Vertical fretsaw cutting equipment
By introducing a quick-change mechanism consisting of a lifting block, a fixing rod, a pressure block, a spring, and a limit block into the vertical wire saw, the problem of cumbersome saw blade replacement in existing vertical wire saws has been solved, enabling quick and convenient saw blade replacement and improving the equipment's working efficiency and ease of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2026-03-31
AI Technical Summary
The existing vertical wire saw has a cumbersome and complicated operation during the saw blade replacement process, which is time-consuming and labor-intensive and affects production efficiency.
A quick-change mechanism including a lifting block, a fixing rod, a pressure block, a spring, and a limit block was designed. The saw blade can be quickly installed and removed by pulling the pressure block, which simplifies the saw blade replacement process.
It enables quick and convenient saw blade replacement, saving time, improving equipment efficiency and operator convenience, and reducing labor intensity.
Smart Images

Figure CN224060017U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to woodworking machinery technical field especially relates to a vertical line saw cutting equipment. BACKGROUND
[0002] The vertical line saw is a common wood processing equipment, and is widely applied to cutting wood into various specifications of board or strip. Its working principle is that the saw blade is driven to reciprocate through the motor, and the high-speed movement of the saw blade realizes the cutting of the wood. The vertical line saw occupies an important position in the wood processing industry due to its high cutting precision, smooth cutting edge and other advantages. However, the existing vertical line saw has the problem of inconvenient operation in replacing the saw blade. At present, most of the vertical line saws adopt the bolt fixing mode to install the saw blade, and when replacing the saw blade, the operator needs to use a wrench or other professional tools to loosen or tighten the fixing bolts one by one, and the operation steps are complicated and complex, which not only consumes a lot of time and energy, but also affects the efficiency of wood processing. Especially in the production scene where the saw blade needs to be replaced frequently, the inconvenience of replacing the saw blade is more prominent, which seriously restricts the overall working efficiency of the vertical line saw and is not conducive to improving the production efficiency of wood processing. In view of the above problems, the prior art needs to be improved. SUMMARY
[0003] The utility model aims at solving the technical problem that the existing vertical line saw has complicated operation in replacing the saw blade, and provides a vertical line saw cutting equipment.
[0004] To achieve the above purpose, the utility model adopts the technical scheme that a vertical line saw cutting equipment, including support collection part, cutting part and drive part, the cutting part is installed above the support collection part, the drive part is used for driving the cutting part to carry out cutting action;
[0005] The cutting part comprises:
[0006] The lifting block is arranged on the drive part, and the drive part is used for driving the lifting block to move vertically;
[0007] The fixed rod is fixedly installed on the side wall of the lifting block.
[0008] The vertical saw blade is installed in the saw blade insertion hole opened at the bottom end of the lifting block, and the vertical saw blade is provided with a mounting hole one.
[0009] The pressing block is slidably arranged on the fixed rod.
[0010] The spring is sleeved on the fixed rod, and the two ends of the spring are fixedly connected with the side wall of the pressing block and the surface of the fixed rod respectively, and the spring is always in an elastic compression state to extrude the pressing block.
[0011] A limiting block is provided on the pressure block;
[0012] The lifting block is provided with a second mounting hole. Both the first mounting hole and the second mounting hole are used for the insertion of the limiting block to fix the vertical saw blade.
[0013] Preferably, the fixing rod has a strip groove, and the pressure block is slidably disposed in the strip groove.
[0014] Preferably, the driving component includes a mounting frame, a cutting motor, an eccentric wheel, an eccentric column, and a hinge rod. The mounting frame is fixedly mounted on the support and collection component. A vertical sliding column is fixedly connected inside the mounting frame. The lifting block is vertically slidably connected to the surface of the vertical sliding column. The cutting motor is mounted on the mounting frame. The eccentric wheel is mounted on the output shaft of the cutting motor. The eccentric column is disposed on the eccentric wheel. One end of the hinge rod is hinged to the eccentric column, and the other end is hinged to the lifting block. The cutting motor drives the eccentric wheel to rotate, which in turn drives the eccentric column to perform a circular motion. The eccentric column drives the lifting block to slide up and down along the vertical sliding column via the hinge rod, thereby driving the vertical saw blade to perform a cutting action.
[0015] Preferably, it further includes a positioning component, which includes an electric cylinder. The electric cylinder is fixedly installed on the side wall of the mounting frame. A positioning plate is fixedly connected to the piston rod end of the electric cylinder. The positioning plate is located on one side of the vertical saw blade. The electric cylinder is used to drive the positioning plate to move so as to adjust the distance between the positioning plate and the vertical saw blade.
[0016] Preferably, the support and collection component includes a platform, a support assembly is provided at the bottom of the platform, a mesh plate is provided on the top surface of the platform, and an avoidance opening is provided on the mesh plate to avoid the vertical saw blade.
[0017] Preferably, the support assembly includes four support legs, which are respectively fixedly disposed at the four corners of the bottom of the platform.
[0018] Preferably, the supporting collection component further includes a collection hopper, which is disposed below the mesh plate and is used to collect debris falling through the mesh of the mesh plate.
[0019] Preferably, the supporting collection component further includes a drive motor, which is fixedly connected to the side wall of the collection hopper. A worm gear is fixedly connected to the end of the output shaft of the drive motor. One end of the mesh plate is rotatably connected to the platform via a horizontal rotating shaft. A worm wheel is fixedly connected to the end of the horizontal rotating shaft, and the worm wheel meshes with the worm gear.
[0020] Compared with existing technologies, this utility model has the following advantages: By innovatively incorporating a fixed rod, lifting block, vertical saw blade, pressure block, spring, and limiting block into the cutting component, a convenient quick saw blade replacement mechanism is constructed. When the vertical saw blade needs to be replaced, the operator only needs to pull the pressure block to slide it along the fixed rod and compress the spring. The pressure block will then drive the limiting block to move out of the mounting hole one on the vertical saw blade and the mounting hole two on the lifting block. At this time, the vertical saw blade is no longer constrained by the limiting block, and the old saw blade can be easily removed and the new saw blade installed. After the replacement is completed, the pressure block is released, and the spring releases its elastic force to push the pressure block back to its original position, allowing the limiting block to be accurately reinserted into the mounting holes one and two, thereby firmly fixing the vertical saw blade. The entire saw blade replacement process requires no tools, and the operation is simple and quick, greatly saving replacement time. It effectively overcomes the shortcomings of existing vertical wire saws, such as cumbersome, complicated, time-consuming, and labor-intensive saw blade replacement operations, significantly improving the working efficiency of vertical wire saws, reducing the labor intensity of operators, and bringing higher production benefits to the wood processing industry. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the cutting equipment of this utility model;
[0022] Figure 2 This is a schematic diagram of the cutting component in this utility model;
[0023] Figure 3 This is a cross-sectional view of the present invention;
[0024] Figure 4 This is a structural schematic diagram from another perspective of the present invention;
[0025] Figure 5 This is a schematic diagram of the structure of the pressure block in this utility model;
[0026] Figure 6 This is a cross-sectional view of the lifting block in this utility model;
[0027] Figure 7 This is a schematic diagram of the structure of the limiting insert in this utility model;
[0028] Figure 8 This is a schematic diagram of the structure of the vertical saw blade of this utility model.
[0029] In the diagram: 1. Support and collection component; 101. Platform; 102. Support leg; 103. Collection hopper; 104. Mesh plate; 105. Clearance opening; 106. Horizontal rotating shaft; 107. Drive motor; 108. Worm gear; 109. Worm wheel; 2. Cutting component; 201. Vertical saw blade; 202. Mounting hole one; 203. Mounting hole two; 204. Saw blade insertion hole; 205. Pressure block; 206. Limiting block; 207. Fixing rod; 208. Spring; 3. Drive component; 301. Mounting frame; 302. Cutting motor; 303. Eccentric wheel; 304. Lifting block; 305. Eccentric column; 306. Hinge rod; 307. Vertical sliding column; 4. Positioning component; 401. Positioning plate; 402. Electric cylinder. Detailed Implementation
[0030] The following description is intended to disclose the present invention so that those skilled in the art can implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art.
[0031] In the field of wood processing technology, vertical wire saws are widely used as an important processing tool. However, traditional vertical wire saws typically require complex tools and cumbersome operating procedures for blade replacement, which not only consumes a lot of time and energy for operators but also seriously affects production efficiency. To solve this technical problem, this utility model proposes a vertical wire saw cutting device that achieves quick and convenient replacement of the vertical saw blade 201 through an innovatively designed cutting component 2, greatly improving the operability and work efficiency of the equipment. The core of this utility model lies in the optimized design of the structure of the cutting component 2. By cleverly introducing key components such as the lifting block 304, the fixing rod 207, the vertical saw blade 201, the pressure block 205, the spring 208, and the limiting insert 206, a highly efficient saw blade quick replacement mechanism is constructed.
[0032] like Figures 1 to 8 The vertical wire saw cutting device shown includes a support and collection component 1, a cutting component 2, and a driving component 3. The cutting component 2 is installed above the support and collection component 1, and the driving component 3 is used to drive the cutting component 2 to perform cutting actions.
[0033] Cutting component 2 includes:
[0034] The lifting block 304 is mounted on the driving component 3, and the driving component 3 is used to drive the lifting block 304 to move vertically.
[0035] The fixing rod 207 is fixedly installed on the side wall of the lifting block 304;
[0036] The vertical saw blade 201 is installed in the saw blade insertion hole 204 opened at the bottom end of the lifting block 304, and the vertical saw blade 201 is provided with a mounting hole 202.
[0037] The pressure block 205 is slidably mounted on the fixed rod 207;
[0038] Spring 208 is sleeved on fixed rod 207. The two ends of spring 208 are fixedly connected to the side wall of pressure block 205 and the surface of fixed rod 207 respectively, and are always in an elastic compression state to squeeze pressure block 205.
[0039] The limiting block 206 is set on the pressure block 205;
[0040] The lifting block 304 is provided with a second mounting hole 203. Both the first mounting hole 202 and the second mounting hole 203 are used for the insertion of the limiting block 206 to fix the vertical saw blade 201.
[0041] In practice, when the vertical saw blade 201 needs to be replaced, the operator simply pulls the pressure block 205 by hand, causing it to slide along the fixed rod 207. During this sliding process, the spring 208 is compressed, and the pressure block 205 drives the limiting insert 206 to move synchronously. The limiting insert 206 moves out of the mounting hole 202 on the vertical saw blade 201 and the mounting hole 203 on the lifting block 304. At this time, the vertical saw blade 201 is released from the locking of the limiting insert 206, and the operator can easily remove the old vertical saw blade 201 from the saw blade insertion hole 204 and replace it with a new vertical saw blade 201. After the replacement is completed, the pressure block 205 is released, and under the elastic force of the spring 208, the pressure block 205 automatically resets, causing the limiting insert 206 to re-insert into the mounting hole 202 and the mounting hole 203, thereby achieving quick and reliable fixing of the vertical saw blade 201. The entire saw blade replacement process requires no tools, is simple and quick to operate, greatly improves the maintenance and working efficiency of vertical wire saw cutting equipment, and reduces the labor intensity of operators.
[0042] Compared with existing technologies that use bolts to fix the saw blade, the vertical wire saw cutting device proposed in this invention has significant advantages. Traditional bolt fixing requires operators to use wrenches and other tools to loosen each bolt individually when replacing the saw blade, which is cumbersome, time-consuming, and labor-intensive, and easily leads to bolt loss or damage. In contrast, the cutting component 2 of this invention uses a quick-change mechanism composed of a pressure block 205, a spring 208, and a limiting block 206. No tools are required; simply pulling the pressure block 205 quickly releases and fixes the saw blade, making operation simple and fast, greatly saving saw blade replacement time and improving work efficiency. Furthermore, this invention has a compact and reliable structural design, fewer parts, and low maintenance costs, making it a promising candidate for market application.
[0043] As one embodiment of this utility model, a strip-shaped groove is provided on the fixing rod 207, and the pressure block 205 is slidably disposed in the strip-shaped groove.
[0044] In one embodiment of this utility model, the driving component 3 includes a mounting frame 301, a cutting motor 302, an eccentric wheel 303, an eccentric column 305, and a hinge rod 306. The mounting frame 301 is fixedly mounted on the supporting and collecting component 1. A vertical sliding column 307 is fixedly connected inside the mounting frame 301. The lifting block 304 is vertically slidably connected to the surface of the vertical sliding column 307. The cutting motor 302 is mounted on the mounting frame 301. The eccentric wheel 303 is mounted on the output shaft of the cutting motor 302. The eccentric column 305 is set on the eccentric wheel 303. One end of the hinge rod 306 is hinged to the eccentric column 305, and the other end is hinged to the lifting block 304. The cutting motor 302 drives the eccentric wheel 303 to rotate, which in turn drives the eccentric column 305 to perform circular motion. The eccentric column 305 drives the lifting block 304 to slide up and down along the vertical sliding column 307 through the hinge rod 306, thereby driving the vertical saw blade 201 to perform cutting action.
[0045] In practical implementation, through the structural design of the aforementioned drive component 3, when the cutting motor 302 drives the eccentric wheel 303 to rotate, the eccentric wheel 303 drives the eccentric column 305 to perform circular motion. The eccentric column 305 drives the lifting block 304 to slide up and down along the vertical sliding column 307 via the hinge rod 306, thereby driving the vertical saw blade 201 installed at the bottom of the lifting block 304 to perform cutting action. This technical solution specifically defines the structural composition and movement mode of the drive component 3. By using components such as the cutting motor 302, eccentric wheel 303, eccentric column 305, and hinge rod 306, a compact and highly efficient drive mechanism is constructed, which can provide a stable and reliable cutting driving force for the vertical saw blade 201, ensuring the normal operation of the cutting equipment and the cutting quality.
[0046] As one embodiment of this utility model, it also includes a positioning component 4, which includes an electric cylinder 402. The electric cylinder 402 is fixedly installed on the side wall of the mounting bracket 301. The piston rod end of the electric cylinder 402 is fixedly connected to a positioning plate 401. The positioning plate 401 is located on one side of the vertical saw blade 201. The electric cylinder 402 is used to drive the positioning plate 401 to move, so as to adjust the distance between the positioning plate 401 and the vertical saw blade 201.
[0047] In practical implementation, by setting the positioning component 4, when it is necessary to cut wood of different widths, the positioning plate 401 can be moved by controlling the extension and retraction stroke of the electric cylinder 402, thereby adjusting the distance between the positioning plate 401 and the vertical saw blade 201, and achieving precise adjustment of the cutting width. This technical solution, by adding the positioning component 4, enables the vertical wire saw cutting equipment to have an adjustable cutting width function. The cutting width can be flexibly adjusted according to actual processing needs, improving the equipment's processing adaptability and cutting accuracy, meeting the cutting requirements of wood of different sizes, and further enhancing the equipment's practicality and intelligence level.
[0048] As one embodiment of the present invention, the support and collection component 1 includes a platform 101, a support assembly is provided at the bottom of the platform 101, a mesh plate 104 is provided on the top surface of the platform 101, and an avoidance opening 105 is provided on the mesh plate 104 for avoiding the vertical saw blade 201.
[0049] The support assembly includes four support legs 102, which are respectively fixedly disposed at the four corners of the bottom of the platform 101.
[0050] In practical implementation, through the structural design of the support and collection component 1, the platform 101 and the support legs 102 together provide stable and reliable support for the entire vertical wire saw cutting equipment, ensuring the stability of the equipment during operation. The mesh plate 104 allows debris generated during cutting to fall through the mesh in a timely manner, preventing debris accumulation on the operating table, maintaining a clean working environment, and improving operational convenience and safety. The clearance opening 105 ensures that the vertical saw blade 201 can move smoothly during cutting, preventing equipment malfunctions. This technical solution, by specifically defining the structure of the support and collection component 1, enables the vertical wire saw cutting equipment to possess excellent support and debris collection functions, providing a guarantee for stable operation and clean production.
[0051] As one embodiment of this utility model, the supporting collection component 1 also includes a collection hopper 103, which is disposed below the mesh plate 104 and is used to collect debris falling through the mesh holes of the mesh plate 104.
[0052] In practical implementation, by setting a collection hopper 103 in the supporting collection component 1, the debris falling through the mesh of the screen 104 can be effectively collected, preventing debris from scattering and accumulating in the workplace, maintaining a clean and tidy working environment, reducing dust pollution, and benefiting the physical and mental health of operators. At the same time, the centrally collected debris is also convenient for subsequent recycling or centralized processing, conforming to the concept of green and environmentally friendly production. This technical solution, by adding the collection hopper 103, further improves the structural function of the supporting collection component 1, enabling the vertical wire saw cutting equipment to achieve efficient cutting while also meeting the needs of environmental protection and clean production, thus improving the overall performance of the equipment and the user experience.
[0053] As one embodiment of this utility model, the supporting collection component 1 also includes a drive motor 107, which is fixedly connected to the side wall of the collection hopper 103. The output shaft end of the drive motor 107 is fixedly connected to a worm gear 108. One end of the mesh plate 104 is rotatably connected to the platform 101 through a horizontal rotating shaft 106. The end of the horizontal rotating shaft 106 is fixedly connected to a worm wheel 109, which meshes with the worm gear 108.
[0054] In practical implementation, the automatic flipping function of the screen plate 104 is achieved through the coordinated operation of components such as the drive motor 107, worm gear 108, worm wheel 109, and horizontal rotating shaft 106. When it is necessary to clean the debris on the screen plate 104, the drive motor 107 is started. The drive motor 107 drives the worm gear 108 to rotate, the worm gear 108 drives the worm wheel 109 to rotate, the worm wheel 109 drives the horizontal rotating shaft 106 to rotate, and the horizontal rotating shaft 106 in turn drives the screen plate 104 to flip around the horizontal rotating shaft 106. During the flipping process, the angle of the screen plate 104 changes, causing the debris remaining on the screen plate 104 to automatically slide into the collection hopper 103 below under its own gravity, thus achieving automatic cleaning of the screen plate 104 without manual intervention. This technical solution, by adding an automatic flipping mechanism for the screen plate 104, enables the vertical wire saw cutting equipment to have an automatic screen plate 104 cleaning function, further reducing the labor intensity of operators, improving the automation and intelligence level of the equipment, and bringing users a more convenient and efficient user experience.
[0055] Working principle of this utility model:
[0056] In use, the support leg 102 supports the table 101 on the ground. The mounting bracket 301 is fixedly installed on the top surface of the table 101. The clearance opening 105 is opened on the mesh plate 104 to avoid the vertical saw blade 201. According to the required cutting width of the wood, the telescopic end of the electric cylinder 402 in the positioning component 4 drives the positioning plate 401 to move, adjusting the distance between the positioning plate 401 and the vertical saw blade 201 until it is adjusted to the required cutting width of the wood. The cutting motor 302 in the drive component 3 drives the eccentric wheel 303 to rotate, the eccentric wheel 303 drives the eccentric column 305 to rotate in a circular motion, and the eccentric column 305 drives the hinge rod 306 to reciprocate. The hinge rod 306 drives the lifting block 304 to move up and down along the vertical sliding column 307, thereby driving the vertical saw blade 201 to move up and down to perform the cutting action. The cutting debris falls onto the mesh plate 104 in the support and collection component 1. Most of the debris falls into the collection hopper 103 through the mesh holes on the mesh plate 104, reducing the accumulation of debris, and is discharged through the collection hopper 103. A collection box is placed at the outlet of the collection hopper 103 to collect the debris. After the cutting is completed, the drive motor 107 in the support and collection component 1 drives the worm gear 108 to rotate. The worm gear 108 drives the worm wheel 109 to rotate, and the worm wheel 109 drives the horizontal rotating shaft 1. 06 rotates, the horizontal rotating shaft 106 drives the screen plate 104 to rotate, causing the end of the screen plate 104 away from the horizontal rotating shaft 106 to flip downwards. When the screen plate 104 rotates into the collection hopper 103, the screen plate 104 has a large tilt angle, so that the remaining debris on the screen plate 104 falls into the collection hopper 103 under its own gravity. This eliminates the need for the operator to clean the debris on the screen plate 104. When it is necessary to replace the vertical saw blade 201, the pressure block 205 in the cutting component 2 is pulled to slide along the fixed rod 207, the spring 208 is elastically compressed, and the pressure block 205 drives the limiting insert 206 to move from the fixed rod 207. The old vertical saw blade 201 is removed by pulling it out of the saw blade insertion hole 204. The top of the new vertical saw blade 201 is then inserted into the saw blade insertion hole 204, so that the mounting holes 202 and 203 are aligned. The pressure block 205 is then released, and the elastic potential energy of the spring 208 is released. The spring 208 then presses the pressure block 205, causing the limiting block 206 to be inserted into the mounting holes 202 and 203, thereby fixing the vertical saw blade 201 in place. This allows for convenient installation and fixation of the vertical saw blade 201.
[0057] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope. All such changes and modifications fall within the scope of protection claimed by this utility model, which is defined by the appended claims and their equivalents.
Claims
1. A vertical line saw cutting device, comprising a supporting and collecting component (1), a cutting component (2) and a driving component (3), the cutting component (2) is installed above the supporting and collecting component (1), the driving component (3) is used for driving the cutting component (2) to perform a cutting action, characterized in that: the cutting component (2) comprises: a lifting block (304) arranged on the driving component (3), the driving component (3) is used for driving the lifting block (304) to move vertically; a fixed rod (207) fixedly installed on a side wall of the lifting block (304); a vertical saw blade (201) installed in a saw blade insertion hole (204) opened at a bottom end of the lifting block (304), the vertical saw blade (201) is provided with a mounting hole one (202); a pressing block (205) slidingly arranged on the fixed rod (207); a spring (208) sleeved on the fixed rod (207), both ends of the spring (208) are fixedly connected with a side wall of the pressing block (205) and a surface of the fixed rod (207), and the spring (208) is always in an elastic compression state to extrude the pressing block (205); a limiting insertion block (206) arranged on the pressing block (205); the lifting block (304) is provided with a mounting hole two (203), the mounting hole one (202) and the mounting hole two (203) are both used for inserting the limiting insertion block (206) to fix the vertical saw blade (201). A strip-shaped sliding groove is opened in the fixed rod (207), and the pressing block (205) is slidingly arranged in the strip-shaped sliding groove. The driving component (3) comprises a mounting frame (301), a cutting motor (302), an eccentric wheel (303), an eccentric column (305) and a hinged rod (306), the mounting frame (301) is fixedly installed on the supporting and collecting component (1), a vertical sliding column (307) is fixedly connected in the mounting frame (301), the lifting block (304) is vertically and slidingly connected with a surface of the vertical sliding column (307); the cutting motor (302) is installed on the mounting frame (301); the eccentric wheel (303) is installed on an output shaft of the cutting motor (302); the eccentric column (305) is arranged on the eccentric wheel (303); one end of the hinged rod (306) is hinged with the eccentric column (305), and the other end is hinged with the lifting block (304); the cutting motor (302) drives the eccentric wheel (303) to rotate, drives the eccentric column (305) to perform a circular motion through the eccentric wheel (303), drives the lifting block (304) to slide up and down along the vertical sliding column (307) through the hinged rod (306), and drives the vertical saw blade (201) to perform a cutting action. 2. The vertical line-saw cutting apparatus of claim 1, wherein, 3. The vertical line-saw cutting apparatus of claim 1, wherein, 4. The vertical line-saw cutting apparatus of claim 3, wherein, Also include positioning components (4), the positioning components (4) include electric cylinder (402), the electric cylinder (402) is fixedly installed on the side wall of the mounting bracket (301), the piston rod end of the electric cylinder (402) is fixedly connected with the positioning plate (401), the positioning plate (401) is located in one side of the vertical saw strip (201), the electric cylinder (402) is used for driving the positioning plate (401) moves, with the vertical saw strip (201) between the distance of adjusting positioning plate (401).
5. The vertical line-saw cutting apparatus of claim 1, wherein, The support collecting component (1) includes a table plate (101), the bottom of the table plate (101) is provided with a support assembly, the top surface of the table plate (101) is provided with a mesh plate (104), the mesh plate (104) is provided with an avoiding port (105), the avoiding port (105) is used for avoiding the vertical saw strip (201).
6. The vertical line-saw cutting apparatus of claim 5, wherein, The support assembly includes four support legs (102), and the four support legs (102) are respectively fixedly arranged at the four corners of the bottom of the table plate (101).
7. The vertical line-saw cutting apparatus of claim 5, wherein, The support collecting component (1) further includes a collecting hopper (103), and the collecting hopper (103) is arranged below the mesh plate (104) and is used for collecting the debris falling through the mesh holes of the mesh plate (104).
8. The vertical line-saw cutting apparatus of claim 7, wherein, The support collecting component (1) further includes a driving motor (107), the driving motor (107) is fixedly connected on the side wall of the collecting hopper (103), the output shaft end of the driving motor (107) is fixedly connected with a worm (108), one end of the mesh plate (104) is rotatably connected on the table plate (101) through a horizontal rotating shaft (106), the end of the horizontal rotating shaft (106) is fixedly connected with a worm wheel (109), and the worm wheel (109) is meshed with the worm (108).