Five-axis bridge cutting machine
By designing a five-axis bridge cutting machine, the three-dimensional direction movement of the slice is achieved using the lateral movement module, slider and vertical movement mechanism, and the arbitrary angle adjustment of the slice is achieved through the setting of the rotating mechanism and the driving motor, which solves the singular limitations of the traditional three-axis linkage bridge cutting machine when processing complex shapes and curves, and realizes the ability to cut stone at any angle and process complex shapes.
Patent Information
- Application Number
- CN202422164818.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-09-04
AI Technical Summary
Traditional three-axis linkage bridge cutting machines have singular limitations when processing complex geometric shapes and curves, which is difficult to meet the modern market's demand for more complex shape processing.
A five-axis bridge cutting machine is designed to realize the three-dimensional direction movement of the slice through the lateral movement module, slider and vertical movement mechanism, and the arbitrary angle adjustment of the slice is realized through the setting of the rotating mechanism and the driving motor, which is suitable for complex shapes and curve cutting.
It realizes any angle cutting of stone, which is suitable for various complex geometric shapes and curve cutting needs, and solves the singularity limitation of traditional three-dimensional linear axis bridge cutting processing.
Smart Images

Figure CN223000859U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stone cutting, in particular to a five-axis bridge cutting machine. Background Technique
[0002] Stone cutting is a traditional industry, and the technology has been matured so far. The three-axis linkage bridge cutting machine is used to process various materials such as stone, ceramics and metals. It realizes the precise cutting of materials through the linkage control in three directions of the X-axis, Y-axis and Z-axis. With its high efficiency, precision and reliable performance, the three-axis linkage bridge cutting machine has brought great convenience and development opportunities to the stone processing industry. With the continuous progress of technology, the original three-axis linkage bridge cutting machine can only process some simple lines and shapes, which can no longer meet the current market demand. Content of the Utility Model
[0003] The purpose of the utility model is to provide a five-axis bridge cutting machine to solve the problems put forward in the above background technique.
[0004] To achieve the above purpose, the technical solution of the utility model is as follows.
[0005] A five-axis bridge cutting machine includes a base. A workpiece platform is arranged on the upper surface of the base. Longitudinal moving modules are installed on both sides of the upper surface of the base. A transverse moving module is arranged on the outer surfaces of the two longitudinal moving modules. A slider is arranged on the outer surface of the transverse moving module. An installation plate is slidably installed on the outer surface of the slider through a vertical moving mechanism. A rotating frame is installed at the bottom of the installation plate through a rotating mechanism. An installation frame is rotatably installed inside the rotating frame. A cutting motor is installed inside the installation frame. A slicer is installed at the end of the output shaft of the cutting motor. A first driving motor is installed on the outer surface of the rotating frame. The output shaft of the first driving motor is connected with a first planetary reducer. The output shaft of the first planetary reducer is connected with the installation frame.
[0006] It can be seen that through the transverse moving module, the slider and the vertical moving mechanism, the purpose of moving the slicer in three axial directions can be achieved. Through the setting of the rotating mechanism and the first driving motor, the slicer can be adjusted at any angle. Therefore, the purpose of cutting the stone at any angle can be achieved, which is applicable to various complex geometric shapes, curve cutting requirements, surface and profiling processing, etc., and solves the monotony of traditional three-dimensional linear axis bridge cutting processing.
[0007] Further, the vertical moving mechanism includes a second driving motor installed on the outer surface of the slider. The end of the output shaft of the second driving motor is connected with a threaded rod. A nut seat is installed on the outer surface of the threaded rod, and the nut seat is connected with the installation plate.
[0008] By starting the second driving motor, the threaded rod can be driven to rotate. When the threaded rod rotates, it can drive the nut seat to move along its length direction, and achieve the purpose of driving the mounting plate to move vertically up and down.
[0009] Further, the rotating mechanism includes a mounting seat installed on the outer surface of the mounting plate. A third driving motor is installed on the outer surface of the mounting seat. The output shaft of the third driving motor is connected to a second planetary reducer. The output shaft of the second planetary reducer is connected to a connecting shaft, and the end of the connecting shaft is connected to the rotating frame.
[0010] By starting the third driving motor, the connecting shaft can be driven to rotate, and further achieve the purpose of driving the rotating frame to rotate horizontally. And through the setting of the second planetary reducer, the rotation speed can be reduced while the output torque is increased, so that the rotating frame can rotate at a suitable speed and force.
[0011] Further, an electric control box and a control console are arranged on the side surface of the base.
[0012] The electrical system management device in the electric control box manages the power supply and protection functions to ensure the safe operation of the device. Through the setting of the control console, an interaction interface between the operator and the device is provided, which is convenient for operating the device.
[0013] Further, one side of the workpiece platform is rotatably connected to the base through a hinge block. Two hydraulic telescopic rods are rotatably installed on the outer surface of the base. The end of the telescopic end of the hydraulic telescopic rod is rotatably connected to the lower surface of the workpiece platform.
[0014] When the hydraulic telescopic rod is started, since the workpiece platform is rotatably connected to the base through the hinge block, the workpiece platform can be flipped to facilitate loading the workpiece material.
[0015] Further, a protective cover is installed on the outer surface of the mounting plate.
[0016] Through the setting of the protective cover, not only can it prevent dust from falling on the vertical moving mechanism and affecting its service life, but also improve the aesthetics. Description of the Drawings
[0017] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0018] Figure 2 is a partial structural schematic diagram of the present utility model;
[0019] Figure 3 is a structural schematic diagram of the vertical moving mechanism in the present utility model;
[0020] Figure 4 is a structural schematic diagram of the rotating mechanism in the present utility model;
[0021] Figure 5Schematic diagram of the regional structure of the rotary frame in the present utility model;
[0022] Figure 6 Schematic diagram of the bottom structure of the workpiece platform in the present utility model.
[0023] In the figure: 100, base; 101, workpiece platform; 102, longitudinal movement module; 103, transverse movement module; 104, slider; 105, mounting plate; 106, rotary frame; 107, cutting motor; 108, cutting blade; 109, first driving motor; 110, mounting frame; 111, first planetary reducer; 200, vertical movement mechanism; 201, second driving motor; 202, threaded rod; 203, nut seat; 300, rotating mechanism; 301, mounting seat; 302, third driving motor; 303, second planetary reducer; 304, connecting shaft; 400, electric control box; 401, control console; 500, hinge block; 501, hydraulic telescopic rod; 600, protective cover. Specific embodiments
[0024] The present utility model will be described in detail below with reference to the accompanying drawings.
[0025] As Figure 1-6 shown, a five-axis bridge cutting machine includes a base 100. A workpiece platform 101 is provided on the upper surface of the base 100. Longitudinal movement modules 102 are installed on both sides of the upper surface of the base 100. A transverse movement module 103 is provided on the outer surface of the two longitudinal movement modules 102. A slider 104 is provided on the outer surface of the transverse movement module 103. A mounting plate 105 is slidably installed on the outer surface of the slider 104 through a vertical movement mechanism 200. A rotary frame 106 is installed at the bottom of the mounting plate 105 through a rotating mechanism 300. An installation frame 110 is rotatably installed inside the rotary frame 106. A cutting motor 107 is installed inside the installation frame 110. A cutting blade 108 is installed at the end of the output shaft of the cutting motor 107. A first driving motor 109 is installed on the outer surface of the rotary frame 106. The output shaft of the first driving motor 109 is connected to a first planetary reducer 111. The output shaft of the first planetary reducer 111 is connected to the installation frame 110.
[0026] During use, the worker places the plate on the workpiece platform 101 and fixes it with a fixture. Then, by starting the cutting motor 107, the cutting blade 108 can be driven to rotate to cut the plate. With the settings of the horizontal movement module 103, the slider 104, and the vertical movement mechanism 200, the cutting blade 108 can be driven to move in three-dimensional directions. Then, through the rotation mechanism 300, the rotating frame 106 can be driven to rotate horizontally between 0° and 360°. By starting the first driving motor 109, the cutting motor 107 can be driven to rotate vertically between 0° and 90°. Through the mutual cooperation of each mechanism, the purpose of adjusting the cutting blade 108 at any angle can be achieved, and the purpose of cutting the stone at any angle can be realized, which is applicable to various complex geometric shapes, curve cutting requirements, surface and profiling processing, etc., solving the monotony of traditional three-dimensional linear axis bridge cutting processing. It should be noted that the longitudinal movement module 102 and the horizontal movement module 103 are common existing technologies, so they will not be elaborated here.
[0027] Specifically, the vertical movement mechanism 200 includes a second driving motor 201 installed on the outer surface of the slider 104. The end of the output shaft of the second driving motor 201 is connected to a threaded rod 202. A nut seat 203 is installed on the outer surface of the threaded rod 202, and the nut seat 203 is connected to the mounting plate 105. By starting the second driving motor 201, the threaded rod 202 can be driven to rotate. When the threaded rod 202 rotates, the nut seat 203 can be driven to move along its length direction, and the purpose of driving the mounting plate 105 to lift vertically can be achieved.
[0028] Specifically, the rotation mechanism 300 includes a mounting seat 301 installed on the outer surface of the mounting plate 105. A third driving motor 302 is installed on the outer surface of the mounting seat 301. The output shaft of the third driving motor 302 is connected to a second planetary reducer 303. The output shaft of the second planetary reducer 303 is connected to a connecting shaft 304, and the end of the connecting shaft 304 is connected to the rotating frame 106. By starting the third driving motor 302, the connecting shaft 304 can be driven to rotate, and thus the purpose of driving the rotating frame 106 to rotate horizontally can be achieved. With the setting of the second planetary reducer 303, the rotation speed can be reduced while the output torque can be increased, so that the rotating frame 106 can rotate at a suitable speed and force.
[0029] Specifically, an electric control box 400 and a control console 401 are arranged on the side surface of the base 100. The electric control box 400 manages the power supply and protection functions of the electrical system equipment inside, ensuring the safe operation of the equipment. With the setting of the control console 401, an interactive interface between the operator and the equipment is provided, facilitating the operation and control of the equipment.
[0030] Specifically, one side of the workpiece platform 101 is rotatably connected to the base 100 through a hinge block 500. Two hydraulic telescopic rods 501 are rotatably installed on the outer surface of the base 100. The end of the telescopic end of the hydraulic telescopic rod 501 is rotatably connected to the lower surface of the workpiece platform 101. When the hydraulic telescopic rod 501 is started, since the workpiece platform 101 is rotatably connected to the base 100 through the hinge block 500, the workpiece platform 101 can be flipped to facilitate loading of workpiece materials.
[0031] Specifically, a protective cover 600 is installed on the outer surface of the mounting plate 105. Through the setting of the protective cover 600, not only can dust be prevented from falling on the vertical moving mechanism 200, affecting its service life, but also the aesthetics can be improved.
[0032] The above is a detailed description of the present invention in combination with specific embodiments. It cannot be determined that the specific implementation modes of the present invention are only limited to these descriptions. For those of ordinary skill in the technical field to which the present invention belongs, without departing from the concept of the present invention, several equivalent substitutions or obvious modifications are made, and the performance or use is the same, and all should be regarded as belonging to the patent protection scope determined by the claims submitted by the present invention.
Claims
1. A five-axis bridge cutting machine, comprising a base (100), characterized in that: A workpiece platform (101) is provided on the upper surface of the base (100), longitudinal moving modules (102) are installed on both sides of the upper surface of the base (100), the outer surfaces of the two longitudinal moving modules (102) are provided with transverse moving modules (103), the outer surfaces of the transverse moving modules (103) are provided with sliders (104), the outer surfaces of the sliders (104) are slidably installed with mounting plates (105) via a vertical moving mechanism (200), and the bottom of the mounting plates (105) is installed with a rotating mechanism (300). A frame (106) is provided, wherein a mounting frame (110) is rotatably mounted on the inner side of the rotating frame (106), a cutting motor (107) is mounted inside the mounting frame (110), a slicer (108) is mounted on the end of the output shaft of the cutting motor (107), a first driving motor (109) is mounted on the outer surface of the rotating frame (106), the output shaft of the first driving motor (109) is connected to a first planetary reducer (111), and the output shaft of the first planetary reducer (111) is connected to the mounting frame (110).
2. A five-axis bridge cutting machine according to claim 1, characterized in that: The vertical movement mechanism (200) comprises a second drive motor (201) mounted on the outer surface of the slider (104); the end of the output shaft of the second drive motor (201) is connected to a threaded rod (202); a nut seat (203) is mounted on the outer surface of the threaded rod (202); and the nut seat (203) is connected to the mounting plate (105).
3. A five-axis bridge cutting machine according to claim 2, characterized in that: The rotating mechanism (300) comprises a mounting seat (301) mounted on the outer surface of the mounting plate (105); a third drive motor (302) is mounted on the outer surface of the mounting seat (301); an output shaft of the third drive motor (302) is connected to a second planetary reducer (303); an output shaft of the second planetary reducer (303) is connected to a connecting shaft (304); and an end of the connecting shaft (304) is connected to the rotating frame (106).
4. A five-axis bridge cutting machine according to claim 1, characterized in that: An electric control box (400) and a control console (401) are provided on the side surface of the base (100).
5. A five-axis bridge cutting machine according to claim 1, characterized in that: One side of the workpiece platform (101) is rotatably connected to the base (100) via a hinge block (500); two hydraulic telescopic rods (501) are rotatably mounted on the outer surface of the base (100); the ends of the telescopic ends of the hydraulic telescopic rods (501) are rotatably connected to the lower surface of the workpiece platform (101).
6. A five-axis bridge cutting machine according to claim 1, characterized in that: A protective cover (600) is installed on the outer surface of the mounting plate (105).