Isolating film material conveying device

By designing a material conveying device for the isolation film, the problem that the manual material collection speed cannot keep up with the machine speed in the production of isolation film bags was solved, realizing the efficient stacking and neat collection of isolation film bags and improving production efficiency.

CN116969252BActive Publication Date: 2026-04-28GUANGDONG ZHONGBAO MACHINE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GUANGDONG ZHONGBAO MACHINE
Filing Date
2023-07-25
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

During the production of isolation film bags, as the speed of bag-making machines increases, the speed of manual material collection cannot keep up, resulting in small-sized bags being scattered, making bag collection difficult and inefficient.

Method used

Design a release film material conveying device, including a uniform speed conveying mechanism, a transmission mechanism and a receiving platform. The release film material is blocked from stacking by the release mechanism and the conveying is automatically stopped when a preset value is reached. Combined with the alignment mechanism to prevent wrinkles, the material is received by the transmission motor driving the transmission roller shaft to rotate.

Benefits of technology

It improves the stacking neatness and collection efficiency of the isolation film bags, reduces the difficulty of manual operation, and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an isolating film material conveying device and relates to the technical field of conveying equipment. The device comprises a uniform conveying mechanism, a transmission mechanism and a material receiving platform arranged in sequence. The transmission mechanism comprises a transmission support and at least two conveying rollers installed in the transmission support. A plurality of conveying belts are transmissionally connected between the two conveying rollers. A transmission motor is installed on the side of the transmission support and used for driving the conveying rollers to rotate. The device further comprises an isolating mechanism used for blocking the isolating film material conveyed from the uniform conveying mechanism on the conveying belts to be stacked. The stacked isolating film bag is directly received before being conveyed to the material receiving platform. In this way, workers can more easily pack and box the isolating film bag, work efficiency is improved, and the phenomenon of folding or wrinkling of the isolating film bag during stacking can be further prevented by additionally installing an aligning mechanism, so that the neatness of the stacked isolating film bag is ensured.
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Description

Technical Field

[0001] This invention relates to the field of conveying equipment technology, specifically to a separating membrane material conveying device. Background Technology

[0002] In the production process of release film bags, as the bag making speed of bag making machines continues to increase, the bag making efficiency of one-to-many machines is significantly improved. However, the manual material collection speed cannot keep up with the bag output speed. The smaller the size of the bag, the easier it is for the bag to scatter, which makes bag collection more difficult. Summary of the Invention

[0003] The purpose of this invention is to provide a separating membrane material conveying device to solve at least one technical problem existing in the prior art.

[0004] To achieve the above objectives, the present invention provides the following technical solution: a separating membrane material conveying device, comprising a uniform speed conveying mechanism, a transmission mechanism, and a receiving platform arranged sequentially;

[0005] The transmission mechanism includes a transmission bracket and at least two transmission rollers installed in the transmission bracket. Multiple conveyor belts are connected between the two transmission rollers. A transmission motor for driving the transmission rollers to rotate is installed on the side of the transmission bracket.

[0006] It also includes an isolation mechanism for blocking the isolation film material conveyed down from the constant speed conveyor onto the conveyor belt for stacking.

[0007] Preferably, the isolation mechanism includes a cylinder mounting base disposed below the conveyor belt, and a cylinder is mounted on the cylinder mounting base. An isolation baffle is mounted on the top end of the cylinder output rod. The isolation baffle is provided with a plurality of vertically arranged isolation strips. The top surface of the transmission bracket is provided with a plurality of strip-shaped grooves for the isolation strips to extend out, and the strip-shaped grooves correspond to the gap between the conveyor belt.

[0008] Preferably, the inner walls on both sides of the transmission bracket are fixed with mounting guide rails, and the mounting guide rails are equipped with adjustable mounting sliders. The cylinder mounting seat is fixed between the two mounting sliders.

[0009] Preferably, the top of the transmission bracket is also equipped with a detachable alignment mechanism. The alignment mechanism includes lockable guide rails installed on the top of both sides of the transmission bracket, and each of the two lockable guide rails is equipped with a lockable slider that can be slidably adjusted. A connecting rod is fixed between the two lockable sliders. Multiple evenly distributed core disks are fixed on the outer wall of the connecting rod. Each core disk is wrapped with a rotatable outer shell, and multiple ring-shaped receiving claws are fixed on the outer wall of the outer shell. An angled gap is formed between the receiving claws and the outer shell, allowing the isolation film material to slide in. The connection between the receiving claws and the outer shell is elastically deformable. A magnet is installed inside the end of the receiving claw, and an arc-shaped strip that can attract the magnet is embedded inside the lower half of the core disk.

[0010] Preferably, each of the outer shells is connected by a rotating tube sleeved on the connecting rod, and one of the locking sliders is equipped with a stepper motor for driving the rotating tube to rotate intermittently, and the stepper motor is equipped with a rotation sensor for monitoring its rotation number.

[0011] Preferably, the arc-shaped strip is designed to spiral in a vortex shape, and along the rotation direction of the outer shell, the arc-shaped strip gradually approaches the center of the connecting rod.

[0012] Preferably, the receiving claw and the outer shell are integrally formed, and the receiving claw is made of rubber, with ball bearings added to the outer arc surface of the receiving claw.

[0013] Preferably, the uniform speed conveying mechanism includes two support panels installed on one side of the transmission support, at least two transmission shafts are rotatably installed between the two support panels, and the two transmission shafts are connected by a conveyor bar. A servo motor for driving the transmission shafts to rotate is also installed on one side of the support panel.

[0014] Preferably, a lifting mechanism is also provided below the transmission bracket. The lifting mechanism includes a base bracket, and the transmission bracket is vertically slidably installed on the inner side wall of the base bracket. A vertical groove is opened on the side wall of the base bracket, and a lifting screw is installed in the vertical groove. A lifting bolt is threaded to the outer wall of the lifting screw, and the lifting bolt provides support for the transmission bracket.

[0015] Preferably, a threaded rod is rotatably mounted on the bottom of the receiving platform via a bearing seat, a threaded block is mounted on the bottom of the cylinder mounting seat, and the threaded block and the threaded rod are threadedly engaged. A handle for gripping is mounted on one end of the threaded rod.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] I. This invention uses a uniform-speed conveying mechanism to transport packaging bags (i.e., release film bags) onto the conveyor belt of a transmission mechanism. The bags fall onto the conveyor belt under the obstruction of the isolation mechanism, and are stacked on the conveyor belt as the uniform-speed conveying mechanism continues to transport them. When the number of stacked bags reaches a preset value, the uniform-speed conveying mechanism stops transporting, and the isolation mechanism removes its obstruction of the packaging bags. At this point, the transmission motor drives the transmission roller shaft to rotate, which in turn drives the conveyor belt to rotate, conveying the stacked release film bags to the receiving platform for direct collection. This makes it easier for workers to pack the bags into boxes, improving work efficiency. Then, the previous operation can be repeated.

[0018] Second, by adding an alignment mechanism, this invention can further prevent wrinkles or folds from forming when the isolation film bags are stacked, thus ensuring the neatness of the stacking. Attached Figure Description

[0019] Figure 1 This is the front view of the present invention;

[0020] Figure 2 This is a top perspective view of the present invention;

[0021] Figure 3 The present invention is a bottom-view stereoscopic view. Figure 1 ;

[0022] Figure 4 The present invention is a bottom-view stereoscopic view. Figure 2 ;

[0023] Figure 5 This is a front sectional perspective view of the present invention;

[0024] Figure 6 A perspective view of the present invention after the alignment mechanism has been added;

[0025] Figure 7 The above-view perspective and a partial enlarged view of the present invention after the alignment mechanism has been added;

[0026] Figure 8 This is a partially enlarged cross-sectional view of the alignment mechanism of the present invention.

[0027] In the diagram: 1. Uniform speed conveying mechanism; 11. Support panel; 12. Conveyor shaft; 13. Conveyor bar; 14. Servo motor; 2. Lifting mechanism; 21. Base support; 22. Lifting screw; 23. Lifting bolt; 3. Transmission mechanism; 31. Transmission support; 32. Conveyor roller shaft; 33. Conveyor belt; 34. Strip trough; 35. Transmission motor; 4. Isolation mechanism; 41. Mounting guide rail; 42. Mounting slider; 43. Cylinder mounting seat; 44. Cylinder; 45. Isolation baffle; 46. Isolation bar; 47. Threaded block; 48. Threaded rod; 5. Alignment mechanism; 51. Locking guide rail; 52. Locking slider; 53. Connecting rod; 54. Rotating tube; 55. Outer shell; 56. Core plate; 57. Receiving claw; 58. Magnet; 59. Arc strip; 6. Receiving platform. Detailed Implementation

[0028] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0029] Example 1;

[0030] Please see Figures 1 to 5 The present invention provides a technical solution: a separating membrane material conveying device, comprising a uniform speed conveying mechanism 1, a transmission mechanism 3 and a receiving platform 6 arranged in sequence;

[0031] The transmission mechanism 3 includes a transmission support 31 and at least two transmission roller shafts 32 installed in the transmission support 31. Multiple conveyor belts 33 are connected between the two transmission roller shafts 32. A transmission motor 35 for driving the transmission roller shafts 32 to rotate is installed on the side of the transmission support 31.

[0032] It also includes an isolation mechanism 4, which is used to block the isolation film material conveyed down from the uniform speed conveying mechanism 1 onto the conveyor belt 33 for stacking.

[0033] When the release film material conveying device is in use, the bag making machine operates, and the packaging bags are transported to the conveyor belt 33 of the transmission mechanism 3 by the uniform speed conveying mechanism 1. Under the obstruction of the isolation mechanism 4, they fall onto the conveyor belt 33 and are stacked on the conveyor belt 33 as the uniform speed conveying mechanism 1 continues to convey them. When the number of stacked bags reaches the preset value, the uniform speed conveying mechanism 1 stops conveying, and then the isolation mechanism 4 removes its obstruction of the packaging bags. At this time, the transmission motor 35 drives the transmission roller shaft 32 to rotate, which drives the conveyor belt 33 to rotate together, conveying the stacked release film bags to the receiving platform 6 for direct receiving. This makes it easier for workers to pack the bags into boxes and improves work efficiency. Then the previous operation can be repeated.

[0034] In one preferred embodiment, the isolation mechanism 4 includes a cylinder mounting base 43 disposed below the conveyor belt 33, and a cylinder 44 is mounted on the cylinder mounting base 43. An isolation baffle 45 is mounted on the top of the output rod of the cylinder 44. The isolation baffle 45 is provided with a plurality of vertically arranged isolation strips 46. The top surface of the transmission bracket 31 is provided with a plurality of strip grooves 34 for the isolation strips 46 to extend out, and the strip grooves 34 correspond to the gap between the conveyor belt 33.

[0035] Quarantine facility 4 can be viewed Figure 4 The cylinder 44 is used to push the isolation baffle 45 upward, so that the isolation strip 46 extends out from the strip groove 34 to block the isolation film bag.

[0036] Then, when the stacked isolation film bags are being conveyed, the isolation strips 46 on the isolation baffle 45 can be moved down by the cylinder 44. The operation is convenient and will not affect or obstruct the conveyor belt 33.

[0037] In one preferred embodiment, mounting guide rails 41 are fixed on both inner walls of the transmission bracket 31, and mounting sliders 42 that can be slidably adjusted are installed in the mounting guide rails 41. The cylinder mounting seat 43 is fixed between the two mounting sliders 42.

[0038] By adjusting the position of the mounting slider 42 on the mounting guide rail 41, the position of the isolation baffle 45 can be adjusted, and the transmission distance of the conveyor belt 33 can be adjusted according to the size of the bag, which is convenient to operate and has greater applicability.

[0039] In Example 2, based on Example 1, to prevent wrinkles or unevenness in the separation film bags during stacking, an alignment mechanism 5 is added to the top of the transmission support 31, specifically as follows: Figure 6-8 As shown;

[0040] The top of the transmission bracket 31 is also equipped with a detachable alignment mechanism 5. The alignment mechanism 5 includes lockable guide rails 51 installed on the top of both sides of the transmission bracket 31, and each of the two lockable guide rails 51 is equipped with a lockable slider 52 that can be slidably adjusted. A connecting rod 53 is fixed between the two lockable sliders 52. Multiple evenly distributed core disks 56 are fixed on the outer wall of the connecting rod 53. Each core disk 56 is wrapped with a rotatable outer shell 55. Multiple ring-shaped receiving claws 57 are fixed on the outer wall of the outer shell 55. An angled gap is formed between the receiving claws 57 and the outer shell 55 to allow the isolation film material to slide in. The connection between the receiving claws 57 and the outer shell 55 can be elastically deformed. A magnet 58 is installed inside the end of the receiving claw 57. An arc-shaped strip 59 that can attract the magnet 58 is embedded in the lower half of the core disk 56.

[0041] When the isolation film bag falls from the uniform speed conveying mechanism 1 onto the conveyor belt 33 of the transmission mechanism 3, during this process, see... Figure 8 After the isolation film bag extends from the uniform speed conveying mechanism 1, it will fall into the angled gap formed between the receiving claw 57 and the outer shell 55. At this time, driven by the external structure, the outer shell 55 starts to rotate. Moreover, since the lower half of the core disk 56 is embedded with an arc strip 59, when the outer shell 55 rotates, due to the magnetic effect between the magnet 58 and the arc strip 59, the receiving claw 57 will bend and approach the outer shell 55. At the same time, the angled gap between the two will clamp the inserted isolation film bag and pull it onto the conveyor belt 33 as the outer shell 55 rotates.

[0042] When the receiving claw 57 rotates out of the range of the arc strip 59, the magnet 58 loses its attraction. The receiving claw 57 will then reset under its own elastic deformation, and the clamping effect on the isolation film bag will also be released. At this time, the isolation film bag will slide down along the outer arc surface of the previous receiving claw 57 and automatically flatten itself. This can further prevent the isolation film bag from wrinkling or folding, so as to ensure the neatness of stacking.

[0043] Moreover, since the head of the isolation film bag moves by clamping the gap of the receiving claw 57, the impact on the stacked isolation film bags can be reduced when dragging the tail. Finally, after the head of the isolation film bag slides down, it is blocked by the isolation strip 46 to complete the stacking, which further improves the neatness of the stacking.

[0044] In one preferred embodiment, a method for driving the outer casing 55 to rotate is provided, as detailed in [reference needed]. Figure 6-7 ;

[0045] Each outer casing 55 is connected by a rotating tube 54 sleeved on a connecting rod 53, and a stepper motor for driving the rotating tube 54 to rotate intermittently is installed on one of the locking sliders 52, and a rotation sensor for monitoring the number of rotations is installed on the stepper motor.

[0046] The rotating tube 54 is driven by a stepper motor to rotate. Under the connection of the rotating tube 54, the other rotating tubes 54 and the outer shell 55 will rotate together. Since each receiving claw 57 corresponds to a separation film bag, the number of rotations of the stepper motor can be monitored by a rotation sensor to achieve the purpose of counting the separation film bags. When the number of separation film bags is stacked to a specified number, it can remind the staff or trigger the next process.

[0047] In one preferred embodiment, the arc-shaped bar 59 is configured to spiral in a vortex shape, and along the rotation direction of the outer casing 55, the arc-shaped bar 59 gradually approaches the center of the connecting rod 53.

[0048] To prevent the receiving claw 57 from rebounding and resetting after suddenly losing its magnetic attraction, the spiral shape of the arc strip 59 is designed so that the distance between the magnet 58 and the arc strip 59 gradually changes as the receiving claw 57 rotates with the outer shell 55. This ensures that the receiving claw 57 has a gradual transition when resetting, preventing sudden resetting. The purpose is to avoid excessive agitation of its outer arc surface when guiding the previous isolation film bag to slide down and lay it out, thus ensuring the neatness of the stacking of isolation film bags.

[0049] In one preferred embodiment, the receiving claw 57 and the outer shell 55 are integrally formed, and the receiving claw 57 is made of rubber, with ball bearings added to the outer arc surface of the receiving claw 57.

[0050] The rubber material allows for easy elastic recovery, and the option to add ball bearings can be selected as needed. This reduces the friction between the outer arc of the receiving claw 57 and the separator bag, making its sliding smoother.

[0051] In one preferred embodiment, the uniform speed conveying mechanism 1 includes two support wall plates 11 mounted on one side of the transmission support 31, at least two transmission shafts 12 are rotatably mounted between the two support wall plates 11, and the two transmission shafts 12 are connected by a transmission bar 13. A servo motor 14 for driving the transmission shafts 12 to rotate is also mounted on one side of the support wall plate 11.

[0052] For details on the uniform speed conveying mechanism, please refer to [link / reference]. Figure 2 The servo motor drives the transmission shaft 12 to rotate, thereby driving the conveyor bar 13 to convey the isolation film bags made by the bag making machine to the transmission mechanism 3 at a uniform speed.

[0053] In one preferred embodiment, a lifting mechanism 2 is also provided below the transmission bracket 31. The lifting mechanism 2 includes a base bracket 21, and the transmission bracket 31 is vertically slidably installed on the inner side wall of the base bracket 21. A vertical groove is opened on the side wall of the base bracket 21, and a lifting screw 22 is installed in the vertical groove. A lifting bolt 23 is threadedly connected to the outer wall of the lifting screw 22, and the lifting bolt 23 provides support for the transmission bracket 31.

[0054] The lifting mechanism 2 can be used to adjust the height of the transmission bracket 31. Specifically, the lifting bolt 23 can be rotated directly to adjust the height of the transmission bracket 31 according to the actual situation.

[0055] In one preferred embodiment, an implementation method for adjusting the position of the cylinder mounting seat 43 is provided, that is, adjusting the blocking position of the separator strip 46 according to the size of the separator bag, specifically as follows: Figure 5 As shown;

[0056] The bottom of the receiving platform 6 is rotatably mounted with a threaded rod 48 via a bearing seat. The bottom of the cylinder mounting seat 43 is mounted with a threaded block 47, and the threaded block 47 and the threaded rod 48 are threadedly engaged. One end of the threaded rod 48 is equipped with a handle for gripping.

[0057] Through the threaded engagement between the threaded rod 48 and the threaded block 47, the position of the threaded block 47 can be adjusted by directly rotating the threaded rod 48, thereby achieving the effect of adjusting the position of the cylinder mounting seat 43.

[0058] The standard parts used in this embodiment can be purchased directly from the market, while the non-standard structural parts described in the specification and drawings can be processed directly based on existing technical knowledge without any doubt. At the same time, the connection methods of each component adopt mature conventional methods in the existing technology, and the machinery, parts and equipment all adopt conventional models in the existing technology, so they will not be described in detail here.

[0059] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A separating membrane material conveying device, characterized in that, It includes a uniform speed conveying mechanism (1), a transmission mechanism (3), and a receiving platform (6) arranged in sequence. The transmission mechanism (3) includes a transmission bracket (31) and at least two transmission rollers (32) installed in the transmission bracket (31). Multiple conveyor belts (33) are connected between the two transmission rollers (32). A transmission motor (35) for driving the transmission rollers (32) to rotate is installed on the side of the transmission bracket (31). A detachable alignment mechanism (5) is also installed on the top of the transmission bracket (31). The alignment mechanism (5) includes locking guide rails (51) installed on the top of both sides of the transmission bracket (31). Each of the two locking guide rails (51) is equipped with a sliding adjustable locking slider (52). The two locking sliders (52) are fixedly connected. A connecting rod (53) is fixed, and a plurality of evenly distributed core disks (56) are fixed on the outer wall of the connecting rod (53). Each core disk (56) is wrapped with a rotatable outer shell (55), and a plurality of ring-shaped receiving claws (57) are fixed on the outer wall of the outer shell (55). An angled gap is formed between the receiving claws (57) and the outer shell (55) to allow the isolation film material to slide in. The connection between the receiving claws (57) and the outer shell (55) can be elastically deformed. A magnet (58) is installed inside the end of the receiving claws (57), and an arc-shaped strip (59) that can attract the magnet (58) is embedded in the lower half of the core disk (56). It also includes an isolation mechanism (4) for blocking the isolation film material conveyed down from the uniform speed conveying mechanism (1) on the conveyor belt (33) for stacking.

2. The separator film material conveying device according to claim 1, characterized in that: The isolation mechanism (4) includes a cylinder mounting base (43) located below the conveyor belt (33), and a cylinder (44) is mounted on the cylinder mounting base (43). An isolation baffle (45) is mounted on the top of the output rod of the cylinder (44). A plurality of vertically arranged isolation strips (46) are provided on the isolation baffle (45). A plurality of strip grooves (34) for the isolation strips (46) to extend are opened on the top surface of the transmission bracket (31), and the strip grooves (34) correspond to the gap between the conveyor belt (33).

3. The separator film material conveying device according to claim 2, characterized in that: The transmission bracket (31) has mounting rails (41) fixed on both inner walls. The mounting rails (41) have adjustable mounting sliders (42) installed inside them. The cylinder mounting seat (43) is fixed between the two mounting sliders (42).

4. The separator film material conveying device according to claim 1, characterized in that: Each of the outer shells (55) is connected by a rotating tube (54) sleeved on the connecting rod (53), and one of the locking sliders (52) is equipped with a stepper motor for driving the rotating tube (54) to rotate intermittently, and the stepper motor is equipped with a rotation sensor for monitoring its rotation number.

5. The separator film material conveying device according to claim 1, characterized in that: The arc-shaped bar (59) is designed to spiral in a vortex shape, and along the rotation direction of the outer shell (55), the arc-shaped bar (59) gradually approaches the center of the connecting rod (53).

6. The separator film material conveying device according to claim 1, characterized in that: The receiving claw (57) and the outer shell (55) are integrally formed, and the receiving claw (57) is made of rubber. The outer arc surface of the receiving claw (57) is provided with ball bearings.

7. The separator film material conveying device according to any one of claims 1-6, characterized in that: The uniform speed conveying mechanism (1) includes two support wall plates (11) installed on one side of the transmission support (31), at least two transmission shafts (12) are rotatably installed between the two support wall plates (11), and the two transmission shafts (12) are connected by a transmission bar (13). A servo motor (14) for driving the transmission shafts (12) to rotate is also installed on one side of the support wall plate (11).

8. The separator film material conveying device according to claim 1, characterized in that: A lifting mechanism (2) is also provided below the transmission bracket (31). The lifting mechanism (2) includes a base bracket (21), and the transmission bracket (31) is vertically slidably installed on the inner side wall of the base bracket (21). A vertical groove is provided on the side wall of the base bracket (21), and a lifting screw (22) is installed in the vertical groove. A lifting bolt (23) is threaded on the outer wall of the lifting screw (22), and the lifting bolt (23) provides support for the transmission bracket (31).

Citation Information

Patent Citations

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