Horizontal flushing mechanism
By employing an inclined sliding cutting component and a forward/backward blade power mechanism in the horizontal edge banding device of the edge banding machine, the problems of non-compact structure and low cutting efficiency of the existing device are solved, achieving a more efficient edge banding and cutting effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN GONGXIANG WOODWORKING MASCH CO LTD
- Filing Date
- 2025-05-21
- Publication Date
- 2026-05-12
AI Technical Summary
The existing horizontal trimming mechanism of the traditional edge banding machine has problems such as non-compact structure, long movement trajectory, which affects the compactness of the equipment and cutting efficiency.
采用切割组件以前端在高、后端在低的方式倾斜滑动设置于齐头安装座上,并通过进退刀动力机构驱动切割组件滑动,运动轨迹改为斜线,整体结构更加紧凑合理,进刀运动轨迹更短。
It achieves faster cutting efficiency and is a horizontal end-aligning device for edge banding machines suitable for high-speed cutting needs. The overall structure is compact and reasonable, resulting in higher cutting efficiency.
Smart Images

Figure CN224224017U_ABST
Abstract
Description
Technical fields:
[0001] This utility model relates to the technical field of edge banding machine edge trimming devices, and in particular to a horizontal edge trimming mechanism. Background technology:
[0002] Edge banding machines are key pieces of equipment in panel furniture manufacturing, used to apply edge banding tape to the edges of panels to improve aesthetics and durability. During the edge banding process, excess tape material may remain at both ends of the panel, which needs to be cut and trimmed using a trimming device to ensure that the edge banding surface is flat and burr-free.
[0003] Existing traditional horizontal trimming mechanisms used in edge banding machines, such as the Chinese utility model patent application number CN202323178348.3, employ a swing-type feed cutting method. Although these mechanisms can be used for edge banding cutting, they suffer from the following problems during use: the swing arm mechanism requires a large space, affecting the compactness of the equipment; and the saw blade with the swing arm structure moves in an arc trajectory during feed, resulting in a long trajectory and affecting cutting efficiency. Utility Model Content:
[0004] The purpose of this invention is to provide a horizontal trimming mechanism to address the shortcomings of existing technologies. This mechanism not only has a more compact and reasonable overall structure, but also enables faster cutting and improves cutting efficiency. It is better suited for horizontal trimming devices in edge banding machines that require higher-speed cutting.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is: a horizontal trimming mechanism, including a trimming mounting base, a cutting component for cutting edge strip material, and a forward and backward cutting power mechanism; the cutting component is inclined and slidably mounted on the trimming mounting base with its front end higher and its rear end lower; the forward and backward cutting power mechanism is used to drive the cutting component to slide on the trimming mounting base.
[0006] A further improvement to the above solution is that the cutting assembly includes a cutting mounting base, a forward and reverse blade power mechanism is disposed on the cutting mounting base, and the output end of the forward and reverse blade power mechanism is driven and connected to the end-mounting mounting base.
[0007] A further improvement to the above solution is that the bottom of the flush mounting base is integrally formed with an inclined mounting part, the inclined mounting part is provided with a forward and backward blade guide rail, a forward and backward blade slider is slidably connected to the forward and backward blade guide rail, and the forward and backward blade slider is connected to the cutting mounting base.
[0008] A further improvement to the above solution is that the cutting assembly further includes a cutting adjustment seat rotatably disposed at the bottom of the cutting mounting base, a cutting slide block slidably connected to the bottom of the cutting adjustment seat in the left-right direction, a cutting sliding power mechanism for driving the cutting slide block to slide, and a saw module disposed on the cutting slide block.
[0009] A further improvement to the above solution is that the cutting sliding power mechanism is mounted on the cutting slide, and the output end of the cutting sliding power mechanism drives and connects to the cutting adjustment seat.
[0010] A further improvement to the above solution is that the cutting mounting base is integrally formed with at least two arc-shaped mounting holes, and the arc-shaped mounting holes are arranged in concentric circles. The cutting adjustment base is integrally formed with threaded mounting holes that are the same number and position as the arc-shaped mounting holes on the cutting mounting base. The cutting mounting base is provided with connecting bolts that are the same number as the arc-shaped mounting holes. Each connecting bolt passes through the arc-shaped mounting holes on the cutting mounting base and is threadedly connected to the threaded mounting holes on the cutting adjustment base.
[0011] A further improvement to the above solution is that the bottom of the cutting adjustment seat is integrally formed with a dovetail groove, and the top of the cutting slide is integrally formed with a dovetail protrusion that matches the dovetail groove, and the dovetail protrusion is slidably connected in the dovetail groove.
[0012] A further improvement to the above solution is that the bottom of the cutting mounting base is recessed with an arc-shaped guide groove, and the top of the cutting adjustment base is protruded with an arc-shaped guide protrusion that cooperates with the arc-shaped guide groove. The arc-shaped guide protrusion on the cutting adjustment base extends out of the arc-shaped guide groove on the cutting mounting base.
[0013] A further improvement to the above solution is that the flush mounting base is provided with a stop assembly, the stop assembly including a stop block slidably connected to the flush mounting base in the vertical direction, and a stop power mechanism for driving the stop block to slide. The stop power mechanism is disposed on the flush mounting base, and the output end of the stop power mechanism drives and connects to the stop block.
[0014] A further improvement to the above scheme is that the angle between the sliding direction of the cutting component and the horizontal plane is 10-60°.
[0015] The advantages of this utility model are as follows: This utility model provides a horizontal trimming mechanism, including a trimming mounting base, a cutting component for cutting edge strip material, and a forward and backward cutting power mechanism; the cutting component is inclined and slidably mounted on the trimming mounting base with its front end higher and its rear end lower; the forward and backward cutting power mechanism is used to drive the cutting component to slide on the trimming mounting base;
[0016] Compared to existing traditional horizontal trimming mechanisms used in edge banding machines, the present invention has a more compact and reasonable overall structure. Compared to the circular motion trajectory for cutting, the cutting trajectory of the present invention is a diagonal line, directly replacing the two points of the circular arc with a diagonal line. The overall motion trajectory is shorter, allowing more edge strip to be cut off within a limited working distance, resulting in higher cutting efficiency. Therefore, it is better suited for horizontal trimming devices of edge banding machines with higher cutting speed requirements. Attached image description:
[0017] Figure 1 This is a schematic diagram of the structure of this utility model.
[0018] Figure 2 This is a schematic diagram of the cutting component of this utility model.
[0019] Figure 3 This is a schematic diagram of the structure of the cutting mounting base of this utility model.
[0020] Figure 4 This is a schematic diagram of the cutting adjustment seat and cutting slide of this utility model.
[0021] Explanation of reference numerals in the attached drawings: 31. Clamping mounting base; 311. Inclined mounting part; 32. Cutting tool power mechanism; 33. Cutting tool guide rail; 34. Cutting tool slider; 6. Cutting assembly; 61. Cutting mounting base; 611. Arc mounting hole; 612. Arc guide groove; 62. Cutting adjustment seat; 621. Threaded mounting hole; 622. Dovetail groove; 623. Arc guide protrusion; 63. Cutting slide; 631. Dovetail protrusion; 64. Cutting sliding power mechanism; 65. Saw blade module; 66. Connecting bolt; 7. Stop assembly; 71. Stop block; 72. Stop power mechanism. Detailed implementation method:
[0022] The present invention will be further described below with reference to the accompanying drawings, such as... Figure 1-4 As shown, this utility model includes a trimming mounting base 31, a cutting component 6 for cutting edge strip material, and a forward / backward blade power mechanism 32. The cutting component 6 is inclined and slidably mounted on the trimming mounting base 31 with its front end higher and its rear end lower. In this embodiment, the angle between the sliding direction of the cutting component 6 and the horizontal plane is 15°, and preferably 10-60°, which can better achieve rapid forward and backward blade movement while ensuring cutting effect. The forward / backward blade power mechanism 32 is used to drive the cutting component 6 to slide on the trimming mounting base 31. Compared with the existing traditional horizontal trimming mechanism for edge banding machines, the overall structure of this utility model is more compact and reasonable. Compared with the arc motion trajectory for cutting, the cutting trajectory of this utility model is a diagonal line, directly replacing the two points of the arc with a diagonal line. The overall motion trajectory is shorter, allowing more edge strip to be cut within a limited movement distance, resulting in higher cutting efficiency. Therefore, it is better suited for horizontal trimming devices of edge banding machines with higher cutting speed requirements.
[0023] In this embodiment, the cutting assembly 6 includes a cutting mounting base 61, and a forward / backward blade power mechanism 32 is disposed on the cutting mounting base 61. The output end of the forward / backward blade power mechanism 32 is driven and connected to the end-aligning mounting base 31. Of course, in other embodiments, the forward / backward blade power mechanism 32 may also be disposed on the end-aligning mounting base 31, and the output end of the forward / backward blade power mechanism 32 is driven and connected to the cutting mounting base 61.
[0024] The bottom of the flush mounting base 31 is integrally formed with an inclined mounting part 311. The inclined mounting part 311 is provided with a blade guide rail 33. A blade slider 34 is slidably connected to the blade guide rail 33. The blade slider 34 is connected to the cutting mounting base 61. Through the cooperation of the blade guide rail 33 and the blade slider 34, the cutting mounting base 61 can slide more quickly and smoothly on the flush mounting base 31, that is, the blade advance and retreat of the cutting component 6 can be realized more quickly and smoothly.
[0025] The cutting assembly 6 also includes a cutting adjustment seat 62 rotatably mounted on the bottom of the cutting mounting base 61, a cutting slide 63 slidably connected to the bottom of the cutting adjustment seat 62 in the left-right direction, a cutting sliding power mechanism 64 for driving the cutting slide 63 to slide, and a saw module 65 mounted on the cutting slide 63. By adjusting the relative angle between the cutting adjustment seat 62 and the cutting mounting base 61, the mounting angle of the saw module 65 relative to the cutting mounting base 61 can be adjusted accordingly, thereby allowing the edge sealing cutting angle to be adjusted according to specific needs. By adjusting the left-right position of the cutting slide 63 relative to the cutting mounting base 61, the left-right position of the saw module 65 relative to the cutting mounting base 61 can be adjusted accordingly, thereby allowing the switching of different lengths of edge sealing allowance according to specific needs. The cutting assembly 6 of this utility model can switch different lengths of edge sealing allowance and the edge sealing cutting angle can be adjusted, making it more suitable for various edge sealing cuts.
[0026] In this embodiment, the cutting sliding power mechanism 64 is disposed on the cutting slide 63, and the output end of the cutting sliding power mechanism 64 is driven and connected to the cutting adjustment seat 62; of course, in other embodiments, the cutting sliding power mechanism 64 may also be disposed on the cutting adjustment seat 62, and the output end of the cutting sliding power mechanism 64 is driven and connected to the cutting slide 63.
[0027] The cutting mounting base 61 is integrally formed with at least two arc-shaped mounting holes 611, which are arranged concentrically. The cutting adjustment base 62 is integrally formed with threaded mounting holes 621, which are the same number and position as the arc-shaped mounting holes 611 on the cutting mounting base 61. The cutting mounting base 61 is provided with connecting bolts 66, which are the same number as the arc-shaped mounting holes 611. Each connecting bolt 66 passes through the arc-shaped mounting holes 611 on the cutting mounting base 61 and is threadedly connected to the threaded mounting holes 621 on the cutting adjustment base 62. The cutting mounting base 61 and the cutting adjustment base 62 are connected by connecting bolts 66. By adjusting the position of the connecting bolts 66 on the arc-shaped mounting holes 611, the relative angle between the cutting adjustment base 62 and the cutting mounting base 61 can be adjusted, and the installation angle of the saw module 65 relative to the cutting mounting base 61 can be adjusted, thereby adjusting the edge sealing cutting angle.
[0028] The bottom of the cutting mounting base 61 is recessed with an arc-shaped guide groove 612, and the top of the cutting adjustment base 62 is protruded with an arc-shaped guide protrusion 623 that cooperates with the arc-shaped guide groove 612. The arc-shaped guide protrusion 623 on the cutting adjustment base 62 protrudes into the arc-shaped guide groove 612 on the cutting mounting base 61. Through the cooperation of the arc-shaped guide groove 612 and the arc-shaped guide protrusion 623, it is not only easier to align and install the cutting mounting base 61 and the cutting adjustment base 62, but also to better achieve the angle adjustment between the cutting mounting base 61 and the cutting adjustment base 62.
[0029] The bottom of the cutting adjustment seat 62 is integrally formed with a dovetail groove 622, and the top of the cutting slide 63 is integrally formed with a dovetail protrusion 631 that matches the dovetail groove 622. The dovetail protrusion 631 is slidably connected in the dovetail groove 622, and the cutting slide 63 can slide smoothly relative to the cutting adjustment seat 62, thereby enabling better switching of edge sealing allowances of different lengths.
[0030] The flush mounting base 31 is provided with a stop assembly 7. The stop assembly 7 includes a stop block 71 slidably connected to the flush mounting base 31 in the vertical direction and a stop power mechanism 72 for driving the stop block 71 to slide. The stop power mechanism 72 is set on the flush mounting base 31, and the output end of the stop power mechanism 72 drives the stop block 71. The stop block 71 is driven to move downward by the stop power mechanism 72 and is supported by the board material to better achieve edge banding and cutting. After the edge banding and cutting of the board material is completed, the stop block 71 is driven to move upward by the stop power mechanism 72 so that the board material after edge banding and cutting can pass through. Then, the stop block 71 is driven to move downward by the stop power mechanism 72 so that the next board material can be supported and edge banded and cut.
[0031] Working principle:
[0032] The cutting component 6 is driven forward by the advance and retraction blade power mechanism 32, which moves it closer to the board material. The cutting component 6 slides obliquely upward and cuts and trims the edge banding of the board material. After the edge banding is cut and trimmed, the cutting component 6 is driven downward by the advance and retraction blade power mechanism 32 to reset, ready for the next edge banding of the board material. This utility model not only has a more compact and reasonable overall structure, but also can complete the cutting faster and improve the cutting efficiency. It is better suited for the horizontal edge banding device of the edge banding machine with higher speed cutting requirements.
[0033] Of course, the above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A horizontal alignment mechanism, characterized in that: It includes a flush mounting base (31), a cutting assembly (6) for cutting edge strip material, and a forward and backward cutting power mechanism (32); the cutting assembly (6) is inclined and slidably mounted on the flush mounting base (31) with the front end at a high position and the rear end at a low position; the forward and backward cutting power mechanism (32) is used to drive the cutting assembly (6) to slide on the flush mounting base (31).
2. The horizontal alignment mechanism according to claim 1, characterized in that: The cutting assembly (6) includes a cutting mounting base (61), and a forward and backward cutting power mechanism (32) is disposed on the cutting mounting base (61). The output end of the forward and backward cutting power mechanism (32) drives and connects to the end-mounting mounting base (31).
3. A horizontal alignment mechanism according to claim 2, characterized in that: The bottom of the end mounting base (31) is integrally formed with an inclined mounting part (311), and the inclined mounting part (311) is provided with a forward and backward cutting guide rail (33). A forward and backward cutting slider (34) is slidably connected on the forward and backward cutting guide rail (33), and the forward and backward cutting slider (34) is connected to the cutting mounting base (61).
4. A horizontal alignment mechanism according to claim 2, characterized in that: The cutting assembly (6) further includes a cutting adjustment seat (62) rotatably disposed at the bottom of the cutting mounting base (61), a cutting slide (63) slidably connected to the bottom of the cutting adjustment seat (62) in the left-right direction, a cutting sliding power mechanism (64) for driving the cutting slide (63) to slide, and a saw module (65) disposed on the cutting slide (63).
5. A horizontal alignment mechanism according to claim 4, characterized in that: The cutting sliding power mechanism (64) is mounted on the cutting slide (63), and the output end of the cutting sliding power mechanism (64) drives the cutting adjustment seat (62).
6. A horizontal alignment mechanism according to claim 4, characterized in that: The cutting mounting base (61) is integrally formed with at least two arc mounting holes (611), and the arc mounting holes (611) are arranged in concentric circles. The cutting adjustment base (62) is integrally formed with threaded mounting holes (621) that are the same number and position as the arc mounting holes (611) on the cutting mounting base (61). The cutting mounting base (61) is provided with connecting bolts (66) that are the same number as the arc mounting holes (611). Each connecting bolt (66) passes through the arc mounting holes (611) on the cutting mounting base (61) and is threadedly connected to the threaded mounting holes (621) on the cutting adjustment base (62).
7. A horizontal alignment mechanism according to claim 4, characterized in that: The bottom of the cutting adjustment seat (62) is integrally formed with a dovetail groove (622), and the top of the cutting slide (63) is integrally formed with a dovetail protrusion (631) that cooperates with the dovetail groove (622). The dovetail protrusion (631) is slidably connected in the dovetail groove (622).
8. A horizontal alignment mechanism according to claim 4, characterized in that: The bottom of the cutting mounting base (61) is recessed with an arc-shaped guide groove (612), and the top of the cutting adjustment base (62) is protruded with an arc-shaped guide protrusion (623) that cooperates with the arc-shaped guide groove (612). The arc-shaped guide protrusion (623) on the cutting adjustment base (62) protrudes into the arc-shaped guide groove (612) on the cutting mounting base (61).
9. A horizontal alignment mechanism according to any one of claims 1, characterized in that: The flush mounting base (31) is provided with a stop assembly (7). The stop assembly (7) includes a stop block (71) slidably connected to the flush mounting base (31) in the vertical direction and a stop power mechanism (72) for driving the stop block (71) to slide. The stop power mechanism (72) is provided on the flush mounting base (31), and the output end of the stop power mechanism (72) drives the stop block (71).
10. A horizontal alignment mechanism according to any one of claims 1-9, characterized in that: The angle between the sliding direction of the cutting component (6) and the horizontal plane is 10-60°.