Novel hole coiling machine
By using an upper clamping mechanism to clamp the sheet metal in the perforation machine, the problems of low processing efficiency and cumbersome positioning caused by the limitations of the suction cup structure are solved, and efficient sheet metal processing is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN PROVINCE HUALONG MACHINERY
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-21
AI Technical Summary
Existing disc drilling machines suffer from low processing efficiency and cumbersome positioning due to the limitations of the suction cup structure, which requires avoiding the suction cup position during processing.
The top-mounted mechanism clamps the sheet metal to the bottom of the two upper crossbeams, replacing the suction cup structure to adsorb the sheet metal, thus achieving processing without adjusting the position of the sheet metal.
It improved processing efficiency, simplified the positioning process, and increased work efficiency.
Smart Images

Figure CN224144190U_ABST
Abstract
Description
Technical Field
[0001] This application relates to stone slab processing equipment, and in particular to a novel perforating machine. Background Technology
[0002] The descriptions in this section provide background information related to this disclosure only and do not constitute prior art. Related art perforation machines use a suction cup structure to adsorb and fix the sheet metal. Since perforation requires milling and then grinding, the suction cup position must be avoided during perforation to prevent damage. Therefore, the perforation position needs to be adjusted during processing to prevent the perforation from coinciding with the suction cup, resulting in low work efficiency and cumbersome positioning. Summary of the Invention
[0003] In view of this, this application provides a novel hole-drilling machine that can improve processing efficiency.
[0004] To achieve the above objectives, this application employs the following technical solution:
[0005] A novel perforating machine is characterized by comprising a frame, a perforating mechanism, and a movable platform. The frame includes a main support, a lower platform fixedly mounted on the main support, and two upper crossbeams fixedly mounted on the main support and located above the lower platform. An movable space is provided between the upper crossbeams and the lower platform. The movable platform is used to load sheet metal, and can move the sheet metal into or out of the movable space between the upper crossbeams and the lower platform. The lower platform is provided with an upper lifting mechanism for lifting the movable platform upwards. When the upper lifting mechanism lifts the movable platform, the sheet metal is clamped between the two upper crossbeams and the movable platform. The perforating mechanism is mounted on the frame for processing the sheet metal.
[0006] The above-mentioned novel perforating machine of this application uses an upper lifting mechanism to lift the movable platform and clamp the plate at the bottom of two upper crossbeams to replace the suction cup structure for adsorbing the plate. In this way, there is no need to adjust the position of the plate when perforating, which makes the processing convenient and improves the processing efficiency.
[0007] In some embodiments, the upper crossbeam extends along the Y-axis, and the two upper crossbeams are spaced apart along the X-axis, with the area between the two upper crossbeams forming a processing area where the disc hole mechanism can perform processing.
[0008] In some embodiments, the number of upper lifting mechanisms is four, and they are arranged in pairs below the two upper crossbeams, with the two upper lifting mechanisms below the upper crossbeams spaced apart along the Y-axis.
[0009] In some embodiments, the upper lifting mechanism is a pneumatic cylinder or a hydraulic cylinder.
[0010] In some embodiments, one end of the upper crossbeam along the Y-axis is fixedly mounted on the main support to form a cantilever structure. An opening for the movable platform to enter and exit is provided on one side of the cantilever of the upper crossbeam. The main support is also equipped with at least one positioning block located between the upper crossbeam and the lower platform. This positioning block is used to position the movable platform and the material along the Y-axis. The positioning block can locate the position of the movable platform and also position the material along the Y-axis, ensuring the accuracy of the material's placement.
[0011] In some embodiments, an elastic protective strip is also fixedly installed at the bottom of the upper crossbeam. This elastic protective strip is used to protect the plate and prevent the upper crossbeam from crushing the plate.
[0012] In some embodiments, at least one suction cup mechanism for adsorbing and fixing the sheet material is also fixedly installed on the lower platform, and the suction cup mechanism is located below the movable platform. After the movable platform is retracted, small sheet materials can still be fixed by the suction cup mechanism, and the edges of the small sheet materials can be ground by the perforation mechanism. Therefore, this novel perforation machine can be used as a perforation device or as an edge grinding device.
[0013] In some embodiments, the active platform includes a main platform and two side supports fixedly mounted on both sides of the Y-axis of the main platform. The bottom of the side supports is equipped with rollers, and the main platform is also provided with handles.
[0014] In some embodiments, the main support is also provided with a tool magazine for holding multiple machining heads.
[0015] As can be seen from the above technical solution, this application has at least the following advantages and positive effects:
[0016] This application discloses a novel perforation machine that uses an upper lifting mechanism to lift a movable platform and clamp the sheet metal at the bottom of two upper crossbeams, replacing the suction cup structure for adsorbing the sheet metal. This eliminates the need to adjust the position of the sheet metal during perforation, making processing more convenient and improving processing efficiency. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of an embodiment of this application;
[0018] Figure 2 This is a right-side view of an embodiment of this application after removing the perforation mechanism;
[0019] Figure 3 This is a schematic diagram of the structure after the activity platform is moved outward in the embodiment of this application.
[0020] Labeling Explanation: 1. Frame; 11. Main Support; 12. Lower Platform; 13. Upper Crossbeam; 14. Workspace; 2. Disc Mechanism; 3. Movable Platform; 31. Main Platform; 32. Side Support; 33. Roller; 34. Handle; 4. Top Mechanism; 5. Machining Area; 6. Positioning Stop; 7. Elastic Protective Strip; 8. Suction Cup Mechanism; 9. Tool Magazine. Detailed Implementation
[0021] To make the objectives, technical solutions, and advantages of this application clearer, the application will be described in further detail below with reference to the accompanying drawings. The terminology used in the embodiments section of this application is only for explaining specific embodiments and is not intended to limit the application.
[0022] See Figures 1 to 3 This application provides a novel perforation machine, including a frame 1, a perforation mechanism 2, and a movable platform 3. The frame 1 includes a main support 11, a lower platform 12 fixedly mounted on the main support 11, and two upper crossbeams 13 fixedly mounted on the main support 11 and located above the lower platform 12. A movable space 14 is provided between the upper crossbeams 13 and the lower platform 12. The movable platform 3 is used to load sheet metal, and the movable platform 3 can move the sheet metal into or out of the movable space 14 between the upper crossbeams 13 and the lower platform 12. The lower platform 12 is provided with an upper lifting mechanism 4 for lifting the movable platform 3 upwards. When the upper lifting mechanism 4 lifts the movable platform 3 upwards, the sheet metal is clamped between the two upper crossbeams 13 and the movable platform 3. The perforation mechanism 2 is mounted on the frame 1 for processing the sheet metal. The perforation mechanism 2 is a three-axis mechanism.
[0023] This perforating machine uses an upper lifting mechanism 4 to lift the movable platform 3, clamping the sheet metal at the bottom of two upper crossbeams 13. This replaces the suction cup structure for adsorbing the sheet metal, thus eliminating the need to adjust the sheet metal position during perforation, making processing more convenient and improving processing efficiency.
[0024] The upper crossbeam 13 extends along the Y-axis, and the two upper crossbeams 13 are spaced apart along the X-axis. The area between the two upper crossbeams 13 forms the processing area 5 where the disc hole mechanism 2 can be processed.
[0025] There are four upper lifting mechanisms 4, which are arranged in pairs below the two upper crossbeams 13. The two upper lifting mechanisms 4 below the upper crossbeams 13 are spaced apart along the Y-axis.
[0026] The upper lifting mechanism 4 is a pneumatic cylinder or a hydraulic cylinder.
[0027] One end of the upper crossbeam 13 along the Y-axis is fixedly mounted on the main support 11, thus forming a cantilever structure. The movable space 14 has a notch on one side of the cantilever of the upper crossbeam 13 for the movable platform 3 to enter and exit. The main support 11 is also equipped with at least one positioning block 6 located between the upper crossbeam 13 and the lower platform 12. The positioning block 6 is used to position the movable platform 3 and the Y-axis side of the plate. The positioning block 6 can position the movable platform 3 and the Y-axis side of the plate to ensure the accuracy of the plate placement.
[0028] An elastic protective strip 7 is also fixedly installed at the bottom of the upper crossbeam 13. This elastic protective strip 7 is used to protect the board material and prevent the upper crossbeam 13 from crushing the board material.
[0029] At least one suction cup mechanism 8 for adsorbing and fixing the sheet material is also fixedly installed on the lower platform 12, and the suction cup mechanism 8 is located below the movable platform 3. After the movable platform 3 is retracted, small sheet materials can still be fixed by the suction cup mechanism 8, and the edges of the small sheet materials can be ground by the perforation mechanism 2. Therefore, this new perforation machine can be used as a perforation device or as an edge grinding device.
[0030] The activity platform 3 includes a main platform 31 and two side supports 32 fixedly installed on both sides of the Y-axis of the main platform 31. Rollers 33 are installed at the bottom of the side supports 32, and handles 34 are also provided on the main platform 31.
[0031] The main support 11 is also equipped with a tool magazine 9 for placing multiple machining heads.
[0032] The following is a brief description of the working process and usage method of a novel perforation machine according to the above embodiments:
[0033] During the perforation process, the new type of perforating machine places the sheet metal on the movable platform 3. The movable platform 3 moves into the movable space 14 between the upper crossbeam 13 and the lower platform 12. The movable platform 3 stops when it reaches the positioning block 6, and the sheet metal is positioned by the positioning block 6. Then, the four upper lifting mechanisms 4 rise, lifting the movable platform 3 upwards, and the sheet metal is clamped between the upper crossbeam 13 and the movable platform 3. Subsequently, the perforation mechanism 2 is activated to perform perforation processing.
[0034] When the new type of disc hole machine is grinding the edges, the movable platform 3 is moved out of the movable space 14, and the small plate is placed on the suction cup mechanism 8. The suction cup mechanism 8 holds the small plate, and the disc hole mechanism 2 is started to grind the four sides of the small plate. The size of the small plate does not exceed the position of the processing area 5.
[0035] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of this application, and are not intended to limit them; although the embodiments of this application have been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A new type of disc hole making machine characterized in that: The system includes a frame, a perforation mechanism, and a movable platform. The frame includes a main support, a lower platform fixedly mounted on the main support, and two upper crossbeams fixedly mounted on the main support at intervals and located above the lower platform. A movable space is provided between the upper crossbeams and the lower platform. The movable platform is used to load sheet metal, and can move the sheet metal into or out of the movable space between the upper crossbeams and the lower platform. The lower platform is equipped with an upper lifting mechanism for lifting the movable platform upwards. When the upper lifting mechanism lifts the movable platform, the sheet metal is clamped between the two upper crossbeams and the movable platform. The perforation mechanism is mounted on the frame for processing the sheet metal clamped on the movable platform.
2. A new type of disc hole machine according to claim 1, characterized in that: The upper crossbeam extends along the Y-axis, and the two upper crossbeams are spaced apart along the X-axis. The area between the two upper crossbeams forms a processing area where the disc hole mechanism can perform processing.
3. The novel perforating machine according to claim 1, characterized in that: The number of upper lifting mechanisms is four, and they are arranged in pairs below the two upper crossbeams. The two upper lifting mechanisms below each upper crossbeam are spaced apart along the Y-axis.
4. A new type of disc hole machine according to claim 1, characterized in that: The upper lifting mechanism is a pneumatic cylinder or a hydraulic cylinder.
5. A new type of disc hole machine according to claim 2, characterized in that: One end of the upper crossbeam is fixedly installed on the main support to form a cantilever structure. The moving space has a notch on the cantilever side of the upper crossbeam for the moving platform to enter and exit. The main support is also provided with at least one positioning block located between the upper crossbeam and the lower platform. The positioning block is used to position the moving platform and the plate on the Y-axis side.
6. A new type of disc hole machine according to claim 1, characterized in that: An elastic protective strip is also fixedly installed at the bottom of the upper crossbeam.
7. A new type of disc hole machine according to claim 1, characterized in that: At least one suction cup mechanism for adsorbing and fixing the plate is also fixedly installed on the lower platform, and the suction cup mechanism is located below the movable platform.
8. A new type of disc hole machine according to claim 1, characterized in that: The activity platform includes a main platform and two side supports fixedly mounted on both sides of the Y-axis of the main platform. The bottom of the side supports is equipped with rollers, and the main platform is also equipped with handles.
9. A new type of disc hole machine according to claim 1, characterized in that: The main support frame is also equipped with a tool magazine for placing multiple machining heads.