Plate cutting device
By designing diverse sheet metal cutting devices and combining adjustment components, cutting components, and feeding/discharging components, the problems of single cutting methods and low efficiency of existing equipment have been solved, achieving diversified cutting and efficient batch cutting effects.
Patent Information
- Application Number
- CN202511686303.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-18
- Publication Date
- 2026-02-27
AI Technical Summary
Existing sheet metal cutting equipment has a single cutting method, which makes it difficult to meet diverse needs. The equipment has poor versatility, low cutting efficiency, and relies on manual labor for feeding and unloading, which is time-consuming.
A sheet metal cutting device was designed, comprising a chassis assembly, an adjustment assembly, a cutting assembly, a feeding and discharging assembly, and a PLC controller. The adjustment assembly enables diverse cutting methods through a rotary motor and an adjustment push rod, while electric guide rails and synchronous slide plates improve cutting efficiency. The feeding and discharging assembly achieves synchronous conveying through a roller mechanism, and the clamping assembly is equipped with a pressure sensor to ensure stability.
The cutting device enables diverse cutting methods, improves the equipment's versatility and cutting efficiency, reduces manual intervention time, and ensures the stability and cutting accuracy of the sheet material.
Smart Images

Figure CN121572386A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of airtightness testing technology, specifically to a plate cutting device. Background Technology
[0002] In many fields, such as industrial equipment manufacturing, sheet metal cutting is a crucial process. Different industrial designs require precise cutting of sheets into various shapes, including straight lines and curves, and the cut sheets must possess high dimensional accuracy to ensure a good fit during subsequent assembly. However, most existing sheet metal cutting equipment uses only one cutting method, either straight or curved, which fails to meet diverse sheet metal cutting needs. This results in poor equipment versatility and low efficiency, typically processing only one set of sheets at a time. Furthermore, the loading and unloading processes rely on manual assistance, leading to lengthy loading and unloading times and hindering efficient batch sheet metal cutting operations. Therefore, we propose a sheet metal cutting device. Summary of the Invention
[0003] The purpose of this invention is to provide a sheet metal cutting device to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: A chassis assembly is included, within which a partition is provided. Adjustment components are provided on both the upper and lower sides of the partition within the chassis assembly. Each set of adjustment components includes two sets of adjustment plates symmetrically arranged vertically. Each set of adjustment plates contains an adjustment push rod, the output end of which is provided with an adjustment block. A rotary motor is provided on one side of one set of adjustment plates, located outside the chassis assembly. Cutting components are provided on both sets of adjustment plates in each set of adjustment components. Each cutting component includes two sets of electric guide rails located on one side of the chassis assembly. Synchronous sliding plates are provided on the two sets of electric guide rails, and both ends of the synchronous sliding plates are provided with… The cutting drive frame has a cutting motor on one side of each set of cutting drive frames. A tensioner is located in the middle of the synchronous slide plate. A tensioning wheel is located at the output end of the tensioner. Rotating sheaves are located on the opposite sides of the two sets of adjusting blocks. Cutting ropes are fitted around the outer rings of the cutting drive frame, tensioning wheel, and rotating sheaves. Feeding and discharging components are located on both sides of the chassis assembly. Each set of feeding and discharging components includes a mounting frame. Two sets of rotating roller mechanisms are arranged vertically on the inner side of the mounting frame. A feeding motor is located on one side of the mounting frame. Clamping mechanisms are located on both sides of the rotating roller mechanism above the end near the chassis assembly. A PLC controller is located on one side of the chassis assembly.
[0005] Preferably, the chassis assembly includes two sets of chassis panels, with a top plate on the top of each set of chassis panels, and a bottom plate located below the top plate on one side of each set of chassis panels that are close to each other. The mounting end of the partition is installed corresponding to the side of each set of chassis panels that are close to each other. The partition evenly divides the space between the top plate and the bottom plate. Two sets of infrared sensors are provided on the inner side of one set of chassis panels. By adopting the above technical solutions, a good working platform can be provided for plate cutting operations.
[0006] Preferably, the top plate, bottom plate, and partition are all provided with positioning shaft holes on one side close to each other. The mounting ends of the two sets of adjustment plates are respectively installed with corresponding positioning shaft holes. A motor frame is provided on one side above the top plate. The mounting end of the corner motor is installed with the motor frame, and the output end of the corner motor is installed with the mounting end of the adjustment plate. Each set of adjustment plates is provided with a mounting groove and a sliding groove. The mounting end of the adjustment push rod is installed with the mounting groove, the mounting end of the adjustment block is installed with the output end of the adjustment push rod, and the two sides of the adjustment block are installed with the inner wall of the sliding groove. By adopting the above technical solutions, the different cutting needs of multiple sets of plates can be met, greatly improving the versatility of the equipment.
[0007] Preferably, the mounting end of the electric guide rail is installed corresponding to the inner wall of the chassis panel, the height of the two sets of electric guide rails corresponds to the position height of the two sets of adjustment plates, the mounting end of the synchronous slide plate is installed corresponding to the inner cavity of the two sets of electric guide rails, the mounting end of the cutting drive frame is installed corresponding to one side of the synchronous slide plate, the output end of the cutting motor is installed corresponding to the inner ring of the drive wheel on the cutting drive frame, and the mounting end of the cutting motor is installed corresponding to one side of the cutting drive frame. By adopting the above technical solution, it can work in conjunction with two sets of adjustment components to meet the cutting needs of multiple sets of plates and improve the plate cutting efficiency.
[0008] Preferably, the mounting end of the tensioner is installed corresponding to one side of the synchronous slide plate, the mounting end of the tensioning wheel is installed corresponding to the output end of the tensioner, the two sets of adjusting blocks are provided with rotating holes on the opposite side, the mounting end of the rotating cable sheave is installed corresponding to the rotating hole, and the cutting cable is installed corresponding to the inner wall of the groove on the cutting drive frame, the tensioning wheel, and the rotating cable sheave, respectively. By adopting the above technical solution, the sheet material can be cut quickly.
[0009] Preferably, one end of each of the two sets of adjustment plates is provided with a stabilizing column on the side away from each other, and the top plate, bottom plate and partition plate are provided with guide ring grooves on the side close to each other. The top of the stabilizing column is installed corresponding to the inner wall of the guide ring groove, and a synchronizing rod is provided at one end of the side close to each other of the two sets of adjustment plates. By adopting the above technical solution, the stability and synchronization of the regulating plate can be guaranteed.
[0010] Preferably, each set of the rotating roller mechanism includes side plates disposed on both sides of the inner wall of the mounting frame, and multiple sets of rotating rollers are disposed between the two sets of side plates. A sprocket is fitted on the outer ring of one end of each set of rotating rollers, and a chain is fitted on the outer ring of the multiple sets of sprockets. A pulley is fitted on the outer ring of one end of each set of rotating rollers and the output end of the feeding motor. A drive belt is fitted in the groove of the pulleys of the two sets of pulleys. A mounting plate is disposed on one side of the mounting frame, and the mounting end of the feeding motor is mounted on the upper side of the mounting plate. By adopting the above technical solution, the loading and unloading of sheet materials can be carried out quickly.
[0011] Preferably, the clamping mechanism includes an "L"-shaped mounting frame, a clamping push rod is provided on the upper side of the mounting frame, a clamping plate is provided on the side of the mounting frame through the output end of the clamping push rod, and a pressure sensor is provided on the bottom side of the clamping plate; By adopting the above technical solution, the board material can be clamped, greatly improving its stability.
[0012] Preferably, a set of the chassis panels are provided with observation windows, the mounting end of the PLC controller is installed corresponding to one side of the chassis panel, the PLC controller is provided with an emergency stop button, and the adjusting push rod, the corner motor, the electric guide rail, the cutting motor, the tensioner, the feeding motor and the clamping mechanism are all electrically connected to the PLC controller. By adopting the above technical solution, the settings can be customized according to the needs of plate cutting operations, which greatly reduces the difficulty of operating the device.
[0013] Compared with the prior art, the beneficial effects of this application are: 1. The present invention offers diverse cutting methods and strong versatility. By adjusting the angle motor and adjusting push rod of the component, the angle and position of the cutting rope can be flexibly adjusted, enabling both straight cutting of the plate and curved cutting, adapting to different cutting scenarios and greatly improving the equipment's adaptability to diverse cutting needs. 2. In this invention, the chassis assembly is divided into two independent working areas by a partition, and the feeding and discharging assembly can simultaneously transport multiple sets of plates, realizing synchronous cutting of multiple sets of plates, which greatly improves the cutting efficiency of batch plates; the rotating roller mechanism realizes synchronous rotation of the rotating roller through sprockets and chains, making the feeding and discharging process smooth and efficient, reducing the time cost of manual intervention, and significantly improving the work efficiency; 3. The present invention equips the clamping component of the feeding and discharging assembly with a pressure sensor, which can monitor the clamping pressure in real time and avoid damage to the plate due to excessive pressure; the roller mechanism works in conjunction with the clamping component to keep the plate stable during the cutting process, effectively avoid deviation and ensure cutting accuracy. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of a sheet metal cutting device according to the present invention; Figure 2 This is a partial cross-sectional view of the chassis assembly in a sheet metal cutting device according to the present invention; Figure 3 This is a partial cross-sectional view of the chassis assembly and partition in a sheet metal cutting device according to the present invention; Figure 4 This is a schematic diagram of the structure of the adjusting component and the cutting component in a sheet metal cutting device according to the present invention; Figure 5 This is a schematic diagram of the feeding and discharging assembly in a sheet metal cutting device according to the present invention; Figure 6 This is a schematic diagram of the rotating roller mechanism in a sheet metal cutting device according to the present invention.
[0015] In the diagram: 1. Chassis assembly; 11. Chassis panel; 12. Top plate; 13. Bottom plate; 2. Partition; 3. Adjustment assembly; 31. Adjustment plate; 32. Adjustment push rod; 33. Adjustment block; 34. Angle motor; 4. Cutting assembly; 41. Electric guide rail; 42. Synchronous slide plate; 43. Cutting drive frame; 44. Cutting motor; 45. Tensioner; 46. Tensioning wheel; 47. Rotating sheave; 48. Cutting rope; 5. Feeding / discharging assembly; 51. Mounting frame; 52. Roller mechanism; 521. Side plate; 522. Roller; 523. Sprocket; 524. Chain; 53. Feeding motor; 54. Clamping mechanism; 541. Mounting frame; 542. Clamping push rod; 543. Clamping plate; 6. PLC controller; 7. Stabilizing column; 8. Guide ring groove; 9. Synchronous rod; 10. Observation window. Detailed Implementation
[0016] 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.
[0017] Please see Figure 1-6This invention provides a technical solution: It includes a chassis assembly 1, which includes two sets of chassis panels 11. One set of chassis panels 11 has an observation window 10, which facilitates the operator's observation of the operation within the chassis assembly 1. A top plate 12 is provided on the top of the two sets of chassis panels 11, and the two sides of the top plate 12 are fixedly connected to the top of the two sets of chassis panels 11. A bottom plate 13 is provided below the top plate 12 on one side of the two sets of chassis panels 11, and the two sides of the bottom plate 13 are fixedly connected to the one side of the two sets of chassis panels 11, which are close to each other. The chassis panels 11, top plate 12, and bottom plate 13 are combined into a single unit. A partition 2 is provided inside the chassis assembly 1. The mounting end of plate 2 is installed on one side of the two sets of chassis panels 11, and the mounting end of partition plate 2 is fixedly connected to one side of the two sets of chassis panels 11. Partition plate 2 evenly divides the space between top plate 12 and bottom plate 13. The partition plate 2 can divide the internal space of chassis assembly 1 into two working areas, so that multiple sets of plates can be operated at the same time, improving work efficiency. Two sets of infrared sensors are set on the inside of one set of chassis panels 11. The two sets of infrared sensors correspond to the two working areas inside chassis assembly 1, and the mounting end of the infrared sensors is fixedly connected to the inside of chassis panels 11. The setting of the two sets of infrared sensors can monitor the cutting of the plates. Adjustment components 3 are provided on both the upper and lower sides of the partition 2 inside the chassis assembly 1. Each adjustment component 3 includes two sets of adjustment plates 31 arranged symmetrically. The top plate 12, bottom plate 13, and partition 2 are all provided with positioning shaft holes on their respective sides. The mounting ends of the two sets of adjustment plates 31 are respectively installed in the positioning shaft holes, and the mounting ends of the adjustment plates 31 are rotatably connected to the positioning shaft holes. A corner motor 34 is provided on one side of one set of adjustment plates 31 on the outer side of the chassis assembly 1. A motor frame is provided on the upper side of the top plate 12. The mounting end of the motor frame is fixedly connected to the outer side of the chassis assembly 1. The mounting end of the corner motor 34 is installed in correspondence with the motor frame. The output end of the angle motor 34 is fixedly connected to the inner cavity of the motor frame and is installed correspondingly to the mounting end of the adjusting plate 31. The output end of the angle motor 34 passes through the housing assembly 1 and is fixedly connected to the mounting end of the adjusting plate 31. One end of each of the two sets of adjusting plates 31 is provided with a stabilizing column 7 on the side away from each other. The mounting end of the stabilizing column 7 is fixedly connected to the adjusting plate 31. Guide ring grooves 8 are provided on the side close to each other on the top plate 12, bottom plate 13 and partition plate 2. The cross-section of the guide ring groove 8 is set in a "T" shape. The top of the stabilizing column 7 is installed correspondingly to the inner wall of the guide ring groove 8. The stabilizing column 7 is slidably connected to the guide ring groove 8. The setting of the stabilizing column 7 can increase the stability of the adjusting plate 31 when it is rotating. To ensure stability, the guide ring groove 8 guides the rotation of the stabilizing column 7. A synchronizing rod 9 is located at one end of each of the two sets of adjusting plates 31, close to each other. The two ends of the synchronizing rod 9 are fixedly connected to the close sides of the two sets of adjusting plates 31. The synchronizing rod 9 allows the rotary motor 34 to drive the other set of adjusting plates 31 to move synchronously when driving one set of adjusting plates 31, thus enabling the two sets of adjusting plates 31 to cooperate and meet the cutting needs at different positions on the sheet metal. Each set of adjusting plates 31 is equipped with an adjusting push rod 32, and each set of adjusting plates 31 has an installation groove and a sliding groove. The installation end of the adjusting push rod 32 is installed corresponding to the installation groove. The mounting end of the adjusting push rod 32 is fixedly connected to the inner wall of the mounting groove. The output end of the adjusting push rod 32 is provided with an adjusting block 33. The mounting end of the adjusting block 33 is installed correspondingly to the output end of the adjusting push rod 32. The mounting end of the adjusting block 33 is fixedly connected to the output end of the adjusting push rod 32. The two sides of the adjusting block 33 are installed correspondingly to the inner wall of the slide groove. The two sides of the adjusting block 33 are slidably connected to the inner wall of the slide groove. The setting of the adjusting push rod 32 can drive the adjusting block 33 to slide along the slide groove, thereby adapting to the cutting requirements at different positions of the plate. The setting of the two sets of adjusting components 3 can adapt to different operation requirements of straight cutting or arc cutting of the plate, greatly improving the versatility of this device. Each set of adjustment components 3 has two sets of adjustment plates 31 equipped with cutting components 4. Each cutting component 4 includes two sets of electric guide rails 41 located on one side of the chassis component 1. The mounting ends of the electric guide rails 41 are installed corresponding to the inner wall of the chassis panel 11 and are fixedly connected to the inner wall of the chassis panel 11. The height of the two sets of electric guide rails 41 corresponds to the position height of the two sets of adjustment plates 31. Synchronous sliding plates 42 are provided on the two sets of electric guide rails 41. The mounting ends of the synchronous sliding plates 42 are installed corresponding to the inner cavities of the two sets of electric guide rails 41 and are slidably connected to the inner cavities of the electric guide rails 41. The two sets of electric guide rails 41 operate synchronously when powered on. Both ends of the synchronous slide plate 42 are equipped with cutting drive frames 43. The mounting ends of the cutting drive frames 43 are installed corresponding to one side of the synchronous slide plate 42 and are fixedly connected to one side of the synchronous slide plate 42. Each set of cutting drive frames 43 is equipped with a cutting motor 44 on one side. The mounting ends of the cutting motors 44 are installed corresponding to one side of the cutting drive frames 43 and are fixedly connected to one side of the cutting drive frames 43. The output ends of the cutting motors 44 are installed corresponding to the inner ring of the drive wheel on the cutting drive frame 43 and are fixedly connected to the drive wheel on the cutting drive frame 43. When in operation, the cutting motors 44 can drive the cutting drive frames 43. The drive wheel rotates rapidly. A tensioner 45 is located in the middle of the synchronous slide plate 42. The mounting end of the tensioner 45 is installed corresponding to one side of the synchronous slide plate 42 and is fixedly connected to one side of the synchronous slide plate 42. A tensioning wheel 46 is provided at the output end of the tensioner 45. The mounting end of the tensioning wheel 46 is installed corresponding to the output end of the tensioner 45 and is fixedly connected to the output end of the tensioner 45. When in operation, the tensioner 45 can drive the tensioning wheel 46 to move and adjust. The coordinated arrangement of the tensioner 45 and the tensioning wheel 46 can adjust the tension of the cutting cable 48. Two sets of adjusting blocks 33 are located on opposite sides. A rotating sheave 47 is provided, and two sets of adjusting blocks 33 are provided with rotating holes on opposite sides. The mounting end of the rotating sheave 47 is installed corresponding to the rotating hole, and the mounting end of the rotating sheave 47 is rotatably connected to the adjusting block 33 through the rotating hole. A cutting rope 48 is fitted around the outer ring of the cutting drive frame 43, the tension wheel 46, and the rotating sheave 47. The cutting rope 48 is installed corresponding to the inner wall of the wheel groove on the cutting drive frame 43, the tension wheel 46, and the rotating sheave 47, respectively. The cutting rope 48 is rotatably connected to the cutting drive frame 43, the tension wheel 46, and the rotating sheave 47, respectively. When the drive wheels on the two sets of cutting drive frames 43 are rotating, they can drive the cutting rope 48 to rotate at high speed to meet the operation requirements of plate cutting. Both sides of the chassis assembly 1 are provided with infeed and discharge assemblies 5. Each infeed and discharge assembly 5 includes a mounting frame 51. Two sets of rotating roller mechanisms 52 are arranged vertically on the inner side of the mounting frame 51. Each set of rotating roller mechanisms 52 includes side plates 521 on both sides of the inner wall of the mounting frame 51. The mounting ends of the side plates 521 are fixedly connected to the inner wall of the mounting frame 51. Multiple sets of rotating rollers 522 are arranged between the two sets of side plates 521. Multiple sets of roller holes are opened on the side plates 521. The outer rings at both ends of the rotating rollers 522 are rotatably connected to the inner wall of the roller holes. A sprocket 523 is fitted on the outer ring of one end of each set of rotating rollers 522. The inner ring of the sprocket 523 is fixedly connected to the outer ring of one end of the rotating roller 522. The outer rings of the multiple sets of sprockets 523 are all fitted with a chain 52. 4. The chain 524 meshes with each set of sprockets 523. The interaction between the sprockets 523 and the chain 524 allows multiple sets of rollers 522 to rotate synchronously. A feeding motor 53 is mounted on one side of the mounting frame 51, and a mounting plate is mounted on the other side. The mounting end of the mounting plate is fixedly connected to one side of the mounting frame 51. The mounting end of the feeding motor 53 is mounted on the upper side of the mounting plate. A pulley is fitted around one end of each set of rollers 522 and the outer ring of the output end of the feeding motor 53. Two sets of pulleys are fixedly connected to one end of each set of rollers 522 and the outer ring of the output end of the feeding motor 53, respectively. A drive belt is fitted inside the wheel groove, and the drive belt is rotatably connected to the pulley groove. The interaction between the drive belt and the pulley allows the feeding motor 53 to drive a set of rotating rollers 522 to rotate during operation. Clamping mechanisms 54 are provided on both sides of the upper part of the roller mechanism 52 near the machine housing assembly 1. Each clamping mechanism 54 includes an "L"-shaped mounting bracket 541. The mounting end of the mounting bracket 541 is fixedly connected to the upper side of the side plate 521. A clamping push rod 542 is provided on the upper side of the mounting bracket 541. The mounting end of the clamping push rod 542 is fixedly connected to the upper side of the mounting bracket 541, and the output end of the clamping push rod 542 passes through one side of the mounting bracket 541. A clamping plate 543 is provided, and the output end of the clamping push rod 542 passes through the mounting bracket 541 and is fixedly connected to one side of the clamping plate 543. A pressure sensor is provided on the bottom side of the clamping plate 543, and the mounting end of the pressure sensor is fixedly connected to the bottom side of the clamping plate 543. The pressure sensor is electrically connected to the PLC controller 6. The setting of the pressure sensor can monitor the clamping pressure of the plate and avoid excessive pressure from damaging the plate. The setting of the clamping mechanism 54 can stably clamp the plate during the cutting operation, which greatly improves the stability of the plate and facilitates the rapid cutting operation. The two sets of feeding and discharging components 5 can meet the different needs of feeding and discharging, and improve the efficiency of plate cutting operation. A PLC controller 6 is installed on one side of the chassis assembly 1. The mounting end of the PLC controller 6 is installed corresponding to one side of the chassis panel 11. The mounting end of the PLC controller 6 is fixedly connected to one side of the chassis panel 11. An emergency stop button is provided on the PLC controller 6. The emergency stop button can stop the machine in case of unexpected situations during the cutting operation, so as to avoid damage to the material and equipment. The adjusting push rod 32, the corner motor 34, the electric guide rail 41, the cutting motor 44, the tensioner 45, the feeding motor 53, and the clamping mechanism 54 are all electrically connected to the PLC controller 6. The PLC controller 6 can be set by the operator according to the needs of the material cutting operation, which greatly reduces the difficulty of operating this device.
[0018] The implementation principle of this application is as follows: The operator sets the cutting requirements of the board material through the PLC controller 6. The operator places the board material to be cut on the rotating roller mechanism 52, and then the PLC controller 6 powers on the feeding motor 53. The feeding motor 53 drives a set of rotating rollers 522 to rotate through the pulley and belt. At this time, the rotation of the set of rotating rollers 522 drives the other sets of rotating rollers 522 to rotate synchronously through the action of the sprocket 523 and chain 524. The rotation of the rotating rollers 522 can drive the board material to be transported into the machine housing assembly 1, so that the top of the board material is transported to the position of the rotating roller mechanism 52 on another set of infeed and discharge assembly 5. Then, the operator powers on the clamping push rod 542 through the PLC controller 6. The clamping push rod 542 pushes the clamping plate 543, so that the bottom side of the clamping plate 543 abuts against the surface of the board material. At this time, the pressure sensor monitors the pressure on the board material. The clamping plate 543, in cooperation with the rotating rollers 522, keeps the board material stably placed. Then the operator... The PLC controller 6 powers on the cutting motor 44, which drives the cutting drive frame 43 to rotate rapidly. The two sets of cutting drive frames 43, while rotating, drive the cutting cable 48 to rotate at high speed. The rotation of the cutting cable 48 is guided by the cutting drive frame 43, tension wheel 46, and rotating cable wheel 47. When the sheet metal needs to be cut in a straight line, the operator adjusts the position of the adjusting block 33 according to the cutting requirements. The PLC controller 6 powers on the adjusting push rod 32, which drives the adjusting block 33 to slide along the adjusting plate 31. Simultaneously, the angle motor 34 drives the adjusting plate 31 to rotate. At this time, the infrared sensor accurately monitors the position of the cutting cable 48, thus initiating the cutting operation. When the sheet metal needs to be cut in an arc shape, the angle motor 34 drives the adjusting plate 31 to rotate, adjusting the angle. Simultaneously, the adjusting push rod 32 drives the adjusting block 33 to adjust the radius, thus satisfying the arc cutting operation of the sheet metal.
[0019] 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.
[0020] Although embodiments of the 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 invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A board cutting apparatus comprising a cabinet assembly (1), characterized in that: The cabinet assembly (1) is provided with a partition (2), the cabinet assembly (1) is located on both sides of the partition (2) and is provided with an adjusting assembly (3), each adjusting assembly (3) comprises two groups of adjusting plates (31) arranged symmetrically, each adjusting plate (31) is provided with an adjusting push rod (32), the output end of the adjusting push rod (32) is provided with an adjusting block (33), one side of the adjusting plate (31) is located outside the cabinet assembly (1) and is provided with a corner motor (34), the two adjusting plates (31) on each adjusting assembly (3) are provided with a cutting assembly (4), each cutting assembly (4) comprises two groups of electric guide rails (41) arranged on one side of the cabinet assembly (1), the two groups of electric guide rails (41) are provided with a synchronous sliding plate (42), both ends of the synchronous sliding plate (42) are provided with a cutting drive frame (43), one side of each cutting drive frame (43) is provided with a cutting motor (44), the synchronous sliding plate (42) is provided with a tensioner (45) at the middle position, the output end of the tensioner (45) is provided with a tension wheel (46), both sides of the two adjusting blocks (33) are provided with a rotating cable reel (47), the cutting drive frame (43), the tension wheel (46) and the rotating cable reel (47) are provided with a cutting cable (48), both sides of the cabinet assembly (1) are provided with an in-out assembly (5), each in-out assembly (5) comprises a mounting frame (51), the inner side of the mounting frame (51) is provided with two groups of rotating roller mechanisms (52), one side of the mounting frame (51) is provided with a feeding motor (53), the rotating roller mechanisms (52) are provided with a clamping mechanism (54) above one end close to the cabinet assembly (1), one side of the cabinet assembly (1) is provided with a PLC controller (6).
2. A board cutting apparatus as claimed in claim 1, wherein: The cabinet assembly (1) comprises two groups of cabinet panels (11), the top of the two groups of cabinet panels (11) is provided with a top plate (12), the bottom of the two groups of cabinet panels (11) is provided with a bottom plate (13) on the side close to the top plate (12), the mounting end of the partition (2) is mounted on the side close to the two groups of cabinet panels (11), the partition (2) uniformly divides the space between the top plate (12) and the bottom plate (13), the inner side of one group of cabinet panels (11) is provided with two groups of infrared sensors.
3. A board cutting apparatus as claimed in claim 2, wherein: The top plate (12), the bottom plate (13) and the partition plate (2) are provided with positioning shaft holes on the side close to each other, the mounting end of the two groups of adjusting plates (31) is positioned and mounted in the corresponding positioning shaft holes, the top plate (12) is provided with a motor frame on the side, the mounting end of the corner motor (34) is mounted in the corresponding motor frame, the output end of the corner motor (34) is mounted in the corresponding mounting end of the adjusting plate (31), the mounting slot and the sliding slot are formed in each group of the adjusting plate (31), the mounting end of the adjusting push rod (32) is mounted in the corresponding mounting slot, the mounting end of the adjusting block (33) is mounted in the output end of the adjusting push rod (32), and the two sides of the adjusting block (33) are mounted in the corresponding sliding grooves.
4. The apparatus of claim 2 wherein: The mounting end of the electric guide rail (41) is mounted in the corresponding inner wall of the case panel (11), the height of the two groups of electric guide rails (41) is corresponding to the position height of the two groups of adjusting plates (31), the mounting end of the synchronous sliding plate (42) is mounted in the corresponding inner cavity of the two groups of electric guide rails (41), the mounting end of the cutting drive frame (43) is mounted in the corresponding side of the synchronous sliding plate (42), the output end of the cutting motor (44) is mounted in the corresponding inner ring of the drive wheel on the cutting drive frame (43), and the mounting end of the cutting motor (44) is mounted in the corresponding side of the cutting drive frame (43).
5. The apparatus of claim 1 wherein: The mounting end of the tensioner (45) is mounted in the corresponding side of the synchronous sliding plate (42), the mounting end of the tensioning wheel (46) is mounted in the corresponding output end of the tensioner (45), the two groups of adjusting blocks (33) are provided with rotating holes on the side away from each other, the mounting end of the rotating cable wheel (47) is mounted in the corresponding rotating hole, and the cutting cable (48) is mounted in the corresponding inner wall of the wheel groove on the cutting drive frame (43), the tensioning wheel (46) and the rotating cable wheel (47).
6. The apparatus of claim 2 wherein: The two groups of adjusting plates (31) are provided with stable columns (7) on the side away from each other, the top plate (12), the bottom plate (13) and the partition plate (2) are provided with guide ring grooves (8) on the side close to each other, the top end of the stable column (7) is mounted in the corresponding inner wall of the guide ring groove (8), and the two groups of adjusting plates (31) are provided with synchronous rods (9) on the side close to each other.
7. The apparatus of claim 1 wherein: Each group of the rotating roller mechanism (52) comprises side plates (521) arranged on the inner walls of the mounting frames (51), a plurality of rotating rollers (522) are arranged between the two groups of side plates (521), the outer circle of one end of each group of the rotating rollers (522) is sleeved with a sprocket (523), the outer circles of a plurality of sprockets (523) are commonly sleeved with a chain (524), the outer circle of one end of one group of the rotating rollers (522) and the output end of the feeding motor (53) are sleeved with a belt pulley, the wheel grooves of the two groups of belt pulleys are sleeved with a driving belt, one side of the mounting frame (51) is provided with a mounting plate, and the mounting end of the feeding motor (53) is mounted in the corresponding side of the upper side of the mounting plate.
8. The apparatus of claim 1 wherein: The clamping mechanism (54) comprises a mounting frame (541) arranged in an "L" shape, one side of the upper portion of the mounting frame (541) is provided with a clamping push rod (542), the output end of the clamping push rod (542) is provided with a clamping plate (543) through one side of the mounting frame (541), and one side of the bottom of the clamping plate (543) is provided with a pressure sensor.
9. The apparatus of claim 2 wherein: A set of the cabinet panel (11) is provided with an observation window (10), and the mounting end of the PLC controller (6) is correspondingly mounted on one side of the cabinet panel (11). The PLC controller (6) is provided with an emergency stop button. The adjusting push rod (32), the corner motor (34), the electric guide rail (41), the cutting motor (44), the tensioner (45), the feeding motor (53) and the clamping mechanism (54) are respectively electrically connected with the PLC controller (6).