Anti-theft net bag threading processing device and anti-theft net bag
By designing a wire threading device for anti-theft net bags, the mechanized and automatic threading of the net rope within the U-shaped lock was achieved, solving the problem of low efficiency in manual operation, improving efficiency and enhancing anti-theft performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-05
- Publication Date
- 2026-03-20
AI Technical Summary
The existing anti-theft mesh bags have low efficiency in threading the mesh ropes, requiring manual threading through multiple locks, resulting in low efficiency.
Design a wire threading processing device for anti-theft net bags, including a turntable, a feeding component, a threading component, a clamping component, and a discharging component. The device achieves automatic wire threading of the net rope within the U-shaped lock through mechanized operation, and uses the deformation of the U-shaped lock to clamp the net rope, avoiding the need for piercing.
The efficiency and convenience of threading the anti-theft mesh bag have been improved, while the use of stainless steel buckles provides greater strength and stronger anti-theft performance.
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Figure CN117963329B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of anti-theft net bag processing, and relates to an anti-theft net bag threading processing device and an anti-theft net bag. BACKGROUND
[0002] The anti-theft net bag comprises a net rope and a lock buckle connected to the net rope, one net rope is threaded through a plurality of lock buckles to form a net bag, the net bag can be used in combination with an electronic anti-theft tag or a lock to meet the anti-theft requirement, and a conventional article can be placed in the anti-theft net bag and then the bag opening is tightened. However, the conventional manufacturing method is to manually thread one net rope through the holes of a plurality of lock buckles in a loop, and the operation efficiency is low.
[0003] In summary, in order to solve the problems in the prior art, an anti-theft net bag threading processing device with a simple structure needs to be designed. SUMMARY
[0004] The present application provides an anti-theft net bag threading processing device and an anti-theft net bag to solve the problems in the prior art.
[0005] The anti-theft net bag threading processing device comprises a rack, a rotating table, a feeding assembly, a threading assembly, a pressing assembly and a discharging assembly. The rotating table is rotationally arranged on the rack, and four groups of lock buckle placement tables are arranged at intervals on the rotating table. The feeding assembly is arranged on the right side of the rotating table, and comprises a vibrating disc, a track and a clamping feeding assembly. The vibrating disc is arranged on the right side of the rack and conveys the lock buckles into the track. The clamping feeding assembly is arranged on the upper end of the track and clamps and feeds the lock buckles in the track to the lock buckle placement table on the right side. The threading assembly is arranged on the right side of the front lock buckle placement table, and is used to drive the net rope to reciprocatingly move in an S shape in the lock buckle in the front lock buckle placement table. The pressing assembly is arranged above the left lock buckle placement table, and comprises a pressing plate. The discharging assembly is arranged above the rear lock buckle placement table, and takes out the net bag in the rear lock buckle placement table.
[0006] Further improvement, the clamping feeding assembly comprises an X-direction linear guide rail driving assembly one, a Y-direction linear guide rail driving assembly one, a Z-direction driving cylinder one and a feeding clamp jaw. The lower end of the X-direction linear guide rail driving assembly one is arranged on the rack through a support. The Y-direction linear guide rail driving assembly one is arranged on the X-direction linear guide rail driving assembly one. The Z-direction driving cylinder one is arranged on the Y-direction linear guide rail driving assembly one. The feeding clamp jaw is arranged at the lower end of the Z-direction driving cylinder one.
[0007] Further improvement, the threading assembly comprises X linear guide rail driving assembly two, Y linear guide rail driving assembly two, Z driving cylinder two, winding rope clamp jaw and rope wheel, the lower end of the X linear guide rail driving assembly two is arranged on the rack through the support, the Y linear guide rail driving assembly two is arranged on the X linear guide rail driving assembly two, the Z driving cylinder two is arranged on the Y linear guide rail driving assembly two, the winding rope clamp jaw is arranged at the lower end of the Z driving cylinder two, and the winding rope clamp jaw is arranged in the lock buckle of the front side lock buckle placement table in sequence.
[0008] Further improvement, the pressing assembly further comprises Z lifting assembly one and Y translation assembly, the Y translation assembly is arranged at the lower end of the Z lifting assembly, the lower pressing plate is arranged at the lower end of the Y translation assembly, and the bottom of the lower pressing plate is provided with pressing heads corresponding to the lock buckles.
[0009] Further improvement, the blanking assembly comprises X linear guide rail driving assembly three, Z lifting assembly two, bottom plate and blanking clamp jaw, the lower end of the X linear guide rail driving assembly three is arranged on the rack through the support, the Z lifting assembly two is arranged on the X linear guide rail driving assembly three, the bottom plate is arranged at the lower end of the Z lifting assembly two, and the blanking clamp jaw is symmetrically arranged at the lower end of the bottom plate.
[0010] Further improvement, the opposite sides of the lock buckle placement tables on the right side and the rear side are provided with push alignment cylinders.
[0011] Further improvement, the lock buckle placement table comprises a base plate, a lock buckle base, a lock buckle mounting seat and a lock buckle positioning block, the lock buckle base is fixed on the base plate, the upper end of the lock buckle base is provided with grooves at intervals, the lock buckle mounting seat is fixedly installed in the grooves, the lock buckle mounting seat is provided with lock buckle placement grooves at intervals, the lock buckle placement grooves are communicated on the two sides, U-shaped support blocks are arranged between the lock buckle placement grooves, the inner side grooves of the U-shaped support blocks are communicated with the lock buckle placement grooves, and the lock buckle positioning blocks are rotationally arranged at the bottom of the inner side grooves.
[0012] Further improvement, the lock buckle base is provided with a top block located at the lock buckle mounting seat.
[0013] A theft-proof net bag, the theft-proof net bag comprises a net rope and a plurality of stainless steel buckles, the stainless steel buckles are internally provided with containing grooves, the two ends of the stainless steel buckles are inwardly bent to form limiting portions close to the containing grooves, the net rope is arranged to form a net bag after passing through the containing grooves of the plurality of stainless steel buckles, the net rope is located on the inner side of the limiting portions, and the limiting portions are arranged to be disconnected.
[0014] Compared with the prior art, the theft-proof net bag threading processing device has the following beneficial effects:
[0015] Mechanization operation is realized through the rotating table, the feeding assembly, the threading assembly, the pressing assembly and the discharging assembly, and the threading assembly cooperates with the U-shaped section lock catch, so that the net rope does not need to be perforated, only needs to be placed at the bottom of the U-shaped section lock catch, is pressed down at the upper end of the U-shaped section lock catch in the next process, the lock catch is deformed to close and clamp the net rope, operation efficiency is improved and convenience is improved;
[0016] Meanwhile, compared with the aluminum buckle, the stainless steel buckle has higher strength, is not easy to be cut, and has higher anti-theft performance. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structural schematic view of the present application
[0018] Figure 2 It is a structural schematic view of another view of the present application
[0019] Figure 3 It is a structural schematic view of the feeding assembly of the present application
[0020] Figure 4 It is a structural schematic view of the threading assembly of the present application
[0021] Figure 5 It is a structural schematic view of the pressing assembly of the present application
[0022] Figure 6 It is a structural schematic view of the discharging assembly of the present application
[0023] Figure 7 It is a structural schematic view of the lock catch placing table of the present application
[0024] Figure 8 It is a structural schematic view of the local lock catch placing table of the present application
[0025] Figure 9 It is a structural schematic view of the anti-theft net bag of the present application
[0026] In the figure, 1-rack, 2-rotary table, 3-feeding assembly, 31-vibration disc, 32-track, 33-clamping feeding assembly, 331-X linear guide driving assembly one, 332-Y linear guide driving assembly one, 333-Z driving cylinder one, 334-feeding clamping jaw, 4-threading assembly, 41-X linear guide driving assembly two, 42-Y linear guide driving assembly two, 43-Z driving cylinder two, 44-roping clamping jaw, 45-roping wheel, 5-pressing assembly, 51-pressing plate, 511-pressing head, 52-Z lifting assembly one, 53-Y translation assembly, 6-discharging assembly, 61-X linear guide driving assembly three, 62-Z lifting assembly two, 63-bottom plate, 64-discharging clamping jaw, 65-clamping discharging assembly, 7-locking buckle placement table, 71-base plate, 72-locking buckle base, 721-groove, 73-locking buckle mounting seat, 731-locking buckle placement groove, 732-U-shaped support block, 733-internal groove, 74-locking buckle positioning block, 75-top block, 8-pushing alignment cylinder, 9-anti-theft net bag, 91-net rope, 92-stainless steel buckle, 93- accommodating groove, 94-limiting part. DETAILED DESCRIPTION
[0027] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0028] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0029] The following will be described in conjunction with the embodiments and drawings Figures 1-9 The technical solutions of the present application are further described.
[0030] Example 1
[0031] A threading device for anti-theft mesh bags includes: a frame 1, a turntable 2, a feeding assembly 3, a threading assembly 4, a pressing assembly 5, and a discharging assembly 6. The turntable 2 is rotatably mounted on the frame 1. The turntable 2 has up to four sets of buckle placement platforms 7 spaced apart. The feeding assembly 3 is located on the right side of the turntable 2. The feeding assembly 3 includes a vibratory feeder 31, a track 32, and a clamping feeding assembly 33. The vibratory feeder 31 is located on the right side of the frame 1 and conveys the buckles into the track 32. The clamping feeding assembly 33 is located on the track 32. The upper end of track 32 is used to clamp and feed the lock in track 32 to the lock placement platform 7 on the right. The threading assembly 4 is located on the right side of the front lock placement platform 7. The threading assembly 4 is used to drive the net rope to move back and forth in an S-shape within the lock in the front lock placement platform 7. The pressing assembly 5 is located above the left lock placement platform 7. The pressing assembly 5 includes a lower pressing plate 51. The feeding assembly 6 is located above the rear lock placement platform 7. The feeding assembly 6 removes the net bag from the rear lock placement platform 7.
[0032] As a further preferred embodiment, the clamping and feeding assembly 33 includes an X-axis linear guide drive assembly 331, a Y-axis linear guide drive assembly 332, a Z-axis drive cylinder 333, and a feeding gripper 334. The lower end of the X-axis linear guide drive assembly 331 is mounted on the frame 1 via a bracket. The Y-axis linear guide drive assembly 332 is mounted on the X-axis linear guide drive assembly 331. The Z-axis drive cylinder 333 is mounted on the Y-axis linear guide drive assembly 332. The feeding gripper 334 is mounted on the lower end of the Z-axis drive cylinder 333.
[0033] like Figure 3 As shown, the loading gripper 334 moves in the X, Y, and Z directions through the cooperation of the X-direction linear guide drive assembly 331, the Y-direction linear guide drive assembly 332, and the Z-direction drive cylinder 333. This allows the stainless steel buckles arranged in the track 32 to be gripped by the loading gripper 334 and placed in an array on the right side of the buckle placement platform 7.
[0034] As a further preferred embodiment, the threading assembly 4 includes an X-axis linear guide drive assembly 41, a Y-axis linear guide drive assembly 42, a Z-axis drive cylinder 43, a rope-winding gripper 44, and a rope wheel 45. The lower end of the X-axis linear guide drive assembly 41 is mounted on the frame 1 via a bracket. The Y-axis linear guide drive assembly 42 is mounted on the X-axis linear guide drive assembly 41. The Z-axis drive cylinder 43 is mounted on the Y-axis linear guide drive assembly 42. The rope-winding gripper 44 is located at the lower end of the Z-axis drive cylinder 43. The rope-winding gripper 44 sequentially passes the net rope on the rope wheel 45 through the locking mechanism of the front locking platform 7.
[0035] like Figure 4As shown, the movement of the rope clamping jaw 44 in the X, Y, Z directions is realized by the cooperation of the X-direction linear guide driving assembly two 41, the Y-direction linear guide driving assembly two 42, and the Z-direction driving cylinder two 43, and the rope clamping jaw 44 pulls the net rope to move reciprocatingly in the S shape in the lock buckle in the front side lock buckle placement table 7.
[0036] As a further preferred embodiment, the pressing assembly 5 further comprises a Z-direction lifting assembly one 52 and a Y-direction translation assembly 53, the Y-direction translation assembly 53 is arranged at the lower end of the Z-direction lifting assembly one 52, and the lower pressing plate 51 is arranged at the lower end of the Y-direction translation assembly 53, and the bottom of the lower pressing plate 51 is arranged with pressing heads 511 corresponding to the lock buckles.
[0037] As shown, the pressing heads 511 on the lower pressing plate 51 are driven by the Z-direction lifting assembly one 52, the upper ends of the lock buckles completed around the rope in the right side lock buckle placement table 7 are pressed, so that the net rope is clamped in the lock buckle, and the Y-direction translation assembly 53 is driven to drive the pressing heads 511 to move transversely, so that the lock buckles at different positions are pressed, and the anti-theft net bag is formed. Figure 5
[0038] As a further preferred embodiment, the feeding assembly 6 comprises an X-direction linear guide driving assembly three 61, a Z-direction lifting assembly two 62, a bottom plate 63, and a feeding clamping jaw 64, the X-direction linear guide driving assembly three 61 is arranged on the rack 1 through a support at the lower end, the Z-direction lifting assembly two 62 is arranged on the X-direction linear guide driving assembly three 61, the bottom plate 63 is arranged at the lower end of the Z-direction lifting assembly two 62, and the feeding clamping jaw 64 is symmetrically arranged at the lower end of the bottom plate 63.
[0039] As shown, the movement of the feeding clamping jaw 64 in the X, Y, Z directions is realized by the cooperation of the X-direction linear guide driving assembly three 61, the Z-direction lifting assembly two 62, and the bottom plate 63, and the anti-theft net bag in the lock buckle placement table 7 at the lower end is clamped and taken out. Figure 6
[0040] As a further preferred embodiment, the right side and the rear side of the lock buckle placement table 7 are provided with a push alignment cylinder 8 on the opposite side, and the initial position of the lock buckle placement table 7 is fine-tuned by the push alignment cylinder 8.
[0041] As a further preferred embodiment, the lock placement table 7 comprises a base plate 71, a lock base 72, a lock mounting seat 73 and a lock positioning block 74, the lock base 72 is fixed on the base plate 71, the upper end of the lock base 72 is provided with a groove 721, the lock mounting seat 73 is fixedly installed in the groove 721, the lock mounting seat 73 is provided with a lock placement groove 731, the two sides of the lock placement groove 731 are communicated, a U-shaped support block 732 is arranged between the lock placement grooves 731, the inner groove 733 of the U-shaped support block 732 is communicated with the lock placement groove 731, and the lock positioning block 74 is rotatably arranged at the bottom of the inner groove 733.
[0042] As shown in Figure 7 and Figure 8 , different distances and quantities of lock mounting seats 73 can be placed in the groove 721 of the lock base 72, and different distances and quantities of locks can be placed in the lock placement grooves 731 of the lock mounting seats 73, so that different lengths of anti-theft net bags can be processed, and different densities of anti-theft net bags (different distances of net ropes and different quantities of locks) can be processed; through the lock positioning block 74 rotating in the inner groove 733, the side of the lock placed by the clamping jaw can be limited and pushed tightly, improving the stability of the lock placement.
[0043] As a further preferred embodiment, the lock base 72 is provided with a top block 75 located at the lock mounting seat 73, and the top block 75 is used to push the lock mounting seat 73.
[0044] An anti-theft net bag 9 comprises a net rope 91 and a plurality of stainless steel buckles 92, the stainless steel buckle 92 is internally provided with a containing groove 93, the two ends of the stainless steel buckle 92 are inwardly bent to form a limiting portion 94 near the containing groove 93, the net rope 91 is arranged to form a net bag after passing through the containing grooves 93 of the plurality of stainless steel buckles 92, the net rope 91 is arranged inside the limiting portion 94, and the limiting portion 94 is arranged to be disconnected.
[0045] Compared with aluminum buckles, stainless steel buckles have higher strength, and existing aluminum buckles are easily cut off by scissors, while stainless steel buckles are not easy to cut off, and have higher anti-theft performance.
[0046] As shown in Figures 1-9As shown, the operating principle of this invention is as follows: Randomly placed buckles in the vibratory feeder 31 are fed into the track 32 via vibration. The buckles are then aligned one by one within the track 32. The clamping feeding component 33 in the feeding component 3 clamps each buckle in the track 32 onto the buckle placement platform 7 on the right. This process is repeated until the buckle placement platform 7 is full. The turntable 2 rotates 90 degrees to bring the full buckle placement platform 7 below the threading component 4. The threading component 4 drives the net rope to place the buckles below. The array of locks inside platform 7 moves back and forth in an S-shape. At this time, the lock cross-section is U-shaped. The turntable 2 rotates 90 degrees to place the lock with the threaded lock on platform 7 below the clamping component 5. The lower pressure plate 51 in the clamping component 5 presses down on each lock with a net rope, making the lock form a loop shape with the upper middle part broken, thereby clamping the lock with the net rope to form an anti-theft net bag. The turntable 2 rotates the lock placement platform 7 containing the anti-theft net bag to below the unloading component 6. The unloading component 6 takes out the anti-theft net bag from the lock placement platform 7.
[0047] Mechanized operation is achieved through turntable 2, feeding assembly 3, threading assembly 4, clamping assembly 5 and unloading assembly 6. At the same time, the threading assembly, together with the U-shaped cross-section lock, eliminates the need for threading the net rope. Simply place the net rope at the bottom of the U-shaped cross-section lock, and then press down on the upper end of the U-shaped cross-section lock in the next process to deform and close the lock, clamping the net rope, thus improving operational efficiency and convenience.
[0048] The preferred embodiments of the present invention have been described in detail above. It should be understood that those skilled in the art can make numerous modifications and variations based on the concept of the present invention without creative effort. Therefore, all technical solutions that can be obtained by those skilled in the art based on the concept of the present invention through logical analysis, reasoning, or limited experimentation on the basis of existing technology should be within the scope of protection defined by the claims.
Claims
1. A device for threading anti-theft mesh bags, characterized in that, include: The machine comprises a frame, a turntable, a feeding assembly, a threading assembly, a clamping assembly, and a discharging assembly. The turntable is rotatably mounted on the frame and has up to four sets of locking buckle placement platforms spaced apart. The feeding assembly is located on the right side of the turntable and includes a vibratory feeder, a track, and a clamping feeding assembly. The vibratory feeder is located on the right side of the frame and feeds the locking buckles into the track. The clamping feeding assembly is located at the top of the track and clamps and feeds the locking buckles from the track to the locking buckle placement platform on the right side. The threading assembly is located to the right of the front locking buckle placement platform and drives the net rope to reciprocate in an S-shape within the locking buckles in the front locking buckle placement platform. The clamping assembly is located above the left locking buckle placement platform and includes a lower pressure plate. The discharging assembly is located above the rear locking buckle placement platform and removes the net bag from the rear locking buckle placement platform.
2. The anti-theft mesh bag threading processing device according to claim 1, characterized in that, The clamping and feeding assembly includes an X-axis linear guide drive assembly, a Y-axis linear guide drive assembly, a Z-axis drive cylinder, and a feeding gripper. The lower end of the X-axis linear guide drive assembly is mounted on the frame via a bracket. The Y-axis linear guide drive assembly is mounted on the X-axis linear guide drive assembly. The Z-axis drive cylinder is mounted on the Y-axis linear guide drive assembly. The feeding gripper is located at the lower end of the Z-axis drive cylinder.
3. The anti-theft mesh bag threading processing device according to claim 1, characterized in that, The threading assembly includes an X-axis linear guide drive assembly II, a Y-axis linear guide drive assembly II, a Z-axis drive cylinder II, a rope-winding gripper, and a rope wheel. The lower end of the X-axis linear guide drive assembly II is mounted on the frame via a bracket. The Y-axis linear guide drive assembly II is mounted on the X-axis linear guide drive assembly II. The Z-axis drive cylinder II is mounted on the Y-axis linear guide drive assembly II. The rope-winding gripper is located at the lower end of the Z-axis drive cylinder II. The rope-winding gripper sequentially passes the net rope on the rope wheel through the locking mechanism of the front locking platform.
4. The anti-theft mesh bag threading processing device according to claim 1, characterized in that, The clamping assembly further includes a Z-axis lifting assembly and a Y-axis translation assembly. The Y-axis translation assembly is located at the lower end of the Z-axis lifting assembly, and the lower pressure plate is located at the lower end of the Y-axis translation assembly. The bottom of the lower pressure plate is provided with pressure heads corresponding to the latches at intervals.
5. The anti-theft mesh bag threading processing device according to claim 1, characterized in that, The unloading assembly includes an X-axis linear guide drive assembly three, a Z-axis lifting assembly two, a base plate, and unloading grippers. The lower end of the X-axis linear guide drive assembly three is mounted on the frame via a bracket. The Z-axis lifting assembly two is mounted on the X-axis linear guide drive assembly three. The base plate is mounted on the lower end of the Z-axis lifting assembly two. The unloading grippers are symmetrically arranged on both sides of the lower end of the base plate.
6. The anti-theft mesh bag threading processing device according to claim 1, characterized in that, Both the right and rear sides of the latch placement platform are equipped with push-alignment cylinders.
7. The anti-theft mesh bag threading processing device according to claim 1, characterized in that... The latch placement platform includes a base plate, a latch base, a latch mounting seat, and a latch positioning block. The latch base is fixed on the base plate, and the upper end of the latch base is provided with grooves at intervals. The latch mounting seat is fixedly installed in the grooves, and the latch mounting seat is provided with latch placement slots at intervals. The two sides of the latch placement slots are connected. A U-shaped support block is provided between the latch placement slots. The inner groove of the U-shaped support block is connected to the latch placement slot. The latch positioning block is rotatably disposed at the bottom of the inner groove.
8. The anti-theft mesh bag threading processing device according to claim 7, characterized in that, The latch base is provided with a top block located on the latch mounting seat.
Citation Information
Patent Citations
Baggage burglar mesh
CN201958022U