Columnar element blanking device

By designing a columnar element feeding device, the problem of unfixed aerosol particles was solved, enabling precise feeding and simplified transportation of aerosol materials, and improving production efficiency.

CN223694912UActive Publication Date: 2025-12-23CHINA TOBACCO HEBEI INDUSTRIAL CO LTD +2
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Patent Information

Application Number
CN202423083575.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-12-23
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing aerosol generating products cannot fix the aerosol particles generated, requiring filling into an outer tube, which results in complex transportation equipment and a large footprint.

Method used

Design a columnar element feeding device, including a columnar element vibratory feeder, a conveying track, a slide, grippers, and an ejection mechanism. Through spiral track conveying and precise positioning, the automated feeding of columnar elements is achieved.

Benefits of technology

It enables precise feeding of aerosol generation materials, simplifies the transportation process, reduces the floor space required, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of heating cigarettes, and particularly relates to a columnar element blanking device. The columnar element blanking device comprises a columnar element vibration disc, a columnar element conveying track, a columnar element sliding table, a columnar element clamping jaw, a columnar element blanking hole and a columnar element ejection mechanism; the inner wall of the columnar element vibration disc is provided with a spiral track which is spirally upward along the inner wall; the upstream end of the columnar element conveying track is communicated with the spiral track, and the downstream of the columnar element conveying track is a blanking port; the columnar element sliding table is configured to move between an original position and an extending position; the columnar element clamping jaw is fixed on the columnar element sliding table, and a columnar element blanking hole is formed in the columnar element clamping jaw. The device is simple, compact in arrangement and accurate and controllable in discharging.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the heating cigarette field, concretely relates to a columnar element blanking device. BACKGROUND

[0002] With the importance of health problems and the demand of consumers for personalized experience of cigarette products, the tobacco industry continuously responds to the demand of consumers, and develops various smoking products with reducing tar and harm. Among them, the heating cigarette is different from the traditional cigarette product in the heating mode of cigarette, so that it can meet the sensory needs of consumers for cigarette products while providing a healthier smoking experience.

[0003] The existing integrated aerosol generating product includes an outer tube and an aerosol generating substrate and other units for reducing temperature and circulating aerosol filled in the outer tube. At present, the aerosol generating substrate of the integrated aerosol generating product is usually granular aerosol generating material. Since the bulk aerosol generating particles cannot be fixed, they must be filled into the outer tube by filling, and the two sides of the aerosol generating particle section need to be fixed by the way of sealing paper and blocking piece. In order to converge aerosol and increase the amount of smoke, the downstream of the blocking piece is usually a cavity (cavity section) defined by the outer tube, and the downstream of the cavity section is a filter section. At present, the above-mentioned aerosol generating product is prepared by filling method. The filling method needs to transport the outer tube to the filling position, and then fill each section in the outer tube. The existing outer tube conveying device is complex and occupies a large area.

[0004] In order to solve the above problems, the utility model is proposed. UTILITY MODEL CONTENT

[0005] The utility model provides a columnar element blanking device in a first aspect, the columnar element blanking device includes the following components: columnar element vibration disc, columnar element conveying track, columnar element sliding table, columnar element clamping jaw, columnar element blanking hole, columnar element ejection mechanism;

[0006] The component position relationship is:

[0007] The inner wall of the columnar element vibration disc is provided with a spiral track spirally upward along the inner wall for transporting columnar elements;The upstream end of the columnar element conveying track is in communication with the spiral track, and the downstream of the columnar element conveying track is a blanking hole;

[0008] The columnar element sliding table is configured to move between the original position and the extended position;

[0009] The columnar element clamping jaw is fixed on the columnar element sliding table, and the columnar element clamping jaw has a columnar element blanking hole therein;

[0010] The columnar element sliding table is configured to:

[0011] The columnar element slide table is in the original position, and the columnar element blanking hole is opposite the columnar element feeding track blanking hole;

[0012] The columnar element slide table is in the extended position, and the columnar element blanking hole is opposite the columnar element ejection mechanism above the columnar element blanking hole and opposite the jig bin in the jig below the columnar element blanking hole.

[0013] Preferably, the columnar element blanking device comprises a columnar element slide table support, and the columnar element slide table is arranged on the columnar element slide table support.

[0014] Preferably, the columnar element feeding track is a groove structure with closed sides and bottom, so as to feed the columnar element.

[0015] Preferably, the columnar element feeding track is a smooth curve.

[0016] Preferably, the top surface of the columnar element feeding track paper tube feeding track section is open, and the top surface of the remaining part is closed.

[0017] Preferably, the columnar element clamping jaw has a columnar element clamping jaw in the middle, and the columnar element blanking hole is in the middle of the columnar element clamping jaw.

[0018] Preferably, the columnar element ejection mechanism is an ejection cylinder.

[0019] The second aspect of the present application provides a working method of the columnar element blanking device of the first aspect, comprising the following steps:

[0020] Put the columnar element into the columnar element vibrating disc, so that the jig bin of the jig is opposite the columnar element ejection mechanism;

[0021] Make the columnar element slide table in the original position, and the columnar element clamping jaw remains in the open state. The columnar element vibrating disc vibrates to drive the columnar element to slide along the spiral track and the columnar element feeding track to the columnar element blanking hole in the columnar element clamping jaw.

[0022] Then, switch the columnar element clamping jaw to the clamping state to clamp the columnar element.

[0023] Make the columnar element slide table move to the extended position, and in this process, the columnar element slide table drives the columnar element clamping jaw and the columnar element to move so that the columnar element is aligned with the jig bin.

[0024] Finally, the columnar element ejection mechanism presses the columnar element into the jig bin.

[0025] Preferably, the columnar element is a cylindrical element. The cylindrical element can be a hollow cylinder or a solid cylinder.

[0026] Compared with the prior art, the present application has the following beneficial effects:

[0027] The present application provides a cylindrical element blanking device, which can be used in the blanking process of paper tubes, small paper tubes, filter cotton or sealing cotton in the process of manufacturing granular heating cigarettes. The device of the present application is simple, compact in arrangement, and accurate and controllable in blanking. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a schematic diagram of the overall structure of the paper tube sliding table 1-3 in the paper tube blanking module when it is in the original position. At this time, the paper tube conveying track 1-1-1 is in communication with the paper tube blanking hole 1-5-1.

[0029] Figure 2 It is a schematic diagram of the overall structure of the paper tube sliding table 1-3 in the paper tube blanking module when it is in the extended position. At this time, the paper tube blanking hole 1-5-1 is aligned with the paper tube ejection cylinder 1-6.

[0030] Figure 3 It is a partial enlarged view of the paper tube blanking module.

[0031] Figure 4 It is a schematic diagram of the overall structure of the filter cotton sliding table 2-3 in the filter cotton blanking module when it is in the original position. At this time, the filter cotton conveying track 2-1-1 is in communication with the filter cotton blanking hole 2-5-1.

[0032] Figure 5 It is a schematic diagram of the overall structure of the filter cotton sliding table 2-3 in the filter cotton blanking module when it is in the extended position. At this time, the filter cotton blanking hole 2-5-1 is aligned with the filter cotton ejection cylinder 2-6.

[0033] Figure 6 It is a partial enlarged view of the filter cotton blanking module.

[0034] Figure 7 It is a schematic diagram of the overall structure of the small paper tube sliding table 3-3 in the small paper tube blanking module when it is in the original position. At this time, the small paper tube conveying track 3-1-1 is in communication with the small paper tube blanking hole 3-5-1.

[0035] Figure 8 It is a schematic diagram of the overall structure of the small paper tube sliding table 3-3 in the small paper tube blanking module when it is in the extended position. At this time, the small paper tube blanking hole 3-5-1 is aligned with the small paper tube ejection cylinder 3-6.

[0036] Figure 9 It is a partial enlarged view of the small paper tube blanking module.

[0037] Figure 10 It is a schematic diagram of the overall structure of the sealing cotton sliding table 7-3 in the sealing cotton blanking module when it is in the original position. At this time, the sealing cotton conveying track 7-1-1 is in communication with the sealing cotton blanking hole 7-5-1.

[0038] Figure 11 Figure 7-3 is a schematic diagram of the overall structure of the sealing cotton sliding table 7-3 in the sealing cotton blanking module when it is in the extended position. At this time, the sealing cotton blanking hole 7-5-1 is aligned with the sealing cotton ejection cylinder 7-6.

[0039] Figure 12 Figure 7-3 is a schematic diagram of the overall structure of the sealing cotton sliding table 7-3 in the sealing cotton blanking module when it is in the extended position. At this time, the sealing cotton blanking hole 7-5-1 is aligned with the sealing cotton ejection cylinder 7-6.

[0040] List of reference signs:

[0041] 1. Paper tube blanking module, 1-1 paper tube vibrating disc, 1-1-1 paper tube conveying track, 1-2 paper tube sliding table support, 1-3 paper tube sliding table, 1-4 paper tube clamping jaw, 1-5 paper tube clamping jaw, 1-5-1 paper tube blanking hole, 1-6 paper tube ejection cylinder.

[0042] 2. Filter cotton blanking module, 2-1 filter cotton vibrating disc, 2-1-1 filter cotton conveying track, 2-2 filter cotton sliding table support, 2-3 filter cotton sliding table, 2-4 filter cotton clamping jaw, 2-5 filter cotton clamping jaw, 2-5-1 filter cotton blanking hole, 2-6 filter cotton ejection cylinder.

[0043] 3. Small paper tube blanking module, 3-1 small paper tube vibrating disc, 3-1-1 small paper tube conveying track, 3-2 small paper tube sliding table support, 3-3 small paper tube sliding table, 3-4 small paper tube clamping jaw, 3-5 small paper tube clamping jaw, 3-5-1 small paper tube blanking hole, 3-6 small paper tube ejection cylinder.

[0044] 7. Sealing cotton blanking module, 7-1 sealing cotton vibrating disc, 7-1-1 sealing cotton conveying track, 7-2 sealing cotton sliding table support, 7-3 sealing cotton sliding table, 7-4 sealing cotton clamping jaw, 7-5 sealing cotton clamping jaw, 7-5-1 sealing cotton blanking hole, 7-6 sealing cotton ejection cylinder. DETAILED DESCRIPTION

[0045] The application will be further described in conjunction with the following examples.

[0046] Those skilled in the art will appreciate that the following examples are included for illustrative purposes only and should not be viewed as limiting on the scope of the application. If a specific technique or condition is not mentioned in the examples, it is performed according to the technique or condition described in the literature in the field or according to the product manual. If the manufacturer of the material or equipment to be used is not mentioned, it is a conventional product that can be obtained by purchase.

[0047] It is to be understood that the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. It is further understood that the terms "comprise" (or comprise), "comprises" (or comprises) and "comprising" (or comprising) when used in this specification, specify the presence of stated features, integers, steps, operations, elements, or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, or groups thereof. It is further understood that when an element is referred to as being "connected" to or "coupled" to another element, it can be directly connected or coupled to the other element or intervening elements can be present. In addition, the use of "connected" and "coupled" herein can be used in the context of wireless connection.

[0048] In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more. The orientation or positional relationship indicated by the terms "inner", "upper", "lower", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the purpose of facilitating the description of the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0049] In the description of the present application, it is to be noted that, unless otherwise specified and limited, the terms "mounting", "connection", "provided with" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application should be understood according to the specific circumstances.

[0050] It is to be understood by those skilled in the art that, unless otherwise defined, all terms used herein, including technical terms and scientific terms, have the same meaning as that generally understood by those skilled in the art to which the present application belongs. It should also be understood that terms such as those defined in a general dictionary should be understood to have meanings consistent with those in the context of the prior art, and should not be interpreted in an idealized or overly formal sense unless otherwise defined.

[0051] Embodiment 1

[0052] As Figures 1-3 It is a structural schematic diagram of the paper tube blanking module 1.

[0053] Figure 1 It is a structural schematic diagram of the paper tube sliding table 1-3 in the paper tube blanking module 1 when it is in place. At this time, the paper tube conveying track 1-1-1 is in communication with the paper tube blanking hole 1-5-1.

[0054] Figure 2Figure 1-1 is a schematic diagram of the overall structure of the paper tube blanking module 1 when the paper tube sliding table 1-3 is in the extended position. At this time, the paper tube blanking hole 1-5-1 is aligned with the paper tube ejection cylinder 1-6.

[0055] Figure 3 Figure 1-2 is a partial enlarged view of the paper tube blanking module 1.

[0056] Figures 1-3 As can be seen, the paper tube blanking module 1 includes the following components: paper tube vibrating disc 1-1, paper tube conveying track 1-1-1, paper tube sliding table support 1-2, paper tube sliding table 1-3, paper tube clamping jaw 1-4, paper tube clamping jaw 1-5, paper tube blanking hole 1-5-1, paper tube ejection cylinder 1-6.

[0057] The positional relationship of each component is as follows:

[0058] The inner wall of the paper tube vibrating disc 1-1 is provided with a spiral track that spirals upward along the inner wall, used for conveying paper tubes. The upstream end of the paper tube conveying track 1-1-1 is in communication with the spiral track, and the downstream of the paper tube conveying track 1-1-1 is the blanking port. The paper tube conveying track 1-1-1 is a groove-like structure with closed sides and bottom. The top surface of the upstream section of the paper tube conveying track 1-1-1 is open, and the top surface of the rest is closed.

[0059] The paper tube sliding table 1-3 is provided on the paper tube sliding table support 1-2. The paper tube sliding table 1-3 is configured to move between the original position and the extended position. The paper tube clamping jaw 1-4 is fixed on the paper tube sliding table 1-3. The paper tube clamping jaw 1-5 is fixed in the two clamping jaws of the paper tube clamping jaw 1-4. The paper tube clamping jaw 1-5 is the paper tube blanking hole 1-5-1.

[0060] The paper tube ejection cylinder 1-6 is fixed on the paper tube sliding table support 1-2. When the paper tube sliding table 1-3 is in the original position, the paper tube blanking hole 1-5-1 is directly opposite the blanking port of the paper tube conveying track 1-1-1. When the paper tube sliding table 1-3 is in the extended position, the paper tube blanking hole 1-5-1 is directly opposite the paper tube ejection cylinder rod 1-6 above the paper tube blanking hole 1-5-1, and the paper tube blanking hole 1-5-1 is directly opposite the jig bin in the jig 9-5 below the paper tube blanking hole 1-5-1.

[0061] The working method of the paper tube blanking module 1 is as follows:

[0062] The paper tube is placed in the paper tube vibration disc 1-1, the rotating disc drives the jig to rotate, so that the jig bin of the first station jig 9-5 is opposite to the paper tube ejection cylinder 1-6. The paper tube sliding table 1-3 is in the original position, the paper tube clamping jaw 1-4 is kept in the open state, the paper tube vibration disc 1-1 vibrates to drive the paper tube to slide along the paper tube conveying track 1-1-1 to the paper tube falling hole 1-5-1 in the middle of the paper tube clamping jaw 1-5, the paper tube clamping jaw 1-4 is switched to the clamping state, and the paper tube clamping jaw 1-5 clamps the paper tube. Then, the paper tube sliding table 1-3 moves to the extended position, during which the paper tube sliding table 1-3 drives the paper tube clamping jaw 1-4 and the paper tube to move so that the paper tube is aligned with the jig bin of the first station jig 9-5, and the paper tube ejection cylinder 1-6 extends to press the paper tube into the jig bin.

[0063] Example 2

[0064] As Figures 4-6 The structure diagram of the filter cotton feeding module 2.

[0065] Figure 4 The overall structure diagram of the filter cotton sliding table 2-3 in the filter cotton feeding module 2 when in the original position. At this time, the filter cotton conveying track 2-1-1 is connected with the filter cotton falling hole 2-5-1 in an up-down manner.

[0066] Figure 5 The overall structure diagram of the filter cotton sliding table 2-3 in the filter cotton feeding module 2 when in the extended position. At this time, the filter cotton falling hole 2-5-1 is aligned with the filter cotton ejection cylinder 2-6 in an up-down manner.

[0067] Figure 6 The local enlarged view of the filter cotton feeding module 2.

[0068] The filter cotton feeding module 2 comprises the following components: a filter cotton vibration disc 2-1, a filter cotton conveying track 2-1-1, a filter cotton sliding table support 2-2, a filter cotton sliding table 2-3, a filter cotton clamping jaw 2-4, a filter cotton clamping jaw 2-5, a filter cotton falling hole 2-5-1, and a filter cotton ejection cylinder 2-6.

[0069] The positional relationship of the above components is as follows:

[0070] The inner wall of the filter cotton vibration disc 2-1 is provided with a spiral track spirally upward along the inner wall for conveying filter cotton. The upstream end of the filter cotton vibration disc 2-1 is connected with the spiral track, and the downstream of the filter cotton conveying track 2-1-1 is the falling hole. The filter cotton conveying track 2-1-1 has a groove structure with the side and bottom closed. The top surface of the upstream section of the filter cotton conveying track 2-1-1 is open, and the top surface of the remaining part is closed.

[0071] Filtering cotton slide table 2-3 is fixed on filtering cotton slide table support 2-2. Filtering cotton slide table 2-3 is configured to move between in situ and extended positions. Filtering cotton clamping jaw 2-4 is fixed on filtering cotton slide table 2-3. Filtering cotton ejection cylinder 2-6 is fixed on filtering cotton slide table support 2-2. Filtering cotton clamping jaw 2-5 is fixed in filtering cotton clamping jaw 2-4. Filtering cotton clamping jaw 2-4 is filtering cotton blanking hole 2-5-1.

[0072] When filtering cotton slide table 2-3 is in situ, filtering cotton blanking hole 2-5-1 is opposite to blanking port of filtering cotton conveying track 2-1-1. When filtering cotton slide table 2-3 is in extended position, filtering cotton blanking hole 2-5-1 is opposite to filtering cotton ejection cylinder rod 2-6 above and is opposite to jig bin in jig 9-5 below.

[0073] The working method of the filtering cotton blanking module 2 is as follows:

[0074] The rotating disc continues to rotate by a certain angle to make the jig 9-5 just completed paper tube pressing and loading opposite to the filtering cotton ejection cylinder 2-6, at this time the position is recorded as the second station. Filtering cotton slide table 2-3 is in situ, filtering cotton clamping jaw 2-4 remains open state, filtering cotton vibrating disc 2-1 vibrates to drive filtering cotton to slide along filtering cotton conveying track 2-1-1 to filtering cotton blanking hole 2-5-1, filtering cotton clamping jaw 2-4 switches to clamping state, filtering cotton clamping jaw 2-5 clamps the filtering cotton. Then filtering cotton slide table 2-3 moves to extended position, in this process, filtering cotton slide table 2-3 drives filtering cotton clamping jaw 2-4 and filtering cotton to move to make the filtering cotton align with the jig bin of the second station jig 9-5, filtering cotton ejection cylinder 2-6 extends to press the filtering cotton into the paper tube.

[0075] Example 3

[0076] As Figures 7-9 It is a structure schematic diagram of small paper tube blanking module 3.

[0077] Figure 7 It is a structure schematic diagram of small paper tube slide table 3-3 in situ in small paper tube blanking module 3. At this time, small paper tube conveying track 3-1-1 is communicated with small paper tube blanking hole 3-5-1 vertically.

[0078] Figure 8 It is a structure schematic diagram of small paper tube slide table 3-3 in extended position in small paper tube blanking module 3. At this time, small paper tube blanking hole 3-5-1 is vertically aligned with small paper tube ejection cylinder 3-6.

[0079] Figure 9 It is a local enlarged view of small paper tube blanking module 3.

[0080] The small paper tube blanking module 3 comprises the following components: a small paper tube vibrating disc 3-1, a small paper tube conveying track 3-1-1, a small paper tube sliding table support 3-2, a small paper tube sliding table 3-3, a small paper tube clamping jaw 3-4, a small paper tube clamping jaw 3-5, a small paper tube blanking hole 3-5-1, and a small paper tube ejecting cylinder 3-6.

[0081] The positional relationship of the above components is as follows:

[0082] The inner wall of the small paper tube vibrating disc 3-1 is provided with a spiral track spiraling upward along the inner wall for conveying paper tubes. The upstream end of the small paper tube conveying track 3-1-1 is in communication with the spiral track, and the downstream of the small paper tube conveying track 3-1-1 is a blanking hole. The small paper tube conveying track 3-1-1 is a groove-like structure with the side and bottom being closed. The top surface of the upstream section of the small paper tube conveying track 3-1-1 is open, and the top surface of the remaining part is closed.

[0083] The small paper tube sliding table 3-3 is fixed on the small paper tube sliding table support 3-2. The small paper tube clamping jaw 3-5 is fixed in the two clamping jaws of the small paper tube clamping jaw 3-5. The small paper tube clamping jaw 3-4 is fixed on the small paper tube sliding table 3-3. The small paper tube ejecting cylinder 3-6 is fixed on the small paper tube sliding table support 3-2. The small paper tube clamping jaw 3-5 is provided with a small paper tube blanking hole 3-5-1. When the small paper tube sliding table 3-3 is in the original position, the small paper tube blanking hole 3-5-1 is directly opposite the blanking hole of the small paper tube conveying track 3-1-1. When the small paper tube sliding table 3-3 is in the extended position, the small paper tube blanking hole 3-5-1 is directly opposite the small paper tube ejecting cylinder rod 3-6 above and directly opposite the jig bin in the jig 9-5 below.

[0084] The working method of the small paper tube blanking module 3 is as follows:

[0085] The rotating disc continues to rotate by a certain angle to make the jig 9-5 just completed with the filter cotton press package directly opposite the small paper tube ejecting cylinder 2-6, and the position is recorded as the third station. The small paper tube sliding table 3-3 is in the original position, the small paper tube clamping jaw 3-4 remains in the open state, the small paper tube vibrating disc 3-1 vibrates to drive the small paper tube to slide along the small paper tube conveying track 3-1-1 to the small paper tube blanking hole 3-5-1, the small paper tube clamping jaw 3-4 is switched to the clamping state, and the small paper tube clamping jaw 3-5 clamps the small paper tube. Then, the small paper tube sliding table 3-3 moves to the extended position, and in this process, the small paper tube sliding table 3-3 drives the small paper tube to move to align the small paper tube with the jig bin of the third station jig 9-5, and the small paper tube ejecting cylinder 3-6 extends to press the small paper tube into the paper tube.

[0086] Example 4

[0087] As Figures 10-12 The structure diagram of the sealing cotton blanking module 7 is shown.

[0088] Figure 10Figure 8 is a schematic diagram of the overall structure of the sealing cotton feeding module 7 when the sealing cotton slide 7-3 is in the original position. At this time, the sealing cotton conveying track 7-1-1 is in communication with the sealing cotton feeding hole 7-5-1.

[0089] Figure 11 Figure 9 is a schematic diagram of the overall structure of the sealing cotton feeding module 7 when the sealing cotton slide 7-3 is in the extended position. At this time, the sealing cotton feeding hole 7-5-1 is in alignment with the sealing cotton ejecting cylinder 7-6.

[0090] Figure 12 Figure 10 is a partial enlarged view of the sealing cotton feeding module 7.

[0091] The sealing cotton feeding module 7 comprises the following components: a sealing cotton vibrating disc 7-1, a sealing cotton conveying track 7-1-1, a sealing cotton slide support 7-2, a sealing cotton slide 7-3, a sealing cotton clamping jaw 7-4, a sealing cotton clamping jaw 7-5, a sealing cotton feeding hole 7-5-1, and a sealing cotton ejecting cylinder 7-6.

[0092] The positional relationship of the above components is as follows:

[0093] The sealing cotton slide 7-3 is fixed on the sealing cotton slide support 7-2. The sealing cotton clamping jaw 7-5 is fixed in the two clamping jaws of the sealing cotton clamping jaw 7-4. The sealing cotton clamping jaw 7-4 is fixed on the sealing cotton slide 7-3. The sealing cotton ejecting cylinder 7-6 is fixed on the sealing cotton slide support 7-2. The sealing cotton clamping jaw 7-5 is the sealing cotton feeding hole 7-5-1. When the sealing cotton slide 7-3 is in the original position, the sealing cotton feeding hole 7-5-1 is directly above the sealing cotton conveying track 7-1-1 feeding hole. When the sealing cotton slide 7-3 is in the extended position, the sealing cotton feeding hole 7-5-1 is directly above the sealing cotton ejecting cylinder rod 7-6 and directly below the jig bin in the jig 9-5.

[0094] The working method of the sealing cotton feeding module 7 is as follows:

[0095] The rotating disc continues to rotate by a certain angle to make the jig 9-5 that has just completed the supplement of the flavoring agent opposite the sealing cotton ejecting cylinder 7-6, and this position is recorded as the seventh station. The sealing cotton slide 7-3 is in the original position, the sealing cotton clamping jaw 7-4 remains in the open state, the sealing cotton vibrating disc 7-1 vibrates to drive the sealing cotton to slide along the sealing cotton conveying track 7-1-1 to the sealing cotton feeding hole 7-5-1, the sealing cotton clamping jaw 7-4 is switched to the clamping state, and the sealing cotton clamping jaw 7-5 clamps the sealing cotton. Then, the sealing cotton slide 7-3 moves to the extended position, and in this process, the sealing cotton slide 7-3 drives the sealing cotton clamping jaw 7-4 and the sealing cotton to move so that the sealing cotton is aligned with the jig bin of the seventh station jig 9-5, and the sealing cotton ejecting cylinder 7-6 extends to press the sealing cotton into the paper tube.

Claims

1. A columnar element blanking apparatus characterized by comprising: 1) a columnar element blanking device, The columnar element blanking device comprises the following components: A columnar element vibrating disc, a columnar element conveying track, a columnar element sliding table, a columnar element clamping jaw, a columnar element blanking hole, and a columnar element ejection mechanism. The components are in the following positional relationship: The inner wall of the columnar element vibrating disc is provided with a spiral track spiraling upward along the inner wall, for transporting columnar elements; The upstream end of the columnar element conveying track is in communication with the spiral track, and the downstream of the columnar element conveying track is a blanking hole; The columnar element sliding table is configured to move between an in-situ position and an extended position; The columnar element clamping jaw is fixed on the columnar element sliding table, and has a columnar element blanking hole therein; The columnar element sliding table is configured to: When the columnar element sliding table is in the in-situ position, the columnar element blanking hole is directly opposite the blanking hole of the columnar element conveying track; When the columnar element sliding table is in the extended position, the columnar element blanking hole is directly opposite the columnar element ejection mechanism above and the jig bin in the jig below.

2. The columnar element blanking device according to claim 1, wherein The columnar element blanking device comprises a columnar element sliding table support, and the columnar element sliding table is arranged on the columnar element sliding table support.

3. The columnar element blanking apparatus according to claim 1, wherein The columnar element conveying track is a groove-like structure with a closed side and bottom.

4. The columnar element blanking apparatus according to claim 1, wherein The top surface of the paper tube conveying track section of the columnar element conveying track is open, and the top surface of the rest is closed.

5. The columnar element blanking apparatus according to claim 1, wherein The columnar element clamping jaw has a columnar element clamping jaw therein, and the columnar element blanking hole is in the middle of the columnar element clamping jaw.

6. The columnar element blanking apparatus according to claim 1, wherein The columnar element ejection mechanism is an ejection cylinder.