Staggered film punching mechanism of precision filter

By designing a precision filter with an interleaved membrane punching mechanism, and utilizing profile supports and automated components to achieve automated assembly of membrane rolls, the problem of low efficiency in manual assembly is solved, and production efficiency is improved.

CN223632786UActive Publication Date: 2025-12-05NANCHANG HUIHENG AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202423160821.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-05
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The current assembly method for precision filters relies on manual operation, resulting in low assembly efficiency and difficulty in meeting the needs of mass production.

Method used

A precision filter staggered membrane punching mechanism was designed, which uses components such as profile support, diffuse reflection laser sensor, positioning wire and hydraulic buffer to realize the automated membrane roll placement, punching and unloading process, including the combined use of membrane unloading device, membrane punching device and membrane take-up and unloading device.

Benefits of technology

It improved film punching efficiency, realized automated film roll assembly process, and improved production efficiency and assembly speed.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a staggered film punching mechanism of a precision filter, which is characterized in that a bottom surface transverse moving component is arranged right below a film taking device, a film collecting and releasing device is movably connected to the bottom surface transverse moving component, and a film punching device positioned in the film collecting and releasing device is fixedly connected to the upper surface of the bottom surface transverse moving component; a film rolling assembly is fixedly connected to one side of the top end of the film winding and unwinding device, a plurality of diffuse reflection laser sensors used for monitoring films are arranged on the film winding and unwinding device, and a positioning wire and a hydraulic buffer are arranged between one end of the bottom face transverse moving assembly and the side face of the film winding and unwinding device. When the film punching machine is used for punching a film, the film rolling assembly is used for releasing the film, so that the film penetrates through the interior of the film collecting and releasing device, the film punching device is used for punching the film, the material subjected to film punching is taken out through the film taking device, and after the material is taken out, the output end of the electric push rod shrinks, so that the film taking device moves and is adhered to the material on the material conveying belt through the film taking device; automatic film punching is carried out, and the film punching efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to medical instrument technical field especially, relate to a precision filter interlaced formula membrane washing mechanism. BACKGROUND

[0002] Medical precision filter adopts upper shell, filter membrane, lower shell assembly, when assembling filter membrane, the existing assembly mode is assembled one by one through artificial, and the assembly efficiency is low, and it is difficult to meet the demand of mass production, therefore needs to provide a precision filter interlaced formula membrane washing mechanism. UTILITY MODEL CONTENTS

[0003] The utility model discloses a kind of precision filter interlaced formula membrane washing mechanisms, to solve the problems of the assembly mode in prior art, which is assembled one by one through artificial, and the assembly efficiency is low, and it is difficult to meet the demand of mass production.

[0004] In order to achieve the above object, the utility model adopts the following technical scheme: a precision filter interlaced formula membrane washing mechanism, including sectional material support, diffuse reflection laser sensor, positioning wire and hydraulic buffer, the top of sectional material support is movably connected with film taking device through two slide rails, the top of sectional material support is equipped with the drag chain connected with film taking device, the top of sectional material support is fixedly connected with the electric push rod for driving film taking device to move, the bottom of film taking device is equipped with bottom surface horizontal moving assembly, the bottom surface horizontal moving assembly is movably connected with film taking and releasing device, the top of film taking and releasing device is fixedly connected with membrane washing device located in film taking and releasing device, membrane washing device, film taking and releasing device is fixedly connected with film winding assembly on one side of top end, film taking and releasing device is equipped with a plurality of diffuse reflection laser sensors for monitoring membrane, one end of bottom surface horizontal moving assembly and the side of film taking and releasing device are equipped with positioning wire and hydraulic buffer.

[0005] Further, the film taking device is fixedly connected with the moving plate on the sliding block of slide rail one, the output end of the electric push rod and the movable end of the drag chain are fixedly connected with the moving plate, the two ends of the moving plate are both provided with lifting rods through linear bearings, the top end of the lifting rod is fixedly connected with the mold taking top plate, the mold taking top plate and the moving plate are equipped with lifting cylinders, the mold taking top plate is equipped with positioning wire and hydraulic buffer, the bottom end of the lifting rod is fixedly connected with the lifting plate, one side of the lifting plate is fixedly connected with the vertically arranged mounting vertical plate, the surface of the mounting vertical plate close to the film taking and releasing device is fixedly connected with four slide rails two, two adjusting through grooves are formed in the mounting vertical plate, six mold taking assemblies are movably connected on the slide rails two.

[0006] Further, the module taking includes the T-shaped plate fixedly connected to the sliding block of the sliding rail two, the bottom surface of the T-shaped plate is fixedly connected with the sliding rail three, the sliding block of the sliding rail three is fixedly connected with the L-shaped sliding plate, the bottom end of the L-shaped sliding plate is fixedly connected with the film suction head through an L-shaped block, the horizontal end of the top end of the L-shaped sliding plate is movably connected with the horizontal end of the T-shaped plate, the periphery of the light rod is provided with the spring between the horizontal end of the top end of the L-shaped sliding plate and the horizontal end of the T-shaped plate, the back of the T-shaped plate is provided with the control plate penetrating through the adjusting penetration slot, one side of the control plate is connected with the cylinder four fixedly connected to the back of the installation vertical plate, the back of the installation vertical plate is fixedly connected with a plurality of positioning wires for positioning the adjacent T-shaped plates through at least two T-shaped blocks.

[0007] Further, the bottom surface transverse moving assembly includes the transverse fixed plate, the upper surface of the transverse fixed plate is fixedly connected with two transverse sliding rails, the film collecting and releasing device is fixedly connected to the sliding block of the transverse sliding rail, one end of the transverse fixed plate is fixedly connected with the transverse cylinder, the output end of the transverse cylinder is fixedly connected to the film collecting and releasing device, the other end of the transverse fixed plate is fixedly connected with the positioning wire and the hydraulic buffer, and the end part of the positioning wire and the hydraulic buffer is supported on the film collecting and releasing device.

[0008] Further, the film collecting and releasing device includes the fixed frame including the film collecting and releasing bottom plate fixedly connected to the sliding block of the transverse sliding rail, the two sides of the film collecting and releasing bottom plate are fixedly connected with the film collecting and releasing side plate, the top part between the two film collecting and releasing side plates is fixedly connected with the film dragging assembly and the film tightening roller shaft assembly between the two sides of the film punching area, and the film tightening roller shaft assembly, the film dragging assembly are arranged in sequence along the feeding and discharging direction.

[0009] Further, the film collecting and releasing device includes the fixed frame including the film collecting and releasing bottom plate fixedly connected to the sliding block of the transverse sliding rail, the two sides of the film collecting and releasing bottom plate are fixedly connected with the film collecting and releasing side plate, the top part between the two film collecting and releasing side plates is fixedly connected with the film dragging assembly and the film tightening roller shaft assembly between the two sides of the film punching area, and the film tightening roller shaft assembly, the film dragging assembly are arranged in sequence along the feeding and discharging direction.

[0010] Furthermore, the punching device includes a punching base plate fixedly connected to the upper surface of the transverse fixed plate. Punching support plates are fixedly connected to both sides of the punching base plate. A punching top plate, parallel to the punching base plate, is fixedly connected to the top of the two punching support plates. A plurality of through holes for punching are evenly opened on the punching top plate. A punching fixing plate is fixedly connected between the middle of the two punching support plates. A punching cylinder is fixedly connected to the upper surface of the punching base plate directly below the punching fixing plate. The output end of the punching cylinder is connected to the punching fixing plate through a linear bearing. A punching mold is fixedly connected to the output end of the punching cylinder. A punching template is integrally connected to the lower surface of the punching top plate. Punching slide rods are fixedly connected to both ends of the lower surface of the punching mold. The punching slide rods are all connected to the punching fixing plate through linear bearings.

[0011] Furthermore, an ion air bar assembly is provided above the film tightening roller assembly and fixed to the film take-up and unwrap side plate. The ion air bar assembly includes a support gantry fixed to the film take-up and unwrap side plate, and an ion air bar is fixedly connected to the top of the support gantry.

[0012] Furthermore, both ends of the upper shaft of the film tightening roller assembly and the film dragging assembly are connected to the inside of the U-shaped groove, and a compression spring is provided between the top of the U-shaped groove and the shaft.

[0013] The beneficial effects of this utility model are:

[0014] 1. During film punching, the film roll assembly releases the film, allowing it to pass through the interior of the film take-up and unwinding device. The film is then punched by the film punching device. After punching, the material is removed by the film taking device. Once removed, the output end of the electric push rod retracts, causing the film taking device to move and adhere to the material on the material conveyor belt. This automated film punching process improves efficiency.

[0015] 2. During automated film punching and unloading, the film winding assembly unloads the film, the winding motor drives the winding roller to rotate, and the winding roller winds and winds up the waste film. Then, the output end of the electric push rod extends, moving the film unloading device to the film punching area. The output end of the lifting cylinder retracts, causing the two lifting rods to extend downwards, allowing the mold-removing assembly to insert into the film punching area for film unloading. Simultaneously, the output end of the film punching cylinder extends upwards, causing the film punching mold to insert upwards into the interior of the film punching template. At the same time, the film suction head inserts into the through hole of the film punching top plate for unloading. After the film is picked up, the output end of the film-punching cylinder retracts downward, causing the film-punching mold to move downward. Then, the output end of the lifting cylinder retracts, causing the two lifting rods to retract upward, causing the film suction head to move upward. Then, the extension and retraction of cylinder four controls the movement of the mold-taking assembly on slide rail two, so that the distance between adjacent mold-taking assemblies matches the material gap on the material conveyor belt. Then, the output end of the electric push rod retracts, causing the mold-taking assembly to send the picked-up material to the material surface on the conveyor belt for adhesion, thereby improving the film-punching efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is whole structure schematic view of the utility model;

[0017] Figure 2 It is structure schematic view of the utility model film receiving and releasing device Figure 1 ;

[0018] Figure 3 It is structure schematic view of the utility model diffuse reflection laser sensor;

[0019] Figure 4 It is structure schematic view of the utility model film taking device;

[0020] Figure 5 It is front view of the utility model film taking device;

[0021] Figure 6 It is structure schematic view of the utility model film taking assembly;

[0022] Figure 7 It is structure schematic view of the utility model film receiving and releasing device Figure 2 .

[0023] Figure 8 It is structure schematic view of the utility model film punching device Figure 1 .

[0024] Figure 9 It is structure schematic view of the utility model bottom surface horizontal movement assembly.

[0025] Figure 10 It is structure schematic view of the utility model film punching device Figure 2 .

[0026] Figure 11 It is structure schematic view of the utility model ion wind stick assembly.

[0027] Figure 12 It is structure schematic view of the utility model film winding assembly.

[0028] Figure 13 It is structure schematic view of the utility model film winding assembly.

[0029] Figure 14 It is structure schematic view of the utility model fixed frame.

[0030] Figure 15 It is structure schematic view of the utility model film receiving and releasing assembly.

[0031] In the figure: profile support 1, slide rail one 101, electric push rod 102, drag chain 103, film taking device 2, movement plate 201, lifting rod 211, mold taking top plate 212, lifting cylinder 213, lifting plate 202, installation vertical plate 221, slide rail two 222, adjusting through slot 223, mold taking assembly 203, T-shaped plate 231, slide rail three 232, L-shaped sliding plate 233, film sucking head 234, light rod 235, spring 236, control plate 237, cylinder four 238, film winding and unwinding device 3, fixed frame 301, film winding and unwinding bottom plate 311, film winding and unwinding side plate 312, film dragging assembly 302, film tightening roller shaft assembly 303, driving motor 331, waste film winding assembly 304, L-shaped rod 341, roller shaft 342, connecting plate 343, gantry support frame 344, slide rail four 345, winding roller shaft 346, winding motor 347, film punching device 4, film punching bottom plate 401, film punching support plate 402, film punching top plate 403, film punching fixed plate 404, film punching cylinder 405, film punching sliding rod 406, film punching mold 407, film punching mold plate 408, bottom surface transverse movement assembly 5, transverse movement fixed plate 501, transverse movement slide rail 502, transverse movement cylinder 503, ion wind rod assembly 6, supporting gantry 601, ion wind rod 602, film winding assembly 7, diffuse reflection laser sensor 8, positioning wire 9, hydraulic buffer 10. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments only represent some of the embodiments of the utility model, rather than all the embodiments.

[0033] Reference Figures 1 to 15 A precise filter staggered film punching mechanism, referring to Figures 1 to 3 , comprising profile support 1, diffuse reflection laser sensor 8, positioning wire 9 and hydraulic buffer 10, the top of profile support 1 is movably connected with film taking device 2 through two slide rail one 101, the top of profile support 1 is provided with drag chain 103 connected with film taking device 2, the top of profile support 1 is fixedly connected with electric push rod 102 for driving film taking device 2 to move, the bottom surface transverse movement assembly 5 is arranged below film taking device 2, film winding and unwinding device 3 is movably connected on the bottom surface transverse movement assembly 5, film punching device 4 is fixedly connected on the upper surface of bottom surface transverse movement assembly 5 and located in the inside of film winding and unwinding device 3, film punching device 4, film winding assembly 7 is fixedly connected on the top end of one side of film winding and unwinding device 3, a plurality of diffuse reflection laser sensors 8 for monitoring film are arranged on film winding and unwinding device 3, positioning wire 9 and hydraulic buffer 10 are arranged between one end of bottom surface transverse movement assembly 5 and the side surface of film winding and unwinding device 3;

[0034] In the specific implementation, when the film is punched, the film winding assembly 7 winds the film, makes the film pass through the inside of the film winding and unwinding device 3, punches the film through the film punching device 4, and takes out the material after the film is punched through the film taking device 2. After taking out, the output end of the electric push rod 102 is retracted, the film taking device 2 moves, and the material adhered to the material conveying belt through the film taking device 2;

[0035] Among them, the diffuse reflection laser sensor 8 is used to monitor the movement of the film, and the prior art is adopted.

[0036] Further, referring to Figure 4 and Figure 5 The film taking device 2 is fixedly connected to the moving plate 201 on the sliding block of the sliding rail one 101. The moving plate 201 is fixedly connected with the output end of the electric push rod 102 and the movable end of the drag chain 103. The two ends of the moving plate 201 are provided with lifting rods 211 through linear bearings. The top end of the lifting rod 211 is fixedly connected with a film taking top plate 212. The film taking top plate 212 and the moving plate 201 are provided with a lifting cylinder 213. The film taking top plate 212 is provided with a positioning wire 9 and a hydraulic buffer 10. The bottom end of the lifting rod 211 is fixedly connected with a lifting plate 202. One side of the lifting plate 202 is fixedly connected with a vertically arranged mounting vertical plate 221. Four sliding rails two 222 are fixedly connected to the surface of the side of the mounting vertical plate 221 close to the film winding and unwinding device 3. Two adjusting through grooves 223 are arranged on the mounting vertical plate 221. Six film taking assemblies 203 are movably connected to the sliding rails two 222;

[0037] In the specific implementation, when the film is punched, the film winding assembly 7 winds the film, makes the film pass through the inside of the film winding and unwinding device 3, punches the film through the film punching device 4, and takes out the material after the film is punched through the film taking device 2. After taking out, the output end of the electric push rod 102 is retracted, the film taking device 2 moves, and the material adhered to the material conveying belt through the film taking device 2;

[0038] The conveying belt of the conveying material is the existing device.

[0039] Further, referring to Figure 6The taking-mold assembly 203 comprises a T-shaped plate 231 fixedly connected to the sliding block of the second sliding rail 222, the bottom surface of the T-shaped plate 231 is fixedly connected with a third sliding rail 232, the sliding block of the third sliding rail 232 is fixedly connected with an L-shaped sliding plate 233, the bottom end of the L-shaped sliding plate 233 is fixedly connected with a film suction head 234 through an L-shaped block, the horizontal end of the top end of the L-shaped sliding plate 233 is movably connected with a light rod 235 between the horizontal end of the top end of the L-shaped sliding plate 233 and the horizontal end of the T-shaped plate 231, the periphery of the light rod 235 is provided with a spring 236 between the horizontal end of the top end of the L-shaped sliding plate 233 and the horizontal end of the T-shaped plate 231, the back of the T-shaped plate 231 is provided with a control plate 237 penetrating through the adjusting penetration slot 223, one side of the control plate 237 is connected with a fourth air cylinder 238 fixed to the back of the mounting vertical plate 221, and the back of the mounting vertical plate 221 is fixedly connected with a plurality of positioning wires 9 for positioning adjacent T-shaped plates 231 through at least two T-shaped blocks;

[0040] In specific implementation, when taking the material, the distance between adjacent taking-mold assemblies 203 is controlled through the positioning wires 9, the taking-mold assembly 203 moves on the second sliding rail 222 through the extension and retraction of the fourth air cylinder 238, so that the distance between adjacent taking-mold assemblies 203 is adjusted, when taking the material, the film suction head 234 is inserted into the mold for taking the material, at the moment of taking the material, the spring 236 is compressed for anti-collision buffering, at this time, the L-shaped sliding plate 233 moves on the third sliding rail 232;

[0041] The positioning technology of the film suction head 234 and the positioning wires 9 adopts the prior art.

[0042] Further, referring to Figure 8 and Figure 9 The bottom surface transverse movement assembly 5 comprises a transverse movement fixed plate 501, the upper surface of the transverse movement fixed plate 501 is fixedly connected with two transverse movement sliding rails 502, the film taking and releasing device 3 is fixedly connected to the sliding block of the transverse movement sliding rail 502, one end of the transverse movement fixed plate 501 is fixedly connected with a transverse movement air cylinder 503, the output end of the transverse movement air cylinder 503 is fixedly connected to the film taking and releasing device 3, the other end of the transverse movement fixed plate 501 is fixedly connected with the positioning wires 9 and a hydraulic buffer 10, and the end portions of the positioning wires 9 and the hydraulic buffer 10 are supported on the film taking and releasing device 3.

[0043] In specific implementation, when the position of the film taking and releasing device 3 is adjusted, the output end of the transverse movement air cylinder 503 is extended and retracted, so that the output end of the transverse movement air cylinder 503 drives the whole film taking and releasing device 3 to move on the transverse movement sliding rail 502.

[0044] Further, referring to Figure 7 and Figure 15The film winding and unwinding device 3 comprises a fixed frame 301. The fixed frame 301 comprises a film winding and unwinding bottom plate 311 fixed on the sliding block of the transverse sliding rail 502. Two film winding and unwinding side plates 312 are fixedly connected to the two sides of the film winding and unwinding bottom plate 311. A film dragging assembly 302 and a film tightening roller shaft assembly 303 are fixedly connected between the top portions of the two film winding and unwinding side plates 312 and located on both sides of the film punching area. The film dragging assembly 302 and the film tightening roller shaft assembly 303 are arranged in sequence along the feeding and discharging direction as the film tightening roller shaft assembly 303, the film dragging assembly 302. The end portion of the film tightening roller shaft assembly 303 is fixedly connected with a driving motor 331. A waste film winding assembly 304 is fixedly connected to the film winding and unwinding bottom plate 311 and located below the transverse fixed plate 501.

[0045] In the specific implementation, when the film is unwound, the film unwound by the film winding assembly 7 passes through the film dragging assembly 302 and the film tightening roller shaft assembly 303 to tighten the film, and the waste film is wound and recycled by the waste film winding assembly 304.

[0046] Further, referring to Figure 7 and Figure 13 The waste film winding assembly 304 comprises two L-shaped rods 341 fixed on the film winding and unwinding side plates 312. The horizontal ends of the two L-shaped rods 341 are arranged in long and short. A connecting plate 343 is fixedly connected between the bottom end of the short L-shaped rod 341 and the bottom end of the long L-shaped rod 341. A gantry support frame 344 is arranged below the connecting plate 343. A sliding rail four 345 is fixedly connected to the top portion of the gantry support frame 344. The connecting plate 343 is fixedly connected to the sliding block of the sliding rail four 345. A winding roller shaft 346 is rotatably connected to the bottom end of the long L-shaped rod 341 through a bearing. A winding motor 347 is arranged at the end portion of the winding roller shaft 346. A plurality of limiting roller shafts 342 are connected between the two L-shaped rods 341 through bearings.

[0047] In the specific implementation, when the waste film is wound, the winding motor 347 is driven to rotate the winding roller shaft 346, and the winding roller shaft 346 winds the waste film.

[0048] Further, referring to Figure 10The punching film device 4 comprises a punching film bottom plate 401 fixedly connected to the upper surface of the transverse moving fixed plate 501, punching film support plates 402 fixedly connected to both sides of the punching film bottom plate 401, a punching film top plate 403 fixedly connected to the top of the two punching film support plates 402 and arranged in parallel with the punching film bottom plate 401, a plurality of through holes for punching film uniformly arranged on the punching film top plate 403, a punching film fixed plate 404 fixedly connected between the middle portions of the two punching film support plates 402, a punching film air cylinder 405 fixedly connected to the upper surface of the punching film bottom plate 401 below the punching film fixed plate 404, a punching film die 407 fixedly connected to the output end of the punching film air cylinder 405 and connected with the punching film fixed plate 404 through a linear bearing, and a punching film die plate 408 integrally connected to the lower surface of the punching film top plate 403, wherein the lower surface of the punching film die 407 is fixedly connected with punching film sliding rods 406, and the punching film sliding rods 406 are connected with the punching film fixed plate 404 through linear bearings.

[0049] In the specific implementation, when the film is punched, the output end of the punching film air cylinder 405 is stretched upwards, so that the punching film die 407 is inserted into the inside of the punching film die plate 408, and at the same time, the film suction head 234 is inserted into the through holes of the punching film top plate 403 to take the film.

[0050] Further, referring to Figure 7 and 11 , the upper part of the film tightening roller shaft assembly 303 is provided with an ion wind rod assembly 6 fixed to the film taking and releasing side plate 312, and the ion wind rod assembly 6 comprises a supporting gantry 601 fixed to the film taking and releasing side plate 312, and an ion wind rod 602 fixedly connected to the top of the supporting gantry 601.

[0051] In the specific implementation, the film surface is dusted by the wind rod assembly 6.

[0052] Further, referring to Figure 15 , the two ends of the shafts of the film tightening roller shaft assembly 303 and the film dragging assembly 302 located in the upper layer are connected to the inside of the U-shaped groove, and the compression springs are arranged between the top of the U-shaped groove and the shafts.

[0053] In the specific implementation, the shafts are pressed by the compression springs, so that the film is pressed tightly by the film tightening roller shaft assembly 303 and the film dragging assembly 302 under the action of the pressure, and the film passing through the film tightening roller shaft assembly 303 and the film dragging assembly 302 is tightened.

[0054] When the automatic punching and taking of the film is performed, the film winding assembly 7 winds the film, the winding motor 347 is driven, the winding shaft 346 rotates, the waste film is wound, then the output end of the electric push rod 102 is extended, the film taking device 2 is moved to the film punching area, the output end of the lifting cylinder 213 is retracted, the two lifting rods 211 are extended downward, the film taking assembly 203 is inserted into the film punching area to take the film, at the same time, the output end of the film punching cylinder 405 is extended upward, the film punching die 407 is inserted into the inside of the film punching die plate 408, at the same time, the film suction head 234 is inserted into the through hole of the film punching top plate 403 to take the film, after the film is taken, the output end of the film punching cylinder 405 is retracted downward, the film punching die 407 is moved downward, then the output end of the lifting cylinder 213 is retracted, the two lifting rods 211 are retracted upward, the film suction head 234 is moved upward, then the film taking assembly 203 is moved on the slide rail 222 through the extension and retraction of the cylinder four 238, the distance between the adjacent film taking assemblies 203 is adapted to the gap between the materials on the material conveying belt, then the output end of the electric push rod 102 is retracted, the film taking assembly 203 sends the taken materials to the surface of the materials on the conveying material belt to be adhered.

[0055] The above merely describes a preferred embodiment of the present application, but the protection scope of the present application is not limited to this. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A precision filter staggered membrane punching mechanism, comprising a profile support (1), a diffuse reflection laser sensor (8), a positioning wire (9) and a hydraulic buffer (10), the top of the profile support (1) is movably connected with a membrane taking device (2) through two slide rails (101), the top of the profile support (1) is provided with a drag chain (103) connected with the membrane taking device (2), and the top of the profile support (1) is fixedly connected with an electric push rod (102) for driving the membrane taking device (2) to move, characterized in that: The bottom surface transverse assembly (5) is arranged below the film taking device (2), and the film taking and releasing device (3) is movably connected to the bottom surface transverse assembly (5). ​ 2. The precision filter interleaved die-striking mechanism of claim 1, wherein, The film taking device (2) is fixedly connected to the sliding block of the sliding rail one (101), and the output end of the electric push rod (102) and the movable end of the drag chain (103) are fixedly connected to the motion plate (201). The two ends of the motion plate (201) are provided with lifting rods (211) through linear bearings, and the top end of the lifting rod (211) is fixedly connected with a mold taking top plate (212). The mold taking top plate (212) and the motion plate (201) are provided with a lifting cylinder (213), and the mold taking top plate (212) is provided with a positioning wire (9) and a hydraulic buffer (10). The bottom end of the lifting rod (211) is fixedly connected with a lifting plate (202), one side of the lifting plate (202) is fixedly connected with a vertically arranged mounting vertical plate (221), and the side surface of the mounting vertical plate (221) close to the film taking and releasing device (3) is fixedly connected with four sliding rail two (222). Two adjusting through grooves (223) are formed in the mounting vertical plate (221), and six mold taking assemblies (203) are movably connected to the sliding rail two (222).

3. The precision filter interleaved die-striking mechanism of claim 2, wherein, The mold taking assembly (203) comprises a T-shaped plate (231) fixedly connected to the sliding block of the sliding rail two (222), a sliding rail three (232) fixedly connected to the bottom surface of the T-shaped plate (231), an L-shaped sliding plate (233) fixedly connected to the sliding block of the sliding rail three (232), a film suction head (234) fixedly connected to the bottom end of the L-shaped sliding plate (233) through an L-shaped block, an optical rod (235) movably connected between the horizontal end of the top end of the L-shaped sliding plate (233) and the horizontal end of the T-shaped plate (231), a spring (236) arranged between the horizontal end of the top end of the L-shaped sliding plate (233) and the horizontal end of the T-shaped plate (231) around the optical rod (235), a control plate (237) arranged through the adjusting through groove (223) at the back of the T-shaped plate (231), a gas cylinder four (238) fixedly connected to the back of the mounting vertical plate (221) on one side of the control plate (237), and a plurality of positioning wires (9) for positioning adjacent T-shaped plates (231) are fixedly connected to the back of the mounting vertical plate (221) through at least two T-shaped blocks.

4. The precision filter interleaved die-striking mechanism of claim 3, wherein, The bottom surface transverse moving assembly (5) comprises a transverse moving fixed plate (501), the upper surface of the transverse moving fixed plate (501) is fixedly connected with two transverse moving sliding rails (502), the film winding and unwinding device (3) is fixedly connected with the sliding blocks of the transverse moving sliding rails (502), one end of the transverse moving fixed plate (501) is fixedly connected with a transverse moving air cylinder (503), the output end of the transverse moving air cylinder (503) is fixedly connected with the film winding and unwinding device (3), the other end of the transverse moving fixed plate (501) is fixedly connected with a positioning wire (9) and a hydraulic buffer (10), and the ends of the positioning wire (9) and the hydraulic buffer (10) are supported on the film winding and unwinding device (3).

5. The precision filter interleaved die-striking mechanism of claim 4, wherein, The film winding and unwinding device (3) comprises a fixed frame (301), the fixed frame (301) comprises a film winding and unwinding bottom plate (311) fixed on the sliding blocks of the transverse moving sliding rails (502), and both sides of the film winding and unwinding bottom plate (311) are fixedly connected with film winding and unwinding side plates (312); the top portions of the two film winding and unwinding side plates (312) are fixedly connected with a film dragging assembly (302) and a film tightening roller shaft assembly (303) between the two sides of the film punching area, and the film dragging assembly (302) and the film tightening roller shaft assembly (303) are arranged in the order of the film tightening roller shaft assembly (303) and the film dragging assembly (302) along the feeding and discharging direction; the end portion of the film tightening roller shaft assembly (303) is fixedly connected with a driving motor (331); and the film winding and unwinding bottom plate (311) is fixedly connected with a waste film winding assembly (304) below the transverse moving fixed plate (501).

6. The precision filter interleaved die-striking mechanism of claim 5, wherein, The waste film winding assembly (304) comprises two L-shaped rods (341) fixed on the film winding and unwinding side plates (312), the horizontal ends of the two L-shaped rods (341) are arranged in a long and short mode, a connecting plate (343) is fixedly connected between the bottom end of the short L-shaped rod (341) and the long L-shaped rod (341), a gantry support frame (344) is arranged below the connecting plate (343), a sliding rail four (345) is fixedly connected to the top portion of the gantry support frame (344), the connecting plate (343) is fixedly connected with the sliding blocks of the sliding rail four (345), the bottom end of the long L-shaped rod (341) is rotatably connected with a winding roller shaft (346) through a bearing, the end portion of the winding roller shaft (346) is provided with a winding motor (347), and a plurality of limiting roller shafts (342) are connected between the two L-shaped rods (341) through bearings.

7. The precision filter interleaved die-striking mechanism of claim 6, wherein, The punching film device (4) comprises a punching film bottom plate (401) fixedly connected to the upper surface of the transverse movement fixed plate (501), both sides of the punching film bottom plate (401) are fixedly connected with punching film support plates (402), the top of the two punching film support plates (402) is fixedly connected with a punching film top plate (403) arranged in parallel with the punching film bottom plate (401), a plurality of through holes for punching film are uniformly arranged on the punching film top plate (403), a punching film fixed plate (404) is fixedly connected between the middle portions of the two punching film support plates (402), a punching film air cylinder (405) is fixedly connected to the upper surface of the punching film bottom plate (401) below the punching film fixed plate (404), the output end of the punching film air cylinder (405) is connected with the punching film fixed plate (404) through a linear bearing, a punching film die (407) is fixedly connected to the output end of the punching film air cylinder (405), a punching film template (408) is integrally connected to the lower surface of the punching film top plate (403), punching film sliding rods (406) are fixedly connected to the lower surface of the punching film die (407), and the punching film sliding rods (406) are connected with the punching film fixed plate (404) through linear bearings.

8. The precision filter interleaved die-striking mechanism of claim 7, wherein, The upper portion of the film tightening roller shaft assembly (303) is provided with an ion wind rod assembly (6) fixed to the film winding and unwinding side plate (312), the ion wind rod assembly (6) comprises a supporting gantry (601) fixed to the film winding and unwinding side plate (312), and the top of the supporting gantry (601) is fixedly connected with an ion wind rod (602).

9. The precision filter interleaved die-striking mechanism of claim 8, wherein, The upper ends of the shafts of the film tightening roller shaft assembly (303) and the film dragging assembly (302) are connected to the inside of the U-shaped groove, and the compression springs are arranged between the top of the U-shaped groove and the shafts.