Cutting device for indoor decoration materials
By identifying the pre-cutting line with a vision camera and combining it with an electric lead screw to drive the cutting blade, and equipped with suction components and reinforcements, the problem of traditional cutting devices being unable to achieve curved cutting is solved, improving the flexibility and precision of the cutting device and reducing reliance on manual operation.
Patent Information
- Application Number
- CN202511671811.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-02-10
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional interior decoration material cutting devices are difficult to achieve curved or non-linear cuts, and uneven manual pressure leads to uneven cutting depth and width, affecting the cutting effect.
It uses a vision camera to identify the pre-cutting line, combined with an electric lead screw and motor to drive the cutting blade, equipped with suction components and reinforcements to ensure stable adhesion, and equipped with a cleaning mechanism and scale plate to improve cutting accuracy and stability.
It achieves precise control over multiple cutting paths, improves the flexibility and stability of the cutting device, ensures cutting accuracy and efficiency, and reduces reliance on manual operation.
Smart Images

Figure CN121492228A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of decoration accessories technology, and in particular to a cutting device for interior decoration materials. Background Technology
[0002] With the continuous development of the real estate industry and the improvement of people's living standards, the demand for personalized and high-quality interior decoration is constantly increasing. This has directly promoted the development of decoration material processing equipment. Traditional manual or semi-automatic cutting methods are inefficient and have poor precision, making it difficult to meet the speed and precision requirements of modern decoration projects. With the development of automation and CNC technology, more intelligent and efficient cutting equipment has emerged, which can achieve precise cutting of a variety of materials.
[0003] A search revealed that the invention with authorization announcement number CN221968518U discloses a tile cutting device for interior decoration, including a cutting machine body and a limiting guide component disposed at the bottom of the cutting machine body. The limiting guide component includes a guide mechanism and a cutting support mechanism mounted on the guide mechanism via the limiting mechanism. The cutting device moves the cutting machine body downward by pressing it, causing the cutting disc of the cutting machine body to slide inside the slide rail to perform back-and-forth cutting operations on the tile. However, there are still certain limitations in its use. Since the cutting disc can only perform straight-line cutting on the tile, its support for curved or other non-linear cutting needs is limited, so its application scenarios are relatively limited. Furthermore, the cutting process requires manual pressing of the cutting device to complete the cutting, and it is difficult to maintain a consistent pressure during manual pressing, which may lead to uneven cutting depth and width, affecting the final cutting effect. Summary of the Invention
[0004] In order to overcome the shortcomings of the prior art, the present invention provides a cutting device for interior decoration materials.
[0005] Technical Solution: A cutting device for interior decoration materials includes a base plate, which serves as the main assembly of the cutting device. The base plate has an adsorption element at its bottom for adsorbing onto the surface of ceramic tiles. It also includes a sliding plate disposed on one side of the base plate. Two motors are symmetrically fixedly mounted on the sliding plate near the base plate. A threaded rod is fixedly connected to the output shaft of each motor. A threaded block adapted to the threaded rod is fixedly connected to the base plate facing the sliding plate. The base plate and the sliding plate are connected by the threaded rod and the threaded block. A cutting arm for cutting is provided on the bottom surface of the sliding plate. The cutting arm includes a guide plate rotatably connected to the bottom surface of the sliding plate. A groove is formed inside the guide plate, and a mounting block is slidably connected within the groove. An electric lead screw is rotatably connected to the slot, and the electric lead screw is threadedly engaged with the mounting block. A cutting blade for cutting tiles is mounted on the bottom of the mounting block, with the blade facing vertically downwards. A second motor is fixedly mounted on the top of the sliding plate, and the output shaft of the second motor is connected to the rotating shaft of the guide plate on the sliding plate. Vision cameras are symmetrically fixed on both sides of the upper part of the cutting blade on the mounting block, facing the cutting point of the tile. The vision cameras are used to observe and identify pre-drawn cutting lines on the tile. A controller is set on the guide plate, and the controller is electrically connected to the vision cameras through wires. The controller is used to control the driving state of the electric lead screw. A master control module for controlling the entire device is embedded in one side of the base plate.
[0006] As an improvement to the above solution, the adsorption component consists of a toothed disc, a connecting shaft, a cylinder, and an electric suction cup. The bottom surface of the substrate away from the sliding plate is rotatably connected to the toothed disc via the connecting shaft. The outer side of the toothed disc has a ring of teeth. The cylinder is fixedly installed on the bottom surface of the toothed disc. The piston rod of the cylinder is facing downward and the electric suction cup is fixedly installed. The electric suction cup is used to adsorb and cut the surface of the tile, so that the entire cutting device can perform a fixed-point cutting operation on the surface of the tile. The bottom surface of the substrate is also fixedly installed with a motor. A gear is fixedly installed on the output shaft of the motor, and the gear meshes with the teeth on the toothed disc.
[0007] As an improvement to the above solution, a reinforcing member is provided between the substrate and the guide plate. The reinforcing member includes a mounting frame, multi-stage push rods and a connecting block. The mounting frame is fixedly connected to the bottom surface of the substrate. The multi-stage push rods are rotatably mounted on the mounting frame. The push rods of the multi-stage push rods are connected to the guide plate through the connecting block.
[0008] As an improvement to the above solution, the sliding plate is provided with a pressing mechanism for the auxiliary cutting arm to perform arc cutting. The pressing mechanism includes brackets symmetrically fixedly connected to both sides of the sliding plate. A second cylinder is fixedly installed at the end of the bracket, and the piston rod of the second cylinder is connected to an electric suction cup.
[0009] As an improvement to the above solution, an operating mechanism is provided on the side of the substrate away from the sliding plate for easy user operation. The operating mechanism includes a docking block disposed on one side of the substrate. The docking block is located on the side of the substrate away from the sliding plate. A cylinder three is fixedly installed at the bottom of the docking block. The piston rod of the cylinder three faces downward and is equipped with an electric suction cup three. The electric suction cup three and the electric suction cup one are located on the same horizontal plane. The substrate and the docking block are connected by a handle. One end of the handle is connected to the substrate and rotates with the connecting shaft on the gear plate. The handle is used to operate and control the entire cutting device.
[0010] As an improvement to the above solution, an electric push rod is hinged to one side of the docking block, and a connecting rod is fixedly connected to the side of the base plate near the electric push rod. The push rod of the electric push rod and the connecting rod are hinged to each other, and the electric push rod pulls the rotating base plate through the connecting rod.
[0011] As an improvement to the above solution, the substrate is provided with a cleaning mechanism for cleaning cut tiles. The cleaning mechanism includes an air pump fixedly installed on the substrate, the outlet of the air pump being connected to an air supply pipe, and an air jet head fixedly mounted on the upper blade of the cutting blade, the air jet head facing the cutting edge of the cutting blade, the air supply pipe being connected to the air jet head. A telescopic cover is provided between the substrate and the sliding plate, the telescopic cover being telescopic, the telescopic cover covering the periphery of the air supply pipe between the substrate and the sliding plate, the telescopic cover being used to protect the air supply pipe between the substrate and the sliding plate.
[0012] As an improvement to the above solution, a scale plate is installed on the guide plate along the slide groove direction. The scale plate is marked with uniform graduations corresponding to the current cutting blade position. An indicator rod is fixedly connected to the mounting block. The indicator rod slides in conjunction with the scale plate and indicates the corresponding graduation. Beneficial effects
[0013] 1. This invention identifies pre-cut lines on tiles using a vision camera, and the controller precisely controls the electric lead screw to drive the cutting blade, ensuring an accurate cutting path. The synchronous operation of the motor and motor II allows for flexible adjustment of the angle and position of the sliding plate and cutting arm, improving the applicability and flexibility of the device.
[0014] 2. The present invention can ensure that the cutting device can be stably adsorbed on the surface of the tile through the adsorption component, preventing displacement during the cutting process. With the reinforcement component, the structural strength between the substrate and the guide plate is further increased, which further improves the stability during the cutting process.
[0015] 3. The present invention is equipped with a cleaning mechanism that can clean the surface of the tile before cutting, ensuring that the vision camera can more accurately identify the cutting line. At the same time, the scale plate and indicator rod set on the guide plate can help the operator intuitively calculate the cutting distance and improve the accuracy of the cutting size. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0017] Figure 2 This is a schematic diagram of the components of the present invention, including the substrate, sliding plate, threaded rod, and guide plate.
[0018] Figure 3 This is a schematic diagram of the specific components of the substrate and adsorption element of the present invention.
[0019] Figure 4 This is a schematic diagram of the guide plate, mounting block, cutting blade, electric lead screw, and motor II of the present invention.
[0020] Figure 5 This is a schematic diagram showing the cooperation relationship between the sliding plate and the pressing mechanism of the present invention.
[0021] Figure 6 This is a schematic diagram of the substrate and operating mechanism of the present invention.
[0022] Figure 7 This describes the connection relationship between the air pump, air delivery pipe, and jet nozzle of the present invention.
[0023] Figure 8 This is a three-dimensional structural diagram of the gas delivery pipe and jet head of the present invention.
[0024] Figure 9 This is a schematic diagram of the scale plate and indicator rod of the present invention.
[0025] Labels in the diagram: 1. Base plate, 2. Adsorption component, 21. Gear disc, 211. Connecting shaft, 22. Cylinder 1, 23. Electric suction cup 1, 24. Motor 1, 25. Gear, 3. Sliding plate, 4. Threaded rod, 41. Motor, 42. Threaded block, 5. Cutting arm, 51. Guide plate, 52. Mounting block, 521. Cutting blade, 53. Electric lead screw, 6. Motor 2, 7. Reinforcing component, 71. Mounting bracket, 72. Multi-stage push rod, 73. Connecting block, 8. Vision. Camera, 81. Controller, 9. Main control module, 10. Pressing mechanism, 101. Bracket, 102. Cylinder II, 103. Electric suction cup II, 11. Operating mechanism, 111. Docking block, 112. Cylinder III, 113. Electric suction cup III, 114. Handle, 115. Electric push rod, 116. Connecting rod, 12. Cleaning mechanism, 121. Air pump, 122. Air supply pipe, 123. Jet nozzle, 13. Telescopic cover, 14. Scale plate, 15. Indicator rod. Detailed Implementation
[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0027] Example 1: A cutting device for interior decoration materials, such as Figures 1-4As shown, the device includes a base plate 1, which serves as the main assembly of the cutting device. The bottom of the base plate 1 has an adsorption element 2 for adsorbing onto the surface of the ceramic tile. It also includes a sliding plate 3 disposed on one side of the base plate 1. Two motors 41 are symmetrically fixedly mounted on the sliding plate 3 near the base plate 1. A threaded rod 4 is fixedly connected to the output shaft of each motor 41. A threaded block 42, adapted to the threaded rod 4, is fixedly connected to the side of the base plate 1 facing the sliding plate 3. The base plate 1 and the sliding plate 3 are connected by the threaded rod 4 and the threaded block 42. A cutting arm 5 for cutting is provided on the bottom surface of the sliding plate 3. The cutting arm 5 includes a guide plate 5 rotatably connected to the bottom surface of the sliding plate 3. 1. A groove is provided inside the guide plate 51. A mounting block 52 is slidably connected to the groove of the guide plate 51. An electric lead screw 53 is electrically driven to rotate within the groove of the guide plate 51. The electric lead screw 53 and the mounting block 52 are threaded together. A cutting blade 521 for cutting tiles is mounted at the bottom of the mounting block 52. The blade of the cutting blade 521 faces vertically downward. A second motor 6 is fixedly mounted on the top of the sliding plate 3. The output shaft of the second motor 6 is connected to the rotating shaft of the guide plate 51 on the sliding plate 3. Vision cameras 8 are symmetrically fixed on both sides of the upper part of the cutting blade 521 on the mounting block 52. The vision cameras 8 face the cutting blade 521 where it is cutting the tile. The vision camera 8 is used to observe and identify pre-drawn cutting lines on the tile. A controller 81 is mounted on the guide plate 51, and the controller 81 is electrically connected to the vision camera 8 via wires. The controller 81 controls the drive state of the electric lead screw 53. A central control module 9 for controlling the entire device is embedded in one side of the base plate 1. Before cutting, the cutting device is stably adsorbed onto the tile surface by the suction member 2. Then, the suction member 2 drives the entire device to press down. After the vision camera 8 identifies the pre-cutting lines on the tile, it controls the electric lead screw 53 to work via the controller 81. The threaded drive mounting block 52 of the electric lead screw 53 is located on the guide plate 51. The cutting blade 521 on the mounting block 52 slides within the groove, allowing it to be flexibly adjusted along the pre-cut line on the tile. The angle and position are adjusted by the control module 9, which controls the motor 41 and the second motor 6. When straight cutting is required, the motor 41 drives the sliding plate 3 and the cutting arm 5 to move in a straight line. When arc cutting is required, the second motor 6 drives the cutting arm 5 to move in an arc. When irregular arc cutting is required, the cutting blade 521 in the guide plate 51 can always perform irregular cutting operations along the cutting line by the synchronous dynamic drive of the motor 41 and the second motor 6, so that the device can adapt to various cutting operations.
[0028] like Figure 2 , Figure 3 and Figure 6As shown, the adsorption component 2 consists of a toothed disc 21, a connecting shaft 211, a cylinder 22, and an electric suction cup 23. The bottom surface of the base plate 1 away from the sliding plate 3 is rotatably connected to the toothed disc 21 via the connecting shaft 211. The outer side of the toothed disc 21 has a ring of teeth. The cylinder 22 is fixedly installed on the bottom surface of the toothed disc 21. The piston rod of the cylinder 22 faces downward and is fixedly installed with the electric suction cup 23. The electric suction cup 23 is used to adsorb and cut the surface of the tile, so that the entire cutting device can perform a fixed-point cutting operation on the surface of the tile. A motor 24 is also fixedly installed on the bottom surface of the base plate 1. A gear 25 is fixedly installed on the output shaft of the motor 24. The gear 25 and the teeth on the toothed disc 21 mesh with each other. When the electric suction cup 23 is attached to the surface of the tile, the cylinder 22 drives the entire device to press down on the tile until the cutting blade 521 on the cutting arm 5 presses down on the tile surface and creates a fine crack. Then, the motor 24 drives the gear 25 to rotate and mesh with the teeth on the gear plate 21. Since the electric suction cup 23 is stably attached to the tile, the gear plate 21 on the cylinder 22 cannot rotate. Therefore, the motor 24 can drive the base plate 1 to rotate around the connecting shaft 211 as the rotation center. The rotating base plate 1 cooperates with the rotating guide plate 51 on the sliding plate 3, and then links the cutting blade 521 sliding in the guide plate 51, so that the cutting arm 5 can better adapt to different cutting needs.
[0029] like Figure 1 and Figure 2 As shown, a reinforcement component 7 is provided between the base plate 1 and the guide plate 51. The reinforcement component 7 includes a mounting frame 71, a multi-stage push rod 72, and a connecting block 73. The mounting frame 71 is fixedly connected to the bottom surface of the base plate 1. The multi-stage push rod 72 is rotatably mounted on the mounting frame 71. The push rods of the multi-stage push rod 72 are connected to the guide plate 51 through the connecting block 73. The main control module 9 controls the multi-stage push rod 72 to work synchronously with the motor 6 through a preset program. When the motor 6 drives the cutting arm 5 to rotate, the multi-stage push rod 72 can provide a stable pulling effect on the cutting arm 5, thereby improving the stability of the cutting arm 5 when cutting tiles.
[0030] like Figure 1 and Figure 5 As shown, the sliding plate 3 is equipped with a pressing mechanism 10 for the auxiliary cutting arm 5 to perform arc cutting. The pressing mechanism 10 includes a bracket 101 symmetrically fixedly connected to both sides of the sliding plate 3. A cylinder 102 is fixedly installed at the end of the bracket 101. The piston rod of the cylinder 102 is connected to the electric suction cup 103. When the cutting arm 5 is driven to perform arc cutting on the sliding plate 3 by the motor 6, the electric suction cup 103 is driven by the cylinder 102 to press down to the surface of the tile being cut, so that the electric suction cups 103 on both sides of the sliding plate 3 can also be adsorbed on the surface of the tile, further improving the stability of the cutting arm 5 when it swings and cuts the tile in an arc on the sliding plate 3.
[0031] like Figure 1 and Figure 6As shown, an operating mechanism 11 is provided on the side of the substrate 1 away from the sliding plate 3 for easy operation by the user. The operating mechanism 11 includes a docking block 111 disposed on one side of the substrate 1. The docking block 111 is located on the side of the substrate 1 away from the sliding plate 3. A cylinder 3 112 is fixedly installed at the bottom of the docking block 111. The piston rod of the cylinder 3 112 faces downward and is equipped with an electric suction cup 3 113. The electric suction cup 3 113 and the electric suction cup 1 23 are located on the same horizontal plane. The substrate 1 and the docking block 111 are connected by a handle 114. One end of the handle 114 is connected to the connecting shaft 211 on the toothed disc 21 and rotates in cooperation. The handle 114 is used to operate and control the entire cutting device. The electric suction cup 1 23 and the electric suction cup 3 113 are jointly adsorbed on the surface of the tile to be cut, so that the entire cutting device can be more firmly adsorbed on the surface of the tile for cutting.
[0032] like Figure 1 and Figure 6 As shown, an electric push rod 115 is hinged to one side of the docking block 111. A connecting rod 116 is fixedly connected to the side of the base plate 1 near the electric push rod 115. The push rod of the electric push rod 115 and the connecting rod 116 are hinged to each other. The electric push rod 115 pulls the rotating base plate 1 through the connecting rod 116, so that the motor 24 can drive the base plate 1, the sliding plate 3 and the cutting arm 5 to swing synchronously more smoothly.
[0033] Before operation, the operator draws a cutting reference line on the surface of the tile to be cut. After drawing the cutting line, the entire device is moved to the surface of the tile using the handle 114. The main control module 9 simultaneously powers on the electric suction cup 23 at the bottom of the control base plate 1 and the electric suction cup 113 on the operating mechanism 11. The electric suction cups 23 and 113 generate an adsorption force to initially fix the device to the surface of the tile, forming a fulcrum. This initially fixes the entire cutting device to the surface of the tile, at which point the cutting blade 521 on the cutting arm 5 is suspended on the surface of the tile. Then, according to the cutting requirements, the cutting blade 521 is initially adjusted to the initial cutting point of the cutting line on the tile. During cutting, cylinders 22 and 112 synchronously drive the entire cutting device downwards until the cutting blade 521 contacts and cuts into the tile surface. When straight cutting is required, the direction of the cutting arm 5 is first adjusted by motor 6, and the threaded rod 4 is driven to rotate by motors 41 on both sides of the base plate 1. The threaded block 42 drives the sliding plate 3 to move at a constant speed along the direction of the connecting base plate 1, so that the cutting blade 521 on the cutting arm 5 can make longitudinal straight cuts. The electric lead screw 53 is activated by the controller 81. The electric lead screw 53 can drive the mounting block 52 and the cutting blade 521 to move along the slide groove of the guide plate 51, so that the cutting blade 521 can make straight cuts. The cutting blade 521 on arm 5 performs horizontal straight-line cutting; when arc cutting is required, motor 6 can be started to drive guide plate 51 to rotate around the axis on sliding plate 3, or motor 24 can drive gear 25 to rotate, so that gear 25 meshes with gear disk 21, driving base plate 1, sliding plate 3 and cutting arm 5 to rotate as a whole around connecting shaft 211. At this time, cylinders 102 on both sides of sliding plate 3 drive electric suction cups 103 to press down and adsorb the ceramic tile, so that the whole device forms a three-point adsorption system, further enhancing the torsional stability of sliding plate 3. Through multi-stage push rod 72 linked with motor 6, the swing of cutting arm 5 is compensated by extension and retraction. The angle ensures even distribution of cutting pressure. When complex cutting is required, the vision camera 8 then starts scanning mode to capture high-precision images of the pre-cutting lines on the tile surface. The main control module 9 combines the vision data to generate a cutting path plan. Subsequently, the main control module 9 controls the entire device to cut according to the cutting path through a preset control program. Through the dynamic cooperation of motor 41, motor 24 and motor 6, the cutting blade 521 slides in the groove and the guide plate 51 swings in a compound motion to accurately follow the cutting line direction for cutting. After cutting, the operator only needs to apply pressure to both sides of the cut crack on the tile to break the tile into the cut shape.
[0034] Example 2: Based on Example 1, such as Figure 1 , Figure 7 and Figure 8As shown, a cleaning mechanism 12 for cleaning cut tiles is provided on the substrate 1. The cleaning mechanism 12 includes an air pump 121 fixedly installed on the substrate 1. The outlet air of the air pump 121 is connected to an air supply pipe 122. An air jet head 123 is fixedly mounted on the upper blade of the cutting blade 521. The air jet head 123 faces the cutting edge of the cutting blade 521. The air supply pipe 122 is connected to the air jet head 123. A telescopic cover 13 is provided between the substrate 1 and the sliding plate 3. The telescopic cover 13 is telescopic and covers the periphery of the air supply pipe 122 between the substrate 1 and the sliding plate 3. The telescopic cover 13 is used to protect the air supply pipe 122 between the substrate 1 and the sliding plate 3. Before cutting the tile, the air pump 121 blows air into the air supply pipe 122. The air jet head 123 sprays high-speed airflow to the position where the cutting blade 521 cuts the tile, blowing away contaminants on the tile in advance, so that the vision camera 8 can more accurately identify the preset cutting line on the tile, thereby controlling the cutting blade 521 to complete the precise cutting operation.
[0035] like Figure 5 and Figure 9 As shown, a scale plate 14 is installed on the guide plate 51 along the slide groove direction. The scale plate 14 is marked with uniform scales corresponding to the current position of the cutting blade 521. An indicator rod 15 is fixedly connected to the mounting block 52. The indicator rod 15 slides in conjunction with the scale plate 14 and indicates the corresponding scale, so that the operator can intuitively know the current cutting distance of the cutting blade 521, thereby facilitating the calculation of the cutting size on the tile.
[0036] To further improve the cutting accuracy of the cutting device, the air pump 121 is activated. The air pump 121 blows high-pressure airflow into the air supply pipe 122 and sprays it out from the jet nozzle 123, so that the jet nozzle 123 can spray high-speed airflow at the cutting position of the cutting blade 521, thereby removing debris and dust in the cutting area and ensuring that the vision camera 8 continuously and accurately identifies the cutting line. When making regular and smooth cuts, the indicator rod 15 on the mounting block 52 cooperates with the scale plate 14 on the guide plate 51 to provide the operator with intuitive mechanical position feedback, which makes it easy for the operator to calculate the size to be cut on the tile. Combined with the electronic coordinates generated by the vision camera 8, a double verification is formed to ensure high repeatability of the cutting size. This allows the cut tiles to meet the on-site processing of complex decorative materials such as irregular or mosaic floor tiles, effectively reducing the scrap rate and time cost of traditional manual cutting.
[0037] Although the present invention has been described in detail with reference to the above embodiments, it will be apparent to those skilled in the art that various changes or modifications can be made to the invention without departing from the principles and spirit of the invention as defined by the claims. Therefore, the detailed description of the embodiments in this disclosure is for illustrative purposes only and is not intended to limit the invention; rather, the scope of protection is defined by the content of the claims.
Claims
1. A cutting device for interior decoration materials, comprising a substrate (1) with an adsorption element (2) at the bottom; Its characteristics are, It also includes a sliding plate (3) disposed on one side of the substrate (1). A motor (41) is symmetrically fixedly mounted on the side of the sliding plate (3) near the substrate (1). A threaded rod (4) is fixedly connected to the output shaft of the motor (41). A threaded block (42) is fixedly connected to the side of the substrate (1) facing the sliding plate (3). The substrate (1) and the sliding plate (3) are connected by the threaded rod (4) and the threaded block (42). A cutting arm (5) is provided on the bottom surface of the sliding plate (3). The cutting arm (5) includes a guide plate (51) hinged to the bottom surface of the sliding plate (3), a mounting block (52) is slidably connected in the groove of the guide plate (51), an electric lead screw (53) is electrically driven to rotate in the groove of the guide plate (51), the electric lead screw (53) and the mounting block (52) are threaded together, a cutting blade (521) is mounted at the bottom of the mounting block (52), a second motor (6) is fixedly mounted on the top of the sliding plate (3), and the output shaft of the second motor (6) is connected to the rotating shaft of the guide plate (51) on the sliding plate (3); The upper part of the cutting blade (521) is equipped with a vision camera (8), which is used to observe and identify the pre-cutting lines drawn in advance on the tile. The guide plate (51) is equipped with a controller (81), which is electrically connected to the vision camera (8) through wires. The controller (81) is used to control the electric lead screw (53). The base plate (1) is integrated with a master control module (9) for controlling the entire device.
2. The cutting device for interior decoration materials as described in claim 1, characterized in that, The adsorption component (2) consists of a toothed disc (21), a connecting shaft (211), a cylinder (22), and an electric suction cup (23). The bottom surface of the substrate (1) away from the sliding plate (3) is rotatably connected to the toothed disc (21) through the connecting shaft (211). The outer side of the toothed disc (21) has a ring of teeth. The cylinder (22) is fixedly installed on the bottom surface of the toothed disc (21). The piston rod of the cylinder (22) faces downward and is fixedly installed with the electric suction cup (23). The electric suction cup (23) is used to adsorb and cut the surface of the ceramic tile, so that the entire cutting device can perform a fixed-point cutting operation on the surface of the ceramic tile. The bottom surface of the substrate (1) is also fixedly installed with a motor (24). A gear (25) is fixedly installed on the output shaft of the motor (24). The gear (25) and the teeth on the toothed disc (21) mesh with each other.
3. The cutting device for interior decoration materials as described in claim 2, characterized in that, A reinforcement component (7) is provided between the substrate (1) and the guide plate (51). The reinforcement component (7) includes a mounting frame (71), a multi-stage push rod (72), and a connecting block (73). The mounting frame (71) is fixedly connected to the bottom surface of the substrate (1). The multi-stage push rod (72) is rotatably mounted on the mounting frame (71). The push rods of the multi-stage push rod (72) are connected to the guide plate (51) through the connecting block (73).
4. The cutting device for interior decoration materials as described in claim 3, characterized in that, The sliding plate (3) is provided with a pressing mechanism (10) for the auxiliary cutting arm (5) to perform arc cutting. The pressing mechanism (10) includes a bracket (101) symmetrically fixedly connected to both sides of the sliding plate (3). A cylinder (102) is fixedly installed at the end of the bracket (101). The piston rod of the cylinder (102) is connected to the electric suction cup (103).
5. The cutting device for interior decoration materials as described in claim 4, characterized in that, The base plate (1) is provided with an operating mechanism (11) on the side away from the sliding plate (3) for easy operation by the user. The operating mechanism (11) includes a docking block (111) disposed on one side of the base plate (1). The docking block (111) is located on the side away from the sliding plate (3) of the base plate (1). A cylinder three (112) is fixedly installed at the bottom of the docking block (111). The piston rod of the cylinder three (112) faces downward and is equipped with an electric suction cup three (113). The electric suction cup three (113) and the electric suction cup one (23) are located on the same horizontal plane. The base plate (1) and the docking block (111) are connected by a handle (114). The handle (114) is connected to one end of the base plate (1) and the connecting shaft (211) on the gear plate (21) for rotational engagement.
6. The cutting device for interior decoration materials as described in claim 5, characterized in that, An electric push rod (115) is hinged to one side of the docking block (111), and a connecting rod (116) is fixedly connected to the side of the base plate (1) near the electric push rod (115). The push rod of the electric push rod (115) and the connecting rod (116) are hinged to each other.
7. The cutting device for interior decoration materials as described in claim 6, characterized in that, The substrate (1) is provided with a cleaning mechanism (12) for cleaning cut tiles. The cleaning mechanism (12) includes an air pump (121) fixedly installed on the substrate (1). The outlet air of the air pump (121) is connected to an air supply pipe (122). An air jet head (123) is fixedly mounted on the upper blade of the cutting blade (521). The air jet head (123) faces the blade of the cutting blade (521). The air supply pipe (122) is connected to the air jet head (123). A telescopic cover (13) is provided between the substrate (1) and the sliding plate (3). The telescopic cover (13) is telescopic and covers the periphery of the air supply pipe (122) between the substrate (1) and the sliding plate (3).
8. The cutting device for interior decoration materials as described in claim 7, characterized in that, A scale plate (14) is installed on the guide plate (51) along the slide groove direction. The scale plate (14) is marked with uniform scale corresponding to the current position of the cutting blade (521). An indicator rod (15) is fixedly connected to the mounting block (52). The indicator rod (15) slides and cooperates with the scale plate (14) to indicate the corresponding scale.
Citation Information
Patent Citations
Ceramic tile cutting device for indoor decoration
CN221968518U