Non-woven bag arranging machine capable of automatically packaging and transferring non-woven bags

By designing a non-woven bag bag processing machine that is automatically packaged and transported, the combination of slope climbing machine, stacking device and packaging device is used to solve the problems of low packaging efficiency and manual dependence of existing non-woven bags, and efficient and automated packaging is achieved.

CN120024548AInactive Publication Date: 2025-05-23ZHEJIANG YAGANG PACKAGING CO LTD
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Patent Information

Application Number
CN202510512476.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing non-woven bag packaging mainly relies on labor, is inefficient and requires a lot of labor, and the existing devices cannot effectively handle independent non-woven bags with handles and bag bodies.

Method used

A non-woven bag bag processing machine for automatic packaging and transportation is designed, including a hill climber, a stacking device and a packing device. Through the No. 1 motor, the column rotation and finishing mechanism are driven by the No. 1 motor to realize automatic stacking and packaging of non-woven bags.

Benefits of technology

The automated stacking, organization and packaging of non-woven bags is realized, processing efficiency is improved, manual intervention is reduced, and independent non-woven bags with handles and bag bodies can be effectively processed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an automatic packaging and transferring non-woven fabric bag arranging machine which comprises a climbing machine, a stacking device and a packaging device, the stacking device comprises a base, a stand column extending upwards is rotatably connected in the base, and two bearing main plates distributed left and right are connected in the stand column in an up-down sliding mode; the two bearing main plates always move in the opposite directions, an arrangement mechanism is further arranged on the stand column, the arrangement mechanism is used for arranging non-woven fabric bags conveyed out of the climbing machine and stacking the non-woven fabric bags on the bearing main plate on the right side, the non-woven fabric bags can be automatically stacked, arranged, packaged and discharged, the treatment efficiency is high, the labor intensity of workers is reduced, and the labor intensity of workers is reduced. Manual intervention is not needed, and the automation degree is high; according to the non-woven fabric bag stacking device, the non-woven fabric bags are poked through the poke device so that the non-woven fabric bags can be located between the side baffles and the rear baffle, the non-woven fabric bags can be stacked in order, in addition, the side baffles and the rear baffle can abut against the multi-layer non-woven fabric bags located on the upper side, and the tidy degree is further improved.
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Description

Technical Field

[0001] The invention relates to the technical field of non-woven bags, and in particular to a bag sorting machine for automatically packaging and transporting non-woven bags. Background Art

[0002] Non-woven bags are environmentally friendly bags made of non-woven fabrics. Due to their material properties, production process and environmental advantages, they have gradually become a popular choice to replace traditional plastic bags.

[0003] After production, non-woven bags are usually stacked and bundled for storage, transportation and sales. The existing non-woven bag packaging work is usually mainly manual, and a certain number of non-woven bags are manually packaged through a strapping machine and then placed in a carton. The above process requires a lot of labor and has low processing efficiency.

[0004] In addition, there is a non-woven bag batch packaging device on the market as disclosed in application number 202121853887.0. However, the device only works on uncut and rolled non-woven bags, and cannot stack and package independent non-woven bags with handles and bag bodies in the conventional sense. Summary of the invention

[0005] In view of the deficiencies in the prior art, the present invention provides a bag sorting machine for non-woven bags that can be automatically packaged and transported, so as to solve the problems mentioned in the above background technology.

[0006] The present invention provides the following technical solution: a bag sorting machine for non-woven bags for automatic packaging and transportation, comprising a climbing machine arranged from right to left, a stacking device and a packaging device, the stacking device comprising a base, a column extending upward is rotatably connected in the base, and a No. 1 motor for driving the column to rotate is provided on the base, two receiving main boards distributed on the left and right are slidably connected in the column, the two receiving main boards always move toward each other, and a sorting mechanism is also provided on the column, the sorting mechanism is used to sort the non-woven bags uploaded and output by the climbing machine and stack them on the receiving main board on the right side; The lower side of the receiving main board is slidably connected to a receiving sub-board, and the bottom surface of the receiving main board is also provided with a No. 1 boss connected to the receiving sub-board through a No. 1 spring. The packaging device includes a bottom plate, and a strapping machine is slidably connected to the bottom plate left and right, and a No. 2 motor for driving the strapping machine to move left and right is installed on the bottom plate. The strapping machine includes a machine platform and a U-shaped frame. When the receiving main board is at the lowest point, the upper edge of the machine platform is coplanar with the lower side surface of the receiving main board. The machine platform is also provided with a transfer device for receiving the non-woven bag on the left side of the receiving main board.

[0007] Preferably, the transfer device includes vertical plates arranged front and rear on the platform, rotatable upper push rollers are installed between the vertical plates, and lower push rollers rotatably connected to the upper side surface of the platform and distributed up and down with the upper push rollers are also rotatably connected.

[0008] Preferably, a friction plate is fixedly arranged on the upper side of the bottom plate, a driving shaft is rotatably connected inside the machine, and a friction wheel matched with the friction plate is mounted on the driving shaft, a ratchet is also mounted outside the driving shaft, and a first synchronous wheel is respectively mounted on the part of the machine extending to the front side of the machine and outside the ratchet, and the two first synchronous wheels are connected by a first synchronous belt; The driving shaft drives the ratchet wheel and the first synchronous wheel to rotate only when rotating counterclockwise.

[0009] Preferably, a swing plate is hinged on the left side of the machine platform, and a lifting plate is also slidably connected to the left side of the machine platform, the upper end of the lifting plate and the lower side of the swing plate are connected by a hinge rod, the lower side of the lifting plate is equipped with a roller attached to the upper side of the base plate, and there is a chamfer between the upper side of the base plate and its left side.

[0010] Preferably, a slide groove running through left and right is provided in the column, two sliders distributed on the left and right are slidably connected in the slide groove, and two threaded shafts respectively threadedly connected to the two sliders are rotatably connected in the slide groove, the two threaded shafts are connected through a No. 2 synchronous wheel and a No. 2 synchronous belt, and a No. 3 motor for driving the threaded shaft is installed at the bottom of the column, and the two left and right receiving main boards are respectively fixed on the left and right sliders.

[0011] Preferably, the organizing mechanism includes a bracket, a mounting column is installed in the bracket, a horizontal plate is fixed on the mounting column, a toggle device is installed on the lower side of the horizontal plate for toggling the non-woven bag transmitted from the climber to the left, and side baffles are also installed on the front and rear sides of the horizontal plate, a rear baffle is also installed on the left side of the toggle device, and a flaring plate inclined forward and backward is installed on the right end of the side baffle.

[0012] Preferably, the toggle device includes a shell fixedly mounted on the lower side of the horizontal plate, a toggle shaft is rotatably connected inside the shell, and a plurality of flexible plates are mounted on the outer side of the toggle shaft. A No. 4 motor for driving the toggle shaft to rotate is also mounted on the shell.

[0013] Preferably, a slot extending from front to back is provided in the side baffle, a spring plate passing through the slot is fixedly provided on the upper side of the horizontal plate, and the spring plate is connected to the bottom surface of the slot by a No. 2 spring, and the rear baffle is also connected to the No. 2 boss on the left side of the shell by a No. 3 spring.

[0014] Preferably, the upper end of the column is provided with two asymmetrically distributed protrusions, and the lower end of the mounting column is provided with a guide groove that cooperates with the protrusions in motion; The mounting post is slidably connected in the bracket up and down.

[0015] Preferably, the end surface of the receiving main board away from the column is an inclined surface extending upward and inclined toward the axis of the column.

[0016] The present invention provides a non-woven bag sorting machine for automatic packaging and transportation, which has the following beneficial effects: The present invention includes a climbing machine, a stacking device and a packaging device, which can automatically stack, sort, package and unload non-woven bags, with high processing efficiency, no need for manual intervention, and high degree of automation; The present invention uses a toggle to toggle the non-woven bags so that they are located between the side baffles and the rear baffles, so that they are stacked neatly. In addition, the side baffles and the rear baffles will abut against the non-woven bags on the upper side, further improving the neatness. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the appearance of the present invention; Figure 2 yes Figure 1 A schematic diagram of the appearance of the middle stacking device; Figure 3 yes Figure 2 An enlarged schematic diagram of the middle mounting column; Figure 4 yes Figure 1 Schematic diagram of the appearance of the middle packaging device; Figure 5 yes Figure 4 A schematic diagram of the appearance of the middle packaging device from another perspective; Figure 6 yes Figure 2 Schematic diagram of the structure inside the middle base.

[0018] In the figure: 11. Climbing machine; 12. Stacking device; 13. Packing device; 21. Base; 22. Column; 23. Receive main board; 24. No. 1 motor; 25. Receive auxiliary board; 31. Bottom plate; 32. Machine platform; 34. No. 2 motor; 33. U-shaped plate; 35. Vertical plate; 36. Upper push roller; 37. Lower push roller; 38. Friction plate; 39. Drive shaft; 40. Friction wheel; 41. No. 1 synchronous wheel; 42. No. 1 synchronous belt; 43. Swing plate; 44. Lifting plate; 45. Articulated rod; 51. Slide groove; 52. Sliding block; 53. Threaded shaft; 54. No. 3 motor; 61. Bracket; 62. Mounting column; 63. Horizontal plate; 64. Side baffle; 65. Housing; 66. Toggle shaft; 67. Rear baffle; 68. Spring plate; 71. Raised portion; 72. Guide groove; 91. No. 2 synchronous belt. DETAILED DESCRIPTION

[0019] Embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to be used to explain the present invention, but should not be understood as limiting the present invention.

[0020] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0021] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of the present invention, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.

[0022] In the present invention, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", "fixed" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral one; it can be a mechanical connection, an electrical connection, or communication with each other; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise clearly defined. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0023] Reference Figure 1-Figure 6 According to an embodiment of the present invention, a bag sorting machine for non-woven bags for automatic packaging and transportation includes a climbing machine 11, a stacking device 12 and a packaging device 13 arranged from right to left.

[0024] The climbing machine 11 is a conventional setting in the prior art and will not be described in detail. In the present embodiment, the climbing machine 11 transports the non-woven bag to the upper left.

[0025] The stacking device 12 includes a base 21, in which an upwardly extending column 22 is rotatably connected, and a No. 1 motor 24 for driving the column 22 to rotate is provided on the base 21. In this embodiment, the No. 1 motor 24 drives the column 22 through a gear set, and two left and right supporting main boards 23 are connected to the column 22 in an upward and downward sliding manner, and the two supporting main boards 23 always move toward each other.

[0026] Specifically, the column 22 can rotate so that the two receiving main boards 23 arranged on the left and right can be swapped left and right. The receiving main board 23 on the right will always slowly descend from the highest point, while the receiving main board 23 on the left will slowly rise. The receiving main board 23 on the right is used to receive and stack the non-woven bags transmitted from the climber 11. After it moves to the lowermost side, the column 22 will rotate to transfer it to the leftmost side, and the receiving main board 23 originally on the left will be lifted to the uppermost side and then moved to the right side to continue receiving the non-woven bags. The packaging device 13 is used to bundle and unload the non-woven bags on the receiving main board 23 on the left side at the lowermost side.

[0027] The column 22 is also provided with a sorting mechanism, which is used to sort out the non-woven bags uploaded and output by the climbing machine 11 and stack them on the receiving main board 23 on the right side.

[0028] The lower side of the receiving main board 23 is slidably connected with a receiving sub-plate 25, and the bottom surface of the receiving main board 23 is also provided with a No. 1 boss connected to the receiving sub-plate 25 through a No. 1 spring, so that the receiving sub-plate 25 extends laterally to the outside of the receiving main board 23. The packaging device 13 includes a bottom plate 31, and a strapping machine is slidably connected to the bottom plate 31, and a No. 2 motor 34 for driving the strapping machine to move left and right is installed on the bottom plate 31. In this embodiment, the output shaft in the No. 2 motor 34 is connected with a control shaft threadedly connected to the strapping machine to drive the strapping machine to move left and right. The strapping machine includes a machine table 32 and a U-shaped frame 33, and the machine table 32 and the U-shaped frame 33 are respectively provided with outlets. The machine table 32, the U-shaped frame 33 and the outlet are existing technologies and are not described in detail. Their function is to perform automatic strapping.

[0029] When the receiving main board 23 on the left side is at the lowest point, the upper edge of the machine table 32 is coplanar with the lower side surface of the receiving main board 23 , and the machine table 32 is also provided with a transfer device for receiving the non-woven bag on the receiving main board 23 on the left side.

[0030] When the receiving main board 23 originally on the right is filled with non-woven bags and rotates to the left, the machine table 32 moves to the right. During this process, the receiving sub-plate 25 will be pushed inward so that a part of the non-woven bags on the receiving main board 23 and the receiving sub-plate 25 will be located on the upper side of the machine table 32. Then the transfer device drags the non-woven bags to the left and separates them from the receiving main board 23, and then the strapping machine performs automatic strapping.

[0031] In this embodiment, the transfer device includes vertical plates 35 distributed front and back on the machine platform 32, and rotatable upper push rollers 36 are installed between the vertical plates 35. The upper side surface of the machine platform 32 also has a lower push roller 37 rotatably connected to the upper push roller 36 and distributed up and down.

[0032] The driving method of the push-down roller 37 is as follows: a friction plate 38 is fixedly provided on the upper side surface of the bottom plate 31, a driving shaft 39 is rotatably connected inside the machine table 32, and a friction wheel 40 is mounted on the driving shaft 39 and matched with the friction plate 38, a ratchet is also mounted outside the driving shaft 39, a No. 1 synchronous wheel 41 is mounted outside the part of the machine table 32 extending to the front side of the machine table 32 and the ratchet respectively, and the two No. 1 synchronous wheels 41 are connected by a No. 1 synchronous belt 42, and the driving shaft 39 drives the ratchet and the No. 1 synchronous wheel 41 to rotate only when rotating counterclockwise, that is, the machine table 32 will drive the push-down roller 37 to rotate counterclockwise only when moving to the left, and when the machine table 32 moves to the right, the push-down roller 37 will not be driven by the driving shaft 39 to rotate clockwise, but will rotate counterclockwise under the friction of the non-woven bag.

[0033] The specific working process of the transfer device is that the machine table 32 moves to the right to push the receiving sub-plate 25 inward, so that a part of the non-woven bag located on the receiving main plate 23 is placed on the machine table 32 and clamped between the lower push roller 37 and the upper push roller 36. Then the machine table 32 moves to the left. At this time, the lower push roller 37 will rotate counterclockwise under the drive of the ratchet wheel and drag the non-woven bag to move to the left. When the machine table 32 travels a certain distance and the middle part of the non-woven bag is in the U-shaped frame 33, the movement of the machine table 32 is suspended, and the strapping machine performs the strapping work. After the strapping is completed, the machine table 32 continues to move to the left until it is reset.

[0034] In the above embodiment, if slippage occurs between the push-down roller 37 and the non-woven bag, a cylinder (not shown in the figure) for controlling the upper and lower positions of the push-up roller 36 can be further provided on the vertical plate 35. Through the cylinder, when the machine table 32 moves to the left, the push-up roller 36 descends to further clamp the non-woven bag, so as to increase the friction between the non-woven bag and the push-down roller 37.

[0035] In the second embodiment of the bag sorting machine for non-woven bags that are automatically packaged and transported, in order to realize automatic material discharge, a swing plate 43 is hinged on the left side of the machine table 32, and a lifting plate 44 is also connected to the left side of the machine table 32 for sliding up and down. The upper end of the lifting plate 44 is connected to the lower side of the swing plate 43 by a hinge rod 45, and the lower side of the lifting plate 44 is equipped with a roller attached to the upper side of the bottom plate 31, and the upper side of the bottom plate 31 and its left side are chamfered.

[0036] Before bundling and after bundling, the non-woven bags will be supported by the swing plate 43 to maintain stability. After bundling, as the platform 32 continues to move to the left, the roller will enter the inclined plane formed by the chamfered angle to make the lifting plate 44 descend. When the lifting plate 44 descends, it will drive the left end of the swing plate 43 to swing downward so that the bundled non-woven bags on the swing plate 43 can slide off. When the platform 32 moves to the right, the lifting plate 44 will be lifted so that the swing plate 43 is parallel to the upper side of the platform 32 to carry the non-woven bags.

[0037] The installation method of the receiving main board 23 is as follows: a slide groove 51 which passes through the left and right sides is provided in the column 22, two sliders 52 distributed on the left and right sides are slidably connected in the slide groove 51, and a threaded shaft 53 which is respectively threadedly connected to the two sliders 52 is rotatably connected in the slide groove 51, the two threaded shafts 53 are connected to the second synchronous belt 91 through a second synchronous wheel, and a third motor 54 for driving the threaded shaft 53 is installed at the bottom of the column 22, and the two receiving main boards 23 on the left and right sides are respectively fixed on the left and right sliders 52.

[0038] The threaded shaft 53 driven by the third motor 54 will periodically rotate forward and reverse, and by cooperating with the rotation of the column 22, it is ensured that the receiving main board 23 on the right side will only descend, and the receiving main board 23 on the left side will only rise.

[0039] The tidying mechanism includes a bracket 61, in which a mounting column 62 is installed, and a horizontal plate 63 is fixedly provided on the mounting column 62. A toggle device for toggling the non-woven bag transmitted from the climbing machine 11 to the left is installed on the lower side of the horizontal plate 63, and side baffles 64 are also installed on the front and rear sides of the horizontal plate 63, and a rear baffle 67 is also installed on the left side of the toggle device. The right end of the side baffle 64 is equipped with a flared plate that is inclined forward and backward.

[0040] The expansion plate, the side baffle 64 and the rear baffle 67 are used to limit the non-woven bag, and the shifter is used to shift the non-woven bag to the left.

[0041] The specific structure of the toggle switch is that the toggle switch includes a shell 65 fixed to the lower side of the horizontal plate 63, a toggle shaft 66 is rotatably connected inside the shell 65, and a plurality of flexible plates (not shown in the figure) are installed on the outer side of the toggle shaft 66, and a No. 4 motor for driving the toggle shaft 66 to rotate is also installed on the shell 65.

[0042] In the third embodiment of the bag sorting machine for non-woven bags that are automatically packaged and transported, in order to enable the side baffle 64 and the rear baffle 67 to extend to the lower side of the topmost layer of non-woven fabric on the receiving main board 23, so as to further ensure the stability of the non-woven fabric stacked on the receiving main board 23, a slot that passes through the front and back is provided in the side baffle 64, and a spring plate 68 that passes through the slot is fixed on the upper side of the cross plate 63, and the spring plate 68 is connected to the bottom surface of the slot by a No. 2 spring, and the rear baffle 67 is also connected to the No. 2 boss on the left side of the outer shell 65 by a No. 3 spring.

[0043] When the supporting main board 23 on the right is at the highest point, the lower sides of the side baffle 64 and the rear baffle 67 are lifted up by the supporting main board 23, and the shifting shaft 66 is close to the upper sides of the supporting main board 23 and the supporting sub-plate 25. When the supporting main board 23 on the right moves downward, the side baffle 64 and the rear baffle 67 will move downward a certain distance under the action of the No. 2 spring and the No. 3 spring until the spring plate 68 abuts against the upper side of the slot. At this time, the lower edges of the side baffle 64 and the rear baffle 67 are lower than the lower edge of the shifting shaft 66 to protect the multi-layer non-woven fabric on the supporting main board 23.

[0044] Under this configuration, in order to prevent the left receiving main board 23 located at a high position from interfering with the side baffle 64 when the column 22 rotates, two asymmetrically distributed protrusions 71 are provided at the upper end of the column 22, and a guide groove 72 is provided at the lower end of the mounting column 62 to cooperate with the protrusion 71 in movement; The mounting post 62 is slidably connected to the bracket 61 up and down.

[0045] The mounting column 62 is restricted to move only up and down. During the half-circle rotation of the column 22, under the action of the protrusion 71 and the guide groove 72, the mounting column 62 will be lifted first, and finally, after the half-circle rotation of the column 22 is completed, the mounting column 62 will sink, so that the side baffle plate 64 and the rear baffle plate 67 are pressed downward on the supporting main board 23, and the shifting shaft 66 is close to the supporting main board 23 and the supporting sub-plate 25.

[0046] In addition, in order to facilitate the non-woven fabric to be pushed onto the receiving main board 23 by the shifting shaft 66 and stacked, the end surface of the receiving main board 23 away from the column 22 is an inclined surface extending upward and inclined toward the axis of the column 22 .

[0047] Overall workflow: The climbing machine 11 works to transfer the non-woven bags to the upper left. The non-woven bags separated from the climbing machine 11 will be placed on the receiving main plate 23 and the receiving sub-plate 25 on the upper right side, and will be moved by the shifting shaft 66 and move to the left until they are between the side baffles 64 and abut against the rear baffle 67. Then, as the non-woven fabric stacking height increases, the receiving main plate 23 and the receiving sub-plate 25 on the right side slowly descend so that the non-woven bags thereon can be stacked.

[0048] The speed of controlling the descent of the receiving sub-plate 25 can be controlled by the third motor 54 , that is, it slowly descends at a constant speed to adapt to the speed of the climbing machine 11 transmitting the non-woven bag.

[0049] When the receiving main board 23 on the right side drops to a certain extent, the climbing machine 11 stops working for a certain period of time, and at this time the supporting main board 23 on the right side drops rapidly (while the supporting main board 23 on the left side moves upward rapidly), until the non-woven bags on the highest layer on the supporting main board 23 are on the lower side of the side baffle 64, after which the column 22 rotates half a circle, and the threaded shaft 53 starts to reverse, so that the receiving main board 23 on the right side full of non-woven bags rotates to the left side and starts to rise, and at the same time the climbing machine 11 continues to work, so that the supporting main board 23 transferred from the left side to the right side can start to receive the non-woven bags; During this process, the mounting column 62 will rise under the action of the raised portion 71 to avoid interference from the side baffle 64 when the supporting main board 23, which was originally on the uppermost side of the left side, rotates to the right side. After the column 22 completes half a circle of rotation, the mounting column 62 will drop, and the side baffle 64 and the rear baffle 67 will be pressed on the supporting main board 23 to be lifted compared to the shifting shaft 66, so that the shifting shaft 66 is closer to the supporting main board 23, so as to exert the shifting effect of the shifting shaft 66 on the non-woven fabric. Then, as the supporting main board 23, which is now on the right side, sinks, the side baffle 64 and the rear baffle 67 will first drop and then stop, so as to protect and limit the non-woven fabric stacked on the supporting main board 23.

[0050] After the receiving main board 23, which was originally full of non-woven fabrics on the right side, is transferred to the left side, the machine table 32 moves to the right. During this process, the machine table 32 will push the receiving sub-plate 25 connected to the receiving main board 23, so that a part of the non-woven fabrics on the receiving main board 23 is placed on the machine table 32 and between the lower push roller 37 and the upper push roller 36. Then the machine table 32 moves to the left (the cylinder can be added to control the sinking action of the upper push roller 36). During this process, the lower push roller 37 will rotate counterclockwise under the action of the ratchet wheel, and drive the non-woven fabrics to move to the left relative to the machine table 32. After the machine table 32 moves a certain distance, the strapping machine works and straps the non-woven fabrics. Then the machine table 32 continues to move to the left until it is reset. During the process of the machine table 32 continuing to move to the left, the swing plate 43 will swing downward to facilitate the separation of the lower push roller 37 and the upper push roller 36 and the non-woven fabrics that have been strapped will be separated from the machine table 32.

[0051] Additional explanation is needed: The transfer device starts to work when the left main support plate 23 moves upward, and since the movement speed of the main support plate 23 is relatively slow, it will not affect the transfer device.

[0052] The ratchet includes an inner wheel and an outer wheel, the inner wheel is fixed on the driving shaft, the outer wheel is rotatably connected to the outside of the inner wheel, and the No. 1 synchronous wheel 41 is fixed to the outside of the outer wheel. Ratchets are processed on the outer curved surface of the inner wheel, and pawls are installed on the inner curved surface of the outer wheel, so that the outer wheel can only be driven when the driving shaft rotates in one direction. This is the prior art and will not be elaborated here.

[0053] A reinforcing rib is disposed between the slider 52 and the main carrier plate 23 to prevent the main carrier plate 23 from bending.

[0054] The above description is only a specific embodiment of the present invention, but the technical features of the present invention are not limited thereto. Any changes or modifications made by any technician in the field of the present invention are included in the patent scope of the present invention.

Claims

1. A bag sorting machine for non-woven bags for automatic packaging and transportation, comprising a climbing machine, a stacking device and a packaging device arranged from right to left, characterized in that: The stacking device includes a base, in which a column extending upward is rotatably connected, and a No. 1 motor for driving the column to rotate is provided on the base, and two receiving main boards distributed on the left and right are slidably connected in the column, and the two receiving main boards always move toward each other, and a sorting mechanism is also provided on the column, and the sorting mechanism is used to align the non-woven bags uploaded and output from the climbing machine and stack them on the receiving main board on the right side; The lower side of the receiving main board is slidably connected to a receiving sub-board, and the bottom surface of the receiving main board is also provided with a No. 1 boss connected to the receiving sub-board through a No. 1 spring. The packaging device includes a bottom plate, and a strapping machine is slidably connected to the bottom plate left and right, and a No. 2 motor for driving the strapping machine to move left and right is installed on the bottom plate. The strapping machine includes a machine platform and a U-shaped frame. When the receiving main board is at the lowest point, the upper edge of the machine platform is coplanar with the lower side surface of the receiving main board. The machine platform is also provided with a transfer device for receiving the non-woven bag on the left side of the receiving main board.

2. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 1 is characterized by: The transfer device includes vertical plates arranged front and back on the platform, rotatable upper push rollers are installed between the vertical plates, and lower push rollers rotatably connected to the upper push rollers are also arranged in the upper side surface of the platform.

3. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 2 is characterized by: A friction plate is fixedly arranged on the upper side of the bottom plate, a driving shaft is rotatably connected inside the machine, and a friction wheel matched with the friction plate is mounted on the driving shaft, and a ratchet is also mounted outside the driving shaft, and a first synchronous wheel is respectively mounted on the part of the machine extending to the front side of the machine and outside the ratchet, and the two first synchronous wheels are connected by a first synchronous belt; The driving shaft drives the ratchet wheel and the first synchronous wheel to rotate only when rotating counterclockwise.

4. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 1 is characterized by: A swing plate is hinged on the left side of the machine platform, and a lifting plate is also slidably connected to the left side of the machine platform. The upper end of the lifting plate is connected to the lower side of the swing plate by a hinge rod, and the lower side of the lifting plate is equipped with a roller attached to the upper side of the bottom plate, and there is a chamfer between the upper side of the bottom plate and its left side.

5. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 1 is characterized by: A sliding groove running through left and right is provided in the column, and two sliding blocks distributed on the left and right are slidably connected in the sliding groove, and two threaded shafts respectively threadedly connected to the two sliding blocks are rotatably connected in the sliding groove, and the two threaded shafts are connected by a No. 2 synchronous wheel and a No. 2 synchronous belt, and a No. 3 motor for driving the threaded shaft is installed at the bottom of the column, and the two left and right receiving main boards are respectively fixed on the left and right sliding blocks.

6. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 1, characterized in that: The sorting mechanism includes a bracket, a mounting column is installed in the bracket, a horizontal plate is fixed on the mounting column, a toggle device is installed on the lower side of the horizontal plate to toggle the non-woven bag transmitted from the climbing machine to the left, and side baffles are also installed on the front and rear sides of the horizontal plate, a rear baffle is also installed on the left side of the toggle device, and a flaring plate inclined forward and backward is installed on the right end of the side baffle.

7. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 6, characterized in that: The toggle device includes a shell fixedly arranged on the lower side of the horizontal plate, a toggle shaft is rotatably connected in the shell, and a plurality of flexible plates are installed on the outer side of the toggle shaft. A No. 4 motor for driving the toggle shaft to rotate is also installed on the shell.

8. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 7, characterized in that: The side baffle is provided with a slot extending from front to back, the upper side of the horizontal plate is fixed with a spring plate passing through the slot, and the spring plate is connected to the bottom surface of the slot via a No. 2 spring, and the rear baffle is also connected to the No. 2 boss on the left side of the shell via a No. 3 spring.

9. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 8, characterized in that: The upper end of the column is provided with two asymmetrically distributed protrusions, and the lower end of the mounting column is provided with a guide groove that cooperates with the protrusions in motion; The mounting post is slidably connected in the bracket up and down.

10. The automatic non-woven bag unpacking machine for packaging and transportation according to claim 7, characterized in that: The end surface of the receiving main board away from the column is an inclined surface extending upward and inclined toward the axis of the column.

Citation Information

Patent Citations

  • Non-woven fabric bag batch packing device

    CN215362166U