Integrated automatic handle milling machine
By integrating drilling and shaping into an integrated automatic milling machine, the problems of low processing efficiency and difficulty in guaranteeing precision in existing wood handle cutting tools are solved, thus achieving efficient and low-cost wood handle processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANGJIANG YANGDONG DISTRICT HANZHUO INTELLIGENT EQUIP CO LTD
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-21
AI Technical Summary
The current processing of wooden handle tools requires multiple steps, relies on manual intervention and transfer between equipment, resulting in low processing efficiency, difficulty in guaranteeing accuracy, and high cost.
An integrated automatic milling machine was designed, which integrates drilling, positioning and shape processing functions into one. Through cylinder push and automatic positioning, it reduces manual intervention and the number of transfers between equipment.
It significantly improves the processing efficiency and precision of wooden handle tools, reduces labor costs, and ensures product quality and consistency.
Smart Images

Figure CN224144888U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of wood handle processing technology, and in particular relates to an integrated automatic gong handle machine. Background Technology
[0002] The gonging machine, often referred to as a "gonging machine" in the woodworking industry, currently requires multiple processes to process wood handles. It relies on manual intervention and transfer between equipment, resulting in low processing efficiency, difficulty in guaranteeing accuracy, and high labor costs.
[0003] In the existing technology, the wooden handle block is first manually placed into the fixture of a CNC milling machine to process the three sides of the wooden handle, and then placed into another machine to process the next side. After processing, it is placed into a multi-head drilling machine for drilling. This segmented processing mode is not only cumbersome, but also prone to introducing errors during the transfer between different machines, affecting the quality and consistency of the final product. Utility Model Content
[0004] This utility model addresses the problem in the existing technology where wooden handle blocks are first manually placed into a CNC milling machine fixture to process three sides of the handle, then placed on another machine to process the next side, and finally placed on a multi-head drilling machine for drilling. This segmented processing mode is not only cumbersome, but also prone to introducing errors during the transfer between different machines, affecting the quality and consistency of the final product. The following technical solution is proposed:
[0005] An integrated automatic gong handle machine, comprising:
[0006] The cabinet is used to provide a workpiece processing area;
[0007] The display is used to adjust parameters and show processing information;
[0008] The drilling mechanism includes a multi-hole rotary bed, an electric guide rail one, a pusher assembly, an electric guide rail two, and a feeding assembly. The multi-hole rotary bed is connected to the cabinet, the electric guide rail one is connected to the cabinet, the pusher assembly is connected to the electric guide rail one, the electric guide rail two is connected to the cabinet, and the feeding assembly is connected to the electric guide rail two. The workpiece on the pusher assembly is drilled and conveyed under the action of the multi-hole rotary bed and the feeding assembly.
[0009] As a preferred embodiment of the above technical solution, the feeding assembly includes:
[0010] The stacking plate, connected to the electric guide rail one, is used to support the workpiece above the stacking plate;
[0011] A driving component 1 and a push plate 1, wherein the driving component 1 is used to drive the push plate 1 to reciprocate;
[0012] A stacking rack and a wooden handle, the wooden handle being placed inside the stacking rack.
[0013] As a preferred embodiment of the above technical solution, the feeding assembly includes:
[0014] The feeding plate is connected to the electric guide rail 2 and is used to support the equipment above the feeding plate;
[0015] A second driving component and a second pusher plate, wherein the second driving component is used to drive the second pusher plate to reciprocate;
[0016] An adjusting block, connected to the feed plate, is used for guiding and clamping the wooden handle.
[0017] As a preferred embodiment of the above technical solution, the automatic auger further includes a clamping assembly, the clamping assembly comprising:
[0018] The third driving component consists of a guide column and a horizontal plate. The third driving component is used to drive the horizontal plate to perform reciprocating motion in the vertical direction.
[0019] The upper pressure plate, connected to the horizontal plate, is used to press and fix the wooden handle below.
[0020] The fourth driving component and the pusher plate are connected to the third driving component and are used to drive the pusher plate to move.
[0021] As a preferred embodiment of the above technical solution, the automatic gong handle machine further includes a positioning component, the positioning component comprising:
[0022] The fifth driving component and the bottom mold are connected to the cabinet body and are used to drive the bottom mold to reciprocate vertically.
[0023] A punch, connected to the bottom mold, is used to position the already drilled wooden handle.
[0024] As a preferred embodiment of the above technical solution, a waste outlet is provided inside the cabinet, a waste pipe is connected to the waste outlet, a discharge pipe is connected inside the cabinet, and the discharge pipe is located at one end of the adjusting block.
[0025] The beneficial effects of this utility model are as follows:
[0026] This invention utilizes a drilling mechanism to place the wooden handle block to be processed in a stacking rack. Under the action of the pushing component, the wooden handle block is pushed directly below the multi-hole rotary table. After the multi-hole rotary table performs the drilling operation, the wooden handle block is sent to the next worktable for subsequent shaping operations. This equipment integrates the processes of feeding, positioning, drilling, and shaping of the wooden handle block into one unit. Through cylinder pushing and automatic positioning design, it significantly reduces manual intervention and the number of transfers between equipment, thereby improving processing efficiency and accuracy. Attached Figure Description
[0027] Figure 1 The diagram shown is a schematic of the overall structure of an integrated automatic gong handle machine;
[0028] Figure 2 The diagram shown is a structural schematic of the interior of an integrated automatic gong handle cabinet.
[0029] Figure 3 The diagram shown is a structural schematic of the feeding assembly;
[0030] Figure 4 The diagram shown is a partial structural diagram of the cabinet's interior.
[0031] Figure 5 The diagram shows the structure of the clamping assembly and the positioning assembly.
[0032] In the diagram: 1. Cabinet; 2. Monitor; 3. Multi-hole rotary bed; 4. Electric guide rail one; 41. Stacking plate; 42. Drive component one; 43. Push plate one; 44. Stacking rack; 45. Wooden handle; 5. Electric guide rail two; 51. Feeding plate; 52. Drive component two; 53. Push plate two; 54. Adjusting block; 6. Drive component three; 61. Guide column; 62. Horizontal plate; 63. Upper pressure plate; 64. Drive component four; 65. Push handle plate; 7. Drive component five; 71. Bottom mold; 72. Punch; 8. Scrap outlet; 81. Scrap pipe; 9. Discharge pipe. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0034] Example 1
[0035] This utility model provides an integrated automatic gong handle machine, such as Figures 1 to 5 As shown, the integrated automatic milling machine includes a cabinet 1, a display 2, and a drilling mechanism. The cabinet 1 provides a workpiece processing area, and the display 2 is used to adjust parameters and display processing information. The drilling mechanism includes a multi-hole rotary table 3, an electric guide rail 4, a pusher assembly, an electric guide rail 5, and a feeding assembly. The multi-hole rotary table 3 is fixedly mounted on the table surface of the cabinet 1. Both the electric guide rail 4 and the electric guide rail 5 consist of slide rails and sliders. Both the electric guide rail 4 and the electric guide rail 5 are fixedly mounted on the cabinet 1 with screws. In this embodiment, specifically... Figure 1 The first direction is the viewing angle. The guide rail part of electric guide rail 4 is fixedly installed on cabinet 1 parallel to the first direction, and the guide rail part of electric guide rail 5 is fixedly installed on cabinet 1 perpendicular to the first direction.
[0036] The feeding assembly includes a stacking plate 41, a drive component 42, a pusher plate 43, a stacking frame 44, and a wooden handle 45. The stacking plate 41 is fixedly connected to the slider of the electric guide rail 4 by screws and is used to support the workpiece above the stacking plate 41. The drive component 42 is fixedly installed on the top of the stacking plate 41. The drive component 42 can be specifically configured as a cylinder. Its output end is fixedly connected to the pusher plate 43, and the bottom end of the pusher plate 43 slides against the surface of the stacking plate 41, so that the pusher plate 43 can reciprocate along the first direction under the action of the drive component 42. The stacking frame 44 is fixedly installed above the electric guide rail 4, and the wooden handle 45 is stacked inside the stacking frame 44.
[0037] The feeding assembly includes a feeding plate 51, a second driving component 52, a second push plate 53, and an adjusting block 54. The feeding plate 51 is fixedly mounted to the top of the slider of the second electric guide rail 5 by screws, and is used to support the equipment and wooden handle 45 above the feeding plate 51. The second driving component 52 is fixedly mounted on the feeding plate 51. The second driving component 52 can be configured as a cylinder, and its output end is fixedly connected to an electromagnetic suction block. By energizing the electromagnetic suction block and attracting it to the second push plate 53, the second driving component 52 can drive the second push plate 53 to move perpendicular to the first direction when it is working. The adjusting block 54 adjusts... There are two adjustment blocks 54 in total. The adjustment block 54 on the side closer to the second drive component 52 is fixedly connected to the feeding plate 51, and the adjustment block 54 on the side farther away from the second drive component 52 is slidably mounted on the feeding plate 51. The adjustment block 54 has a slot parallel to the first direction inside. The adjustment block 54 farther away from the second drive component 52 can be slidably mounted on the feeding plate 51 along the first direction. The two adjustment blocks 54 work together to guide and clamp the wooden handle 45. The workpiece on the pushing assembly is punched and conveyed by the multi-hole rotary bed 3 and the feeding assembly.
[0038] By using the display 2, the multi-hole rotating bed 3, and the punching mechanism installed on the cabinet 1, the wooden handle 45 can be pushed directly below the multi-hole rotating bed 3 under the action of the pushing component. After the multi-hole rotating bed 3 performs the punching operation, the wooden handle 45 is conveyed by the feeding component to complete the subsequent processing operation, thereby improving the processing efficiency of the wooden handle 45.
[0039] In use, the wooden handle 45 is placed in the stacking rack 44. Driven by the first drive unit 42, the wooden handle 45 is pushed to the bottom of the multi-hole rotary table 3 for drilling. After drilling, driven by the second drive unit 52, the push plate 53 pushes the wooden handle 45 into the next worktable, thus quickly proceeding to the next processing operation.
[0040] In order to allow the wooden handle 45 to undergo shaping operations before moving to the next worktable, such as... Figure 4 and Figure 5As shown, the automatic cranking machine also includes a clamping assembly, which includes a third drive component 6, a guide post 61, a horizontal plate 62, an upper pressure plate 63, a fourth drive component 64, and a pusher plate 65. Both the third drive component 6 and the fourth drive component 64 are cylinders. The third drive component 6 is fixedly installed on the inner wall of the cabinet 1. The fourth drive component 64 is connected to the third drive component 6 via a bracket. There are two sets of third drive components 6, and the output ends of both sets are fixedly connected to guide posts 61. The top ends of the two guide posts 61 are fixedly... The same horizontal plate 62 is fixedly connected, and the bottom end of the horizontal plate 62 is connected to the upper pressure plate 63. The output end of the drive component 64 is fixedly connected to the push handle plate 65, which is L-shaped. The automatic gong machine is also equipped with a positioning component, which includes a drive component 7, a bottom mold 71, and a punch 72. The drive component 7 is fixedly installed on the inner wall of the cabinet 1. The drive component 7 is also a cylinder, and its output end is fixedly connected to the bottom mold 71. There are three punches 72 in total, and they are all connected to the bottom mold 71.
[0041] Move to the wooden handle 45 on the next workbench, as... Figure 4 As shown, the three punches 72 are aligned with the three holes on the wooden handle 45 for positioning by the action of the punches 72. The driving component 3 6 moves the horizontal plate 62 down and clamps the top of the wooden handle 45 by the upper pressure plate 63. Under the action of the driving component 4 64, the push plate 65 presses the sliding adjustment block 54, thereby pressing and fixing the side of the wooden handle 45 close to the driving component 4 64. After the wooden handle 45 is positioned, the outer shape processing operation of the wooden handle 45 is then carried out.
[0042] In this example, such as Figures 1 to 4 As shown, a waste inlet 8 is provided inside the cabinet 1, and a waste pipe 81 is connected to the waste inlet 8. The waste inlet 8 is located directly below the multi-hole rotary bed 3, so that the waste wood handle 45 after being drilled by the multi-hole rotary bed 3 falls into the waste inlet 8, and then is discharged along the waste pipe 81. A feed pipe 9 is connected inside the cabinet 1, and the feed pipe 9 is located at one end of the adjusting block 54. After the wood handle 45 on the next worktable is processed, the operation of the aforementioned drive component 5 7 and drive component 4 64 is reversed so that the wood handle 45 is no longer clamped and fixed. Then, under the action of the push plate 2 53, the processed wood handle 45 is pushed into the feed pipe 9.
[0043] Working principle: During use, after adjusting the various parameters of the equipment via the display 2, the wooden handle 45 to be processed is placed in the stacking rack 44. The drive unit 1 42 is activated, causing the push plate 1 43 to push the bottom wooden handle 45 to the bottom of the multi-hole rotary bed 3 for drilling. After drilling, the wooden handle 45 is pushed onto the electric guide rail 2 5 and enters the next worktable. Then, the drive unit 5 7 drives the bottom mold 71 to move upward, causing the punch 72 to penetrate the three holes of the wooden handle 45 for positioning. Then, by activating the drive unit 3 6 and the drive unit 4 64, the top and sides of the wooden handle 45 are clamped and fixed. Next, the equipment performs shape processing on the positioned wooden handle 45. After processing, the operation of the drive unit 3 6, the drive unit 4 64 and the drive unit 5 7 is reversed to release the fixed state of the wooden handle 45. Then, the push plate 2 53 continues to push the processed wooden handle 45, causing it to be discharged along the feed pipe 9, completing the drilling and shape processing of the wooden handle 45.
[0044] The above embodiments are only used to illustrate the technical solution of this utility model, and are not intended to limit it.
Claims
1. An integrated automatic handle marking machine, characterized in that, include: Cabinet (1), used to provide a workpiece processing area; Display (2) is used to adjust parameters and display processing information; The drilling mechanism includes a multi-hole rotary bed (3), an electric guide rail one (4), a pusher assembly, an electric guide rail two (5), and a feeding assembly. The multi-hole rotary bed (3) is connected to the cabinet (1), the electric guide rail one (4) is connected to the cabinet (1), the pusher assembly is connected to the electric guide rail one (4), the electric guide rail two (5) is connected to the cabinet (1), and the feeding assembly is connected to the electric guide rail two (5). The workpiece on the pusher assembly is drilled and conveyed under the action of the multi-hole rotary bed (3) and the feeding assembly.
2. The integrated automatic handle molder of claim 1, wherein The feeding assembly includes: Stacking plate (41), connected to the electric guide rail (4), is used to support the workpiece above the stacking plate (41); A drive component (42) and a push plate (43) are provided, wherein the drive component (42) is used to drive the push plate (43) to reciprocate. A stacking rack (44) and a wooden handle (45), the wooden handle (45) being placed inside the stacking rack (44).
3. The integrated automatic handle molder of claim 1, wherein, The feeding assembly includes: The feeding plate (51) is connected to the electric guide rail (5) and is used to support the equipment above the feeding plate (51); Drive component two (52) and push plate two (53), wherein the drive component two (52) is used to drive the push plate two (53) to reciprocate; An adjusting block (54), connected to the feeding plate (51), is used for guiding and clamping the wooden handle (45).
4. The integrated automatic gong machine according to claim 1, characterized in that, The automatic gong machine also includes a clamping assembly, which includes: The driving component three (6), the guide post (61), and the horizontal plate (62) are used to drive the horizontal plate (62) to perform reciprocating motion in the vertical direction. The upper pressure plate (63) is connected to the horizontal plate (62) and is used to press and fix the wooden handle (45) below. A drive component four (64) and a pusher plate (65) are provided. The drive component four (64) is connected to the drive component three (6) and is used to drive the pusher plate (65) to move.
5. The one-piece automatic handle molder of claim 1 wherein, The automatic gong handle machine also has a positioning component inside, the positioning component including: The driving component (7) and the bottom mold (71) are connected to the cabinet (1) and are used to drive the bottom mold (71) to move vertically back and forth. A punch (72), connected to the bottom mold (71), is used to position the already punched wooden handle (45).
6. The one-piece automatic handle molder of claim 3 wherein, The cabinet (1) has a waste outlet (8) inside, and a waste pipe (81) is connected to the waste outlet (8). A discharge pipe (9) is connected inside the cabinet (1), and the discharge pipe (9) is located at one end of the adjusting block (54).