principle: First, the floor is placed on the surface of the frame 1. Then, the third motor 9 drives the third lead screw 10 to rotate, which causes the rotating frame 11 to move downward. The pressing ball 18 contacts the material, thereby pressing and fixing the material. Then, the cutting motor 13 drives the cutting blade 14 to rotate for cutting. Subsequently, the first motor 3 and the second motor 6 drive the cutting blade 14 to move in the X and Y axis directions. The angle of the cutting blade 14 can be adjusted by the stepper motor, thereby completing the cutting of the floor. The finished product is then taken out for use.

[0038] Then the support frame 8 moves to the center of the right side of the frame 1, the electromagnet 20 is energized so that the magnetic block is embedded in the limit block 19, and then the collection plate 21 is moved by the horizontal movement of the support frame 8, so that the scraps and impurities are collected by the collection plate 21 for the next use of the equipment.

[0039] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0040] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automatic collection and cutting machine for scrap materials from stone-plastic flooring, comprising a frame (1) and a cutting blade (14), characterized in that, The upper two sides of the frame (1) are provided with X-axis moving mechanisms. The outer side of the X-axis moving mechanism is connected to a Y-axis moving mechanism. The side of the Y-axis moving mechanism is connected to a height adjustment mechanism. The interior of the height adjustment mechanism is provided with a rotating frame (11). The lower end of the rotating frame (11) is provided with a fixed plate (12). The outer side of the fixed plate (12) is connected to a cutting motor (13). The output end of the cutting motor (13) is connected to a cutting blade (14). The cutting blade (14) is rotatably disposed inside the fixed plate (12). The upper surface of the frame (1) is provided with a collecting plate (21). The two sides of the surface of the frame (1) are symmetrically provided with sliding grooves for the moving of the collecting plate (21). The other two sides of the surface of the frame (1) are symmetrically provided with collecting holes (23).

2. The automatic collection and cutting machine for stone-plastic flooring scraps according to claim 1, characterized in that, The X-axis moving mechanism includes a fixed frame (2), a first motor (3) and a first lead screw (4). The fixed frame (2) is located at the top corner of the frame (1). The first motor (3) is connected to the outside of the two fixed frames (2) on one side. The output end of the first motor (3) is connected to the first lead screw (4). The first lead screw (4) is rotatably connected to the fixed frame (2) on the other side.

3. The automatic collection and cutting machine for stone-plastic flooring scraps according to claim 2, characterized in that, The Y-axis moving mechanism includes a connecting frame (5), a second motor (6), and a second lead screw (7). The connecting frame (5) is provided on the outside of the first lead screw (4), and the second motor (6) is connected to the outside of the connecting frame (5). The output end of the second motor (6) is connected to the second lead screw (7). The second lead screw (7) and the two connecting frames (5) are rotatably connected. A positioning rod is provided between the fixed frames (2), and the positioning rod passes through the connecting frame (5).

4. The automatic collection and cutting machine for stone-plastic flooring scraps according to claim 3, characterized in that, The height adjustment mechanism includes a support frame (8), a third motor (9) and a third lead screw (10). The support frame (8) is connected to the outside of the second lead screw (7). A positioning rod is provided between the connecting frames (5). The positioning rod passes through the support frame (8). The third motor (9) is provided at the upper end of the support frame (8). The output end of the third motor (9) is connected to the third lead screw (10). A rotating frame (11) is connected to the outside of the third lead screw (10). A positioning rod is provided inside the support frame (8). The positioning rod passes through the rotating frame (11).

5. The automatic collection and cutting machine for stone-plastic flooring scraps according to claim 1, characterized in that, A fixing sleeve (15) is provided on the outside of the fixing plate (12), and a telescopic rod (16) is provided inside the fixing sleeve (15). A pressing plate (17) is connected to the lower end of the telescopic rod (16), and a pressing ball (18) is provided inside the lower end of the pressing plate (17).

6. The automatic collection and cutting machine for stone-plastic flooring scraps according to claim 4, characterized in that, The bottom of the support frame (8) is provided with a limiting block (19), and an electromagnet (20) is provided inside the limiting block (19). A central column (22) is provided at the upper end of the center of the collecting plate (21), and a magnetic block is provided inside the central column (22).

7. The automatic collection and cutting machine for stone-plastic flooring scraps according to claim 1, characterized in that, The two sides of the collecting plate (21) are arc-shaped.