An integrated processing device for cutting woven bags

By designing an integrated processing device for woven bag cutting, the folding components and drive components are automatically folded and clamped the braided fabric, the high labor cost and health risks caused by manual folding are solved, and a more efficient and safe processing process is achieved.

CN119858354BActive Publication Date: 2025-06-17FUJIAN PENGDALE TECH CO LTD
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Patent Information

Application Number
CN202510352491.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2025-06-17
Estimated Expiration
2045-03-25

AI Technical Summary

Technical Problem

In the prior art, folding of woven bags requires manual bending, resulting in high labor costs and harm to human health.

Method used

An integrated processing device for cutting knitted bags is designed, including folding components and driving components. Through the motor drive gears and spring telescopic rod, the braided fabric can be automatically folded and clamped, reducing the need for manual folding.

Benefits of technology

It effectively reduces the labor force of artificial folding, reduces damage to human health, and improves the stability and efficiency of the processing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of woven bag processing, and discloses an integrated processing device for woven bag cutting, including a cutting device and a base. Through the cooperation of structures such as the second folding component and the first folding component, the infusion shaft of the motor drives two gears to rotate. One of the gears rotates the outer ring through a clockwork spring, and the metal rod pulls the first bracket. The two first brackets drive the third limiting shaft to clamp the stacked woven fabrics. The support cylinder drives the spring telescopic rod to fold. One end of the woven fabric is folded. The third limiting shaft is the first to complete the folding, and after one end of the woven fabric is folded, it presses on the top of the woven fabric again, reducing the labor of manual folding, thereby reducing the damage to the human body caused by the work. Moreover, after the woven fabrics are stacked, the two third limiting shafts cooperate to clamp one end of the woven fabric. Further, it prevents a certain woven fabric from slipping when several woven fabrics are being folded, and at the same time improves the stability of the device during operation.
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Description

Technical Field

[0001] The present invention belongs to the technical field of woven bag processing, and specifically relates to an integrated processing device for cutting woven bags. Background Art

[0002] Woven bags are widely used in fields such as cement packaging, grain transportation, and chemical corrosion prevention. For special functions, processes such as aluminizing and yarn weaving can be selected. Woven bags are usually made of special materials such as polypropylene, polyethylene, and recycled materials. Generally, PP / PE particles are melted and extruded into a film, cooled and cut into strips, then heated and stretched into flat filaments. The flat filaments are woven into cloth by a circular loom or a flat loom, and sewn or heat-sealed into bags. Therefore, they have strong tensile strength and are quite common in the market.

[0003] In the prior art, after the flat filaments are woven into cloth, a cutting machine is still needed to cut them into cloth blocks of uniform size for subsequent sewing and heat sealing. After being cut into several pieces, they are stacked on the workbench. When a certain number accumulates, manual folding is required, and then they are placed in the working area and waiting for subsequent work. However, this working step requires manual bending constantly to fold them neatly. Correspondingly, the consumption of manual labor costs is extremely high, and long-term bending will also cause irreversible damage to the human body. For this reason, we provide an integrated processing device for cutting woven bags. Summary of the Invention

[0004] To solve the problems raised in the above background art, the present invention provides an integrated processing device for cutting woven bags, which solves the problem that manual folding of woven bags requires manual bending constantly to fold them neatly. Correspondingly, the consumption of manual labor costs is extremely high, and long-term bending will also cause damage to the human body.

[0005] To achieve the above object, the present invention provides the following technical solution: An integrated processing device for cutting woven bags, including a cutting device and a base, and further includes;

[0006] A driving component installed on the top of the base;

[0007] An organizing component arranged on the driving component;

[0008] A bearing plate arranged on the top of the driving component, and a woven cloth placed on the top of the bearing plate;

[0009] A supporting component arranged on the top of the base;

[0010] The supporting component includes a bracket two fixedly installed on the top of the base, and two symmetric limiting shafts four are arranged on the organizing component located on the long side;

[0011] A folding component two arranged on the top of the base;

[0012] The second folding assembly includes two meshing gears and a motor fixed on the top of the second bracket, and one of the gears is transmission-connected to the output shaft of the motor;

[0013] A support cylinder is rotatably installed on the top of the bracket 2, and an outer ring is rotatably installed inside the support cylinder. The inner wall of the outer ring is elastically connected to the gear connected to the output shaft of the motor through a spring clip. The outer periphery of the support cylinder is elastically connected to the limit cylinder through a spring telescopic rod. A metal rod is movably penetrated inside the limit cylinder. The upper and lower ends of the metal rod are respectively connected to a limit shaft 3 through a bracket 1. The outer sides of the two brackets 1 are elastically connected through a spring sheet 2, and the side of the metal rod is connected to the outer ring through a steel cable.

[0014] A folding component 1 installed on the top of the base;

[0015] The output shaft of the motor drives a folding component to fold the woven cloth, and the folding speed of the folding component is less than the rotation speed of the output shaft of the motor.

[0016] Preferably, the spring telescopic rod is hinged to the limiting cylinder, and the spring telescopic rod in the folding component 2 of the folding woven cloth limits the limiting cylinder to fold downward only, and the folding component 2 also includes a spring sheet 3 elastically connected to the bottom of the spring telescopic rod and the bottom of the limiting cylinder.

[0017] Preferably, the metal rod is hinged to the two brackets one, and each of the limit shafts three is rotatably mounted on the bracket one.

[0018] Preferably, the folding component 1 includes a limit shaft 1 rotatably installed on the top of the bracket 2, the limit shaft 1 is connected to the output shaft of the motor through a belt, the outer periphery of the limit shaft 1 is connected to the support frame, and the upper and lower ends of the side of the support frame are respectively rotatably installed with a limit shaft 2, and the gap between the two limit shafts 2 can accommodate stacked woven cloth.

[0019] Preferably, the edge of the supporting plate is made of rubber, the lower end of the limiting shaft 2 is located at the bottom of the supporting plate, and the supporting assembly also includes a limiting sleeve installed on the top of the bracket 2, and the limiting sleeve is located outside the travel path of the limiting shaft 2 after the supporting frame rotates.

[0020] Preferably, the folding component 1 also includes a bracket hinged to the top of the support frame, and the middle part of the bracket is elastically connected to the support frame through a spring sheet 1.

[0021] Preferably, the driving assembly includes a dual-axis motor fixedly mounted on the top of the base, the top of the dual-axis motor output shaft is threadedly connected to the bottom of the supporting plate through a reciprocating threaded shaft, and the top of the dual-axis motor is movably connected to the bottom of the supporting plate through a telescopic rod.

[0022] Preferably, the driving assembly also includes a bearing ring installed at the bottom of the dual-axis motor output shaft, and the sorting assembly includes a limiting rod installed on the outer periphery of the bearing ring. The top of the limiting rod is hinged to a limiting plate through a guide rod, and the limiting plate is movably clamped on the top of the bracket two.

[0023] Compared with the prior art, the present invention has the following beneficial effects:

[0024] The present invention cooperates with the structures of folding component 2 and folding component 1, and the infusion shaft of the motor drives two gears to rotate, one of the gears rotates the outer ring through the spring retaining spring, the metal rod pulls the bracket 1, the two brackets 1 drive the limit shaft 3 to clamp the stacked woven cloth, the support tube drives the spring telescopic rod to fold, one end of the woven cloth is folded, the limit shaft 3 completes the folding first, and after one end of the woven cloth is folded, it is pressed on the top of the woven cloth again, reducing the labor of manual folding, thereby reducing the damage caused to the human body by the work, and after the woven cloth is stacked, the two limit shafts 3 cooperate to clamp one end of the woven cloth, further preventing one of the woven cloths from slipping when several woven cloths are folded, and at the same time improving the stability of the device operation.

[0025] The present invention cooperates with structures such as a driving component and a sorting component. The double-axis motor drives the carrier plate to reciprocate up and down through the reciprocating threaded shaft 2. The double-axis motor forces the carrier ring to reciprocate up and down through the reciprocating threaded shaft 1. The carrier ring pulls the lower end of the guide rod down through the limit rod, and its top pulls the limit plate to move. The reciprocating threaded shaft 1 and the reciprocating threaded shaft 2 have the same pitch, but the thread length on the reciprocating threaded shaft 1 is greater than the thread length on the reciprocating threaded shaft 2. The frequency of the up and down movement of the carrier plate is greater than the frequency of the movement of the limit plate. When the carrier plate moves up and down, gaps will be reserved between each woven cloth, so that the limit plate can push the edge of the stacked woven cloth. When the four limit plates are pushed simultaneously and for a long time, the edges of the stacked woven cloth will gradually become flush, which is more convenient for subsequent manual picking and clamping during folding. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 This is a schematic diagram of the appearance structure of the present invention;

[0027] Figure 2 This is a schematic diagram of the top structure of the base of the present invention;

[0028] Figure 3 It is a structural schematic diagram of the second folding component at the top of the second bracket of the present invention;

[0029] Figure 4 This is a schematic diagram of the structure coordination of a folding assembly of the present invention;

[0030] Figure 5Schematic diagram of the internal structure of the limit cylinder of the present invention;

[0031] Figure 6 Schematic diagram of the second working state of the first folding component and the second folding component of the present invention;

[0032] Figure 7 Cross-sectional view of the second working state of the first folding component and the second folding component of the present invention;

[0033] Figure 8 Schematic diagram of the structural cooperation between the driving component and the bearing plate of the present invention.

[0034] In the figure: 1. Base; 2. Driving component; 21. Biaxial motor; 22. Reciprocating screw shaft one; 23. Reciprocating screw shaft two; 24. Bearing ring; 25. Telescopic rod; 3. Sorting component; 31. Limit rod; 32. Guide rod; 33. Limit plate; 4. First folding component; 41. Limit shaft one; 42. Belt; 43. Support frame; 44. Limit shaft two; 45. Spring piece one; 46. Bracket; 5. Second folding component; 51. Motor; 52. Gear; 53. Spring catch; 54. Outer ring; 55. Support cylinder; 56. Steel cable; 57. Spring telescopic rod; 58. Limit cylinder; 59. Metal rod; 50. First bracket; 501. Spring piece two; 502. Limit shaft three; 503. Spring piece three; 6. Support component; 61. Second bracket; 62. Limit sleeve; 63. Limit shaft four; 7. Bearing plate; 8. Cutting equipment; 9. Woven fabric. Detailed implementation manners

[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0036] As Figures 1 to 8 shown, the present invention provides an integrated processing device for cutting woven bags, including a cutting device 8 and a base 1, and further including;

[0037] A driving component 2 installed on the top of the base 1;

[0038] A sorting component 3 arranged on the driving component 2;

[0039] A bearing plate 7 arranged on the top of the driving component 2, and a woven fabric 9 placed on the top of the bearing plate 7;

[0040] A support component 6 arranged on the top of the base 1;

[0041] The support assembly 6 includes a bracket 2 61 fixed to the top of the base 1, and the finishing assembly 3 located on the long side is provided with two symmetrical limiting axes 4 63;

[0042] A folding component 2 5 disposed on the top of the base 1;

[0043] The folding assembly 2 5 includes two meshing gears 52 and a motor 51 fixed to the top of the bracket 2 61 , and one gear 52 is drivingly connected to the output shaft of the motor 51 ;

[0044] A support cylinder 55 is rotatably mounted on the top of the bracket 2 61, and an outer ring 54 is rotatably mounted inside the support cylinder 55. The inner wall of the outer ring 54 is elastically connected to the gear 52 that is not connected to the output shaft of the motor 51 through a spring clip 53. The outer periphery of the support cylinder 55 is elastically connected to a limit cylinder 58 through a spring telescopic rod 57. A metal rod 59 is movably penetrated inside the limit cylinder 58. The upper and lower ends of the metal rod 59 are respectively connected to a limit shaft 3 502 through a bracket 1 50. The outer sides of the two brackets 1 50 are elastically connected through a spring sheet 2 501. The side of the metal rod 59 is connected to the outer ring 54 through a steel cable 56.

[0045] A folding assembly 4 installed on the top of the base 1;

[0046] The output shaft of the motor 51 drives the folding assembly 14 to fold the woven cloth 9, and the folding speed of the folding assembly 14 is less than the rotation speed of the output shaft of the motor 51;

[0047] The metal rod 59 is hinged to the two brackets 50, and each limit shaft 502 is rotatably mounted on the bracket 50.

[0048] With the above solution: after the cutting device 8 pulls the woven cloth 9 out of the specified distance, the woven cloth 9 is cut by the cutting mechanism at its outlet, and then the woven cloth 9 falls on the top of the carrying plate 7. When the number is large enough, the folding work can be carried out;

[0049] The infusion shaft of the motor 51 drives the two gears 52 to rotate. The gear 52 not connected to the output shaft of the motor 51 rotates the outer ring 54 through the spring clip 53. The steel cable 56 will be rolled up on its periphery. The metal rod 59 pulls the bracket 1 50 synchronously. Due to the limitation of the edge of the limit tube 58, the bracket 1 50 is synchronously folded and the spring sheet 2 501 is compressed. The two brackets 1 50 will drive the limit shaft 3 502 to clamp the stacked woven cloth 9.

[0050] To prevent the woven fabric 9 from detaching from the third limiting shaft 502 due to its own toughness and surface smoothness during the folding process. After completing the above work process, the gear 52 is still in a rotating state. However, at this time, the steel cable 56 cannot be pulled. Instead, the spring telescopic rod 57 is driven by the support cylinder 55 to fold. Further, the fourth limiting shaft 63 is located at the top of the woven fabric 9, which causes one end of the woven fabric 9 to be folded. At the same time, since the folding speed of the first folding assembly 4 is less than the rotation speed of the output shaft of the motor 51, the third limiting shaft 502 will complete the folding work first. After one end of the woven fabric 9 is folded, it will press on the top of the woven fabric 9 again. To ensure that the first folding assembly 4 completes the folding work, the output shaft of the motor 51 will continuously drive the first folding assembly 4 until the woven fabric 9 is completely folded. When the gear 52 is driven to rotate by the output shaft of the motor 51 at this time, it will wind up the hairspring snap ring 53, thus preventing the two gears 52 from rotating forcibly and further damaging the teeth;

[0051] This step will reduce the labor force of manual folding, thereby reducing the damage to the human body caused by the work. Moreover, after the woven fabrics 9 are stacked, during the process of folding one end of them, the two third limiting shafts 502 cooperate to clamp tightly. Further, it prevents a certain woven fabric 9 from slipping when several woven fabrics 9 are being folded, and at the same time improves the working stability of the device.

[0052] As Figures 1 - 7 shown, the spring telescopic rod 57 is hinged to the limiting cylinder 58. The spring telescopic rod 57 in the second folding assembly 5 waiting to fold the woven fabric 9 restricts the limiting cylinder 58 to only fold downward. The second folding assembly 5 also includes a spring piece three 503 elastically connected to the bottom of the spring telescopic rod 57 and the bottom of the limiting cylinder 58.

[0053] Adopting the above solution: As Figure 6 in the second folding assembly 5, after its folding work is completed, the spring piece three 503 will be located above the spring telescopic rod 57. By pulling the limiting cylinder 58, the two third limiting shafts 502 can be made to no longer clamp the woven fabric 9. At this time, press one end of the previously clamped woven fabric 9 to make it located below the third limiting shaft 502. As Figure 7 shown in the state where the woven fabric 9 is folded, since the limiting sleeve 62 does not penetrate through the folded woven fabric 9 and the woven fabric 9 has toughness, pulling the folded woven fabric 9 from the left can directly make the woven fabric 9 detach from the device, further reducing the labor cost and at the same time reducing the complexity of the device operation.

[0054] As Figures 1 - 6As shown, the folding component 4 includes a limit shaft 41 rotatably installed on the top of the bracket 61, the limit shaft 41 is connected to the output shaft of the motor 51 through a belt 42, the outer periphery of the limit shaft 41 is connected to the support frame 43, and the upper and lower ends of the side of the support frame 43 are respectively rotatably installed with a limit shaft 44, and the gap between the two limit shafts 44 can accommodate the stacked woven cloth 9.

[0055] The above scheme is adopted: the output shaft of the motor 51 drives the limit shaft 41 to rotate through the belt 42, and the limit shaft 41 will fold one end of the woven cloth 9 through the support frame 43 and the limit shaft 2 44, and the motor 51 drives the spring telescopic rod 57 to fold through the two gears 52, so that the rotation direction of the limit shaft 41 is opposite to the rotation direction of the gear 52 that is not connected to the output shaft of the motor 51, and the diameter value of the transmission part of the limit shaft 41 is greater than the diameter value of the output shaft of the motor 51, so that the speed of the folding component 2 5 folding the woven cloth 9 is greater than the rotation speed of the limit shaft 41, and further, the process of the folding of the woven cloth 9 is smoother and there will be no jamming.

[0056] like Figures 1 - 6 As shown, the edge of the supporting plate 7 is made of rubber, the lower end limiting shaft 44 is located at the bottom of the supporting plate 7, and the supporting assembly 6 also includes a limiting sleeve 62 installed on the top of the bracket 61, and the limiting sleeve 62 is located outside the travel path of the limiting shaft 44 after the supporting frame 43 rotates.

[0057] The above scheme is adopted: the cutting mechanism of the cutting device 8 is located at its outlet, so that after cutting, the woven cloth 9 will fall directly on the top of the supporting plate 7 and be located between the two limiting shafts 44. Furthermore, when the support frame 43 is folded, it will press the edge of the supporting plate 7 to bend and lift one end of the woven cloth 9 for folding. At this time, the limiting shaft 3 502 has already clamped the other end of the woven cloth 9, thereby preventing a certain woven cloth 9 from slipping.

[0058] like Figure 4 As shown, the folding assembly 4 further includes a bracket 46 hinged to the top of the support frame 43, and the middle portion of the bracket 46 is elastically connected to the support frame 43 via a spring sheet 45.

[0059] The above scheme is adopted: since the cutting equipment 8 is located in the factory, it is usually arranged in a row in the form of an assembly line. After the support frame 43 is folded, the bracket 46 will hit the top of the bracket 2 61, thereby making a sound, thereby increasing the folding work of the surrounding staff. The woven cloth 9 needs to be placed in the next work area as soon as possible, and at the same time improving the working efficiency of the device.

[0060] like Figures 1 - 8The driving assembly 2 includes a dual-axis motor 21 fixedly mounted on the top of the base 1. The top of the output shaft of the dual-axis motor 21 is threadedly connected to the bottom of the supporting plate 7 through a reciprocating threaded shaft 23. The top of the dual-axis motor 21 is movably connected to the bottom of the supporting plate 7 through a telescopic rod 25.

[0061] The driving assembly 2 also includes a supporting ring 24 which is installed at the bottom of the output shaft of the dual-axis motor 21. The sorting assembly 3 includes a limiting rod 31 which is installed at the outer periphery of the supporting ring 24. The top of the limiting rod 31 is hinged to a limiting plate 33 through a guide rod 32. The limiting plate 33 is movably connected to the top of the bracket 2 61.

[0062] The above scheme is adopted: since the telescopic rod 25 limits the carrying plate 7 to only move up and down, when the reciprocating threaded shaft 23 is driven to rotate by the dual-axis motor 21, the carrying plate 7 will reciprocate up and down. At the same time, the limit plate 33 slides horizontally on the top of the bracket 2 61, which forces the guide rod 32 and the limit rod 31 to only move in the vertical direction. When the output shaft of the dual-axis motor 21 drives the reciprocating threaded shaft 1 22 to rotate, the carrying ring 24 will reciprocate up and down. Since the limit plate 33 can only move in the horizontal direction, the carrying ring 24 pulls the lower end of the guide rod 32 down through the limit rod 31, and its top pulls the limit plate 33 moves. Furthermore, the pitch of the reciprocating threaded shaft 1 22 is the same as that of the reciprocating threaded shaft 2 23, but the thread length on the reciprocating threaded shaft 1 22 is greater than the thread length on the reciprocating threaded shaft 2 23. This makes the frequency of the up and down movement of the supporting plate 7 greater than the frequency of the movement of the limiting plate 33. When the supporting plate 7 moves up and down, gaps will be reserved between each woven cloth 9, so that the limiting plate 33 can push the edge of the stacked woven cloth 9. When the four limiting plates 33 are pushed at the same time and for a long time, the edges of the stacked woven cloth 9 will gradually become flush, which is more convenient for subsequent manual picking and clamping during folding.

[0063] The working principle and use process of the present invention:

[0064] After the cutting device 8 pulls the woven cloth 9 out of a specified distance, the woven cloth 9 is cut by the cutting mechanism at its outlet, and then the woven cloth 9 falls on the top of the carrying plate 7. When the quantity is sufficient, the folding work can be carried out;

[0065] The double-axis motor 21 drives the carrying plate 7 to reciprocate up and down through the reciprocating threaded shaft 23. The double-axis motor 21 forces the carrying ring 24 to reciprocate up and down through the reciprocating threaded shaft 1 22. The carrying ring 24 pulls the lower end of the guide rod 32 down through the limiting rod 31, and its top pulls the limiting plate 33 to move. The reciprocating threaded shaft 1 22 has the same pitch as the reciprocating threaded shaft 2 23, but the thread length on the reciprocating threaded shaft 1 22 is greater than the thread length on the reciprocating threaded shaft 2 23. The frequency of the up and down movement of the carrying plate 7 is greater than the frequency of the movement of the limiting plate 33. When the carrying plate 7 moves up and down, gaps will be reserved between each woven cloth 9, so that the limiting plate 33 can push the edge of the stacked woven cloth 9. When the four limiting plates 33 are pushed at the same time and for a long time, the edges of the stacked woven cloth 9 will gradually become flush.

[0066] The infusion shaft of the motor 51 drives the two gears 52 to rotate. The gear 52 not connected to the output shaft of the motor 51 rotates the outer ring 54 through the spring clip 53. The steel cable 56 will be rolled up on its periphery. The metal rod 59 pulls the bracket 1 50 synchronously. Due to the limitation of the edge of the limit tube 58, the bracket 1 50 is synchronously folded and the spring sheet 2 501 is compressed. The two brackets 1 50 will drive the limit shaft 3 502 to clamp the stacked woven cloth 9.

[0067] The gear 52 is still in a rotating state, but the steel cable 56 will not be able to be pulled at this time. Instead, the spring telescopic rod 57 is driven to be folded through the support tube 55. The limit shaft four 63 is located at the top of the woven cloth 9, which makes one end of the woven cloth 9 be folded. The output shaft of the motor 51 drives the limit shaft one 41 to rotate through the belt 42. The limit shaft one 41 will fold one end of the woven cloth 9 through the support frame 43 and the limit shaft two 44, and the motor 51 drives the spring telescopic rod 57 to fold through the two gears 52, which makes the rotation direction of the limit shaft one 41 opposite to the rotation direction of the gear 52 that is not driven and connected to the output shaft of the motor 51, and the diameter value of the transmission part of the limit shaft one 41 is greater than the diameter value of the output shaft of the motor 51, which makes the speed of the folding component two 5 folding the woven cloth 9 greater than the rotation speed of the limit shaft one 41.

[0068] The limiting shaft three 502 completes the folding work first, and after folding one end of the woven cloth 9, it is pressed again on the top of the woven cloth 9. To ensure that the folding component 1 4 completes the folding work, the output shaft of the motor 51 will continue to drive the folding component 1 4 until the woven cloth 9 is completely folded. At this time, when the gear 52 is driven to rotate by the output shaft of the motor 51, it will wind up the spring clip 53.

[0069] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.

[0070] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A woven bag cutting integrated processing device, comprising a cutting device (8) and a base (1), characterized in that: Also includes: A drive assembly (2) mounted on the top of the base (1); A finishing component (3) disposed on the driving component (2); A carrier plate (7) disposed on the top of the driving assembly (2), and a woven cloth (9) placed on the top of the carrier plate (7); A support assembly (6) disposed on the top of the base (1); The support assembly (6) comprises a bracket 2 (61) fixedly mounted on the top of the base (1), and the sorting assembly (3) located on the long side is provided with two symmetrical limiting axes 4 (63); A second folding component (5) disposed on the top of the base (1); The second folding assembly (5) comprises two meshing gears (52) and a motor (51) fixed to the top of the second bracket (61), and one of the gears (52) is drivingly connected to the output shaft of the motor (51); A support cylinder (55) is rotatably mounted on the top of the bracket 2 (61), an outer ring (54) is rotatably mounted inside the support cylinder (55), an inner wall of the outer ring (54) is elastically connected to a gear (52) not connected to the output shaft of the motor (51) via a spring retaining spring (53), an outer periphery of the support cylinder (55) is elastically connected to a limit cylinder (58) via a spring telescopic rod (57), a metal rod (59) is movably penetrated inside the limit cylinder (58), upper and lower ends of the metal rod (59) are respectively connected to a limit shaft 3 (502) via a bracket 1 (50), the outer sides of the two brackets 1 (50) are elastically connected via a spring sheet 2 (501), and the side surface of the metal rod (59) is connected to the outer ring (54) via a steel cable (56); A folding component (4) mounted on the top of the base (1); The output shaft of the motor (51) drives the folding component one (4) to fold the woven fabric (9), and the folding speed of the folding component one (4) is less than the rotation speed of the output shaft of the motor (51); The spring telescopic rod (57) is hinged to the limiting cylinder (58), and the spring telescopic rod (57) in the folding component 2 (5) of the folding woven cloth (9) limits the limiting cylinder (58) to be folded only downward, and the folding component 2 (5) further comprises a spring sheet 3 (503) elastically connected to the bottom of the spring telescopic rod (57) and the bottom of the limiting cylinder (58); The metal rod (59) is hinged to the two brackets (50), and each of the limit shafts (502) is rotatably mounted on the brackets (50); The folding assembly (4) comprises a limiting shaft (41) rotatably mounted on the top of the bracket (61), the limiting shaft (41) being transmission-connected to the output shaft of the motor (51) via a belt (42), the outer periphery of the limiting shaft (41) being transmission-connected to a support frame (43), a limiting shaft (44) being rotatably mounted at the upper and lower ends of the side surface of the support frame (43), and a gap between the two limiting shafts (44) being capable of accommodating stacked woven fabrics (9).

2. The woven bag cutting integrated processing device according to claim 1 is characterized in that: The edge of the bearing plate (7) is made of rubber, and the lower end of the second limiting shaft (44) is located at the bottom of the bearing plate (7). The support assembly (6) also includes a limiting sleeve (62) installed on the top of the second bracket (61), and the limiting sleeve (62) is located outside the travel path of the second limiting shaft (44) after the support frame (43) rotates.

3. The woven bag cutting integrated processing device according to claim 2 is characterized in that: The folding assembly 1 (4) further comprises a bracket (46) hinged to the top of the support frame (43), and the middle part of the bracket (46) is elastically connected to the support frame (43) via a spring sheet 1 (45).

4. The woven bag cutting integrated processing device according to claim 3 is characterized in that: The driving assembly (2) comprises a dual-axis motor (21) fixedly mounted on the top of the base (1); the top of the output shaft of the dual-axis motor (21) is threadedly connected to the bottom of the supporting plate (7) via a reciprocating threaded shaft (23); and the top of the dual-axis motor (21) is movably connected to the bottom of the supporting plate (7) via a telescopic rod (25).

5. The woven bag cutting integrated processing device according to claim 4 is characterized in that: The driving assembly (2) further comprises a bearing ring (24) which is transmission-mounted at the bottom of the output shaft of the dual-axis motor (21); the finishing assembly (3) comprises a limiting rod (31) which is mounted on the outer periphery of the bearing ring (24); the top of the limiting rod (31) is hingedly connected to a limiting plate (33) via a guide rod (32); and the limiting plate (33) is movably clamped to the top of the second bracket (61).

Citation Information

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