Offline perforating machine for automobile sealing strip production
By designing an offline punching machine with conveying, cutting, and punching components, the problem of existing equipment being unable to adapt to punching different types of sealing strips was solved, enabling precise punching of sealing strips of different specifications and improving production efficiency.
Patent Information
- Application Number
- CN202520037700.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-08
AI Technical Summary
The existing equipment lacks an adjustable automatic punching device, which cannot meet the diverse needs of different models of automotive sealing strips.
An offline drilling machine for automotive sealing strip production was designed, comprising a conveying component, a cutting component, and a drilling component. The sealing strip is fixed by a mold-closing cylinder, and the position of the pneumatic drill is adjusted by a synchronous pulley and a synchronous belt to achieve precise drilling of sealing strips of different specifications.
It enables adaptation to sealing strips of different specifications, improves production efficiency and flexibility, and meets the drilling requirements of different models of sealing strips.
Smart Images

Figure CN223749800U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of equipment, specifically a kind of off-line puncher for automobile sealing strip production. BACKGROUND
[0002] Sealing strip has good sealing, can prevent outside sound, wind and rain, dust, insects, air etc. through the gap of door and window into system interior, interfere with people's normal activities, ensure the effect of heating and air conditioning, so it has been widely applied in vehicle field.
[0003] Because the diversity of the model of the type of car, each model also needs different shape sealing strip for the production of sealing strip, the position of hole on sealing strip is also different, lacking adjustable automatic punching device in existing equipment. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of off-line puncher for automobile sealing strip production to solve the problems in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A kind of off-line puncher for automobile sealing strip production, frame assembly is equipped with conveying assembly, conveying assembly is fixedly connected on frame assembly, conveying assembly side is equipped with cutting assembly, cutting assembly one end is fixedly connected on frame assembly, cutting assembly side is equipped with punching assembly, punching assembly is installed and connected on frame assembly, punching assembly includes mounting bracket, drive motor, drive gear, driven gear, belt, synchronous wheel, synchronous belt, sliding plate, sliding slot, punching installation plate, punching cylinder, air drill, drive motor is arranged on mounting bracket, drive motor is fixedly connected on mounting bracket, the output end of drive motor is connected with drive gear, drive gear side is equipped with driven gear, driven gear is connected with drive gear through belt, driven gear is rotatably connected on mounting bracket, driven gear side is equipped with synchronous wheel, synchronous wheel one end is fixedly connected with driven gear, synchronous wheel is equipped with two groups at the both ends of equipment, synchronous belt is arranged between synchronous wheel, synchronous belt is sleeved on synchronous wheel, synchronous belt two sides are equipped with sliding slot, synchronous belt is equipped with sliding plate, sliding plate is fixedly connected with synchronous belt, the both ends of sliding plate are slidably connected with sliding slot, the lower end of sliding plate is equipped with punching installation plate, punching installation plate is fixedly connected on sliding plate, punching installation plate is equipped with punching cylinder, punching cylinder is fixedly connected on punching installation plate, the output end of punching cylinder is equipped with air drill, air drill is fixedly connected on the output end of punching cylinder.
[0007] As a further scheme of the utility model: the frame assembly includes main body frame, electric control cabinet, control panel, upper frame, ceiling lamp, protective plate, discharge plate, material box, the bottom of main body frame is equipped with multiple electric control cabinets, electric control cabinet is fixedly connected in main body frame, and the control panel is equipped on main body frame, and the control panel is fixedly connected on main body frame, and the upper frame is equipped on main body frame, and the upper frame is fixedly connected on main body frame, and the ceiling lamp is equipped on the upper frame, and the ceiling lamp is fixedly connected on the upper frame, and multiple protective plates are equipped on main body frame, and the protective plate is fixedly connected on main body frame, and the discharge plate is equipped on the side of main body frame, and the discharge plate is fixedly connected on main body frame, and multiple material boxes are equipped on electric control cabinet, and the material box is overlapped on main body frame.
[0008] As a further scheme of the utility model: the transmission assembly includes transmission base, sealing strip, closing mold air cylinder, air cylinder fixing pin and transmission shaft, the transmission base is equipped on main body frame, and the transmission base is fixedly connected on main body frame, and the sealing strip is equipped on transmission base, and the sealing strip is slidingly connected inside transmission base, and the closing mold air cylinder is equipped on the side of transmission base, and the closing mold air cylinder is fixedly connected on transmission base, and the output end of closing mold air cylinder penetrates transmission base, and the air cylinder fixing pin is equipped on the output end of closing mold air cylinder, and the air cylinder fixing pin is fixedly connected on the output end of closing mold air cylinder, and the transmission shaft is equipped on transmission base, and the transmission shaft is rotatably connected on transmission base.
[0009] As a further scheme of the utility model: the cutting assembly includes cutting mounting plate, cutting moving air cylinder, moving slide, moving plate, cutting plate, top plate, cutting air cylinder, slide rod, cutter head and top block, the cutting moving air cylinder is equipped on cutting mounting plate, and one end of cutting moving air cylinder is fixedly connected on cutting mounting plate, and the output end of cutting moving air cylinder penetrates cutting mounting plate and is connected with moving plate, and the downside of moving plate is equipped with moving slide, and moving slide is fixedly connected on cutting mounting plate, and moving plate is slidingly connected on moving slide, and the top plate is equipped above moving plate, and the top plate is fixedly connected with moving plate, and multiple slide rods are equipped between top plate and moving plate, and both ends of slide rod are fixedly connected with top plate and moving plate respectively, and the cutting plate is equipped on slide rod, and cutting plate is slidingly sleeved outside slide rod, and cutter head is equipped on one end position of cutting plate, and cutter head is fixedly connected on cutting plate, and top block is equipped above cutter head, and top block is fixedly connected on top plate, and the cutting air cylinder is equipped on top plate, and cutting air cylinder is fixedly connected on top plate, and the output end of cutting air cylinder penetrates top plate and is connected with cutting plate.
[0010] Compared with the prior art, the utility model has the advantages of:
[0011] The sealing strip is cut by the cutting assembly and the punching assembly, the sealing strip is fixed by the closing mold air cylinder during cutting, the position of the air drill can be adjusted by setting the synchronous wheel and the synchronous belt in the punching assembly, the sealing strip of different specifications can be punched in the length position, the equipment is suitable for various sealing strips, and production is facilitated. Attached Figure Description
[0012] Fig. 1 This is a schematic diagram of an offline drilling machine used in the production of automotive sealing strips.
[0013] Fig. 2 This is a schematic diagram of the conveying component in an offline punching machine used for producing automotive sealing strips.
[0014] Fig. 3 This is a cross-sectional schematic diagram of the conveying component in an offline punching machine used for producing automotive sealing strips.
[0015] Fig. 4 This is a schematic diagram of the cutting component in an offline punching machine used for producing automotive sealing strips.
[0016] Fig. 5 This is a schematic diagram of the drilling assembly in an offline drilling machine used for automotive sealing strip production. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Please see Figs. 1-5 In this embodiment of the present invention, an offline punching machine for producing automotive sealing strips includes a frame assembly 100, a conveying assembly 200, a cutting assembly 300, and a punching assembly 400.
[0019] The frame assembly 100 includes a conveying assembly 200, which is fixedly connected to the frame assembly 100. A cutting assembly 300 is provided on one side of the conveying assembly 200, with one end of the cutting assembly 300 fixedly connected to the frame assembly 100. A punching assembly 400 is provided on one side of the cutting assembly 300 and is installed and connected to the frame assembly 100.
[0020] The frame assembly 100 includes a main frame 101, an electric control cabinet 102, a control panel 103, an upper frame 104, a top lamp 105, a protective plate 106, a discharge plate 107, a material box 108, the main frame 101 is provided with a plurality of electric control cabinets 102, the electric control cabinet 102 is fixedly connected in the main frame 101, the main frame 101 is provided with a control panel 103, the control panel 103 is fixedly connected on the main frame 101, the main frame 101 is provided with an upper frame 104, the upper frame 104 is fixedly connected on the main frame 101, the upper frame 104 is provided with a top lamp 105, the top lamp 105 is fixedly connected on the upper frame 104, the main frame 101 is provided with a plurality of protective plates 106, the protective plate 106 is fixedly connected on the main frame 101, the main frame 101 is provided with a discharge plate 107, the discharge plate 107 is fixedly connected on the main frame 101, the electric control cabinet 102 is provided with a plurality of material boxes 108, the material box 108 is lapped on the main frame 101.
[0021] The conveying assembly 200 includes a conveying base 201, a sealing strip 202, a mold closing cylinder 203, a cylinder fixing pin 204, a conveying shaft 205, the main frame 101 is provided with a conveying base 201, the conveying base 201 is fixedly connected on the main frame 101, the conveying base 201 is provided with a sealing strip 202, the sealing strip 202 is slidingly connected in the conveying base 201, the conveying base 201 is provided with a mold closing cylinder 203 on one side, the mold closing cylinder 203 is fixedly connected on the conveying base 201, the output end of the mold closing cylinder 203 penetrates the conveying base 201, the output end of the mold closing cylinder 203 is provided with a cylinder fixing pin 204, the cylinder fixing pin 204 is fixedly connected on the output end of the mold closing cylinder 203, the conveying base 201 is provided with a conveying shaft 205, the conveying shaft 205 is rotatably connected on the conveying base 201.
[0022] The cutting assembly 300 comprises a cutting mounting plate 301, a cutting moving cylinder 302, a moving slide 303, a moving plate 304, a cutting plate 305, a top plate 306, a cutting cylinder 307, a slide rod 308, a cutter head 309, and a top block 310. The cutting moving cylinder 302 is fixedly connected to one end of the cutting mounting plate 301. The output end of the cutting moving cylinder 302 penetrates through the cutting mounting plate 301 and is connected with the moving plate 304. The lower side of the moving plate 304 is provided with the moving slide 303, which is fixedly connected to the cutting mounting plate 301. The moving plate 304 is slidingly connected to the moving slide 303. The moving plate 304 is provided with the top plate 306, which is fixedly connected to the moving plate 304. A plurality of slide rods 308 are arranged between the top plate 306 and the moving plate 304. The two ends of the slide rod 308 are fixedly connected to the top plate 306 and the moving plate 304, respectively. The cutting plate 305 is arranged on the slide rod 308 and slidingly sleeved outside the slide rod 308. The cutting plate 305 is provided with the cutter head 309 at one end. The cutter head 309 is fixedly connected to the cutting plate 305. The top block 310 is arranged above the cutter head 309 and is fixedly connected to the top plate 306. The cutting cylinder 307 is arranged on the top plate 306 and is fixedly connected to the top plate 306. The output end of the cutting cylinder 307 penetrates through the top plate 306 and is connected with the cutting plate 305.
[0023] The punching assembly 400 comprises a mounting frame 401, a driving motor 402, a driving gear 403, a driven gear 404, a belt 405, a synchronous wheel 406, a synchronous belt 407, a sliding plate 408, a sliding groove 409, a punching mounting plate 410, a punching cylinder 411, and an air drill 412. The driving motor 402 is fixedly connected to the mounting frame 401. The output end of the driving motor 402 is connected with the driving gear 403. The driving gear 403 is provided with the driven gear 404 on one side. The driven gear 404 is connected with the driving gear 403 through the belt 405. The driven gear 404 is rotatably connected to the mounting frame 401. The driven gear 404 is provided with the synchronous wheel 406 on one side. One end of the synchronous wheel 406 is fixedly connected to the driven gear 404. The synchronous wheel 406 is provided with two groups at both ends of the equipment. The synchronous belt 407 is arranged between the synchronous wheels 406 and is sleeved on the synchronous wheels 406. The synchronous belt 407 is provided with the sliding grooves 409 on both sides. The synchronous belt 407 is provided with the sliding plate 408. The sliding plate 408 is fixedly connected to the synchronous belt 407. The two ends of the sliding plate 408 are slidingly connected to the sliding grooves 409. The punching mounting plate 410 is arranged at the lower end of the sliding plate 408 and is fixedly connected to the sliding plate 408. The punching cylinder 411 is fixedly connected to the punching mounting plate 410. The output end of the punching cylinder 411 is provided with the air drill 412, which is fixedly connected to the output end of the punching cylinder 411.
[0024] The working principle of the utility model is:
[0025] In working, the sealing strip is cut by the cutting assembly 300 and the punching assembly 400, and the sealing strip is fixed by the mold closing cylinder 203 during cutting, and the position of the air drill can be adjusted by setting the synchronous wheel 406 and the synchronous belt 407 in the punching assembly 400, the sealing strip of different specifications can be punched in the length position, the equipment is suitable for various kinds of sealing strips, and production is facilitated.
[0026] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. An off-line puncher for automobile weather strip production, comprising a frame assembly (100), a conveying assembly (200), a cutting assembly (300), a punching assembly (400), characterized in that, The frame assembly (100) is provided with a conveying assembly (200), the conveying assembly (200) is fixedly connected on the frame assembly (100), one side of the conveying assembly (200) is provided with a cutting assembly (300), one end of the cutting assembly (300) is fixedly connected on the frame assembly (100), one side of the cutting assembly (300) is provided with a punching assembly (400), the punching assembly (400) is installed and connected on the frame assembly (100), the punching assembly (400) comprises a mounting frame (401), a driving motor (402), a driving gear (403), a driven gear (404), a belt (405), a synchronous wheel (406), a synchronous belt (407), a sliding plate (408), a sliding groove (409), a punching mounting plate (410), a punching cylinder (411) and an air drill (412), the driving motor (402) is arranged on the mounting frame (401), the driving motor (402) is fixedly connected on the mounting frame (401), the output end of the driving motor (402) is connected with the driving gear (403), one side of the driving gear (403) is provided with the driven gear (404), the driven gear (404) is connected with the driving gear (403) through the belt (405), the driven gear (404) is rotatably connected on the mounting frame (401), one side of the driven gear (404) is provided with the synchronous wheel (406), one end of the synchronous wheel (406) is fixedly connected with the driven gear (404), the synchronous wheel (406) is provided with two groups at both ends of the equipment, the synchronous belt (407) is arranged between the synchronous wheels (406), the synchronous belt (407) is sleeved on the synchronous wheel (406), the sliding grooves (409) are arranged on both sides of the synchronous belt (407), the sliding plate (408) is arranged on the synchronous belt (407), the sliding plate (408) is fixedly connected with the synchronous belt (407), both ends of the sliding plate (408) are slidably connected with the sliding grooves (409), the punching mounting plate (410) is arranged on the lower end of the sliding plate (408), the punching mounting plate (410) is fixedly connected on the sliding plate (408), the punching cylinder (411) is arranged on the punching mounting plate (410), the punching cylinder (411) is fixedly connected on the punching mounting plate (410), the output end of the punching cylinder (411) is provided with the air drill (412), and the air drill (412) is fixedly connected on the output end of the punching cylinder (411).
2. The off-line puncher for producing a weather strip for an automobile according to claim 1, wherein The frame assembly (100) comprises a main frame (101), an electric control cabinet (102), a control panel (103), an upper frame (104), a top lamp (105), a protective plate (106), a discharge plate (107), a material box (108), the bottom of the main frame (101) is provided with a plurality of electric control cabinets (102), the electric control cabinet (102) is fixedly connected in the main frame (101), the main frame (101) is provided with a control panel (103), the control panel (103) is fixedly connected on the main frame (101), the upper frame (104) is arranged above the main frame (101), the upper frame (104) is fixedly connected on the main frame (101), the top lamp (105) is arranged on the upper frame (104), the top lamp (105) is fixedly connected on the upper frame (104), the main frame (101) is provided with a plurality of protective plates (106), the protective plate (106) is fixedly connected on the main frame (101), the main frame (101) is provided with a discharge plate (107), the discharge plate (107) is fixedly connected on the main frame (101), the electric control cabinet (102) is provided with a plurality of material boxes (108), and the material box (108) is lapped on the main frame (101).
3. The off-line puncher for producing a weather strip for an automobile according to claim 1, wherein The conveying assembly (200) comprises a conveying base (201), a sealing strip (202), a mold closing cylinder (203), a cylinder fixing pin (204) and a conveying shaft (205), the main frame (101) is provided with the conveying base (201), the conveying base (201) is fixedly connected on the main frame (101), the conveying base (201) is provided with the sealing strip (202), the sealing strip (202) is slidably connected in the conveying base (201), the conveying base (201) is provided with the mold closing cylinder (203) on one side, the mold closing cylinder (203) is fixedly connected on the conveying base (201), the output end of the mold closing cylinder (203) penetrates the conveying base (201), the output end of the mold closing cylinder (203) is provided with the cylinder fixing pin (204), the cylinder fixing pin (204) is fixedly connected on the output end of the mold closing cylinder (203), and the conveying base (201) is provided with the conveying shaft (205).
4. The off-line puncher for producing a weather strip for an automobile according to claim 1, wherein The cutting assembly (300) includes a cutting mounting plate (301), a cutting moving cylinder (302), a moving slide (303), a moving plate (304), a cutting plate (305), a top plate (306), a cutting cylinder (307), a slide rod (308), a cutter head (309), and a top block (310). The cutting mounting plate (301) is provided with the cutting moving cylinder (302), one end of the cutting moving cylinder (302) is fixedly connected to the cutting mounting plate (301), the output end of the cutting moving cylinder (302) penetrates the cutting mounting plate (301) and is connected with the moving plate (304), the lower side of the moving plate (304) is provided with the moving slide (303), the moving slide (303) is fixedly connected to the cutting mounting plate (301), the moving plate (304) is slidingly connected to the moving slide (303), the top plate (306) is arranged above the moving plate (304), the top plate (306) is fixedly connected to the moving plate (304), a plurality of slide rods (308) are arranged between the top plate (306) and the moving plate (304), both ends of the slide rod (308) are fixedly connected to the top plate (306) and the moving plate (304), the cutting plate (305) is arranged on the slide rod (308), the cutting plate (305) is slidingly sleeved outside the slide rod (308), the cutter head (309) is arranged at one end position of the cutting plate (305), the cutter head (309) is fixedly connected to the cutting plate (305), the top block (310) is arranged above the cutter head (309), the top block (310) is fixedly connected to the top plate (306), the cutting cylinder (307) is arranged on the top plate (306), the cutting cylinder (307) is fixedly connected to the top plate (306), the output end of the cutting cylinder (307) penetrates the top plate (306) and is connected to the cutting plate (305).