Perforating device with waste collecting structure
By incorporating adjustable protective components into the drilling device, the problem of debris splashing caused by the fixed anti-splash structure of existing drilling devices is solved, enabling flexible adjustment of the baffle and glass frame, and improving operational safety and convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-18
- Publication Date
- 2026-04-07
AI Technical Summary
The anti-splash structure of existing drilling devices is mostly fixed, which is difficult to adjust according to the size, shape or drilling intensity of the material. This causes debris to fly easily when drilling at high speed or in a different position, affecting environmental cleanliness and posing safety hazards.
A drilling device with a waste collection structure was designed. The height and angle of the baffle and glass frame are adjusted through protective components, including components such as a slide, baffle, rotating shaft, baffle and bolts. The baffle can slide on the slide and be limited by the bolts. The baffle can be rotated and the angle of the baffle can be flexibly adjusted to observe the drilling status of the workpiece.
It improves operational safety and flexibility, balances protection and observation, enhances operational convenience and overall work efficiency, avoids debris splashing, and ensures a clean and safe environment.
Smart Images

Figure CN224089197U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to work piece punching technology field especially, punch device with waste collection structure. BACKGROUND
[0002] The punch device is a special equipment for processing holes on the surface of various materials, and is widely used in the forming processing of materials such as paper, metal, plastic and leather. Its working principle mainly relies on mechanical stamping, rotary cutting or laser punching to form holes with regular size and shape or specific requirements on target materials to meet different process requirements such as binding, assembly, ventilation and decoration.
[0003] In the existing punch device, the anti-splashing structure is fixed height and closed form, which cannot be flexibly adjusted according to the degree of splashing debris in the actual punching process. When the splashing amount is low, the high shielding is still maintained, which not only limits the observation line of sight and increases the operation inconvenience, but also may affect the punching accuracy, and reduces the flexibility of the device protection structure.
[0004] Therefore, aiming at the above-mentioned problem that the anti-splashing structure of the existing punch device is fixed, it is difficult to adjust according to the size, shape or punching strength of the material, which leads to the splashing of debris when punching at high speed or variable position, which not only affects the environmental tidiness, but also has safety hidden trouble. A new punch device with waste collection structure is urgently needed. UTILITY MODEL CONTENTS
[0005] In order to overcome the problem that the anti-splashing structure of the existing punch device is fixed, it is difficult to adjust according to the size, shape or punching strength of the material, which leads to the splashing of debris when punching at high speed or variable position, which not only affects the environmental tidiness, but also has safety hidden trouble.
[0006] The utility model discloses a punch device with waste collection structure, including the bottom frame, still including the protection assembly, the outer end of bottom frame is provided with protection assembly, and protection assembly includes the sliding slot, the blocking frame, the adaptation slot, the movable slot, the pivot, the baffle, the glass frame, the fixed block, the positioning hole, the bolt and the handle, the inside upside of bottom frame is provided with the chamfer, and the left and right ends of bottom frame are provided with the sliding slot, the sliding connection of sliding slot's inside has the blocking frame, the rear end of blocking frame is provided with the adaptation slot, and the front end of blocking frame is provided with the movable slot, and the inside downside of movable slot is rotatably connected with the pivot through the damping, and the outer end of pivot is connected with the baffle, and the inside of baffle is connected with the glass frame, and the front end of blocking frame is connected with the fixed block, and the front end of bottom frame is provided with four positioning holes at equal intervals, and the front end downside of fixed block is connected with the bolt, and the bolt is movably connected with the positioning hole, and the front end of blocking frame is connected with the handle.
[0007] Preferably, by setting up a protective component, when it is necessary to shield the workpiece from debris, the bolt is rotated, causing it to move on the fixed block and separate from the positioning hole. After separation, the handle is grasped and lifted, causing the baffle to slide on the slide groove, thus adjusting the height as needed. After adjustment, the bolt is rotated to engage with the positioning hole, thereby limiting the position of the baffle and allowing for further height adjustment. The baffle is then moved, causing the glass frame to rotate via a pivot, allowing for adjustment of the glass frame's angle and facilitating observation of the workpiece's drilling status. This design allows for vertical movement according to the actual drilling situation, improving visibility and ease of operation while ensuring safety and protection, thus enhancing overall work efficiency and applicability. This addresses the problem that existing drilling devices often have fixed anti-splash structures, making it difficult to adjust according to material size, shape, or drilling intensity. This results in debris easily flying during high-speed or displacement drilling, affecting environmental cleanliness and posing safety hazards.
[0008] Preferably, a support block is connected to the rear end of the retaining frame, and a limit rod is connected to the top of the support block.
[0009] Preferably, the outer end of the limiting rod is slidably connected to a sliding sleeve, and the upper and lower sides of the left end of the sliding sleeve are threaded with hexagonal screws.
[0010] Preferably, the front end of the sliding sleeve is connected to a drill bit, and the rear side of the inner side of the bottom frame is connected to a worktable, which is convex.
[0011] Preferably, the bottom frame is connected to support platforms at both ends, and the two support platforms have sliding grooves at the ends near the bottom frame.
[0012] Preferably, a sliding block is slidably connected inside the sliding groove, and a collection frame is connected between the two sliding blocks.
[0013] Preferably, the front end of the collection box is connected to a handle, and the bottom of the support platform is connected to an anti-slip pad.
[0014] The beneficial effects of this utility model are:
[0015] 1. By setting up a protective component, when it is necessary to shield against flying debris, first rotate the bolt to move it on the fixed block, thereby disengaging the bolt from the positioning hole. After disengagement, grasp the handle and lift it up, causing the handle to drive the baffle frame to slide along the slide groove. This allows the height of the baffle frame to be adjusted according to actual needs. After adjustment, rotate the bolt again to engage with the positioning hole, limiting and fixing the position of the baffle frame. Then, move the baffle to rotate the glass frame via the rotating shaft, achieving flexible adjustment of the glass frame angle. This facilitates observation of the workpiece drilling process. This structure can be adjusted vertically and rotated at an angle, combining protection and observation, improving the safety and flexibility of operation. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the punching device with a waste collection structure according to this utility model.
[0017] Figure 2 The diagram shown is a three-dimensional side sectional view of the punching device with a waste collection structure according to this utility model.
[0018] Figure 3 The diagram shown is a three-dimensional bottom view of the punching device with a waste collection structure according to this utility model.
[0019] Figure 4 The diagram shown is a three-dimensional rear view of the punching device with a waste collection structure according to this utility model.
[0020] Figure 5 The diagram shown is a three-dimensional orthographic cross-section of the punching device with a waste collection structure according to this utility model.
[0021] Explanation of reference numerals in the attached drawings: 1. Base frame; 21. Slide groove; 22. Baffle frame; 23. Adaptor groove; 24. Movable groove; 25. Rotating shaft; 26. Baffle plate; 27. Glass frame; 28. Fixing block; 29. Positioning hole; 210. Bolt; 211. Handle; 31. Support block; 32. Limiting rod; 33. Sliding sleeve; 34. Hex screw; 35. Drill bit; 36. Workbench; 41. Support platform; 42. Slide groove; 43. Collection box; 44. Sliding block; 45. Handle; 46. Anti-slip pad. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] Please see Figures 1-5This utility model provides an embodiment of a drilling device with a waste collection structure, including a base frame 1 and a protective component. The outer end of the base frame 1 is provided with a protective component, which includes a sliding groove 21, a baffle 22, an adapter groove 23, a movable groove 24, a rotating shaft 25, a baffle 26, a glass frame 27, a fixing block 28, a positioning hole 29, a bolt 210, and a handle 211. The upper inner side of the base frame 1 is chamfered, and the left and right ends of the base frame 1 are provided with sliding grooves 21. The baffle 22 is slidably connected inside the sliding grooves 21. The rear end of the baffle 22 has an adapter groove 23, and the front end of the baffle 22 has a movable groove 24. A rotating shaft 25 is connected to the lower inner side of the movable groove 24 via damping rotation. A baffle 26 is connected to the outer end of the rotating shaft 25. A glass frame 27 is connected inside the baffle 26. A fixing block 28 is connected to the front end of the baffle 22. Four positioning holes 29 are equally spaced at the front end of the bottom frame 1. Bolts 210 are threaded to the lower front end of the fixing block 28, and the bolts 210 are movably connected to the positioning holes 29. A handle 211 is connected to the front end of the baffle 22. The protective components are designed so that when debris needs to be blocked, the bolt 210 is rotated, causing it to move on the fixed block 28 and separate from the positioning hole 29. After separation, the handle 211 is grasped and lifted, causing the baffle frame 22 to slide on the slide groove 21, thus adjusting the height as needed. After adjustment, the bolt 210 is rotated to engage with the positioning hole 29, thereby limiting the position of the baffle frame 22 and allowing for further height adjustment. The baffle 26 is then moved, causing the glass frame 27 to rotate via the rotating shaft 25, allowing for adjustment of the angle of the glass frame 27 and facilitating observation of the workpiece drilling status. This design allows for vertical movement according to the actual drilling situation, improving visibility and ease of operation while ensuring safety protection, and enhancing overall work efficiency and applicability. This addresses the problem that existing drilling devices often have fixed anti-splash structures, making it difficult to adjust according to material size, shape, or drilling intensity, leading to debris easily splashing during high-speed or displacement drilling, which not only affects environmental cleanliness but also poses safety hazards.
[0024] Please see Figures 1-5 In this embodiment, a support block 31 is connected to the rear end of the baffle 22, and a limit rod 32 is connected to the top of the support block 31. The support block 31 is used to support the drilling mechanism. A sliding sleeve 33 is slidably connected to the outer end of the limit rod 32. Hexagonal screws 34 are threaded to the upper and lower sides of the left end of the sliding sleeve 33. The sliding sleeve 33 slides on the limit rod 32 and is fixed in position by the hexagonal screws 34. The position can be adjusted as needed. A drill bit 35 is connected to the front end of the sliding sleeve 33. A worktable 36 is connected to the rear side of the inner side of the bottom frame 1. The worktable 36 is convex and is used to place the workpiece. The drill bit 35 is used to drill holes in the workpiece.
[0025] Please see Figures 2-5In this embodiment, support platforms 41 are connected to the left and right ends of the bottom frame 1. Sliding grooves 42 are provided at the ends of the two support platforms 41 near the bottom frame 1. The support platforms 41 are used to support the bottom frame 1. Sliding blocks 44 are slidably connected inside the sliding grooves 42. A collection frame 43 is connected between the two sliding blocks 44. The collection frame 43 is used to collect waste. A handle 45 is connected to the front end of the collection frame 43. An anti-slip pad 46 is connected to the bottom of the support platform 41. The anti-slip pad 46 increases the friction between the support platform 41 and the ground, thereby improving the stability of the device.
[0026] During operation, the workpiece is first placed on the worktable 36. If necessary, an external clamping tool can be installed on the worktable 36 to fix the workpiece. The position of the sliding sleeve 33 on the limit rod 32 is adjusted and locked with the hexagonal screw 34 to meet the processing requirements of different workpieces. When it is necessary to block waste, first turn the bolt 210 to move it on the fixing block 28 and disengage it from the positioning hole 29. After unlocking, lift the handle 211 to drive the baffle 22 to slide upward along the slide groove 21, thereby adjusting the height of the baffle 22. After adjustment, turn the bolt 210 again to re-align it with the positioning hole 29. After the baffle 22 is fixed in place, the baffle 26 is moved to rotate the glass frame 27 around the pivot 25, and its angle is adjusted flexibly to facilitate observation of the drilling status of the workpiece. The drill bit 35 is pressed down to drill the workpiece. The waste generated during the processing will fall into the collection frame 43 below. Some of the debris that is attracted to the baffle 22 by static electricity will also be scraped off by the chamfered structure on the upper side of the bottom frame 1 when the baffle 22 is reset and enter the collection frame 43 together. Finally, the handle 45 is pulled, and the handle 45 moves the collection frame 43. The collection frame 43 can be pulled out after sliding along the sliding groove 42 for easy collection and cleaning of waste.
[0027] Through the above steps, by setting up protective components, when it is necessary to shield waste, first rotate bolt 210 to move it on fixed block 28 and disengage bolt 210 from positioning hole 29. After separation, pull handle 211 upward to slide baffle 22 along slide groove 21, thereby adjusting the height of baffle 22 according to actual needs. After adjustment, rotate bolt 210 again to re-engage with positioning hole 29 to limit and fix baffle 22. Then, move baffle 26, which drives glass frame 27 to rotate through rotating shaft 25, flexibly adjusting the angle of glass frame 27 to facilitate observation of workpiece drilling. This design can adjust the height up and down according to actual conditions and adjust the angle of glass frame 27, taking into account both protection and visibility, improving the flexibility and safety of the device. This solves the problem that the anti-splash structure of existing drilling devices is mostly fixed, making it difficult to adjust according to material size, shape, or drilling intensity, resulting in easy splashing of debris during high-speed or displacement drilling, which not only affects environmental cleanliness but also poses safety hazards.
Claims
1. A punching device with a waste collection structure, comprising a base frame (1); characterized in that: It also includes protective components. The outer end of the bottom frame (1) is provided with protective components, which include a sliding groove (21), a baffle (22), an adapter groove (23), a movable groove (24), a rotating shaft (25), a baffle (26), a glass frame (27), a fixing block (28), a positioning hole (29), a bolt (210), and a handle (211). The upper inner side of the bottom frame (1) is provided with a chamfer. The left and right ends of the bottom frame (1) are provided with sliding grooves (21). The baffle (22) is slidably connected inside the sliding grooves (21). The rear end of the baffle (22) is provided with an adapter groove (23). (22) has a movable groove (24) at the front end. The lower side of the movable groove (24) is connected to a rotating shaft (25) through damping rotation. The outer end of the rotating shaft (25) is connected to a baffle (26). The inside of the baffle (26) is connected to a glass frame (27). The front end of the baffle (22) is connected to a fixing block (28). The front end of the bottom frame (1) has four positioning holes (29) at equal intervals. The lower side of the front end of the fixing block (28) is threaded with a bolt (210). The bolt (210) is movably connected to the positioning hole (29). The front end of the baffle (22) is connected to a handle (211).
2. The punching device with a waste collection structure according to claim 1, characterized in that: The rear end of the retaining frame (22) is connected to a support block (31), and the top of the support block (31) is connected to a limit rod (32).
3. The drilling device with a waste collection structure according to claim 2, characterized in that: The outer end of the limiting rod (32) is slidably connected to a sliding sleeve (33), and the upper and lower sides of the left end of the sliding sleeve (33) are threaded with hexagonal screws (34).
4. The drilling device with a waste collection structure according to claim 3, characterized in that: The front end of the sliding sleeve (33) is connected to the drill bit (35), and the rear side of the bottom frame (1) is connected to the worktable (36), which is convex.
5. The drilling device with a waste collection structure according to claim 4, characterized in that: The bottom frame (1) is connected to the left and right ends of the support platform (41), and the two support platforms (41) have a sliding groove (42) at the end near the bottom frame (1).
6. The drilling device with a waste collection structure according to claim 5, characterized in that: The sliding groove (42) is internally connected to a sliding block (44), and a collection box (43) is connected between the two sliding blocks (44).
7. The drilling device with a waste collection structure according to claim 6, characterized in that: The front end of the collection box (43) is connected to a handle (45), and the bottom of the support platform (41) is connected to an anti-slip pad (46).