Cotton plug conveying device

Through the frictional force conveying of side-by-side elastic conveyors and tampons, the problems of uneven conveying and position deflection of tampons are solved, and an efficient and accurate process of inserting tampons is achieved.

CN223188180UActive Publication Date: 2025-08-05DALIAN FUHESEN TECH CO LTD
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Patent Information

Application Number
CN202421742073.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-08-05
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The existing tampon plug insertion machines have problems such as uneven tamp transport, deflection of position and poor station coordination, which leads to low efficiency and easy contamination of tampon insertion of tampons.

Method used

Side-by-side elastic conveyors are used to convey friction force with the tampon. Through the synergy between the transmission assembly and the drive assembly, the tampon maintains a stable posture to ensure accurate alignment of the bacterial bag position.

Benefits of technology

It improves the working efficiency of inserting tampons, reduces the risk of bacterial bag contamination, and ensures accurate insertion of tampons.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223188180U_ABST
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Abstract

A tampon conveying device comprises a conveying assembly mounting plate, a driving assembly, transmission assemblies and conveying assemblies, the driving assembly, the transmission assemblies and the conveying assemblies are all arranged on the conveying assembly mounting plate, the driving assembly drives the conveying assemblies to convey tampons through the transmission assemblies, and the conveying assemblies comprise elastic conveying pieces. According to the tampon conveying device, the tampons are conveyed through friction force between the elastic conveying pieces arranged side by side and the tampons, the tampons can keep the final posture all the time to be horizontally moved to the set position, position deflection cannot happen, the tampons can be accurately aligned with fungus bags below when inserted, and the tampons can be accurately inserted into the fungus bags. The working efficiency is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of edible fungus bag production. Background Art

[0002] During the inoculation process of edible mushroom bags, cotton plugs are inserted into the bags to prevent contamination. Traditionally, this is done manually, which is inefficient and can only be performed on one bag at a time. Furthermore, hands are often not properly disinfected, resulting in a high contamination rate and a high risk of contamination.

[0003] In order to solve the above problems of traditional manual cotton plug insertion, a cotton plug insertion machine has been developed. However, the existing cotton plug insertion machine has uneven cotton plug delivery, position deflection, and poor coordination among various workstations, which affects the efficiency and quality of cotton plug insertion and causes pollution caused by damage to the fungus bag, micropores, and leakage. Utility Model Content

[0004] The purpose of the utility model is to provide a tampon conveying device to solve the problem of tampon conveying during the process of automatic bacterial bag insertion into tampon.

[0005] The technical solution adopted by the present invention to achieve the above-mentioned purpose is: a tampon conveying device, a transmission component driving motor 311, a first driving gear 314 and a second driving gear 315 are installed on the conveying component mounting plate 31 at the end away from the tampon input end, the output end of the transmission component driving motor 311, the first driving gear 314 and the second driving gear 315 are located on the lower side of the conveying component mounting plate 31, a motor transmission gear 312 is installed on the output shaft of the transmission component driving motor 311, the motor transmission gear 312 and the first driving gear 314 are connected by a belt 313, and the first driving gear 314 and the second driving gear 315 are meshed and installed; the first transmission wheel group 39 and the second transmission wheel group 310 are longitudinally installed on the lower side of the conveying component mounting plate 31 near one end of the transmission component driving motor 311, the transmission wheels 317 of the first transmission wheel group 39 and the second transmission wheel group 310 are staggered, and the first driving gear 312 is connected to the first driving gear 314 by a belt 313. The first and second gears 316 are connected to each other via a belt 314, and the second gears 317 are connected to each other via a belt 313. The second driving gear 315 is connected to the transmission wheel 317 at one end of the second transmission wheel group 310 via a belt 313, and the transmission wheels 317 of the second rotating wheel group 310 are connected to each other via a belt 313. The upper side of the conveying assembly mounting plate 31 is provided with a first rotating wheel group 37 and a second rotating wheel group 38 corresponding to the first transmission wheel group 39 and the second transmission wheel group 310. The grooved rotating wheels 36 of the first rotating wheel group 37 and the second rotating wheel group 38 are coaxially mounted with the corresponding transmission wheels 317 of the first transmission wheel group 39 and the second transmission wheel group 310. The conveying assembly mounting plate 31 is provided with a support guide wheel 34 corresponding to the tampon input end and each grooved rotating wheel 36, and an elastic conveying assembly 35 is installed between the corresponding group of grooved rotating wheels 36 and the support guide wheel 34.

[0006] A tensioning pulley 316 is installed on the conveying assembly mounting plate 31 outside each set of elastic conveying members 35 .

[0007] The transmission component drive motor 311 is installed on the motor mounting plate 32, the first drive gear 314 and the second drive gear 315 are installed on the drive gear mounting plate 33, the motor mounting plate 32 is fixed on the drive gear mounting plate 33, and the drive gear mounting plate 33 is installed on the end of the transmission component mounting plate 31.

[0008] The tampon conveying device of the utility model conveys the tampon by the friction between the side-by-side elastic conveying parts and the tampon, so that the tampon can always maintain the final posture and move horizontally to the set position without position deflection. When inserting the tampon, it can be accurately aligned with the fungus bag below, and the working efficiency is high. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Figure 1 This is a top view of the structure of the tampon delivery device of the present invention.

[0010] Figure 2 It is a partial structural diagram of the driving assembly and transmission assembly of the tampon delivery device of the present invention.

[0011] Figure 3 It is a partial structural diagram of the driving assembly and transmission assembly of the tampon delivery device of the present invention.

[0012] Figure 4 This is an assembly structure diagram of the tampon delivery device of the present utility model.

[0013] Figure 5 This is an assembly structure diagram of the tampon delivery device of the present utility model.

[0014] In the figure: 31, conveying component mounting plate, 32, motor mounting plate, 33, driving gear mounting plate, 34, supporting guide wheel, 35, elastic conveying member, 36, grooved rotor, 37, first rotor group, 38, second rotor group, 39, first transmission wheel group, 310, second transmission wheel group, 311, transmission component driving motor, 312, motor transmission gear, 313, belt, 314, first driving gear, 315, second driving gear, 316, tensioning wheel, 317, transmission wheel, 27, slide groove, 41, blocking and limiting component, 100, cotton plug, 2, cotton plug shaking conveying device, 7, cotton plug insertion device. DETAILED DESCRIPTION

[0015] The structure of the tampon delivery device of the utility model is as follows Figure 1-3 As shown, it includes a transmission component mounting plate 31, a drive component, a transmission component and a conveying component. The drive component, the transmission component and the conveying component are all arranged on the transmission component mounting plate 31. The drive component drives the conveying component to convey the tampon through the transmission component. The conveying component is provided with multiple groups. The conveying component includes an elastic conveying member. The two adjacent elastic conveying members move at the same time to drive the tampon to move. The tampon conveying device of the present application conveys the tampon through the friction between the side-by-side elastic conveying members and the tampon, so that the tampon can always maintain the final posture and move horizontally to the set position without position deflection. When inserting the tampon, it can be accurately aligned with the mushroom bag below.

[0016] The drive assembly includes a transmission assembly drive motor 311, a first drive gear 14 and a second drive gear 315. The transmission assembly drive motor 311 is installed on the motor mounting plate 32, the first drive gear 314 and the second drive gear 315 are installed on the drive gear mounting plate 33, the motor mounting plate 32 is fixed on the drive gear mounting plate 33, and the drive gear mounting plate 33 is installed on the end of the transmission assembly mounting plate 31. The output shaft of the transmission component drive motor 311 is passed through the transmission component mounting plate 31, and the output end of the transmission component drive motor 311 is located on the lower side of the transmission component mounting plate 31. The transmission component drive motor 311 is connected to the first drive gear 314 through a belt 313. The first drive gear 314 is engaged with the second drive gear 315. The first drive gear 314 and the second drive gear 315 are connected to the transmission component through the belt 313. The transmission component drive motor 311 stably drives the first drive gear 314 through the belt 313. The first drive gear 314 and the second drive gear 315 are engaged to ensure the same speed, which can drive the two groups of elastic conveying members 35 to rotate at the same speed in opposite directions, thereby driving the cotton plug 100 between the two groups of elastic conveying members 35 to move.

[0017] The transmission assembly includes a first transmission wheel group 39 and a second transmission wheel group 310. The first transmission wheel group 39 and the second transmission wheel group 310 are both arranged under the transmission assembly mounting plate 31. The first drive gear 314 is connected to the transmission wheel 317 at one end of the first transmission wheel group through a belt 313. The transmission wheels 317 of the first transmission wheel group 39 are connected by a belt 313. The second drive gear 315 is connected to the second transmission wheel group 310 through a belt transmission. The transmission wheels 317 of the second transmission wheel group 310 are connected by a belt 313. The first transmission wheel group 39 rotates in opposite directions to the second transmission wheel group 310. The transmission assembly mounting plate 31 The upper side of the conveyor assembly is provided with a first rotating wheel group 37 and a second rotating wheel group 38, corresponding to the first transmission wheel group 39 and the second transmission wheel group 310. Each grooved rotating wheel 36 of the first rotating wheel group 37 and the second rotating wheel group 38 is coaxially mounted with the corresponding transmission wheel 317 of the first transmission wheel group 39 and the second transmission wheel group 310. The conveyor assembly includes a support guide wheel 34, which is mounted on the conveyor assembly mounting plate 31 at the tampon input end and corresponding to each grooved rotating wheel 36. An elastic conveyor assembly 35 is mounted between a corresponding set of grooved rotating wheels 36 and the support guide wheel 34. The aforementioned transmission mechanism causes two adjacent elastic conveyor members 36 to rotate in opposite directions. A tensioning wheel 316 is mounted on the conveyor assembly mounting plate 31, located outside each set of elastic conveyor members 35, to tighten the elastic conveyor members 35 and assist in their rotation.

[0018] The tampon delivery device assembly structure of the present application is as follows Figure 4 Hehe Figure 5As shown, the tampon input end of the transmission component mounting plate 31 is connected to the tampon shaking conveyor 2. The tampon 100 is transported through the chute 27 of the shaking conveyor to the transmission component mounting plate 31, which is formed by two adjacent elastic conveying members 35 corresponding to the chute 27. The transmission component mounting plate 31 is provided with a tampon insertion hole. The tampon 100 is transported to the tampon insertion hole position of each blocking and limiting component 41 below the tampon insertion device 7, and is inserted into the fungus bag below the transmission component mounting plate 31 through the tampon insertion device 7. The specific working process is as follows:

[0019] The transmission assembly driving motor 311 drives the first driving gear 314 and the second driving gear 315 to rotate through the belt 313. The first driving gear 314 is a double gear. Since the first driving gear 314 and the second driving gear 315 are meshed and have the same number of teeth, the first driving gear 314 and the second driving gear 315 rotate at the same speed and in opposite directions. The first driving gear 314 and the second driving gear 315 respectively drive the first transmission wheel group 39 and the second transmission wheel group 310 to rotate at the same speed and in opposite directions. The first transmission wheel group 39 and the second transmission wheel group 310 are provided with a grooved rotating wheel 36, which is located on the upper plate surface of the mounting plate 31. The elastic conveying member 35 is annular, one end of which is sleeved on the grooved rotating wheel 36, and the other end of which is sleeved on the supporting guide wheel 34. The supporting guide wheel 34 rotates without power assistance. Since the two adjacent elastic conveying members 35 are driven to rotate by different transmission wheel groups, the cotton plug can be stably moved forward under the friction of the elastic friction members on both sides.

Claims

1. A tampon delivery device, characterized in that: A transmission assembly drive motor (311), a first drive gear (314) and a second drive gear (315) are installed on the conveying assembly mounting plate (31) at an end away from the tampon input end. The output end of the transmission assembly drive motor (311), the first drive gear (314) and the second drive gear (315) are located on the lower side of the conveying assembly mounting plate (31). A motor transmission gear (312) is installed on the output shaft of the transmission assembly drive motor (311). The motor transmission gear (312) and the first drive gear (314) are connected by a belt (313). The first drive gear (314) and the second drive gear (315) are meshed and installed. A first transmission wheel group (39) and a second transmission wheel group (310) are longitudinally installed on the lower side of the conveying assembly mounting plate (31) at an end near the transmission assembly drive motor (311). The transmission wheels (317) of the first transmission wheel group (39) and the second transmission wheel group (310) are staggered. The first drive gear (314) is connected to the first transmission wheel group (310) by a belt (313). 9) with a drive wheel (317) at one end, each drive wheel (317) of the first drive wheel group (39) is connected by a belt (313), the second drive gear (315) is connected to the drive wheel (317) at one end of the second drive wheel group (310) by a belt (313), and each drive wheel (317) of the second drive wheel group (310) is connected by a belt (313); the upper side of the conveying assembly mounting plate (31) is provided with a corresponding first drive wheel group (39) and the second drive wheel group (310) The first rotating wheel group (37) and the second rotating wheel group (38), and each grooved rotating wheel (36) of the first rotating wheel group (37) and the second rotating wheel group (38) are coaxially mounted with the corresponding transmission wheels (317) of the first transmission wheel group (39) and the second transmission wheel group (310); a supporting guide wheel (34) is mounted on the conveying assembly mounting plate (31) at the tampon input end and corresponding to each grooved rotating wheel (36); and an elastic conveying member (35) is mounted between the corresponding group of grooved rotating wheels (36) and the supporting guide wheel (34).

2. A tampon delivery device according to claim 1, characterized in that: A tensioning wheel (316) is installed on the conveying assembly mounting plate (31) outside each group of elastic conveying members (35).

3. A tampon delivery device according to claim 1, characterized in that: The transmission assembly drive motor (311) is mounted on a motor mounting plate (32), a first drive gear (314) and a second drive gear (315) are mounted on a drive gear mounting plate (33), the motor mounting plate (32) is fixed to the drive gear mounting plate (33), and the drive gear mounting plate (33) is mounted on an end of the transmission assembly mounting plate (31).