A sorting device and method of use

The material handling device, designed with a ring guide rail and braking mechanism, solves the problems of complex structure and high cost of existing equipment, and realizes efficient automated control of high-speed strip packaging production line.

CN117485685BActive Publication Date: 2025-12-26TRUKING TECH LTD
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Patent Information

Application Number
CN202311511254.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-13
Publication Date
2025-12-26
Estimated Expiration
2043-11-13

AI Technical Summary

Technical Problem

Existing secondary counting mechanisms are complex in structure, occupy a large factory area, and are costly, making them unsuitable for high-speed strip packaging production lines.

Method used

The design employs a ring guide rail and a ring conveyor, combined with a feeding brake mechanism and a discharging brake mechanism. The drive mechanism drives the slide block and its idler wheel and conveyor to slide forward or backward, achieving uniform distribution and quantity control of the strips in the trough, thus simplifying the equipment structure.

Benefits of technology

It reduces the factory area occupied by the equipment, lowers manufacturing costs, and enables automated control of high-speed strip packaging lines. The material trough running speed is twice that of the sliding speed of the slide and its accessories.

✦ Generated by Eureka AI based on patent content.

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Abstract

A kind of material arranging device, including frame, slide and drive mechanism, slide is equipped with annular guide rail, support idler and annular conveying piece, annular conveying piece is around being equipped with support idler, annular guide rail is uniformly provided with multiple material grooves along the circumference and is connected with annular conveying piece, one side of annular conveying piece is equipped with feeding station and opposite side is equipped with discharging station, frame is equipped with feeding brake mechanism in feeding station side and is equipped with discharging brake mechanism in discharging station side, drive mechanism is connected with slide.The use method, feeding brake mechanism act, strip package is fed to material groove;Feeding brake mechanism loosens, discharging brake mechanism act, drive mechanism drives slide to translate distance d so that next material groove runs to feeding station;Discharging brake mechanism act, set quantity of strip package is discharged from material groove;Discharging brake mechanism loosens, feeding brake mechanism act, drive mechanism drives slide to translate distance d and translation direction is opposite, next material groove runs to discharging station.
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Description

TECHNICAL FIELD

[0001] The present application relates to food and medicine packaging equipment and method, and particularly relates to a sorting device and a use method. BACKGROUND

[0002] The secondary counting mechanism (or sorting mechanism) is a kind of mechanism which collects and arranges the intermittent received strip packages from the upstream, and outputs a certain number of strip packages to the downstream device according to the packaging specification requirement. The number of strip packages required by different packaging specifications may be different, and the secondary counting mechanism needs to be compatible with multiple packaging specifications. The existing secondary counting mechanism is usually composed of a feeding conveyor belt, a servo following mechanism, a discharging conveyor belt and the like, and has a complex device structure, occupies a large factory area, and has a high cost, which is not suitable for high-speed strip package production lines. SUMMARY

[0003] The technical problem to be solved by the present application is to overcome the shortcomings of the prior art, and to provide a sorting device which is simple in structure, low in cost and suitable for high-speed strip package production lines.

[0004] The present application further provides a use method of the above-mentioned secondary counting device.

[0005] To solve the above technical problems, the present application adopts the following technical solutions:

[0006] A sorting device, comprising a rack, wherein a sliding seat and a driving mechanism are arranged on the rack, an annular guide rail, a first supporting idler, a second supporting idler and an annular conveying member are arranged on the sliding seat, the annular conveying member is arranged around the first supporting idler and the second supporting idler, a plurality of material grooves are uniformly arranged on the annular guide rail in the circumferential direction, the material grooves are connected with the annular conveying member, one side of the annular conveying member is provided with a feeding station and the opposite side is provided with a discharging station, a feeding brake mechanism is arranged on one side of the feeding station of the rack and a discharging brake mechanism is arranged on one side of the discharging station of the rack, and the driving mechanism is connected with the sliding seat.

[0007] As a further improvement of the above technical solutions, a linear guide rail is arranged on the rack, the sliding seat is arranged on the linear guide rail, and the first supporting idler and the second supporting idler are arranged along the length direction of the linear guide rail.

[0008] As a further improvement of the above technical solutions, the feeding station is arranged on a straight line segment of the annular conveying member, and the discharging station is arranged on another straight line segment of the annular conveying member.

[0009] As a further improvement of the above technical solutions, the annular guide rail is arranged on the outer side of the annular conveying member, and the feeding brake mechanism and the discharging brake mechanism are arranged on the inner side of the annular conveying member.

[0010] As a further improvement of the above technical solution: the first supporting idler and the second supporting idler are sprockets, and the annular conveying member is a conveying chain; or, the first supporting idler and the second supporting idler are pulleys, and the annular conveying member is a synchronous belt.

[0011] As a further improvement of the above technical solution: the feeding brake mechanism comprises a brake guide rail and a brake driving member, the brake guide rail is provided with a brake seat, the brake seat is provided with a plurality of brake teeth which can be inserted into the annular conveying member, and the brake driving member is connected with the brake seat.

[0012] As a further improvement of the above technical solution: the driving mechanism comprises a driving motor, a driving sprocket, a first driven sprocket, a second driven sprocket, a third driven sprocket, a first transmission chain and a second transmission chain, the driving motor is connected with the driving sprocket, the first driven sprocket is arranged above the driving sprocket, the first transmission chain is arranged around the first driven sprocket and the driving sprocket, the second driven sprocket is coaxially arranged with the first driven sprocket, the second transmission chain is arranged around the second driven sprocket and the third driven sprocket, and the sliding seat is connected with the second transmission chain.

[0013] As a further improvement of the above technical solution: the lower part of the trough is provided with a guide wheel, the guide wheel is circumferentially provided with a guide groove, and the annular guide rail is embedded in the guide groove.

[0014] As a further improvement of the above technical solution: the material sorting device further comprises an emergency discharging mechanism, the emergency discharging mechanism comprises a rotating shaft arranged on the frame and a discharging swing rod arranged on the rotating shaft.

[0015] A use method of the above material sorting device, comprising the following steps:

[0016] S1, feeding an empty trough: the feeding brake mechanism fixes the annular conveying member at the feeding station, and the strip packages are fed into the empty trough at the feeding station;

[0017] S2, positioning the empty trough: the feeding brake mechanism is loosened, the discharging brake mechanism fixes the annular conveying member at the discharging station, and the driving mechanism drives the sliding seat to translate a distance d so that the next empty trough runs to the feeding station, wherein d is half of the width of the trough;

[0018] S3, repeating steps S1 to S2 until the first full trough runs to the discharging station;

[0019] S4, discharging the full trough: the discharging brake mechanism fixes the annular conveying member at the discharging station, and a set number of strip packages are discharged from the trough;

[0020] S5, the full tank is in place: the discharge brake mechanism is loosened, the feeding brake mechanism fixes the annular conveying part at the feeding station, the driving mechanism drives the sliding seat to translate a distance d and the translation direction is opposite to that in S2, so that the next full tank runs to the discharge station;

[0021] S6, repeat the linear steps S4 to S5 until all full tanks complete the discharge.

[0022] Compared with the prior art, the advantages of the present application are:

[0023] The material arranging device disclosed by the present application alternately fixes the annular conveying part by the feeding brake mechanism and the discharge brake mechanism, the driving mechanism drives the sliding seat and the idler and the annular conveying part on it to slide forward or backward, so that there are bales in the tank between the feeding station and the discharge station on the annular guide rail, then the corresponding number of bales are output from the discharge station according to the needs of the downstream equipment, the secondary counting function is realized, the annular guide rail and the annular conveying part are compact in structure, the occupied factory area of the device can be effectively reduced, only one set of driving mechanism and two sets of brake mechanisms are needed for the power part of the device, which is convenient for realizing automatic control and is also conducive to reducing the manufacturing cost, the running speed of the tank is twice the sliding speed of the sliding seat and the accessories thereon, and the device can be applied to a high-speed bale line.

[0024] The use method of the material arranging device disclosed by the present application only needs to control the actions of the driving mechanism and the two sets of brake mechanisms, the control process is simple, the running speed of the tank is twice the sliding speed of the sliding seat and the accessories thereon, and the device can be applied to a high-speed bale line. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is a front view structural schematic diagram of the material arranging device.

[0026] Figure 2 is a three-dimensional structural schematic diagram of the first perspective view after the hidden cover of the present application.

[0027] Figure 3 is a three-dimensional structural schematic diagram of the second perspective view after the hidden cover of the present application.

[0028] Figure 4 is a three-dimensional structural schematic diagram of the feeding and discharging brake mechanism in the present application.

[0029] Figure 5 is a partial enlarged view of Figure 3 .

[0030] Figure 6 is a process schematic diagram of the use method of the material arranging device of the present application.

[0031] The numbers in the figure represent:

[0032] 1, rack; 11, linear guide rail; 2, sliding seat; 21, annular guide rail; 22, first supporting idler; 23, second supporting idler; 3, driving mechanism; 31, driving motor; 32, driving sprocket; 33, first driven sprocket; 34, third driven sprocket; 35, first transmission chain; 36, second transmission chain; 4, annular conveying member; 41, feeding station; 42, discharging station; 5, trough; 51, guide wheel; 52, guide groove; 6, feeding brake mechanism; 61, brake guide rail; 62, brake driving member; 63, brake seat; 64, brake tooth; 7, discharging brake mechanism; 8, emergency discharging mechanism; 81, rotating shaft; 82, discharging swing lever; 9, strip package. DETAILED DESCRIPTION

[0033] In the description of the present application, it should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0034] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise explicitly specified and limited.

[0035] In the present application, unless otherwise explicitly specified and limited, the terms "assembly", "connection", "connection", "fixing" and the like should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0036] The present application will be further described in detail below in combination with the drawings and specific examples.

[0037] Example 1

[0038] Figures 1 to 5An embodiment of the material sorting device is shown, the material sorting device of the embodiment comprises a frame 1, the frame 1 is provided with a sliding seat 2 and a driving mechanism 3, the sliding seat 2 is provided with an annular guide rail 21, a first supporting idler 22, a second supporting idler 23 and an annular conveying member 4, the annular conveying member 4 is arranged around the first supporting idler 22 and the second supporting idler 23, the annular guide rail 21 is uniformly provided with a plurality of material grooves 5 along the circumference direction, the material grooves 5 are connected with the annular conveying member 4, one side of the annular conveying member 4 is provided with an infeed station 41 and the opposite side is provided with an outfeed station 42, the frame 1 is provided with an infeed braking mechanism 6 at one side of the infeed station 41 and an outfeed braking mechanism 7 at one side of the outfeed station 42, and the driving mechanism 3 is connected with the sliding seat 2.

[0039] The infeed braking mechanism 6 and the outfeed braking mechanism 7 of the material sorting device of the embodiment alternately fix the annular conveying member 4, the driving mechanism 3 drives the sliding seat 2 and the first idler 22, the second idler 23 and the annular conveying member 4 on the sliding seat 2 to slide forward or reversely (in the embodiment, the annular conveying member 4 operates in the clockwise direction, the sliding seat 2 slides to the left during the infeed process, and correspondingly, the sliding seat 2 slides to the right during the outfeed process, of course, in other embodiments, the annular conveying member 4 can also operate in the counterclockwise direction), so that the material grooves 5 between the left side of the infeed station 41 and the left side of the outfeed station 42 of the annular guide rail 21 are all filled with the bale 9, then the corresponding number of bales 9 are gradually output from the outfeed station 42 according to the needs of the downstream equipment, the secondary counting function is realized, the annular guide rail 21 and the annular conveying member 4 have compact structure, which can effectively reduce the plant area occupied by the device, the power part of the device only needs one set of driving mechanism 3 and two sets of braking mechanism, which is convenient for realizing automatic control and is also conducive to reducing the manufacturing cost, the running speed of the material groove 5 is twice the sliding speed of the sliding seat 2 and the accessories thereon, and the device can be applied to high-speed bale lines.

[0040] Further, in the embodiment, the frame 1 is provided with a linear guide rail 11, the sliding seat 2 is arranged on the linear guide rail 11, and the first supporting idler 22 and the second supporting idler 23 are arranged along the length direction of the linear guide rail 11. The linear guide rail 11 can provide a guiding effect for the sliding of the sliding seat 2 and reduce the movement resistance, so as to ensure that the sliding seat 2 moves stably and smoothly, since the annular conveying member 4 is alternately partially fixed by the infeed braking mechanism 6 and the outfeed braking mechanism 7, the first supporting idler 22 and the second supporting idler 23 are simultaneously driven to rotate during the movement of the sliding seat 2, so that the movement distance of the unfixed part of the annular conveying member 4 is twice the movement distance of the sliding seat 2, and the device is suitable for high-speed bale lines.

[0041] As a preferred embodiment, the feeding station 41 is arranged on a straight section of the annular conveying member 4, and the discharging station 42 is arranged on another straight section of the annular conveying member 4. This structure provides sufficient space for the layout of the feeding station 41, the discharging station 42, the feeding brake mechanism 6 and the discharging brake mechanism 7, and facilitates the connection of the trough 5 with upstream and downstream devices, so that the strip package 9 can smoothly enter and exit the trough 5.

[0042] Further, in the embodiment, the annular guide rail 21 is arranged on the outer side of the annular conveying member 4, and the feeding brake mechanism 6 and the discharging brake mechanism 7 are arranged on the inner side of the annular conveying member 4, which is a reasonable layout and effectively utilizes the space on the inner side of the annular conveying member 4, so that the feeding brake mechanism 6 and the discharging brake mechanism 7 do not increase the plant area occupied by the device.

[0043] In the embodiment, the first supporting idler 22 and the second supporting idler 23 are sprockets, and the annular conveying member 4 is a conveying chain. The sprocket and chain transmission is reliable, which is conducive to ensuring the stable and reliable operation of the device, and also facilitates the insertion of the brake teeth 64 of the feeding brake mechanism 6 and the discharging brake mechanism 7 into the chain to brake the conveying chain. Preferably, the first supporting idler 22 and the second supporting idler 23 are double-row sprockets, and two corresponding conveying chains are arranged, which can transmit greater power and facilitate the driving of multiple troughs 5.

[0044] Of course, in other embodiments, the first supporting idler 22 and the second supporting idler 23 can also be pulleys, and correspondingly, the annular conveying member 4 is a synchronous belt. Further, the pulley is a double-row pulley, and two corresponding synchronous belts are arranged, which can transmit greater power and facilitate the driving of multiple troughs 5.

[0045] Further, in the embodiment, the feeding brake mechanism 6 includes a brake guide rail 61 arranged on the rack 1 and a brake driving member 62, the brake guide rail 61 is provided with a brake seat 63, the brake seat 63 is provided with a plurality of brake teeth 64 which can be inserted into the annular conveying member 4, and the brake driving member 62 is connected with the brake seat 63. When the annular conveying member 4 needs to be braked, the brake driving member 62 drives the brake seat 63 to move along the brake guide rail 61, and the brake teeth 64 on the brake seat 63 are inserted into the conveying chain, which can effectively fix the conveying chain. When it needs to be released, the brake driving member 62 drives the brake seat 63 and the brake teeth 64 to exit from the conveying chain. The brake guide rail 61 can provide a guiding action for the brake seat 63 and reduce the movement resistance, so as to ensure the smooth movement of the brake seat 63. The brake driving member 62 is preferably a pneumatic cylinder, but in other embodiments, it can also be an oil cylinder, an electric push rod, etc. The discharging brake mechanism 7 can be the same as the feeding brake mechanism 6, except that the direction of the brake teeth 64 is opposite, and the specific structure is not described here.

[0046] Further, in the embodiment, the driving mechanism 3 comprises a driving motor 31, a driving sprocket 32, a first driven sprocket 33, a second driven sprocket, a third driven sprocket 34, a first transmission chain 35 and a second transmission chain 36. The driving motor 31 is connected with the driving sprocket 32. The first driven sprocket 33 is arranged above the driving sprocket 32. The first transmission chain 35 is arranged around the first driven sprocket 33 and the driving sprocket 32. The second driven sprocket (not shown in the figure) is coaxially arranged with the first driven sprocket 33. The second transmission chain 36 is arranged around the second driven sprocket and the third driven sprocket 34. The slide 2 is connected with the second transmission chain 36. When the slide 2 needs to be driven to move, the driving motor 31 is started to drive the driving sprocket 32 to rotate. The driving sprocket 32 drives the first driven sprocket 33 to rotate through the first transmission chain 35. The second driven sprocket rotates synchronously with the first driven sprocket 33. The second transmission chain 36 rotates under the drive of the second driven sprocket, thereby driving the slide 2 to move. The moving direction of the slide 2 can be changed with the change of the rotating direction of the driving motor 31. The driving mechanism 3 has good reliability and can fully utilize the space below the rack 1. Preferably, the driving sprocket 32 and the driven sprockets are double-row sprockets. Correspondingly, the first transmission chain 35 and the second transmission chain 36 are provided in two. Greater power can be transmitted to facilitate the movement of the slide 2 and the plurality of troughs 5. Of course, in other embodiments, the driving mechanism 3 can also adopt other forms, such as an oil cylinder or an electric cylinder, which can also drive the slide 2 to reciprocate.

[0047] As a preferred embodiment, the lower part of the trough 5 is provided with a guide wheel 51. The guide wheel 51 is circumferentially provided with a guide groove 52. The annular guide rail 21 is embedded in the guide groove 52. Through the cooperation of the guide wheel 51 and the annular guide rail 21, the guide wheel 51 provides a guide function for the trough 5 and bears the load of the trough 5, so that the trough 5 can smoothly rotate under the drive of the annular conveying member 4. The structure is simple and effective.

[0048] Further, in the embodiment, the material sorting device further comprises an emergency discharging mechanism 8. The emergency discharging mechanism 8 comprises a rotating shaft 81 arranged on the rack 1 and a discharging swing rod 82 arranged on the rotating shaft 81. When the discharging function of the tobacco rod package 9 fails or the downstream equipment is blocked, the rotating shaft 81 rotates, thereby driving the discharging swing rod 82 to swing. The discharging swing rod 82 discharges the tobacco rod package 9 from the trough 5, preventing damage to the upstream equipment due to emergency stop. The structure is simple and reliable.

[0049] Embodiment Two

[0050] Figure 6An embodiment of the method of using the material sorting device is shown, in this embodiment, the ring-shaped conveying member 4 rotates in the clockwise direction, and the slide 2 slides to the left during the feeding process, and correspondingly, the slide 2 slides to the right during the discharging process, of course, in other embodiments, the ring-shaped conveying member 4 can also rotate in the counterclockwise direction. The dashed line part represents the position of the slide 2 before moving.

[0051] The method of using the material sorting device of this embodiment includes the following steps:

[0052] S1, empty tank 5 feeding: the feeding brake mechanism 6 fixes the ring-shaped conveying member 4 at the feeding station 41, and the strip package 9 is fed to the empty tank 5 at the feeding station 41;

[0053] S2, empty tank 5 in place: the feeding brake mechanism 6 is released, the discharging brake mechanism 7 fixes the ring-shaped conveying member 4 at the discharging station 42, and the driving mechanism 3 drives the slide 2 to translate a distance d so that the next empty tank 5 runs to the feeding station 41, where d is half the width of the tank 5; Specifically, since the straight line segment on the upper side of the ring-shaped conveying member 4 is fixed by the discharging brake mechanism 7, the first supporting idler 22 and the second supporting idler 23 are simultaneously rotated during the leftward movement of the slide 2, so that the straight line segment on the lower side of the ring-shaped conveying member 4 moves a distance twice that of the slide 2, and the next empty tank 5 on the right side of the feeding station 41 reaches the feeding station 41, preparing for the next feeding;

[0054] S3, repeat steps S1 to S2 until the first full tank 5 of strip packages 9 runs to the discharging station 42, at which time the left side of the feeding station 41 and the left side of the discharging station 42;

[0055] S4, full tank 5 discharging: the discharging brake mechanism 7 fixes the ring-shaped conveying member 4 at the discharging station 42, and a set number of strip packages 9 are discharged from the tank 5;

[0056] S5, full tank 5 in place: the discharging brake mechanism 7 is released, the feeding brake mechanism 6 fixes the ring-shaped conveying member 4 at the feeding station 41, and the driving mechanism 3 drives the slide 2 to translate a distance d in the opposite direction of S2, so that the next full tank 5 runs to the discharging station 42; Specifically, since the straight line segment on the lower side of the ring-shaped conveying member 4 is fixed by the feeding brake mechanism 6, the first supporting idler 22 and the second supporting idler 23 are simultaneously rotated during the rightward movement of the slide 2, so that the straight line segment on the upper side of the ring-shaped conveying member 4 moves a distance twice that of the slide 2, and the next full tank 5 on the left side of the discharging station 42 reaches the discharging station 42, preparing for the next discharging;

[0057] S6, repeat linear steps S4 to S5 until all full tanks 5 are discharged.

[0058] If the number of the bale 9 outputted by the output station 42 is greater than the number of the bale 9 inputted by the input station 41, the output station 42 needs to wait for a period of time t every interval to balance the number of the bale 9 inputted and outputted.

[0059] The method for using the sorting device of the embodiment only needs to control the actions of the driving mechanism 3 and the two sets of braking mechanisms, the control process is simple, the running speed of the chute 5 is twice the sliding speed of the slide 2 and the accessories thereon, and the sorting device can be applied to a high-speed bale line.

[0060] Although the present application has been disclosed in the above preferred embodiments, it is not intended to limit the present application. Any person skilled in the art can make many possible changes and modifications to the technical solutions of the present application or modify equivalent embodiments with equivalent changes without departing from the scope of the technical solutions of the present application by using the disclosed technical contents. Therefore, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present application without departing from the content of the technical solutions of the present application shall fall within the protection scope of the technical solutions of the present application.

Claims

1. A sorting device comprising a frame (1), characterized in that: The rack (1) is provided with a sliding seat (2) and a driving mechanism (3), the sliding seat (2) is provided with an annular guide rail (21), a first supporting idler (22), a second supporting idler (23) and an annular conveying member (4), the annular conveying member (4) is arranged around the first supporting idler (22) and the second supporting idler (23), the annular guide rail (21) is uniformly provided with a plurality of troughs (5) along the circumference, the troughs (5) are connected with the annular conveying member (4), one side of the annular conveying member (4) is provided with an infeed station (41) and the opposite side is provided with an outfeed station (42), the rack (1) is provided with an infeed braking mechanism (6) on one side of the infeed station (41) and an outfeed braking mechanism (7) on one side of the outfeed station (42), and the driving mechanism (3) is connected with the sliding seat (2).

2. The article arranging device according to claim 1, characterized in that: The rack (1) is provided with a linear guide rail (11), and the sliding seat (2) is arranged on the linear guide rail (11), and the first supporting idler (22) and the second supporting idler (23) are arranged along the length direction of the linear guide rail (11).

3. The article arranging device according to claim 1, characterized in that: The infeed station (41) is arranged on a straight section of the annular conveying member (4), and the outfeed station (42) is arranged on another straight section of the annular conveying member (4).

4. The article arranging device according to claim 3, characterized in that: The annular guide rail (21) is arranged on the outer side of the annular conveying member (4), and the infeed braking mechanism (6) and the outfeed braking mechanism (7) are arranged on the inner side of the annular conveying member (4).

5. The article organizing device of claim 1, wherein: The first supporting idler (22) and the second supporting idler (23) are sprockets, and the annular conveying member (4) is a conveying chain; or the first supporting idler (22) and the second supporting idler (23) are pulleys, and the annular conveying member (4) is a synchronous belt.

6. The article organizing device of claim 1, wherein: The infeed braking mechanism (6) comprises a braking guide rail (61) and a braking driving member (62) arranged on the rack (1), the braking guide rail (61) is provided with a braking seat (63), the braking seat (63) is provided with a plurality of braking teeth (64) which can be inserted into the annular conveying member (4), and the braking driving member (62) is connected with the braking seat (63).

7. The article organizing device of claim 1, wherein: The driving mechanism (3) comprises a driving motor (31), a driving sprocket (32), a first driven sprocket (33), a second driven sprocket, a third driven sprocket (34), a first transmission chain (35) and a second transmission chain (36), the driving motor (31) is connected with the driving sprocket (32), the first driven sprocket (33) is arranged above the driving sprocket (32), the first transmission chain (35) is arranged around the first driven sprocket (33) and the driving sprocket (32), the second driven sprocket is coaxially arranged with the first driven sprocket (33), the second transmission chain (36) is arranged around the second driven sprocket and the third driven sprocket (34), and the sliding seat (2) is connected with the second transmission chain (36).

8. The article organizing device of claim 1, wherein: The lower part of the trough (5) is provided with a guide wheel (51), and the guide wheel (51) is circumferentially provided with a guide groove (52), and the annular guide rail (21) is embedded in the guide groove (52).

9. The organizer of any one of claims 1 to 8, wherein: An emergency discharging mechanism (8) is further included, which comprises a rotating shaft (81) arranged on the rack (1) and a discharging swing lever (82) arranged on the rotating shaft (81).

10. A method of using the stock arrangement device according to any one of claims 1 to 9, characterized in that: The method comprises the following steps: S1, empty trough (5) feeding: the feeding brake mechanism (6) fixes the annular conveying member (4) at the feeding station (41), and the strip package (9) is fed into the empty trough (5) at the feeding station (41); S2, empty trough (5) positioning: the feeding brake mechanism (6) is loosened, the discharging brake mechanism (7) fixes the annular conveying member (4) at the discharging station (42), and the driving mechanism (3) drives the sliding seat (2) to translate a distance d so that the next empty trough (5) runs to the feeding station (41), wherein d is half of the width of the trough (5); S3, repeating steps S1 to S2 until the first full strip package (9) trough (5) runs to the discharging station (42); S4, full trough (5) discharging: the discharging brake mechanism (7) fixes the annular conveying member (4) at the discharging station (42), and a certain number of strip packages (9) are discharged from the trough (5); S5, full trough (5) positioning: the discharging brake mechanism (7) is loosened, the feeding brake mechanism (6) fixes the annular conveying member (4) at the feeding station (41), and the driving mechanism (3) drives the sliding seat (2) to translate a distance d and the direction of translation is opposite to that in S2, so that the next full trough (5) runs to the discharging station (42); S6, repeating steps S4 to S5 until all full troughs (5) are discharged.

Citation Information

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