Environment-friendly woodworking engraving device
By adopting concentrically arranged dust suction pipes and XYZ three-axis travel components in the woodworking engraving device, the problem of poor dust removal effect of existing woodworking engraving machines is solved, efficient dust and wood chips removal is achieved, and processing quality and environmental cleanliness are improved.
Patent Information
- Application Number
- CN202422593288.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-26
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-10-26
AI Technical Summary
The existing woodworking engraving machines have poor dust removal effects, which affects the processing quality and working environment and requires a lot of cleaning work.
An environmentally friendly woodworking engraving device was designed. The first suction pipe was concentrically arranged with the output head, and the second suction pipe was placed close to the processing platform along the walking component. Combined with the walking component of the XYZ three-axis system, the wood chips and dust were immediately removed.
It improves the cleanliness and quality of the processing environment, reduces labor intensity, and improves dust removal effect.
Smart Images

Figure CN223407141U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wood processing devices, in particular to an environmentally friendly woodworking carving device. Background Art
[0002] With the development of the wood carving industry, the application of woodworking engraving machines has become more and more extensive, and single manual operations have gradually turned to automated operations. During the engraving machine processing, a lot of dust and sawdust will be generated, which will inevitably affect the processing quality and working environment.
[0003] Therefore, current woodworking engraving machines are equipped with dust removal devices. The dust suction port is set on the tool head to absorb the wood chips and dust generated during the engraving process. However, the dust removal effect is relatively poor. There is still a lot of dust on the board and the processing table, which needs to be cleaned manually. The cleaning workload is large and affects the working environment.
[0004] Therefore, the existing technology still needs to be improved and developed. Utility Model Content
[0005] The purpose of the utility model is to provide an environmentally friendly woodworking carving device with a reasonable structure and good dust removal effect in view of the defects and shortcomings of the existing technology.
[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0007] The utility model describes an environmentally friendly woodworking engraving device, comprising a frame and a dust suction assembly, wherein the frame is provided with a processing platform and a traveling assembly, the traveling assembly is provided with a main motor, and the lower end of the main motor is provided with an output head; the dust suction assembly comprises a first dust suction pipe and a second dust suction pipe, the first dust suction pipe is sleeved on the output head, so that the air inlet of the first dust suction pipe faces the processing platform; the second dust suction pipe is arranged at the rear side of the output head, so that the air inlet of the second dust suction pipe faces the processing platform, and the second dust suction pipe is fixedly connected to the traveling assembly; the first dust suction pipe and the second dust suction pipe are respectively connected to the dust suction device through air ducts.
[0008] According to the above scheme, the walking assembly includes an X-axis gantry, a Y-axis drive and a Z-axis drive. The X-axis gantry is connected to the rails on both sides of the frame so that it can move along the X-axis above the processing platform; the Y-axis drive is connected to the rails on the X-axis gantry so that it can move along the Y-axis above the processing platform; the Z-axis drive is connected to the rails on the Y-axis drive so that it can move along the Z-axis above the processing platform; the main motor is installed on the Z-axis drive.
[0009] According to the above scheme, the walking assembly is provided with a branch assembly, which includes a first pipe joint and a second pipe joint. The first pipe joint is provided above the Z-axis driver and fixedly connected to the Y-axis driver, and the first pipe joint is connected to the first dust suction pipe through an air duct; the second pipe joint is provided above the second dust suction pipe and fixedly connected to the X-axis gantry, and the second pipe joint is connected to the second dust suction pipe through an air duct.
[0010] According to the above solution, the branch pipe assembly also includes a third pipe joint, which is fixedly arranged on the Y-axis driver and is respectively connected to the first pipe joint, the second pipe joint and the dust suction device through pipelines.
[0011] According to the above solution, both ends of the second dust suction pipe are provided with air outlets, and the two air outlets are respectively connected to the second pipe joints through air ducts.
[0012] According to the above solution, both the first pipe joint and the second pipe joint are provided with a damper controller.
[0013] According to the above scheme, a positioning device is provided on the walking assembly, and the positioning device includes two support frames, which are arranged on the Z-axis gantry at intervals from each other; a cylinder is provided on the support frame, and the output end of the cylinder faces the processing platform, and a suction cup is provided on the output end of the cylinder.
[0014] According to the above solution, a guide platform is provided on the frame, the guide platform is provided at the rear end of the processing platform, a plurality of sticks are provided on the guide platform, and the rolling plane formed by the plurality of sticks is provided flush with the processing platform.
[0015] The beneficial effects of the utility model are as follows: the utility model has a reasonable structure, the first dust suction pipe is concentrically arranged with the output head, and the wood chips and dust generated during the processing are immediately removed; the second dust suction pipe is installed on the walking assembly and close to the processing platform, which can clean the dust remaining on the workpiece after the output head is processed, thereby improving the processing environment and quality and reducing labor intensity. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the overall rear side structural view of the present invention;
[0017] Figure 2 It is a schematic diagram of the overall front side structural view of the present invention.
[0018] In the picture:
[0019] 1. Frame; 2. First suction pipe; 3. Second suction pipe; 4. X-axis gantry; 11. Processing platform; 12. Main motor; 13. Output head; 14. Guide platform; 15. Stick; 21. First pipe joint; 22. Second pipe joint; 23. Third pipe joint; 31. Air outlet; 41. Y-axis drive; 42. Z-axis drive; 43. Support frame; 44. Cylinder; 45. Suction cup. DETAILED DESCRIPTION
[0020] The technical solution of the present utility model is described below with reference to the accompanying drawings and embodiments.
[0021] like Figure 1-2 As shown, the environmentally friendly woodworking engraving device described in the present invention includes a frame 1 and a dust collection assembly. The frame 1 is provided with a processing platform 11 and a traveling assembly. The traveling assembly is provided with a main motor 12, and the lower end of the main motor 12 is provided with an output head 13; the dust collection assembly includes a first dust collection pipe 2 and a second dust collection pipe 3. The first dust collection pipe 2 is mounted on the output head 13 so that the air inlet of the first dust collection pipe 2 faces the processing platform 11; the second dust collection pipe 3 is arranged at the rear side of the output head 13 so that the air inlet of the second dust collection pipe 3 faces the processing platform 11, and the second dust collection pipe 3 is fixedly connected to the traveling assembly; the first dust collection pipe 2 and the second dust collection pipe 3 are respectively connected to the dust collection device (built into the frame, not shown in the figure) through air ducts. The output head 13 is used to clamp the tool, and the main motor 12 drives the output shaft 13 and the tool to rotate. The traveling assembly can run along the XYZ three-axis system on the processing platform 11, thereby engraving the plate on the processing platform 11. The first dust suction pipe 2 is concentrically arranged with the output head 13. The first dust suction pipe 2 is connected to the dust suction device to immediately remove the wood chips and dust generated by the engraving part, keeping the processing platform 11 and the workpiece surface clean. Furthermore, the second dust suction pipe 3 moves along the processing platform 11 with the walking platform, thereby effectively improving the cleanliness of the environment and the processing quality.
[0022] The walking assembly includes an X-axis gantry 4, a Y-axis driver 41, and a Z-axis driver 42. The X-axis gantry 4 is connected to the rails on both sides of the frame 1 so that it can move along the X-axis above the processing platform 11; the Y-axis driver 41 is connected to the rails on the X-axis gantry 4 so that it can move along the Y-axis above the processing platform 11; the Z-axis driver 42 is connected to the rails on the Y-axis driver 41 so that it can move along the Z-axis above the processing platform 11; and the main motor 12 is mounted on the Z-axis driver 42. The walking assembly can operate along the XYZ three-axis system on the processing platform 11. The X-axis gantry 4 is used to mount the above-mentioned Y-axis driver 41, Z-axis driver 42, and main motor 12. The X-axis gantry 4 can translate along the X-axis on the processing platform 11, the Y-axis driver 41 can translate along the Y-axis on the X-axis gantry 4, and the Z-axis driver 42 can drive the main motor 12 and the output head 13 to move up and down along the Z-axis.
[0023] The walking assembly is provided with a branch assembly, which includes a first pipe joint 21 and a second pipe joint 22. The first pipe joint 21 is provided above the Z-axis driver 42 and fixedly connected to the Y-axis driver 41. The first pipe joint 21 is connected to the first dust suction pipe 2 through an air duct; the second pipe joint 22 is provided above the second dust suction pipe 3 and fixedly connected to the X-axis gantry 4. The second pipe joint 22 is connected to the second dust suction pipe 3 through an air duct.
[0024] The first pipe joint 21 is fixedly mounted on the Y-axis driver 41, so that the air duct length between the first pipe joint 21 and the first dust suction pipe 2 only needs to meet the maximum travel of the Z-axis driver. The second pipe joint 22 is fixed to the X-axis gantry 4. The second pipe joint 22 and the second dust suction pipe 3 move synchronously with the X-axis gantry 4 to control the air duct length.
[0025] Furthermore, the branch pipe assembly also includes a third pipe joint 23, which is fixedly mounted on the Y-axis driver 41 and connected to the first pipe joint 21, the second pipe joint 22, and the dust collection device via pipes. The third pipe joint 23 is connected to the first pipe joint 21 and the second pipe joint 22 via an air duct, and is also connected to the dust collection device via the air duct.
[0026] The second dust suction pipe 3 is arranged along the Y axis, and the second dust suction pipe 3 is relatively long. Air outlets 31 are provided at both ends of the second dust suction pipe 3. The two air outlets 31 are respectively connected to the second pipe joints 22 through air ducts, thereby ensuring the dust removal effect of the second dust suction pipe 3.
[0027] Furthermore, damper controllers are provided on both the first and second pipe joints 21, 22, respectively, which can open and close them. During engraving, the first pipe joint 21 is opened first to remove wood chips and dust generated by the engraving process. Of course, the second pipe joint 22 can also be opened simultaneously to remove dust from the plate. After processing is completed, the first pipe joint 21 is closed, and the second dust collection pipe 3 moves along the processing platform 11 with the X-axis gantry 4 to remove dust from the workpiece or processing platform 11, thereby effectively improving environmental cleanliness and processing quality.
[0028] The travel assembly is equipped with a positioning device comprising two support frames 43 spaced apart from each other on the Z-axis gantry. A cylinder 44 is mounted on each support frame 43, with its output facing the processing platform 11 and a suction cup 45 attached to its output end. When a workpiece is placed on the processing platform 11, the cylinder 44 drives the suction cup 45 to absorb the workpiece, allowing the workpiece to be moved on the processing platform 11 and adjusted for processing.
[0029] The frame 1 is provided with a guide platform 14, which is located at the rear end of the processing platform 11. A plurality of rollers 15 are provided on the guide platform 14, and a rolling surface formed by the rollers 15 is flush with the processing platform 11. The guide platform 14 is used to connect to the feeding conveyor belt, and the plate is moved to the processing platform 11 via the rolling surface formed by the rollers 15.
[0030] The above description is only a preferred embodiment of the present invention. Therefore, any equivalent changes or modifications made according to the structure, features and principles described in the scope of the present invention patent application are included in the scope of the present invention patent application.
Claims
1. An environmentally friendly woodworking engraving device, comprising a frame (1) and a dust collection assembly, wherein the frame (1) is provided with a processing platform (11) and a traveling assembly, the traveling assembly is provided with a main motor (12), and an output head (13) is provided at the lower end of the main motor (12); characterized in that: The dust suction assembly comprises a first dust suction pipe (2) and a second dust suction pipe (3); the first dust suction pipe (2) is mounted on the output head (13), so that the air inlet of the first dust suction pipe (2) faces the processing platform (11); the second dust suction pipe (3) is arranged on the rear side of the output head (13), so that the air inlet of the second dust suction pipe (3) faces the processing platform (11); the second dust suction pipe (3) is fixedly connected to the walking assembly; the first dust suction pipe (2) and the second dust suction pipe (3) are respectively connected to the dust suction device through air ducts.
2. The environmentally friendly woodworking engraving device according to claim 1, characterized in that: The walking assembly comprises an X-axis gantry (4), a Y-axis driver (41) and a Z-axis driver (42); the X-axis gantry (4) is connected to rails on both sides of the frame (1) so as to be movable above the processing platform (11) along the X-axis; the Y-axis driver (41) is connected to the rails on the X-axis gantry (4) so as to be movable above the processing platform (11) along the Y-axis; the Z-axis driver (42) is connected to the rails on the Y-axis driver (41) so as to be movable above the processing platform (11) along the Z-axis; and the main motor (12) is mounted on the Z-axis driver (42).
3. The environmentally friendly woodworking engraving device according to claim 1, characterized in that: The walking assembly is provided with a branch pipe assembly, which includes a first pipe joint (21) and a second pipe joint (22). The first pipe joint (21) is provided above the Z-axis driver (42) and fixedly connected to the Y-axis driver (41), and the first pipe joint (21) is connected to the first dust suction pipe (2) through an air duct; the second pipe joint (22) is provided above the second dust suction pipe (3) and fixedly connected to the X-axis gantry (4), and the second pipe joint (22) is connected to the second dust suction pipe (3) through an air duct.
4. The environmentally friendly woodworking engraving device according to claim 3, characterized in that: The branch pipe assembly further comprises a third pipe joint (23), which is fixedly arranged on the Y-axis driver (41), and the third pipe joint (23) is respectively connected to the first pipe joint (21), the second pipe joint (22) and the dust collecting device through pipelines.
5. The environmentally friendly woodworking engraving device according to claim 3, characterized in that: Both ends of the second dust suction pipe (3) are provided with air outlets (31), and the two air outlets (31) are respectively connected to the second pipe joints (22) through air ducts.
6. The environmentally friendly woodworking engraving device according to claim 3, characterized in that: Both the first pipe joint (21) and the second pipe joint (22) are provided with a damper controller.
7. The environmentally friendly woodworking engraving device according to claim 1, characterized in that: The walking assembly is provided with a positioning device, which includes two support frames (43) that are spaced apart from each other and arranged on the Z-axis gantry. The support frames (43) are provided with a cylinder (44), the output end of the cylinder (44) faces the processing platform (11), and a suction cup (45) is provided on the output end of the cylinder (44).
8. The environmentally friendly woodworking engraving device according to claim 1, characterized in that: The frame (1) is provided with a guide platform (14), which is arranged at the rear end of the processing platform (11). The guide platform (14) is provided with a plurality of sticks (15), and a rolling plane formed by the plurality of sticks (15) is arranged flush with the processing platform (11).