Ribbon cutting and dividing machine

By designing a cable tie cutting and sorting machine, the automated cutting and recycling of cable ties is achieved, solving the problems of low efficiency and safety hazards associated with manual cable tie stripping, and improving production efficiency and safety.

CN223749704UActive Publication Date: 2026-01-02ZHEJIANG KEWEI INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202520322579.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-02
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

In current cable tie production, the process of stripping cable ties relies on manual operation, which results in high labor intensity, low efficiency, and safety hazards.

Method used

Design a cable tie cutting and sorting machine, including a cable tie placement area, a cable tie cutting area, a cable tie discharge area, a cable tie moving mechanism, and a cable tie waste recycling area. The machine cuts and recycles the cable ties one by one in a mechanized manner, and automatically peels off the cable ties and recycles the waste material.

Benefits of technology

It improves the efficiency of cable tie removal and recycling, reduces the safety risks of manual operation, ensures the reliability and safety of the cutting process, and simplifies subsequent processing procedures.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a cable tie cutting and dividing machine which comprises an operation table, a to-be-divided cable tie placing area, a cable tie cutting area, a cable tie discharging area, a to-be-divided cable tie moving mechanism and a cable tie excess material recycling area, and the to-be-divided cable tie placing area, the cable tie cutting area, the cable tie discharging area, the to-be-divided cable tie moving mechanism and the cable tie excess material recycling area are distributed on the operation table. Through the synergistic effect of the to-be-cut and to-be-cut ribbon placing area, the ribbon cutting area, the ribbon discharging area and the to-be-cut and to-be-cut ribbon moving mechanism in the ribbon cutting and separating machine, automatic cutting, separating and recycling are carried out, ribbon excess materials can be automatically recycled through the ribbon excess material recycling area, compared with an existing ribbon cutting and separating machine, the working efficiency can be greatly improved, and the labor intensity of workers is reduced. The cutting and splitting process is reliable, and the situation that due to the fact that manual operation is adopted in the prior art, in other words, after the binding belt is peeled off from the material belt, the remaining material part of the binding belt is quite sharp under the condition that the remaining material part of the binding belt is most, and when the binding belt is cut through a binding belt cutting and splitting machine, accidental cutting is caused due to improper manual operation can be avoided.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of automatic cutting and material dividing of cable ties, and particularly relates to a cable tie cutting and material dividing machine. BACKGROUND

[0002] In the production and manufacture of cable ties, the existing and more common method is to perform injection molding through a plastic machine, and the injection molding is generally a material belt with cable ties, wherein the number of cable ties on the material belt is generally dozens to hundreds, and simultaneously, due to the structure of injection molding, the injection liquid on the runner will be hardened simultaneously after the cable ties are formed, that is, the injection liquid on the runner will form a structure similar to a "fishbone" together with the formed cable ties, and thus the material belt after injection molding (the specific number of cable ties on the material belt is determined by the actual process) will involve a process of cutting each cable tie separately; in order to separate the cable ties similar to "fishbone" from the "spine" similar to "fishbone" on the material belt, which is hardened on the runner, and make them into independent single cable ties for subsequent bag packaging, the current process of separation is mainly performed manually by workers, but through manual work, problems such as high labor intensity, low efficiency, and high labor cost often occur. SUMMARY

[0003] To this end, the utility model aims to provide a cable tie cutting and material dividing machine which can automatically cut the material belt coming out of the injection molding machine one by one and reliably divide the material.

[0004] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0005] The utility model provides a kind of cable tie cutting and material dividing machine, including operation table, distribution in operation table on the cutting and material dividing cable tie placement area, cable tie cutting area, cable tie discharge area, cutting and material dividing cable tie moving mechanism and cable tie excess material recycling area;The cutting and material dividing cable tie placement area is used for the feed placement of material belt;The cable tie cutting area includes cable tie cutting pre-recovery mechanism, and is used for the cutting of material belt and pre-recovery action;The cable tie discharge area is used for the recovery discharge action of cable tie after cutting;The cutting and material dividing cable tie moving mechanism is used to move material belt from cutting and material dividing cable tie placement area to cable tie cutting area;The cable tie excess material recycling area is used for the recovery of cable tie excess material after the cutting and material dividing of all cable ties on material belt.

[0006] Preferably, the cable tie cutting area further includes a cutting and material dividing cable tie pressing mechanism for pressing the material belt before cutting, and a limiting mechanism for abutting and limiting the cutting and material dividing cable tie pressing mechanism, so that the material belt before cutting moves to the cable tie cutting area and is pressed by the cutting and material dividing cable tie pressing mechanism and the limiting mechanism, and the limiting mechanism limits the movement of the material belt in the cable tie cutting area.

[0007] Preferably, the strap cutting area further comprises a cutting area moving mechanism, the abutting limiting mechanism and the strap cutting pre-recovery mechanism are respectively limited and synchronously moved with the cutting area moving mechanism, the cutting area moving mechanism moves on the strap cutting area to make the abutting limiting mechanism and the strap cutting pre-recovery mechanism approach or move away from the direction of the strap cutting area pressing mechanism, so as to contact or release the limiting action towards the strap head of the material belt.

[0008] Preferably, the number of the cutting area moving mechanism is two, and they are respectively distributed on the two sides of the strap cutting area pressing mechanism, the number of the abutting limiting mechanism and the strap cutting pre-recovery mechanism is matched with the number of the cutting area moving mechanism, the two cutting area moving mechanisms respectively approach or move away from the two sides of the strap cutting area pressing mechanism to make the two strap cutting pre-recovery mechanisms approach or move away from the strap head positions of the strap on the two sides of the strap waste in the middle of the material belt.

[0009] Preferably, the cutting area moving mechanism comprises a cutting area moving bottom plate horizontally placed in the strap cutting area, a cutting area sliding rail limited on the operation table, a cutting area sliding block distributed on the cutting area moving bottom plate and in sliding connection with the cutting area sliding rail, the abutting limiting mechanism comprises an abutting vertical plate formed on the cutting area moving bottom plate and relative to the direction of the strap cutting area pressing mechanism, the movement of the cutting area moving bottom plate drives the abutting vertical plate to abut or move away from the strap waste below before or after cutting;

[0010] The strap cutting area pressing mechanism comprises a strap pressing plate distributed above the strap waste of the material belt, a strap cutting area pressing driving mechanism driving the strap pressing plate to contact or release the limiting action towards the strap waste of the material belt, the strap pressing plate is provided with a pressing plate limiting block relative to the positions of the two ends of the strap waste for limiting the movement of the material belt;

[0011] The strap cutting pre-recovery mechanism comprises a strap cutting pre-recovery mechanism limiting frame connected to the cutting area moving bottom plate, a linear moving mechanism limited on the strap cutting pre-recovery mechanism limiting frame, a strap pre-recovery mechanism having a strap feeding port and limited on the linear moving mechanism, and a strap cutting blade distributed on the strap feeding port, the strap pre-recovery mechanism comprises a strap temporary storage bin distributed in the strap pre-recovery mechanism and having an openable position, and the strap temporary storage bin is in communication with the strap feeding port;

[0012] The contact stage of the abutting plate with the strap residue below the strap residue recovery area is that the cutting position formed between the strap residue on the material belt and all the straps is distributed on the same straight line with the strap cutting blade of the strap cutting and pre-recovery mechanism, and the strap cutting and pre-recovery mechanism is driven by the linear movement mechanism to move linearly towards the material belt, thereby cutting and recovering all the straps one by one.

[0013] Preferably, the strap residue recovery area is distributed below the strap cutting area, and the two cutting area movement mechanisms are respectively close to or away from the two sides of the to-be-cut strap compression mechanism, thereby the two strap cutting and pre-recovery mechanisms are respectively close to or away from the strap head positions of the straps on the two sides of the strap residue located in the middle of the material belt, and the two abutting limiting mechanisms are respectively close to or away from the two sides of the to-be-cut strap compression mechanism, thereby closing or opening the strap residue recovery area.

[0014] After all the straps on the material belt are cut and recovered by the two strap cutting and pre-recovery mechanisms, the two abutting limiting mechanisms are away from each other, thereby the strap residue falls and falls into the strap residue recovery area.

[0015] Preferably, the to-be-cut strap movement mechanism includes a strap movement mechanism support frame limited on the operation table, a strap movement sliding rail and a strap movement driving mechanism limited on the strap movement mechanism support frame, a material pushing piece for moving the strap, and a strap movement sliding block distributed between the material pushing piece and the strap movement sliding rail, wherein the strap movement sliding block is slidably connected with the strap movement sliding rail, one end of the material pushing piece is limited on the strap movement sliding block, and the other end extends to one side of the to-be-cut strap placement area, the material pushing piece is slid on the strap movement sliding rail, thereby pushing the material belt on the to-be-cut strap placement area to move towards the strap cutting area.

[0016] Preferably, the strap discharge area is a conveyor belt formed on one side of the strap cutting area, and the conveyor belt is limited by a protection channel formed by a protection plate and a plurality of grid plates limited on the protection channel, wherein each grid plate is used to form a plurality of strap recovery areas on the conveyor belt.

[0017] The linear moving mechanism extends to one side close to the to-be-cut ribbon placement area and extends to the upper side of the ribbon discharge area, the ribbon pre-recovery mechanism moves along with the linear moving mechanism at the one side of the to-be-cut ribbon placement area and at the upper side of the ribbon discharge area, and all the ribbons on the ribbon tape are cut and enter the ribbon temporary storage bin, when the ribbon pre-recovery mechanism moves to the upper side of the ribbon discharge area, the temporary storage bin can be opened to cut the single ribbon on the single ribbon conveying belt in the ribbon temporary storage bin and move the ribbon away from the ribbon cutting area.

[0018] Preferably, the to-be-cut ribbon placement area includes two placement half-tables distributed on the operation table, a placement table slide rail limited on the operation table, and two half-table slide blocks limited on the two placement half-tables and in sliding connection with the placement table slide rail, the ribbon tape placed in the to-be-cut ribbon placement area is adjusted in position by the close-to or away-from action of the two placement half-tables.

[0019] Preferably, the ribbon excess material recovery area is a space formed below the ribbon cutting area on the operation table, a ribbon excess material conveying belt is limited below the ribbon cutting area on the space, and the ribbon excess material falling into the ribbon excess material recovery area is sent out of the ribbon cutting and material separating machine by the ribbon excess material conveying belt.

[0020] The ribbon cutting and material separating machine has the following positive effects: the ribbon cutting and material separating machine is used to peel off the ribbons on the ribbon tape produced by the injection molding machine, that is, the ribbon tape produced by the injection molding machine is moved to the to-be-cut ribbon placement area by a mechanical hand or other means, then the to-be-cut ribbon moving mechanism moves the ribbon tape to the ribbon cutting area, the ribbon cutting and pre-recovery mechanism on the ribbon cutting area cuts and pre-recoveries all the ribbons on the ribbon tape one by one, then the ribbon discharge area recovers all the cut ribbons, and the ribbon excess material, that is, the "spine" part of the "fishbone" structure on the ribbon tape, is automatically recovered by the ribbon excess material recovery area, so that all the ribbons produced by the injection molding machine can be conveniently peeled off and recovered after the ribbon cutting and material separating machine, the working efficiency is greatly improved, the cutting and material separating process is reliable, and the situation that the ribbon excess material is relatively sharp after being peeled off from the ribbon tape by manual operation is avoided, and the situation that the operator is accidentally cut is also avoided. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the following briefly describes the drawings needed in the specific embodiments or prior art description. In the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, each element or part is not necessarily drawn according to the actual proportion.

[0022] Figure 1 It is a three-dimensional schematic view of the cable tie cutting and distributing machine in the present application.

[0023] Figure 2 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application.

[0024] Figure 3 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application. Figure 2

[0025] Figure 4 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application. Figure 2

[0026] Figure 5 It is a second perspective view of the internal structure of the cable tie cutting and distributing machine in the present application.

[0027] Figure 6 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application. Figure 5

[0028] Figure 7 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application.

[0029] Figure 8 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application. Figure 7

[0030] Figure 9 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application.

[0031] Figure 10 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application. Figure 9

[0032] Figure 11 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application.

[0033] Figure 12 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application. Figure 11

[0034] Figure 13 It is a first perspective view of the internal structure of the cable tie cutting and distributing machine in the present application. Figure 5

[0035] ​​​​​​​The attached diagram is labeled as follows: 1. Operating table; 2. Placement area for cable ties to be cut; 21. Placement half-table; 22. Placement table slide rail; 23. Half-table slider; 3. Cable tie moving mechanism; 31. Cable tie moving drive mechanism; 32. Cable tie moving slide rail; 33. Cable tie moving slider; 34. Material feeding component; 35. Cable tie moving mechanism support frame; 4. Cable tie waste material recycling area; 41. Cable tie waste material conveyor belt; 5. Cable tie discharge area; 53. Protective plate; 52. Grating plate; 51. Cable tie recycling area; 6. Cable tie cutting area; 61. Cable tie cutting pre-recycling mechanism; 611. Cable tie cutting blade. 612. Linear moving mechanism; 613. Cable tie pre-recovery mechanism; 6131. ​​Cable tie temporary storage bin; 61311. Temporary storage bin openable position; 614. Cable tie feed port; 62. Cable tie clamping mechanism to be cut; 621. Cable tie clamping plate; 6211. Clamping plate limit block; 622. Cable tie clamping drive mechanism to be cut; 63. Pressing limit mechanism; 631. Pressing upright plate; 64. Cutting area moving mechanism; 641. Cutting area moving base plate; 642. Cutting area slide rail; 643. Cutting area slider; 7. Material strip; 71. Cable tie residue; 72. Cable tie; 73. Cutting position. Detailed Implementation

[0036] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the present invention and should not be construed as limiting the scope of protection of the present invention.

[0037] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this utility model pertains.

[0038] like Figures 1-13 As shown, the cable tie cutting and separating machine of this utility model includes an operating table 1, a cable tie placement area 2, a cable tie cutting area 6, a cable tie discharge area 5, a cable tie moving mechanism 3, and a cable tie waste material recycling area 4 distributed on the operating table 1; the cable tie placement area 2 is used for feeding and placing cable ties 7; the cable tie cutting area 6 includes a cable tie cutting pre-recycling mechanism 61, used for cutting the cable ties 7 and performing a pre-recycling action; the cable tie discharge area 5 is used for recycling and discharging the cut cable ties 72; the cable tie moving mechanism 3 is used to move the cable ties 7 from the cable tie placement area 2 to the cable tie cutting area 6; the cable tie waste material recycling area 4 is used to recycle the cable tie waste material 71 after all the cable ties 72 on the cable tie 7 have been cut.

[0039] The stripping process of the strap 72 part of the material belt 7 injected by the injection molding machine is carried out by the strap cutting and material separating machine, that is, the material belt 7 injected by the injection molding machine is moved to the to-be-cut material belt placement area 2 by the mechanical hand or other means, then moved to the strap cutting area 6 by the to-be-cut material belt moving mechanism 3, and at the same time, the strap cutting and pre-recycling mechanism 61 in the strap cutting area 6 is used to cut and pre-recycle all the straps 72 on the material belt 7 one by one, then the strap cutting area 5 is used to recycle all the cut straps 72, and the strap residue 71 part, that is, the “spine” part of the “fishbone” structure on the material belt 7, is automatically recycled by the strap residue recycling area 4, so that after using the strap cutting and material separating machine, all the straps 72 injected by the injection molding machine can be conveniently stripped and recycled, which greatly improves the work efficiency compared with the existing method, and the cutting and material separating process is reliable, avoiding the situation that the strap residue 71 part is relatively sharp after the strap 72 is stripped from the material belt 7, and the situation that the operator is accidentally cut by improper operation when using the strap cutting and material separating machine.

[0040] As shown in Figure 2 、 6 The strap cutting area 6 also includes a to-be-cut material belt pressing mechanism 62 for pressing the to-be-cut material belt 7 and a pressing limiting mechanism 63 matched with the to-be-cut material belt pressing mechanism 62, as shown in FIG. 12. The to-be-cut material belt 7 in the strap cutting area 6 is pressed by the to-be-cut material belt pressing mechanism 62 and the pressing limiting mechanism 63, and the to-be-cut material belt 7 is limited in the strap cutting area 6, so that the to-be-cut material belt 7 in the strap cutting area 6 can be reliably limited by the to-be-cut material belt pressing mechanism 62 and the pressing limiting mechanism 63, and the cutting process of the strap 72 can be reliably carried out.

[0041] As shown in Figure 2 、 4, 6-12, the cutting zone moving mechanism 64 is provided with two, and is respectively distributed on both sides of the to-be-cut strap pressing mechanism 62. The number of the pressing limiting mechanism 63 and the strap cutting pre-recovery mechanism 61 is adapted to the number of the cutting zone moving mechanism 64. Through the approaching or moving away action of the two cutting zone moving mechanisms 64 towards both sides of the to-be-cut strap pressing mechanism 62, the approaching or moving away action of the two strap cutting pre-recovery mechanisms 61 towards the strap head 721 positions of the straps 72 on both sides of the strap surplus material 71 in the middle of the material belt 7 is formed. Since the “spine” part of the “fishbone” structure of the material belt 7, i.e. the straps 72 on both sides of the strap surplus material 71 are involved, through the structure design scheme that the two cutting zone moving mechanisms 64 are respectively distributed on both sides of the to-be-cut strap pressing mechanism 62, and the number of the pressing limiting mechanism 63 and the strap cutting pre-recovery mechanism 61 is adapted to the number of the cutting zone moving mechanism 64, the reliability of the limiting and cutting of the material belt 7 on the strap cutting and separating machine is further ensured.

[0042] As shown in Figure 2 , 4 , 6-12, the number of the cutting zone moving mechanism 64 is two, and is respectively distributed on both sides of the to-be-cut strap pressing mechanism 62. The number of the pressing limiting mechanism 63 and the strap cutting pre-recovery mechanism 61 is adapted to the number of the cutting zone moving mechanism 64. Through the approaching or moving away action of the two cutting zone moving mechanisms 64 towards both sides of the to-be-cut strap pressing mechanism 62, the approaching or moving away action of the two strap cutting pre-recovery mechanisms 61 towards the strap head 721 positions of the straps 72 on both sides of the strap surplus material 71 in the middle of the material belt 7 is formed. Since the “spine” part of the “fishbone” structure of the material belt 7, i.e. the straps 72 on both sides of the strap surplus material 71 are involved, through the structure design scheme that the two cutting zone moving mechanisms 64 are respectively distributed on both sides of the to-be-cut strap pressing mechanism 62, and the number of the pressing limiting mechanism 63 and the strap cutting pre-recovery mechanism 61 is adapted to the number of the cutting zone moving mechanism 64, the reliability of the limiting and cutting of the material belt 7 on the strap cutting and separating machine is further ensured.

[0043] As shown in Figure 2 , 4, 6-12, the cutting area moving mechanism 64 includes a cutting area moving base plate 641 laid in the strap cutting area 6, a cutting area sliding rail 642 limited on the operation table 1, a cutting area sliding block 643 distributed on the cutting area moving base plate 641 and in sliding connection with the cutting area sliding rail 642, the abutting limiting mechanism 63 includes an abutting vertical plate 631 formed on the cutting area moving base plate 641 relative to the direction of the strap remaining material 71 towards the strap cutting mechanism 62, through the movement of the cutting area moving base plate 641, the abutting vertical plate 631 is driven to move towards the below of the strap remaining material 71 for pre-abutting before cutting or moving away after cutting;

[0044] The strap cutting pre-recovery mechanism 61 includes a strap cutting pre-recovery mechanism limiting frame connected to the cutting area moving base plate 641, a linear movement mechanism 612 limited on the strap cutting pre-recovery mechanism limiting frame, and a strap pre-recovery mechanism 613 limited on the linear movement mechanism 612 and having a strap feeding port 614, and a strap cutting blade 611 distributed on the strap feeding port 614, the strap pre-recovery mechanism 613 includes a strap temporary storage bin 6131 distributed in the strap pre-recovery mechanism 613 and having a openable position 61311, and the strap temporary storage bin 6131 is in communication with the strap feeding port 614;

[0045] The strap cutting pre-recovery mechanism 61 includes a strap cutting pre-recovery mechanism limiting frame connected to the cutting area moving base plate 641, a linear movement mechanism 612 limited on the strap cutting pre-recovery mechanism limiting frame, and a strap pre-recovery mechanism 613 limited on the linear movement mechanism 612 and having a strap feeding port 614, and a strap cutting blade 611 distributed on the strap feeding port 614, the strap pre-recovery mechanism 613 includes a strap temporary storage bin 6131 distributed in the strap pre-recovery mechanism 613 and having a openable position 61311, and the strap temporary storage bin 6131 is in communication with the strap feeding port 614;

[0046] The contact stage of the abutting vertical plate 631 with the below of the strap remaining material 71, through the cutting position 73 formed between the strap remaining material 71 and all the straps 72 on the material belt 7 and the distribution of the strap cutting blade 611 of the strap cutting pre-recovery mechanism 61 on the same straight line, and through the linear movement of the linear movement mechanism 612 driving the strap cutting pre-recovery mechanism 61 towards the material belt 7, the design of cutting and recovering all the straps 72 one by one is formed, which can ensure the reliable relative movement between the cutting area moving mechanism 64, the strap cutting pre-recovery mechanism 61 and the strap cutting pre-recovery mechanism 61 on the strap cutting area 6, thereby ensuring that the straps 72 distributed on the strap cutting area 6 can be reliably cut and pre-recovered, thereby further ensuring the reliability of the design, and the linear movement mechanism 612 is preferably a linear sliding table module, and the strap cutting pre-recovery mechanism 62 is preferably a cylinder.

[0047] As Figures 1-3, 6-9, 11-12, the strap excess material recycling area 4 is distributed below the strap cutting area 6, through the two cutting area moving mechanisms 64 making the two sides of the strap cutting pre-recycling mechanisms 61 respectively close or far away from the strap head 721 position of the strap 72 on the two sides of the strap excess material 71 located in the middle of the material belt 7,

[0048] and the two pressing limiting mechanisms 63 make the two sides of the strap cutting pre-recycling mechanisms 61 respectively close or far away from the strap head 721 position of the strap 72 on the two sides of the strap excess material 71 located in the middle of the material belt 7,

[0049] After the two strap cutting pre-recycling mechanisms 61 have performed cutting and recycling of the strap excess material 71 on the material belt 7, the two pressing limiting mechanisms 63 make the strap excess material 71 fall and fall into the strap excess material recycling area 4, which can further ensure that the complexity of the design of the utility model is reduced, that is, there is no need to additionally design the structure for recycling the strap excess material 71, thereby ensuring the convenience of the design and implementation of the utility model.

[0050] As Figures 1-3As shown in 5, 11-13, the to-be-cut strap moving mechanism 3 comprises a strap moving mechanism support frame 35 limited on the operation table 1, a strap moving slide rail 32 and a strap moving driving mechanism 31 limited on the strap moving mechanism support frame 35, a poking piece 34 for moving the strap 72, and a strap moving slide block 33 distributed between the poking piece 34 and the strap moving slide rail 32, wherein the strap moving slide block 33 is in sliding connection with the strap moving slide rail 32, the strap moving driving mechanism 31 drives the strap moving slide block 33 to move along the strap moving slide rail 32, one end of the poking piece 34 is limited on the strap moving slide block 33, and the other end extends to one side of the to-be-cut strap placing area 2, the poking piece 34 is slid on the strap moving slide rail 32 to form a design that the poking piece 34 pushes the strap 7 on the to-be-cut strap placing area 2 to move towards the strap cutting area 6, so that the to-be-cut strap moving mechanism 3 can reliably push the to-be-cut strap placing area 2, and the to-be-cut strap placing area 2 can reliably enter the strap cutting area 6, thereby further ensuring the reliability and rationality of the design, and the strap moving driving mechanism 31 is preferably an electric cylinder.

[0051] As shown in 5, 11-12, the strap moving driving mechanism 31 is preferably an electric cylinder. Figures 1-2 As shown in 5, 11-12, the strap moving driving mechanism 31 is preferably an electric cylinder.

[0052] The linear movement mechanism 612 extends to one side near the to-be-cut ribbon placement area 2 and extends to the upper side of the ribbon discharge area 5. The ribbon pre-recovery mechanism 613 moves along with the linear movement mechanism 612 at the side of the to-be-cut ribbon placement area 2 and above the ribbon discharge area 5, and all the ribbons 72 on the ribbon 7 perform cutting and then enter the ribbon temporary storage bin 6131. When the ribbon pre-recovery mechanism 613 moves to the upper side of the ribbon discharge area 5, the temporary storage bin can be opened through the opening position 61311, and the single ribbon 72 in the ribbon temporary storage bin 6131 is placed in the single ribbon recovery area 51 on the conveying belt, which moves away from the ribbon cutting area 6. The ribbon 72 that has completed cutting and separation in the ribbon cutting area 6 can be reliably recovered in the ribbon discharge area 5. The ribbon 72 placed in the ribbon discharge area 5 cannot fall from the ribbon cutting area 6 by the protective channel with the protective plate 53. The conveying belt is divided into several ribbon recovery areas 51 by the multiple grid plates 52, so that the cut ribbons 72 can be grouped, that is, all the ribbons 72 on one side of the ribbon 7 are a group, thereby ensuring that the ribbons 72 on the ribbon 7 can be directly taken and packaged in the ribbon discharge area 5 after being recovered by the ribbon cutting and separating machine, and the process of counting and packaging in the later stage is avoided, thereby simplifying the subsequent processing of the ribbons 72 injected by the injection molding machine and greatly reducing the packaging cost.

[0053] As shown in Figures 1-3 , 5, 11-13, the to-be-cut ribbon placement area 2 includes two placement half tables 21 distributed on the operation table 1, a placement table sliding rail 22 limited on the operation table 1, two half table sliding blocks 23 limited on the two placement half tables 21 and in sliding connection with the placement table sliding rail 22. The two placement half tables 21 move close to or away from each other, and the ribbon 7 placed in the to-be-cut ribbon placement area 2 moves to the design position. The ribbon 7 placed in the to-be-cut ribbon placement area 2 by the mechanical hand or other forms can be moved to the design position after the movement, thereby ensuring that the position of the ribbon 7 in the to-be-cut ribbon placement area 2 is correct, ensuring the subsequent process, greatly reducing the probability of defective ribbons 72 after the ribbon cutting and separating machine, and avoiding the influence of the subsequent cutting process due to the skew of the ribbon 7 placed in the to-be-cut ribbon placement area 2.

[0054] As shown in Figures 1-3, 6-9, 11-12, the strap excess material recycling area 4 is the operating table 1 on the lower part of the strap cutting area 6 is formed with a vacancy, the vacancy position is relative to the to be cut strap compression mechanism 62 immediately below the limit has a strap excess material conveying belt 41, through the strap excess material conveying belt 41, the design of the strap excess material 71 falling into the strap excess material recycling area 4 sent off to the strap cutting machine outside, can ensure that the strap 72 into the strap excess material recycling area 4 can be reliably recycled, can realize the reduction of subsequent for the strap excess material 71 collection and processing process, that is, by designing the strap excess material conveying belt 41, the manufacturer can correspondingly place the recovery frame and the like on the rear side of the strap excess material conveying belt 41, so that the strap excess material 71 entering the strap excess material recycling area 4 directly enters the recovery frame and the like along the strap excess material conveying belt 41, thereby further reducing the subsequent process for the strap excess material 71 treatment, that is, if it falls into the hole, subsequent manual collection is still required. However, due to the sharpness of the strap excess material 71 on the side, there is still a risk of being cut.

[0055] Those of ordinary skill in the art can make other different forms of changes or modifications on the basis of the above description. Here, it is not necessary and impossible to exhaust all the embodiments. The obvious changes or modifications extending from the essential spirit of the present application still belong to the protection scope of the present application.

Claims

1. A ribbon cutting dispenser comprising an operating table (1), characterized in that: The cutting and dividing machine further comprises a to-be-cut-and-divided tape placing area (2), a tape cutting area (6), a tape discharging area (5), a to-be-cut-and-divided tape moving mechanism (3), and a tape surplus material recycling area (4) distributed on the operation table (1); the to-be-cut-and-divided tape placing area (2) is used for feeding and placing the tape (7); the tape cutting area (6) comprises a tape cutting and pre-recycling mechanism (61) used for cutting and pre-recycling the tape (7); the tape discharging area (5) is used for recycling and discharging the cut tape (72); the to-be-cut-and-divided tape moving mechanism (3) is used for moving the tape (7) from the to-be-cut-and-divided tape placing area (2) to the tape cutting area (6); and the tape surplus material recycling area (4) is used for recycling the tape surplus material (71) after cutting and dividing all the tapes (72) on the tape (7).

2. The strap cutting dispenser machine of claim 1, wherein: The tape cutting area (6) further comprises a to-be-cut-and-divided tape pressing mechanism (62) used for pressing the tape (7) before cutting and a pressing limiting mechanism (63) matched with the to-be-cut-and-divided tape pressing mechanism (62); the tape (7) before cutting moves to the tape cutting area (6) and is limited by the pressing limiting mechanism (63) and the to-be-cut-and-divided tape pressing mechanism (62) through bidirectional pressing.

3. The strap cutting dispenser machine of claim 2, wherein: The tape cutting area (6) further comprises a cutting area moving mechanism (64), and the pressing limiting mechanism (63) and the tape cutting and pre-recycling mechanism (61) are respectively limited on the cutting area moving mechanism (64) and move synchronously with the cutting area moving mechanism (64); the cutting area moving mechanism (64) moves on the tape cutting area (6) to make the pressing limiting mechanism (63) and the tape cutting and pre-recycling mechanism (61) approach or move away from the to-be-cut-and-divided tape pressing mechanism (62) to contact or release the limitation of the tape (7) towards the tape head (721) of the tape (7).

4. The strap cutting dispenser machine of claim 3, wherein: The number of the cutting area moving mechanism (64) is two, and the two cutting area moving mechanisms (64) are respectively distributed on the two sides of the to-be-cut-and-divided tape pressing mechanism (62); the number of the pressing limiting mechanism (63) and the tape cutting and pre-recycling mechanism (61) is matched with the number of the cutting area moving mechanism (64); the two cutting area moving mechanisms (64) approach or move away from the two sides of the to-be-cut-and-divided tape pressing mechanism (62) to make the two tape cutting and pre-recycling mechanisms (61) approach or move away from the tape heads (721) of the two tapes (72) on the two sides of the tape surplus material (71) in the middle of the tape (7).

5. The strap cutting dispenser machine according to claim 3 or 4, characterized in that: The cutting area moving mechanism (64) comprises a cutting area moving base plate (641) laid in the ribbon cutting area (6), a cutting area slide rail (642) limited on the operation table (1), and cutting area slide blocks (643) distributed on the cutting area moving base plate (641) and in sliding connection with the cutting area slide rail (642). The abutting limiting mechanism (63) comprises an abutting vertical plate (631) formed on the cutting area moving base plate (641) and opposite to the direction of the ribbon pressing mechanism (62) for the cutting area. The cutting area moving base plate (641) is moved to drive the abutting vertical plate (631) to abut against the ribbon waste (71) before cutting or to move away from the ribbon waste (71) after cutting; The cutting area moving mechanism (64) comprises a cutting area moving base plate (641) laid in the ribbon cutting area (6), a cutting area slide rail (642) limited on the operation table (1), and cutting area slide blocks (643) distributed on the cutting area moving base plate (641) and in sliding connection with the cutting area slide rail (642). The abutting limiting mechanism (63) comprises an abutting vertical plate (631) formed on the cutting area moving base plate (641) and opposite to the direction of the ribbon pressing mechanism (62) for the cutting area. The cutting area moving base plate (641) is moved to drive the abutting vertical plate (631) to abut against the ribbon waste (71) before cutting or to move away from the ribbon waste (71) after cutting; The ribbon cutting pre-recovery mechanism (61) comprises a ribbon cutting pre-recovery mechanism limiting frame connected to the cutting area moving base plate (641), a linear moving mechanism (612) limited on the ribbon cutting pre-recovery mechanism limiting frame, a ribbon pre-recovery mechanism (613) limited on the linear moving mechanism (612) and having a ribbon feeding port (614), and a ribbon cutting blade (611) distributed on the ribbon feeding port (614). The ribbon pre-recovery mechanism (613) comprises a ribbon temporary storage bin (6131) distributed in the ribbon pre-recovery mechanism (613) and having a temporarily openable position (61311). The ribbon temporary storage bin (6131) is in communication with the ribbon feeding port (614). In the contact stage of the abutting vertical plate (631) and the ribbon waste (71), the cutting position (73) between the ribbon waste (71) and all the ribbons (72) on the ribbon (7) is distributed on the same straight line as the ribbon cutting blade (611) of the ribbon cutting pre-recovery mechanism (61). The linear moving mechanism (612) drives the ribbon cutting pre-recovery mechanism (61) to move linearly towards the ribbon (7) to cut and recover all the ribbons (72) one by one.

6. The strap cutting dispenser machine of claim 4, wherein: The strap excess material recycling area (4) is distributed below the strap cutting area (6), and through the two cutting area moving mechanisms (64) moving towards the two sides of the strap cutting pre-recycling mechanism (61) on the two sides of the strap cutting pre-recycling mechanism (61), the strap head (721) of the strap (72) on the two sides of the strap excess material (71) located in the middle of the material belt (7) is moved towards the two sides of the strap cutting pre-recycling mechanism (61), and the two pressing limiting mechanisms (63) are moved towards the two sides of the strap cutting pre-recycling mechanism (61), and the closing or opening of the strap excess material recycling area (4) is formed. The strap excess material (71) after the cutting and recycling of all straps (72) on the material belt (7) is performed by the two strap cutting pre-recycling mechanisms (61), and through the two pressing limiting mechanisms (63) moving away, the strap excess material (71) falls and falls into the strap excess material recycling area (4).

7. The strapping cutter dispenser of claim 1, wherein: The strap moving mechanism (3) includes a strap moving mechanism support frame (35) limited on the operation table (1), a strap moving slide rail (32) and a strap moving driving mechanism (31) limited on the strap moving mechanism support frame (35), a material pushing piece (34) for moving the strap (72), and a strap moving slide block (33) distributed between the material pushing piece (34) and the strap moving slide rail (32), the strap moving slide block (33) and the strap moving slide rail (32) are connected in a sliding manner, one end of the material pushing piece (34) is limited on the strap moving slide block (33), and the other end extends to one side of the strap cutting area (6), and through the sliding movement of the material pushing piece (34) on the strap moving slide rail (32), the material pushing piece (34) pushes the material belt (7) on the strap cutting area (6) to move in the direction of the strap cutting area (6).

8. The strap cutting dispenser of claim 5, wherein: The strap discharge area (5) is a conveyor belt formed on one side of the strap cutting area (6), and the conveyor belt is limited by a protection channel formed by a protection plate (53) and a plurality of grid plates (52) limited on the protection channel, and each grid plate (52) is used to form a plurality of strap recycling areas (51) on the conveyor belt. The linear movement mechanism (612) extends to one side near the to-be-cut ribbon placement area (2), and extends to the upper side of the ribbon discharge area (5) at the other end. The ribbon pre-recovery mechanism (613) moves with the linear movement mechanism (612) on one side of the to-be-cut ribbon placement area (2) and above the ribbon discharge area (5), and all the ribbons (72) on the ribbon (7) perform cutting and enter the ribbon temporary storage bin (6131). When the ribbon pre-recovery mechanism (613) moves to the upper side of the ribbon discharge area (5), the temporary storage bin can be opened (61311) to open the action, and the single ribbon (72) in the ribbon temporary storage bin (6131) is placed in the single ribbon recovery area (51) on the single ribbon conveying belt, and the ribbon (72) is conveyed away from the ribbon cutting area (6) in the direction of the conveying belt.

9. The strapping cutter dispenser of claim 7 wherein: The to-be-cut ribbon placement area (2) includes two placement half-tables (21) distributed on the operation table (1), a placement table sliding rail (22) limited on the operation table (1), and two half-table sliding blocks (23) limited on the two placement half-tables (21) and in sliding connection with the placement table sliding rail (22). By moving the two placement half-tables (21) close to or away from each other, the ribbon (7) placed in the to-be-cut ribbon placement area (2) can be adjusted.

10. The strap cutting dispenser machine of claim 2, 3 or 4, wherein: The ribbon excess material recovery area (4) is a space formed below the ribbon cutting area (6) on the operation table (1). The space is located directly below the to-be-cut ribbon pressing mechanism (62) and is limited by a ribbon excess material conveying belt (41). The ribbon excess material (71) falling into the ribbon excess material recovery area (4) is sent out of the ribbon cutting and dividing machine through the ribbon excess material conveying belt (41).