Rear feeding double-pushing-handle computer board cutting equipment with board rotating device
By introducing a plate-turning device and a baffle positioning mechanism into the computer-controlled plate-cutting equipment, the automatic rotation and optimized layout of the plates are achieved, solving the problem of low efficiency caused by manual plate turning and improving processing efficiency.
Patent Information
- Application Number
- CN202423271020.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing computerized panel saws require manual panel turning during processing, resulting in low efficiency.
Design a rear-loading, double-push-hand computer-controlled panel cutting device with a rotating plate mechanism. The rotating plate mechanism enables automatic rotation of the panels, and the panel layout is optimized by combining it with a baffle positioning mechanism.
It enables automatic board transfer without manual operation, improving processing efficiency and optimizing board layout selection.
Smart Images

Figure CN223834693U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of furniture woodworking machinery, and in particular to a computer-controlled cutting device with a rotating plate device and a rear-loading double-push handle. Background Technology
[0002] With the increasing demand for furniture and the rise of customized furniture as a mainstay in the market, panel furniture design is becoming increasingly common. Computerized panel saws, as cutting products, are widely used in the panel furniture industry. Computerized saws and other cutting workstations are the primary process in panel furniture production. Currently, most panel cutting equipment is controlled by a single system: a controller interacts with a human via serial communication. Panel cutting equipment includes longitudinal and transverse computerized panel saws. These saws can perform both longitudinal and transverse cuts on panels. During the sawing process, due to the difference between longitudinal and transverse cuts, the processing direction needs to be switched, requiring the panel to be rotated to achieve the transition between longitudinal and transverse cuts. Existing computerized panel saws often require rotating the input panel before processing, which is typically done manually. This method is labor-intensive and time-consuming, impacting processing efficiency.
[0003] Therefore, a new technology needs to be developed to solve the above problems. Utility Model Content
[0004] In view of this, the present invention addresses the deficiencies of the existing technology and its main objective is to provide a rear-loading double-push computer-controlled cutting board device with a plate-turning device. It realizes an automatic plate-turning design, eliminating the need for manual plate turning, reducing the time spent on manual plate turning, and improving processing efficiency.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A rear-loading, double-push-hand computer-controlled panel cutting device with a rotating plate assembly includes a feeding lifting mechanism, a pushing plate feeding mechanism, a first clamping plate feeding mechanism, a second clamping plate feeding mechanism, a rotating plate assembly, a baffle positioning mechanism, a main machine pressure plate sawing mechanism, and a panel support roller mechanism.
[0007] The plate support roller mechanism is connected to the rear side of the main machine pressure plate sawing mechanism. The first clamping plate feeding mechanism is arranged horizontally above the plate support roller mechanism and can move back and forth. The second clamping plate feeding mechanism extends in the front-back direction and is arranged above the left front side of the plate support roller mechanism. The feeding lifting mechanism extends in the left-right direction and is arranged behind the plate support roller mechanism. The push plate feeding mechanism is arranged horizontally above the rear of the feeding lifting mechanism and can move back and forth. The baffle positioning mechanism and the rotating plate device are both located below the plate support roller mechanism. The baffle positioning mechanism is located in front of the rotating plate device. The rotating plate device is used to rotate the plate horizontally.
[0008] As a preferred embodiment, the plate support roller mechanism includes several roller brackets extending in the front-to-back direction, the roller brackets being arranged sequentially at intervals in the left-to-right direction, and each roller bracket being provided with several rollers arranged sequentially at intervals in the front-to-back direction.
[0009] As a preferred embodiment, the baffle positioning mechanism includes a baffle seat and a plurality of positioning baffles arranged at intervals along the front-back direction and movably mounted on the upper end of the baffle seat. A plurality of baffle driving cylinders arranged at intervals along the front-back direction are mounted on the lower end of the baffle seat, and the baffle driving cylinders drive the positioning baffles to move up and down.
[0010] As a preferred embodiment, the rotating plate device includes a turntable base, a lifting motor installed below the turntable base, a lead screw seat installed above the turntable base, a lead screw transmission mechanism installed on the lead screw seat, a rotating frame connected to the lead screw transmission mechanism, a rotating mechanism installed on the rotating frame, and a turntable connected to the upper end of the rotating mechanism. The lifting motor drives the lead screw transmission mechanism to move the rotating frame up and down. The rotating mechanism includes a rotating motor, which drives the turntable to rotate horizontally. The turntable can extend upward beyond the upper end of the plate support roller mechanism.
[0011] As a preferred embodiment, the main unit pressure plate sawing mechanism includes a main unit frame and a pressure beam pressure plate mechanism, an operation screen component, and a saw base sawing mechanism mounted on the main unit frame. An air-floating platform is provided on the front side of the main unit frame.
[0012] As a preferred embodiment, the feeding lifting mechanism includes a long unpowered roller table, a short unpowered roller table, a powered roller table, and a powered lifting roller table arranged sequentially in the left-right direction.
[0013] As a preferred embodiment, the pusher feeding mechanism includes a pusher seat beam extending in the left-right direction, a pusher feeding drive motor installed on the front side of the pusher seat beam, a transmission rod connected to the pusher feeding drive motor, and a pusher mechanism installed on the rear side of the pusher seat beam. The pusher feeding drive motor is used to drive the pusher feeding mechanism to move back and forth. The pusher mechanism includes a pusher component and a pusher driving motor that drives the pusher component.
[0014] As a preferred embodiment, the first clamping plate feeding mechanism includes a clamping seat beam and a clamping seat servo motor mounted on the clamping seat beam, and several first clamping mechanisms. The clamping seat servo motor is used to drive the feeding clamping seat mechanism to move back and forth. The first clamping plate feeding mechanism also includes a linkage rod rotatably mounted on the rear side of the clamping seat beam. The clamping seat servo motor is driven and connected to the linkage rod. Both the left and right ends of the clamping seat beam are connected to end plates. The left and right ends of the linkage rod pass through the corresponding end plates, and both the left and right ends of the linkage rod are connected to transmission gears.
[0015] As a preferred embodiment, the second clamping plate feeding mechanism includes a secondary clamping seat, a clamping plate feeding servo motor mounted on the upper end of the secondary clamping seat, a plurality of second clamping mechanisms mounted on the front side of the secondary clamping seat, and movable clamping front and rear cylinders mounted on the rear side of the secondary clamping seat. The clamping plate feeding servo motor is used to drive the second clamping plate feeding mechanism to move back and forth, and the movable clamping front and rear cylinders are used to drive the second clamping mechanisms to move back and forth.
[0016] Compared with the prior art, this utility model has significant advantages and beneficial effects. Specifically, as can be seen from the above technical solution, it mainly achieves automatic rotation of the board by setting up a rotating plate device, which is used to rotate the board horizontally. This eliminates the need for manual rotation, reduces the time spent on manual rotation, and improves processing efficiency. Furthermore, through the combined design of the baffle positioning mechanism and the rotating plate device, both of which are located below the board support roller mechanism, with the baffle positioning mechanism located in front of the rotating plate device, and having several positioning baffles arranged at intervals along the front-back direction, the appropriate positioning baffle can be selected according to the board size, and whether a rotating plate feeding is required can be determined. This greatly optimizes the board layout and provides a wider selection of board sizes.
[0017] To more clearly illustrate the structural features, technical means, and specific objectives and functions of this utility model, the following detailed description is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description
[0018] Figure 1 This is a three-dimensional schematic diagram of the overall structure of an embodiment of this utility model;
[0019] Figure 2 This is a three-dimensional schematic diagram of the main pressure plate sawing mechanism according to an embodiment of the present utility model;
[0020] Figure 3 This is a three-dimensional schematic diagram of the feeding rack and pinion guide mechanism according to an embodiment of the present utility model;
[0021] Figure 4 This is a three-dimensional schematic diagram of the first clamping plate feeding mechanism according to an embodiment of the present utility model;
[0022] Figure 5 This is a three-dimensional schematic diagram of the second clamping plate feeding mechanism according to an embodiment of the present utility model;
[0023] Figure 6 This is a three-dimensional schematic diagram of the push plate feeding mechanism according to an embodiment of the present utility model;
[0024] Figure 7 This is a three-dimensional schematic diagram of the feeding lifting mechanism according to an embodiment of the present utility model;
[0025] Figure 8 This is a three-dimensional schematic diagram of the baffle positioning mechanism according to an embodiment of the present utility model;
[0026] Figure 9 This is a perspective view of the rotating plate device according to an embodiment of the present utility model;
[0027] Figure 10 This is a side view of the rotating plate device according to an embodiment of the present utility model;
[0028] Figure 11 This is a side view of the rotating plate device according to an embodiment of the present utility model.
[0029] Explanation of reference numerals in the attached diagram:
[0030] 10. Feeding lifting mechanism; 11. Long non-powered roller table
[0031] 12. Short, unpowered roller table; 13. Powered roller table
[0032] 14. Power-driven lifting roller table; 20. Push plate feeding mechanism
[0033] 21. Pusher seat crossbeam; 22. Pusher plate feeding drive motor
[0034] 23. Transmission rod 24. Push plate mechanism
[0035] 241. Push plate component; 242. Push plate drive motor
[0036] 25. Linkage gear; 30. First clamping plate feeding mechanism
[0037] 31. Clamp seat crossbeam; 32. Clamp seat servo motor
[0038] 33. First clamping mechanism; 34. Linkage rod
[0039] 35. End plate; 36. Transmission gear
[0040] 40. Second clamping plate feeding mechanism; 41. Auxiliary clamping seat
[0041] 42. Clamping plate feeding servo motor 43. Second clamping mechanism
[0042] 44. Front and rear cylinders of the movable clamping tool
[0043] 50. Turning plate device; 51. Turntable base
[0044] 52. Lifting motor 53. Lead screw seat
[0045] 54. Rotating frame 55. Rotating mechanism
[0046] 551. Rotary motor 56. Turntable
[0047] 60. Baffle positioning mechanism 61. Baffle seat
[0048] 62. Positioning baffle 63. Baffle drive cylinder
[0049] 70. Main unit pressure plate sawing mechanism; 71. Main unit frame
[0050] 72. Pressure beam and pressure plate mechanism; 73. Operation panel components
[0051] 74. Saw base sawing mechanism 75. Air-floating platform
[0052] 80. Sheet metal support roller mechanism 81. Roller bracket
[0053] 90. Feeding rack and pinion guide rail mechanism; 91. Left side support foot
[0054] 92. Right side support foot; 93. Left rack and pinion guide rail assembly.
[0055] 94. Right rack guide rail assembly; 95. Rack seat. Detailed Implementation
[0056] Please refer to Figures 1 to 11 As shown, it illustrates the specific structure of an embodiment of the present invention.
[0057] A rear-loading, double-push-hand computer-controlled panel cutting device with a rotating plate assembly includes a feeding lifting mechanism 10, a push-plate feeding mechanism 20, a first clamping plate feeding mechanism 30, a second clamping plate feeding mechanism 40, a rotating plate assembly 50, a baffle positioning mechanism 60, a main pressure plate sawing mechanism 70, and a panel support roller mechanism 80. The panel support roller mechanism 80 is connected to the rear side of the main pressure plate sawing mechanism 70. The first clamping plate feeding mechanism 30 is arranged transversely above the panel support roller mechanism 80 and can move back and forth. The second clamping plate feeding mechanism 40 extends in the front-back direction. The feeding lifting mechanism 10 is arranged above the left front side of the plate support roller mechanism 80 to achieve the purpose of double pushers; the feeding lifting mechanism 10 extends in the left and right direction and is arranged behind the plate support roller mechanism 80 to realize rear feeding; the push plate feeding mechanism 20 is arranged horizontally above and behind the feeding lifting mechanism 10 and can move back and forth; the baffle positioning mechanism 60 and the rotating plate device 50 are both arranged below the plate support roller mechanism 80, and the baffle positioning mechanism 60 is located in front of the rotating plate device 50; the rotating plate device 50 is used to rotate the plate in the horizontal direction.
[0058] The main unit pressure plate sawing mechanism 70 includes a main unit frame 71 and a pressure beam pressure plate mechanism 72, an operation screen component 73, and a saw base sawing mechanism 74 mounted on the main unit frame 71. An air float platform 75 is provided on the front side of the main unit frame 71.
[0059] The feeding lifting mechanism 10 includes a long unpowered roller table 11, a short unpowered roller table 12, a powered roller table 13, and a powered lifting roller table 14 arranged sequentially in the left-right direction.
[0060] The plate support roller mechanism 80 includes several roller brackets 81 extending in the front-back direction. The roller brackets 81 are arranged at intervals in the left-right direction, and each roller bracket 81 is provided with several rollers arranged at intervals in the front-back direction.
[0061] The baffle positioning mechanism 60 includes a baffle seat 61 and a plurality of positioning baffles 62 arranged at intervals along the front-back direction and movably mounted on the upper end of the baffle seat 61. A plurality of baffle driving cylinders 63 arranged at intervals along the front-back direction are mounted on the lower end of the baffle seat 61. The baffle driving cylinders 63 drive the positioning baffles 62 to move up and down.
[0062] The rotating plate device 50 includes a turntable base 51, a lifting motor 52 installed below the turntable base 51, a lead screw seat 53 installed above the turntable base 51, a lead screw transmission mechanism installed on the lead screw seat 53, a rotating frame 54 connected to the lead screw transmission mechanism, a rotating mechanism 55 installed on the rotating frame 54, and a turntable 56 connected to the upper end of the rotating mechanism 55. The lifting motor 52 drives the lead screw transmission mechanism to move the rotating frame 54 up and down. The rotating mechanism 55 includes a rotating motor 551, which drives the turntable 56 to rotate in the horizontal direction. The turntable 56 can extend upward beyond the upper end of the plate support roller mechanism 80.
[0063] The rear side of the main machine plate sawing mechanism 70 is provided with a feeding rack and pinion guide seat mechanism 90. The feeding rack and pinion guide seat mechanism 90 includes a left support foot 91 and a right support foot 92 arranged symmetrically, and a left rack and pinion guide seat component 93 and a right rack and pinion guide seat component 94 arranged symmetrically. The left rack and pinion guide seat component 93 and the right rack and pinion guide seat component 94 are respectively mounted on the left support foot 91 and the right support foot 92. The left rack and pinion guide seat component 93 and the right rack and pinion guide seat component 94 both include a rack seat 95 extending in the front-back direction.
[0064] The first clamping plate feeding mechanism 30 includes a clamping seat beam 31, a clamping seat servo motor 32 mounted on the clamping seat beam 31, and several first clamping mechanisms 33. The clamping seat servo motor 32 is used to drive the feeding clamping seat mechanism to move back and forth. The first clamping plate feeding mechanism 30 also includes a linkage rod 34 rotatably mounted on the rear side of the clamping seat beam 31. The clamping seat servo motor 32 is driven and connected to the linkage rod 34. Both the left and right ends of the clamping seat beam 31 are connected to end plates 35. The left and right ends of the linkage rod 34 pass through the corresponding end plates 35 respectively. Both the left and right ends of the linkage rod 34 are connected to transmission gears 36. The transmission gears 36 mesh with rack seats 95.
[0065] The second clamping plate feeding mechanism 40 is installed below the left rack and pinion guide seat component 93. The second clamping plate feeding mechanism 40 includes a secondary clamping seat 41, a clamping plate feeding servo motor 42 installed on the upper end of the secondary clamping seat 41, a plurality of second clamping mechanisms 43 installed on the front side of the secondary clamping seat 41, and a movable clamping front and rear cylinder 44 installed on the rear side of the secondary clamping seat 41. The clamping plate feeding servo motor 42 is used to drive the second clamping plate feeding mechanism 40 to move back and forth, and the movable clamping front and rear cylinder 44 is used to drive the second clamping mechanisms 43 to move back and forth.
[0066] The pusher feeding mechanism 20 includes a pusher seat beam 21 extending in the left-right direction, a pusher feeding drive motor 22 installed on the front side of the pusher seat beam 21, a transmission rod 23 connected to the pusher feeding drive motor 22, and a pusher mechanism 24 installed on the rear side of the pusher seat beam 21. The pusher feeding drive motor 22 is used to drive the pusher feeding mechanism 20 to move back and forth. The pusher mechanism 24 includes a pusher component 241 and a pusher driving motor 242 that drives the pusher component 241. Both ends of the transmission rod 23 are connected to linkage gears 25, and the linkage gears 25 mesh with the rack seat 95.
[0067] Its general working process is as follows:
[0068] First, the forklift moves the sheet metal to the feeding lifting mechanism 10, and the power roller table 13 sends the sheet metal to the lowest position of the lifting position. Then, the power lifting roller table 14 is raised to the pushing height.
[0069] Secondly, the push plate feeding mechanism 20 pushes the preset number of plates onto the rollers of the plate support roller mechanism 80 above the turntable device 50, and in conjunction with the baffle positioning mechanism 60, the plates are aligned and placed; according to the size of the plates, the positioning baffle 62 of the baffle positioning mechanism 60 is appropriately selected for positioning.
[0070] Then, according to the preset layout scheme, the board to be repositioned and sawn is repositioned through the rotating plate device 50, so that the lifting motor 52 drives the screw transmission mechanism to move the rotating frame 54 up and down, so that the rotating frame 54 rises up and takes the board above the roller surface of the board support roller mechanism 80. Then the rotating motor 551 drives the turntable 56 to rotate in the horizontal direction, so that the board rotates and repositions by 90 degrees. Finally, the lifting motor 52 drives the screw transmission mechanism to move again and return to the origin.
[0071] Furthermore, the first clamping plate feeding mechanism 30 moves to the clamping plate position, clamps the plate and sends it to the sawing position;
[0072] Finally, the main plate sawing mechanism 70 is positioned by the pressure beam plate mechanism 72, and then the sawing mechanism 74 is used to saw the plate. Finally, the sawn plate is taken out by the air float 75. This completes the entire process of feeding, loading, pushing, turning, positioning, clamping, sawing and unloading. In addition, the second clamping plate feeding mechanism 40 can be used to perform clamping, feeding, positioning and sawing actions according to the size of the plate.
[0073] In summary, the key design feature of this utility model lies in its use of a rotating plate device to automatically rotate the sheet material horizontally. This automatic rotation eliminates the need for manual rotation, reducing processing time and improving efficiency. Furthermore, the combined design of the baffle positioning mechanism and the rotating plate device, with both positioned below the sheet material support roller mechanism and in front of the rotating plate device, incorporates several positioning baffles spaced sequentially along the front-back direction. This allows for the selection of appropriate positioning baffles based on the sheet material size and the need for rotating plate feeding, significantly optimizing sheet material layout and providing a wider selection of sheet material sizes.
[0074] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.
Claims
1. A rear-loading, double-push, computer-controlled cutting device with a rotating plate mechanism, characterized in that: It includes a feeding lifting mechanism, a push plate feeding mechanism, a first clamping plate feeding mechanism, a second clamping plate feeding mechanism, a rotating plate device, a baffle positioning mechanism, a main machine pressure plate sawing mechanism, and a plate support roller mechanism. The plate support roller mechanism is connected to the rear side of the main machine pressure plate sawing mechanism. The first clamping plate feeding mechanism is arranged horizontally above the plate support roller mechanism and can move back and forth. The second clamping plate feeding mechanism extends in the front-back direction and is arranged above the left front side of the plate support roller mechanism. The feeding lifting mechanism extends in the left-right direction and is arranged behind the plate support roller mechanism. The push plate feeding mechanism is arranged horizontally above the rear of the feeding lifting mechanism and can move back and forth. The baffle positioning mechanism and the rotating plate device are both located below the plate support roller mechanism. The baffle positioning mechanism is located in front of the rotating plate device. The rotating plate device is used to rotate the plate horizontally.
2. The rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The plate support roller mechanism includes several roller brackets extending in the front-to-back direction, and the roller brackets are arranged at intervals in the left-to-right direction. Each roller bracket is provided with several rollers arranged at intervals in the front-to-back direction.
3. The rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The baffle positioning mechanism includes a baffle seat and a plurality of positioning baffles arranged at intervals along the front-back direction and movably mounted on the upper end of the baffle seat. A plurality of baffle driving cylinders arranged at intervals along the front-back direction are mounted on the lower end of the baffle seat, and the baffle driving cylinders drive the positioning baffles to move up and down.
4. A rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The rotating plate device includes a turntable base, a lifting motor installed below the turntable base, a lead screw seat installed above the turntable base, a lead screw transmission mechanism installed on the lead screw seat, a rotating frame connected to the lead screw transmission mechanism, a rotating mechanism installed on the rotating frame, and a turntable connected to the upper end of the rotating mechanism. The lifting motor drives the lead screw transmission mechanism to move the rotating frame up and down. The rotating mechanism includes a rotating motor, which drives the turntable to rotate in the horizontal direction. The turntable can extend upward beyond the upper end of the plate support roller mechanism.
5. A rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The main unit pressure plate sawing mechanism includes a main unit frame and a pressure beam pressure plate mechanism, an operation screen component, and a saw base sawing mechanism mounted on the main unit frame. An air-floating platform is provided on the front side of the main unit frame.
6. A rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The feeding lifting mechanism includes a long unpowered roller table, a short unpowered roller table, a powered roller table, and a powered lifting roller table arranged sequentially in the left-right direction.
7. A rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The pusher feeding mechanism includes a pusher seat beam extending in the left-right direction, a pusher feeding drive motor installed on the front side of the pusher seat beam, a transmission rod connected to the pusher feeding drive motor, and a pusher mechanism installed on the rear side of the pusher seat beam. The pusher feeding drive motor is used to drive the pusher feeding mechanism to move back and forth. The pusher mechanism includes a pusher component and a pusher driving motor that drives the pusher component.
8. A rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The first clamping plate feeding mechanism includes a clamping seat beam and a clamping seat servo motor mounted on the clamping seat beam, and several first clamping mechanisms. The clamping seat servo motor is used to drive the feeding clamping seat mechanism to move back and forth. The first clamping plate feeding mechanism also includes a linkage rod rotatably mounted on the rear side of the clamping seat beam. The clamping seat servo motor is driven and connected to the linkage rod. Both the left and right ends of the clamping seat beam are connected to end plates. The left and right ends of the linkage rod pass through the corresponding end plates respectively. Both the left and right ends of the linkage rod are connected to transmission gears.
9. A rear-loading double-push computer-controlled cutting device with a rotating plate device according to claim 1, characterized in that: The second clamping plate feeding mechanism includes a secondary clamping seat, a clamping plate feeding servo motor mounted on the upper end of the secondary clamping seat, several second clamping mechanisms mounted on the front side of the secondary clamping seat, and movable clamping front and rear cylinders mounted on the rear side of the secondary clamping seat. The clamping plate feeding servo motor is used to drive the second clamping plate feeding mechanism to move back and forth, and the movable clamping front and rear cylinders are used to drive the second clamping mechanisms to move back and forth.