Flexible feeding process structure for intelligent manufacturing and shred making of Yunnan cigarettes

By designing the feeding process structure of the mixing device and cleaning components, the problems of poor mixing effect of the liquid and the adhesion of impurities to the inner wall of the heating tank were solved, realizing uniform heating and mixing of the liquid, and improving the quality and production efficiency of tobacco processing.

CN223703778UActive Publication Date: 2025-12-23HONGYUN HONGHE TOBACCO (GRP) CO LTD
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Patent Information

Application Number
CN202520119312.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2025-12-23
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

In the current tobacco processing process, the mixing effect of the liquid and feed is poor, which causes impurities to adhere to the inner wall of the heating tank, affecting the heat transfer effect and thus affecting the processing quality of the liquid and feed and the quality of tobacco processing.

Method used

Design a feeding process structure including a mixing device, a cleaning component, and a liquid conveying device. The mixing device uses a drive motor to drive a rotating disk and a stirring component to achieve uniform mixing of the liquid. The cleaning component uses a scraper assembly to clean the inner wall of the heating tank. The liquid conveying device improves production efficiency.

Benefits of technology

It achieves uniform heating and mixing of the liquid material, prevents impurities from adhering to the inner wall of the heating tank, improves the processing quality of the liquid material and the tobacco leaf processing effect, and increases production efficiency and equipment reliability.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a Yunnan cigarette intelligent manufacturing cut tobacco making flexible feeding process structure which comprises a heating tank and further comprises a mixing device arranged in the heating tank. The cleaning assembly is arranged on the mixing device; the feed liquid conveying device is arranged at the lower part of the heating tank in a communicating manner; the mixing device comprises a driving motor, a rotating disc, a stirring assembly and a rotating shaft. The device is simple to operate and good in mixing effect, the heating uniformity in the preparation process can be ensured, the mixing effect and the heating effect of the structure on feeding liquid can be improved, and meanwhile, the influence on the heat transfer effect of the heating tank due to the fact that impurities adhere to the inner wall of the heating tank after long-time use can be prevented; and the influence on the feeding liquid output effect and output stability of the pipeline can be prevented, and the maintenance portability and practicability of the structure in the using process are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a flexible feeding process structure, concretely relates to cloud production cigarette intelligent manufacturing silk making flexible feeding process structure belongs to tobacco production technical field. BACKGROUND

[0002] Generally speaking, in the process of tobacco silk making, in order to improve the flexibility of tobacco, reduce the broken, and keep the moisture degree of tobacco, make tobacco more easily carry out drawing processing, need to add suitable liquid in its production process, wherein to ensure that the liquid better with other components in tobacco contact and penetration, need to heat treatment to liquid to increase the taste and aroma of tobacco, liquid is usually composed of water and other components, so need to guarantee the mixing effect and heating uniformity between the constituent components in the feeding liquid. At the same time, after long time use, the impurities produced in the heating process of liquid can easily adhere to the inner wall surface of heating tank, which causes the influence on the heat transfer effect of heating tank.

[0003] At present, the Chinese utility model patent with publication number CN203355664U discloses a kind of reconstituted tobacco coating liquid mixing preparation device, belong to reconstituted tobacco technical field, a kind of reconstituted tobacco coating liquid mixing preparation device contains drive speed reducer, the main body of this device is a cylindrical mixing tank, at least 3 vertical direction guide rails are arranged on the inner wall of the mixing tank, at least one disc with hole is further arranged in the mixing tank, the guide rail groove on the outer edge of the disc with hole is connected with the guide rail;The disc with hole is centrally sleeved on the central shaft, the upper end of the central shaft penetrates the top surface of the mixing tank, and is connected with the crank connecting rod mechanism through elastic structure;The top surface of the mixing tank is provided with an upper feeding port, and the lower part of the side wall of the mixing tank is provided with a lower feeding port;The bottom of the mixing tank is provided with a discharge port, the utility model has the advantages of reasonable design, compact structure, reliable performance and convenient maintenance, and can realize efficient mixing between powder and liquid, but the mixing effect of the device is poor during use, which affects the processing precision of the device and the quality of subsequent tobacco manufacturing.

[0004] Therefore, it is necessary to develop a cloud production cigarette intelligent manufacturing silk making flexible feeding process structure that is stable and reliable and has good mixing effect, which is the key to solving the above technical problems. SUMMARY

[0005] In view of the many defects and deficiencies in the above background art, the utility model has made improvements and innovations, aiming to provide a cloud production cigarette intelligent manufacturing silk making flexible feeding process structure that is simple to operate and has good mixing effect, can ensure uniform heating during preparation, improve the mixing effect and heating effect of the feeding liquid, and prevent the feeding liquid on the inner wall of the heating tank from being overheated, thereby preventing the processing quality of the feeding liquid and tobacco silk and the taste of the tobacco from being affected.

[0006] The utility model discloses another application purpose is equipped with cleaning assembly, can prevent the impurity produced in the heating process of material liquid after long -time use, stick to its surface, cause the influence to the heat transfer effect of heating jar, and then prevent the processing quality of material liquid and the subsequent tobacco silk making effect influence.

[0007] To solve above-mentioned problem and reach above-mentioned application purpose, the utility model cloud production cigarette intelligent manufacturing silk making flexible material adding process structure is through using the following design structure and using the following technical scheme to realize:

[0008] Cloud production cigarette intelligent manufacturing silk making flexible material adding process structure, including heating jar (1), still include: mixing device (2), mixing device (2) are set up in heating jar (1) inside, for the uniform mixing of material liquid for adding material;

[0009] Cleaning assembly (3), cleaning assembly (3) are set up on mixing device (2), for cleaning the adherend of heating jar (1) inner wall;

[0010] Material liquid conveying device (4), material liquid conveying device (4) are communicated and set up in the lower part of heating jar (1), for conveying the mixed material liquid to the outside liquid storage barrel or cut tobacco preparation cylinder;

[0011] Among them, mixing device (2) includes:

[0012] Driving motor (21), driving motor (21) are set up in the top middle part of heating jar (1);

[0013] Rotary disc (22), rotary disc (22) are rotatably connected in the upper part in heating jar (1);

[0014] Stirring assembly (23), stirring assembly (23) are respectively annularly rotatably connected on rotary disc (22);

[0015] Shaft (24), one end of shaft (24) passes through the top of heating jar (1) and is connected with the output shaft of driving motor (21), and the other end of shaft (24) is connected with rotary disc (22).

[0016] In the utility model, the upper part in heating jar (1) is annularly provided with the clamping groove that is suitable for installing rotary disc (22);Driving motor (21) is fixedly connected with the top of heating jar (1) through support seat.

[0017] Preferably, the mixing device (2) further comprises:

[0018] Annular connecting block (25), the outer circumferential side of annular connecting block (25) is fixedly connected on the inner wall of heating jar (1), and annular connecting block (25) is located above rotary disc (22);

[0019] An annular ring gear (26) is fixedly connected inside the annular connecting block (25);

[0020] Wherein, the upper part of each stirring assembly (23) is meshingly connected with the annular ring gear (26).

[0021] Preferably, the stirring assembly (23) comprises:

[0022] A hollow shaft (231) is rotatably connected inside the rotating disc (22) through the upper part of the rotating disc (22), and the lower end of the hollow shaft (231) is rotatably connected to the inner bottom of the heating tank (1);

[0023] A gear (232) is fixedly connected to the outer periphery of the upper part of the hollow shaft (231), and the gear (232) is meshingly connected with the annular ring gear (26);

[0024] A mixing blade (233) is circumferentially connected to the hollow shaft (231);

[0025] Wherein, a plurality of through holes are formed through the front and back surfaces of the mixing blade (233).

[0026] Preferably, the cleaning assembly (3) is arranged on each stirring assembly (23), and the cleaning assembly (3) comprises: a mounting sleeve (31) connected to the upper and lower ends of the hollow shaft (231), respectively;

[0027] A fixed cylinder (32) is symmetrically connected to the two sides of each mounting sleeve (31), respectively;

[0028] A scraper connecting assembly (33) is connected to each fixed cylinder (32), respectively;

[0029] A scraper (34) is connected to two scraper connecting assemblies (33) on the same side, respectively.

[0030] Preferably, a fixed cylinder mounting cavity is formed inside the non-mounting sleeve (31) end of the fixed cylinder (32);

[0031] The scraper connecting assembly (33) comprises:

[0032] A connecting rod (331) has one end located inside the hollow shaft (231) and the other end sequentially located inside the fixed cylinder mounting cavity after passing through the hollow shaft (231) and the mounting sleeve (31);

[0033] A guide wheel (332) is connected to the end of the connecting rod (331) located inside the hollow shaft (231).

[0034] The sliding plate (333) is slidably connected in the fixing cylinder mounting cavity, and is fixedly connected with the connecting rod (331) at one end;

[0035] The fixed rod (334) is fixedly connected at one end to the sliding plate (333) away from the end of the connecting rod (331), and the other end of the fixed rod (334) extends to the outside of the fixed cylinder (32) and is fixedly connected with the scraper (34), and the fixed rod (334) is slidably sealed in the inside of the fixed cylinder (32);

[0036] The second spring (335) is sleeved on the outer circumferential side of the fixed rod (334), and the two ends of the second spring (335) are fixedly connected with the sliding plate (333) and the inner wall of the fixed cylinder (32) respectively.

[0037] In the utility model, the connecting rod (331) is slidably connected in the inside of the fixed cylinder (32) and the hollow shaft (231).

[0038] Preferably, the cleaning assembly (3) further comprises:

[0039] The rotating seat (35) is rotatably connected at the middle part of the top end of each hollow shaft (231), and rotating seat sliding grooves are formed in the inside of the rotating seat (35) on both sides;

[0040] The connecting shaft (36) is fixedly connected with sliding blocks (361) on both sides of the upper segment of the connecting shaft (36), the sliding blocks (361) are slidably connected in the rotating seat sliding grooves, and the lower segment of the connecting shaft (36) is located in the hollow shaft (231);

[0041] The rolling wheel (37) is connected at the top of the connecting shaft (36);

[0042] The air cylinder (38) is symmetrically arranged at the top end of the heating pot (1) on both sides of the driving motor (21), and the output shaft of the air cylinder (38) penetrates the top end of the heating pot (1) and is located in the inside of the heating pot (1);

[0043] The annular plate (39) is arranged above the rolling wheel (37) and is fixedly connected with the output shafts of the two air cylinders (38).

[0044] Preferably, the connecting shaft (36) is further provided with a connecting assembly, and the connecting assembly comprises:

[0045] The connecting plate (310) is slidably connected in the upper part of the hollow shaft (231) and is fixedly connected with the outer periphery of the connecting shaft (36);

[0046] The first spring (311) is symmetrically connected below the connecting plate (310) on both sides;

[0047] The upper surface of the fixed plate (312) is fixedly connected with the two first springs (311), the outer periphery of the fixed plate (312) is fixedly connected to the inner wall of the hollow shaft (231), and the middle part of the fixed plate (312) is sleeved outside the connecting shaft (36);

[0048] The conical blocks (313) are fixedly connected to the outer peripheries of the two ends of the connecting shaft (36) below the fixed plate (312), the conical blocks (313) are slidingly connected inside the hollow shaft (231), and the conical blocks (313) are located above the two corresponding guide wheels (332);

[0049] The conical blocks (313) and the corresponding guide wheels (332) are matched with each other to complete the cleaning work of the scraper (34) on the adhering objects on the inner wall of the heating tank (1).

[0050] In the utility model, the cross sections of the connecting plate (310) and the fixed plate (312) are all arranged as annular.

[0051] Preferably, the feed liquid conveying device (4) comprises:

[0052] The connecting box (41) is fixedly connected with the bottom of the heating tank (1) through the connecting seat on the top, a first cavity (411) is formed in one side of the connecting box (41), and a second cavity (412) is formed in the inner lower part of the other side of the connecting box (41);

[0053] The liquid outlet pipe (42) is in communication connection with the upper part of the first cavity (411) at the lower end, the upper end of the liquid outlet pipe (42) is in communication connection with the bottom of the heating tank (1), and a switch valve is arranged on the liquid outlet pipe (42);

[0054] The liquid suction pipe (43) is in communication connection with one side of the bottom of the first cavity (411);

[0055] The liquid suction pump (44) is connected with one end of the liquid suction pipe (43);

[0056] The liquid conveying pipe (45) is connected with the output end of the liquid suction pump (44) at one end, and the other end of the liquid conveying pipe (45) is in communication connection with the second cavity (412);

[0057] The liquid discharge pipe (46) is in communication connection with the other end of the second cavity (412);

[0058] The other side of the connecting box (41) is provided with two third cavities (413) in parallel.

[0059] Preferably, the heating tank (1) is provided with a liquid level display meter (6) on one side of the bottom, which is made of transparent material and is provided with a red float ball for easy observation.

[0060] In the utility model, the feeding port (11) is located below the rotating disc (22); the liquid level display meter (6) is a transparent tube and is provided with a red float ball for easy observation; the transparent display of the liquid level display meter (6) and the design of the float ball make the liquid level monitoring more intuitive and convenient, staff can obtain necessary information without approaching the equipment, the time and energy consumption of on-site inspection are reduced, the working efficiency is improved, the operation convenience and the reliability of the feeding process are greatly improved, and the use value and working efficiency of the equipment are further enhanced.

[0061] Preferably, the heating tank (1) is provided with a liquid level display meter (6) on one side of the bottom, which is made of transparent material and is provided with a red float ball for easy observation.

[0062] The working principle is: before use, the operator first connects the feeding port (11) of the heating tank (1) with the output port of the external feeding device, and connects the liquid discharge pipe (46) of the liquid conveying device (4) with an external liquid storage barrel or a tobacco preparation drum, and then the use can be carried out.

[0063] When in use, the external feeding device sequentially conveys a plurality of raw materials into the heating tank (1) through the feeding port (11), and the heating tank (1) heats the plurality of raw materials in the tank; then, the driving motor (21) is started, the driving motor (21) drives the rotating disc (22) connected with the rotating shaft (24) to rotate, and then the rotating disc (22) drives the hollow shaft (231), the mixing blade (233), the mounting sleeve (31), the fixed cylinder (32), the scraper connecting assembly (33) and the scraper (34) to rotate, the plurality of raw materials in the heating tank (1) are uniformly stirred and mixed and heated by the mixing blade (233) and the scraper (34), at the same time, the hollow shaft (231) drives the gear (232) to rotate, the power is transmitted to the ring gear (26) through the linkage effect between the gear (232) and the ring gear (26), and the gear (232) drives the hollow shaft (231), the mixing blade (233), the mounting sleeve (31), the fixed cylinder (32), the scraper connecting assembly (33) and the scraper (34) to rotate under the action of the ring gear (26), so as to mix the feeding liquid on the inner wall side of the heating tank (1) with the feeding liquid around the center thereof;

[0064] Meanwhile, the hollow shaft (231) drives the roller (37) to rotate on the annular plate (39), and the cylinder (38) is started according to actual needs, the annular plate (39) is driven by the cylinder (38) to move downwards and press the hollow shaft (231), the connecting plate (310) and the first spring (311), the power is transmitted to the tapered block (313) by the linkage effect between the hollow shaft (231) and the tapered block (313), the tapered block (313) moves downwards and presses the guide wheel (332), the guide wheel (332) drives the connecting rod (331), the sliding plate (333) and the fixed rod (334) to move away from the center of the hollow shaft (231), as the fixed rod (334) continuously extends, the scraper (34) is in contact with the inner wall of the heating tank (1), and the rotation of the rotating shaft (24) is matched, so that the scraper (34) continuously cleans the inner wall of the heating tank (1);

[0065] When the material liquid in the heating tank (1) is processed, the switch valve on the liquid outlet pipe (42) is opened and the liquid pump (44) is started, the liquid pump (44) draws the material liquid in the heating tank (1) and the connecting box (41) through the liquid pump (43), and then transports the material liquid to the second cavity (412) through the liquid conveying pipe (45), and then transports the material liquid to the outside storage barrel and / or the tobacco preparation roller according to actual needs through the liquid discharge pipe (46), so as to mix with the tobacco in the roller.

[0066] The beneficial effects of the utility model compared with the prior art are:

[0067] 1、The utility model discloses simple operation, and mixing effect is good, can guarantee the heating uniformity in preparation process, improves the mixing effect and heating effect of structure to material liquid, and prevents the material liquid on the inner wall of heating tank from being heated excessively, and then prevents the influence on the processing quality of material liquid and tobacco and the taste of tobacco;

[0068] 2、The utility model discloses the mixing device (2) that adopts design is clever, through a drive motor (21) can drive several stirring assemblies (23) to carry out the stirring and mixing liquid, still can drive the mounting sleeve (31), fixed cylinder (32), scraper connecting assembly (33) and scraper (34) connected on each stirring assembly (23) to the liquid in heating tank (1) Stirring and mixing, further improve the mixing effect of structure to material liquid;

[0069] 3、The utility model discloses the cleaning assembly that sets up can use according to specific use situation, reaches the impurity adhered to its surface during the heating process of material liquid after long -time use, causes the influence on the heat transfer effect of heating tank, and then prevents the influence on the processing quality of material liquid and the tobacco silk effect of subsequent tobacco;

[0070] 4、The cleaning assembly structure of the utility model is compact in design, and only needs to be driven by the cylinder to lower the annular plate (39) to realize the contact between the scraper (34) and the inner wall of the heating tank (1) during use, and to clean under the driving of the driving motor (21); and only needs to be driven by the cylinder to raise the annular plate (39) to realize the quick reset of the scraper (34) when not in use, so that the scraper (34) serves as a mixing auxiliary component;

[0071] 5、The heating tank (1) is provided with a liquid level display meter (6), and the transparent display of the liquid level display meter (6) and the design of the floating ball make the liquid level monitoring more intuitive and convenient, the staff can obtain necessary information without approaching the equipment, the time and energy consumption of on-site inspection are reduced, the work efficiency is improved, the operation convenience and the reliability of the feeding process are greatly improved, and the use value and work efficiency of the equipment are further enhanced;

[0072] 6、The heating tank is provided with the liquid material conveying device (4) below, which can not only improve the production efficiency, but also reduce manual intervention, optimize equipment layout, reduce production cost, and ensure the smoothness and continuity of the production process. BRIEF DESCRIPTION OF DRAWINGS

[0073] The specific embodiments of the utility model will be further described in detail in combination with the drawings, and the drawings are as follows:

[0074] Figure 1 is one of the overall structure schematic view of the utility model;

[0075] Figure 2 is the second overall structure schematic view of the utility model;

[0076] Figure 3 is one of the partial sectional view of the utility model;

[0077] Figure 4 is the second partial sectional view of the utility model;

[0078] Figure 5 is the third partial sectional view of the utility model;

[0079] Figure 6 is the partial enlarged view of A of the utility model; Figure 5

[0080] Figure 7 is the partial structure schematic view of the utility model;

[0081] Figure 8 is one of the partial structure sectional view of the utility model;

[0082] Figure 9 is the second partial structure sectional view of the utility model;​

[0083] Figure 10 is a partial structure sectional view three of the utility model;

[0084] Figure 11 is a partial structure sectional view three of the utility model Figure 10 B is the local enlarged view of place;

[0085] Figure 12 is the local structure schematic view of the liquid conveying device (4) of the utility model;

[0086] Figure 13 is the connection relation schematic view of the inside of the connecting box (41) of the utility model one;

[0087] Figure 14 is the connection relation schematic view of the inside of the connecting box (41) of the utility model two;

[0088] Figure 15 is the local enlarged view of 14C of the utility model place;

[0089] Wherein, the figure mark: 1 - heating tank, 11 - feed inlet, 12 - support leg;

[0090] 2 - mixing device, 21 - drive motor, 22 - rotating disc, 23 - stirring assembly, 231 - hollow shaft, 232 - gear, 233 - mixing blade, 24 - rotating shaft, 25 - annular connecting block, 26 - annular internal gear;

[0091] 3 - cleaning assembly, 31 - mounting sleeve, 32 - fixed cylinder, 33 - scraper connecting assembly, 331 - connecting rod, 332 - guide wheel, 333 - sliding plate, 334 - fixed rod, 335 - second spring, 34 - scraper, 35 - rotating seat, 36 - connecting shaft, 361 - sliding block, 37 - roller, 38 - air cylinder, 39 - annular plate, 310 - connecting plate, 311 - first spring, 312 - fixed plate, 313 - conical block;

[0092] 4 - liquid conveying device, 41 - connecting box, 411 - first cavity, 412 - second cavity, 413 - third cavity, 42 - liquid outlet pipe, 43 - liquid suction pipe, 44 - liquid suction pump, 45 - liquid conveying pipe, 46 - liquid discharge pipe;

[0093] 5 - impurity removing assembly, 51 - fixed shaft, 52 - oblique blade, 53 - cam, 54 - vertical plate, 55 - connecting block, 56 - cleaning block, 57 - filter screen, 58 - third spring;

[0094] 6 - liquid level display meter. DETAILED DESCRIPTION

[0095] In order to make the technical means, creation features, purposes and effects of the utility model easy to understand, the technical scheme of the utility model will be explained in further detail below by combining with the drawings and specific embodiments, and it should be noted that the embodiments in the application and the features in the embodiments can be combined with each other without conflict. The utility model will be explained in detail below by referring to the drawings and combining with the embodiments.

[0096] To sum up, the more specific embodiment of the utility model is:

[0097] The cloud production cigarette intelligent manufacturing silk making flexible feeding process structure of the design structure needs to be installed as a backup before use.

[0098] Embodiment 1

[0099] As shown in the description Figure 1 to the drawings, the cloud production cigarette intelligent manufacturing silk making flexible feeding process structure comprises a heating tank 1 and further comprises: Figure 7 A mixing device 2 is arranged inside the heating tank 1 and is used for uniformly mixing the feeding liquid.

[0100] A cleaning assembly 3 is arranged on the mixing device 2 and is used for cleaning the adherents on the inner wall of the heating tank 1.

[0101] A liquid feeding device 4 is communicatively arranged at the lower part of the heating tank 1 and is used for feeding the mixed liquid to an external liquid storage barrel or a cut tobacco preparation drum.

[0102] The mixing device 2 comprises:

[0103] A driving motor 21 is arranged at the middle part of the top end of the heating tank 1.

[0104] A rotating disc 22 is rotatably connected to the upper part inside the heating tank 1.

[0105] A stirring assembly 23 is respectively circumferentially rotatably connected to the rotating disc 22.

[0106] A rotating shaft 24 is connected at one end to the output shaft of the driving motor 21 through the top part of the heating tank 1 and is connected at the other end to the rotating disc 22.

[0107] In the utility model, the upper part inside the heating tank 1 is circumferentially provided with a clamping groove matched with the rotating disc 22; and the driving motor 21 is fixedly connected to the top part of the heating tank 1 through a support seat.

[0108] Further, the mixing device 2 further comprises:

[0109] A ring-shaped connecting block 25 is fixedly connected to the inner wall of the heating tank 1 on the outer periphery side, and is located above the rotating disc 22;

[0110] A ring-shaped internal gear 26 is fixedly connected inside the ring-shaped connecting block 25.

[0111] Each of the stirring assemblies 23 is engagedly connected to the ring-shaped internal gear 26.

[0112] Specifically, the stirring assembly 23 comprises:

[0113] A hollow shaft 231 is rotatably connected to the rotating disc 22 on the upper portion, and is rotatably connected to the bottom of the heating tank 1 on the lower end.

[0114] A gear 232 is fixedly connected to the outer periphery side on the upper portion of the hollow shaft 231, and is engagedly connected to the ring-shaped internal gear 26.

[0115] A mixing blade 233 is circumferentially connected to the hollow shaft 231.

[0116] A plurality of through holes are formed through the front and back surfaces of the mixing blade 233.

[0117] Further, the cleaning assembly 3 is arranged on each of the stirring assemblies 23, and comprises: a mounting sleeve 31 connected to the upper and lower ends of the hollow shaft 231.

[0118] A fixed cylinder 32 is symmetrically connected to the two sides of each of the mounting sleeves 31.

[0119] A scraper connecting assembly 33 is connected to each of the fixed cylinders 32.

[0120] A scraper 34 is connected to the two scraper connecting assemblies 33 on the same side.

[0121] Further, the liquid conveying device 4 comprises:

[0122] A connecting box 41 is fixedly connected to the bottom of the heating tank 1 through a connecting seat on the top, and a first cavity 411 is formed in the inside on one side, and a second cavity 412 is formed in the inside on the other side.

[0123] A liquid outlet pipe 42 is in communication with the first cavity 411 on the upper portion on the lower end, and is in communication with the bottom of the heating tank 1 on the upper end, and a switch valve is arranged on the liquid outlet pipe 42.

[0124] A suction pipe 43 is connected to one side of the bottom of the first cavity 411;

[0125] A suction pump 44 is connected to one end of the suction pipe 43;

[0126] A delivery pipe 45 is connected to the other end of the suction pump 44 and is connected to the second cavity 412;

[0127] A discharge pipe 46 is connected to the other end of the second cavity 412;

[0128] The other side of the connecting box 41 is also provided with two third cavities 413.

[0129] The working principle of this embodiment is that the external feeding device delivers multiple raw materials into the heating tank 1 through the feeding port 11, and the heating tank 1 heats the multiple raw materials inside;

[0130] Then, the driving motor 21 is started, the driving motor 21 drives the rotating disc 22 connected with the rotating shaft 24 to rotate, and the rotating disc 22 drives each stirring assembly 23 and the cleaning assembly 3 connected to the outer side of the stirring assembly 23 to rotate, so that the hollow shaft 231 drives the mixing blade 233, the fixed cylinder 32, the scraper connecting assembly 33 and the scraper 34 to uniformly stir and mix the multiple raw materials in the heating tank 1, so as to prepare the feeding liquid needed in the tobacco leaf silk making process, and at the same time, the feeding liquid in the heating tank 1 is uniformly heated, which ensures the uniformity of heating in the preparation process, so as to improve the feeding effect in the subsequent tobacco leaf silk making process, thereby improving the overall use effect of the structure;

[0131] At the same time, the hollow shaft 231 drives the gear 232 to rotate in the process of rotating, and the power is transmitted to the ring gear 26 through the linkage effect between the gear 232 and the ring gear 26, and the gear 232 drives the hollow shaft 231, the mixing blade 233, the mounting sleeve 31, the fixed cylinder 32, the scraper connecting assembly 33 and the scraper 34 to rotate under the action of the ring gear 26, so as to mix the feeding liquid on the inner wall side of the heating tank 1 with the feeding liquid around the center thereof, further improving the mixing effect and heating effect of the structure on the feeding liquid, preventing the feeding liquid on the inner wall side of the heating tank 1 from being overheated, and preventing the feeding liquid and the tobacco leaf silk making quality and the taste of the tobacco from being affected;

[0132] Finally, when the material liquid inside the heating tank 1 is finished processing, the switch valve on the liquid outlet pipe 42 is opened, and the liquid pump 44 is started, the liquid pump 44 draws the material liquid inside the heating tank 1 and the connecting box 41 through the liquid pump 43, and then is transported to the second cavity 412 through the liquid delivery pipe 45, and then is transported to the outside liquid storage barrel or the tobacco preparation roller through the liquid discharge pipe 46, so as to mix with the tobacco leaf inside the roller for processing.

[0133] Embodiment 2

[0134] As shown in the accompanying drawings, Figure 8 to the accompanying drawings, Figure 11 The embodiment is basically the same as embodiment 1, and the only difference is that a fixed cylinder mounting cavity is arranged in the inner side of the non-mounting sleeve 31 end of the fixed cylinder 32.

[0135] The scraper connecting assembly 33 comprises:

[0136] A connecting rod 331, one end of the connecting rod 331 is located in the hollow shaft 231, and the other end of the connecting rod 331 is sequentially located in the fixed cylinder mounting cavity through the hollow shaft 231 and the mounting sleeve 31;

[0137] A guide wheel 332 connected to the end of the connecting rod 331 located in the hollow shaft 231;

[0138] A sliding plate 333 slidingly connected in the fixed cylinder mounting cavity and fixedly connected with the connecting rod 331 at the end;

[0139] A fixed rod 334, one end of the fixed rod 334 is fixedly connected to the sliding plate 333 away from the end of the connecting rod 331, and the other end of the fixed rod 334 extends to the outside of the fixed cylinder 32 and is fixedly connected with the scraper 34, and the fixed rod 334 is slidingly sealed in the inside of the fixed cylinder 32;

[0140] A second spring 335, the second spring 335 is sleeved on the outer circumferential side of the fixed rod 334, and the two ends of the second spring 335 are fixedly connected with the sliding plate 333 and the inner wall of the fixed cylinder 32 respectively.

[0141] In the utility model, the connecting rod 331 is slidingly connected in the inside of the fixed cylinder 32 and the hollow shaft 231.

[0142] Further, the cleaning assembly 3 further comprises:

[0143] A rotating seat 35, the rotating seat 35 is rotatably connected to the middle part of the top end of each hollow shaft 231, and rotating seat sliding grooves are arranged in the inside of the rotating seat 35 on both sides;

[0144] Connecting shaft 36, the upper section of connecting shaft 36 is fixedly connected with sliding block 361 on both sides, sliding block 361 is slidably connected in the rotating seat sliding groove, the lower section of connecting shaft 36 is located in the hollow shaft 231;

[0145] Roller 37, roller 37 is connected at the top of connecting shaft 36;

[0146] Cylinder 38, cylinder 38 is symmetrically arranged at the top of heating tank 1 on both sides of driving motor 21, the output shaft of cylinder 38 penetrates the top of heating tank 1 and is located in the heating tank 1;

[0147] Annular plate 39, annular plate 39 is arranged above roller 37 and is fixedly connected with the output shaft of two cylinders 38.

[0148] Specifically, the connecting shaft 36 is further provided with a connecting assembly, and the connecting assembly comprises:

[0149] Connecting plate 310, connecting plate 310 is slidably connected in the upper part of hollow shaft 231 and is fixedly connected with the outer periphery of connecting shaft 36;

[0150] First spring 311, first spring 311 is symmetrically connected below connecting plate 310;

[0151] Fixed plate 312, the upper surface of fixed plate 312 is fixedly connected with two first springs 311, the outer periphery of fixed plate 312 is fixedly connected on the inner wall of hollow shaft 231, and the middle part of fixed plate 312 is sleeved on the outer side of connecting shaft 36;

[0152] Tapered block 313, tapered block 313 is fixedly connected with the outer periphery of connecting shaft 36 below fixed plate 312, tapered block 313 is slidably connected in the hollow shaft 231, and tapered block 313 is located above two corresponding guide wheels 332;

[0153] Wherein, the tapered block 313 and the corresponding guide wheel 332 are matched to complete the cleaning work of the scraper 34 on the adhering material in the heating tank 1.

[0154] In the utility model, the cross section of connecting plate 310 and fixed plate 312 is arranged as annular.

[0155] The working principle of the embodiment is basically same with the working principle of embodiment 1, and the only difference is that when the driving motor 21 drives the rotating disc 22 to rotate, the rotating disc 22 drives each stirring assembly 23 and the cleaning assembly 3 connected with the outer side of the stirring assembly 23 to rotate, and the hollow shaft 231 drives the roller 37 above to rotate along the annular plate 39;

[0156] When the adhering objects on the inner wall of the heating tank 1 need to be cleaned, the operator starts the air cylinder 38, the two air cylinders 38 drive the annular plates 39 connected thereto to move downward, the annular plates 39 drive the rollers 37 to move downward, and then drive the connecting shafts 36 connected with the rollers 37 to extrude the connecting plates 310 and the first springs 311 inside the hollow shaft 231, at the same time, the connecting shafts 36 drive the tapered blocks 313 connected therewith to move downward, the tapered blocks 313 move downward and extrude the two guide wheels 332, so that the guide wheels 332 drive the connecting rods 331 connected therewith to move, and then the connecting rods 331 drive the sliding plates 333 and the fixed rods 334 to move away from the center of the hollow shaft 231, and at the same time, the second springs 335 are compressed, as the fixed rods 334 continuously extend, the scraper 34 connected with the fixed rods 334 will be in contact with the inner wall of the heating tank 1, and under the action of the rotating shaft 24, the scraper 34 will continuously clean the inner wall of the heating tank 1, so as to prevent the impurities generated during the heating of the liquid material from adhering to the surface of the heating tank 1 for a long time, which will affect the heat transfer effect of the heating tank 1, and then prevent the processing quality of the liquid material and the subsequent tobacco primary processing effect from being affected.

[0157] When the adhering objects on the inner wall of the heating tank 1 are cleaned, the operator only needs to start the air cylinder 38, so that the output shaft of the air cylinder 38 drives the annular plate 39 to move upward, at the same time, the connecting shaft 36 moves upward by pushing the connecting plate 310 under the elastic action of the first spring 311, and then drives the connecting shaft 36 fixedly connected therewith to move upward, at the same time, the tapered block 313 gradually separates from the two rollers 37 below, and the two rollers 37 gradually approach under the elastic action of the second spring 335, and finally, the scraper 34 is separated from the inner wall of the heating tank 1.

[0158] Example 3

[0159] As shown in Figs. 1-3, this example is basically the same as example 2, the only difference is that the heating tank 1 is additionally provided with a liquid level display meter 6 on one side of the bottom, the liquid level display meter 6 is made of transparent material, and a floating ball is arranged inside the liquid level display meter 6 for observation. Figure 1 Figure 2 Further, the heating tank 1 is communicated with a feeding port 11 on one side of the top, and a plurality of supporting legs 12 are connected to the bottom of the heating tank 1.

[0160] Further, the heating tank 1 is communicated with a feeding port 11 on one side of the top, and a plurality of supporting legs 12 are connected to the bottom of the heating tank 1.

[0161] ​In this invention, the feed inlet 11 is located below the rotating disk 22; the level indicator 6 is a transparent tube with a red float inside for easy observation; the transparent display and float design of the level indicator 6 make level monitoring more intuitive and convenient, allowing staff to obtain necessary information without approaching the equipment, reducing on-site inspection time and effort, improving work efficiency, greatly enhancing the ease of operation and reliability of the feeding process, and further strengthening the equipment's value, efficiency, and practicality. Simultaneously, a moving device is connected to the lower part of the support leg 12, facilitating the movement and fixation of the entire device, increasing portability and convenience.

[0162] Example 4

[0163] As attached Figure 12 To be continued Figure 15 As shown, a cleaning component 5 is also provided inside the connecting box 41 of the liquid conveying device 4. The cleaning component 5 is installed inside the connecting box 41.

[0164] The impurity removal component 5 includes:

[0165] A fixed shaft 51 is rotatably connected inside the connecting box 41, and the fixed shaft 51 is connected inside the second cavity 412 and two third cavities 413;

[0166] The oblique blade 52 is disposed in the second cavity 412 and fixedly connected to the fixed shaft 51.

[0167] Cam 53 is respectively disposed in two third cavities 413, and cam 53 is fixedly connected to fixed shaft 51 located in the third cavity 413;

[0168] Vertical plate 54 is slidably connected in the two third cavities 413 respectively, and one end of vertical plate 54 is in contact with the corresponding cam 53.

[0169] Connecting block 55, one end of which is connected to the other end of the corresponding vertical plate 54, and the other end of connecting block 55 extends into the interior of the first cavity 402;

[0170] Cleaning block 56 is connected to connecting block 55 located inside the first cavity 402. Cleaning block 56 is slidably sealed inside connecting box 41.

[0171] Filter screen 57 is disposed below cleaning block 56 and is connected to the inside of first cavity 411.

[0172] The third spring 58 is connected to both sides of the connecting block 55, and the two ends of the third spring 58 are fixedly connected to the vertical plate 54 and the inner wall of the connecting box 41, respectively.

[0173] The utility model discloses a set up the impurity removal subassembly, can filter the impurity in the conveying material liquid that the liquid outlet pipe 42 inside flows through the filter screen 57 in the connecting box, prevents its influence to the subsequent pipe output stability and the structure of the material quality, can also move and carry out the online automatic cleaning to the filter screen 57 surface through the connecting block 55 drive cleaning block 56 after a long time use, prevents the filter screen 57 from being blocked, further prevents the influence to the pipe material liquid output effect and output stability, improves the maintenance portability and practicality of structure in the use process simultaneously.

[0174] In the utility model, two sewage pipes are also communicated on one side of the connecting box 41, and the two sewage pipes are arranged on one side of the corresponding filter screen 57, and valves are arranged on the sewage pipes; the two cleaning blocks 56 are used for removing the attachments on the corresponding filter screen 57 to prevent the attachments on the filter screen 57 from affecting the flow of the material liquid; the filter screen 57 is two pieces, the filter screen 57 is fixedly connected with the inner wall of the connecting box 41, and the filter screen 57 is connected into the first cavity 411 from top to bottom, and the mesh of the upper filter screen is larger than that of the lower filter screen.

[0175] The working principle of the embodiment is basically same with that of the embodiment 3, and the only difference is that when the material liquid in the heating tank 1 is conveyed to the external liquid storage barrel or tobacco preparation drum through the liquid discharge pipe 46, the two layers of filter screens 57 in the connecting box 41 filter the impurities in the conveyed material liquid flowing out of the liquid outlet pipe 42, so as to prevent the influence on the subsequent pipe output stability and the structure of the material quality, and the material liquid flowing in the second cavity 412 drives the oblique blade 52 to rotate, and then the oblique blade 52 drives the fixed shaft 51 and the cam 53 to rotate, the cam 53 constantly extrudes the vertical plate 54, so that the vertical plate 54 drives the connecting block 55 to move and extrudes the third spring 58, the connecting block 55 drives the cleaning block 56 to move and carries out online automatic cleaning on the surface of the filter screen 57, so as to prevent the filter screen 57 from being blocked after a long time use, further prevent the influence on the pipe material liquid output effect and output stability, and improve the maintenance portability and practicality of the structure in the use process.

[0176] The specific use steps are as follows:

[0177] Before use, the operator connects the inlet 11 of the heating tank 1 with the output port of the external material supply device, and connects the liquid discharge pipe 4646 of the liquid conveying device 4 with the external liquid storage barrel or tobacco preparation drum together;

[0178] In use, the external feeding device sequentially delivers a plurality of raw materials into the heating tank 1 through the feeding port 11, and the heating tank 1 heats the plurality of raw materials inside; then, the driving motor 21 is started, the driving motor 21 drives the rotating disc 22 connected with the rotating shaft 24 to rotate, and then the rotating disc 22 drives the hollow shaft 231, the mixing blade 233, the mounting sleeve 31, the fixed cylinder 32, the scraper connecting assembly 33 and the scraper 34 to rotate, and the plurality of raw materials inside the heating tank 1 are uniformly stirred and mixed by the mixing blade 233 and the scraper 34, and at the same time, the hollow shaft 231 drives the gear 232 to rotate, and the power is transmitted to the ring gear 26 through the linkage effect between the gear 232 and the ring gear 26, and the hollow shaft 231, the mixing blade 233, the mounting sleeve 31, the fixed cylinder 32, the scraper connecting assembly 33 and the scraper 34 are driven to rotate by the ring gear 26, and the liquid in the heating tank 1 is mixed with the liquid around the center of the heating tank 1.

[0179] At the same time, the hollow shaft 231 drives the roller 37 to rotate on the ring plate 39, and according to actual needs, the cylinder 38 is started, the ring plate 39 is driven downward by the cylinder 38 and presses the hollow shaft 231, the connecting plate 310 and the first spring 311, and the power is transmitted to the tapered block 313 through the linkage effect between the hollow shaft 231 and the tapered block 313, so that the tapered block 313 moves downward and presses the guide wheel 332, and the guide wheel 332 drives the connecting rod 331, the sliding plate 333 and the fixed rod 334 to move away from the center of the hollow shaft 231, and as the fixed rod 334 continuously extends, the scraper 34 contacts the inner wall of the heating tank 1, and cooperates with the rotating action of the rotating shaft 24 to clean the inner wall of the heating tank 1.

[0180] When the liquid in the heating tank 1 is finished, the switch valve on the liquid outlet pipe 42 is opened and the liquid pump 44 is started, the liquid pump 44 draws the liquid in the heating tank 1 and the connecting box 41 through the liquid suction pipe 43, and then delivers the liquid to the second cavity 412 through the liquid delivery pipe 45, and then according to actual needs, the liquid is delivered to the external liquid storage barrel and / or the tobacco preparation roller through the liquid discharge pipe 46, so as to mix with the tobacco leaves in the roller.

[0181] In the utility model, since the impurity removing assembly 5 is further arranged, the two layers of filter screens 57 can filter the impurities in the conveying material liquid, the material liquid flowing in the second cavity 412 can drive the oblique blade 52 to rotate, the oblique blade 52 drives the fixed shaft 51 and the cam 53 to rotate, the cam 53 continuously extrudes the vertical plate 54, the vertical plate 54 extrudes the connecting block 55 and the third spring 58 in a movable mode, the connecting block 55 drives the cleaning block 56 to move and automatically clean the surface of the filter screen 57 on line, and convenient use is realized.

[0182] Finally, it needs to be explained that the above-mentioned is only the preferred embodiment of the utility model, and is not other forms of the utility model. Any skilled person in the art can change or modify the above-mentioned disclosed technology content into equivalent embodiments with equivalent changes. However, any simple modification, equivalent change and modification made to the above-mentioned embodiments according to the technical essence of the utility model without departing from the technical scheme content of the utility model still belongs to the protection scope of the technical scheme of the utility model.

Claims

1. A cloud cigarette intelligent manufacturing silk flexible feeding process structure, comprising a heating tank (1), characterized in that, Further comprising: a mixing device (2) arranged inside the heating tank (1) for uniformly mixing the material liquid; A cleaning assembly (3) arranged on the mixing device (2) for cleaning the adhering substances on the inner wall of the heating tank (1); A material liquid conveying device (4) arranged in communication with the lower part of the heating tank (1) for conveying the mixed material liquid to an external liquid storage barrel or a tobacco preparation drum. The mixing device (2) comprises: A driving motor (21) arranged at the middle part of the top end of the heating tank (1); A rotating disc (22) rotationally connected to the upper part inside the heating tank (1); A stirring assembly (23) rotationally connected to the rotating disc (22) in a ring shape respectively; A rotating shaft (24) having one end connected with the output shaft of the driving motor (21) through the top of the heating tank (1) and the other end connected with the rotating disc (22).

2. The cloud cigarette intelligent manufacturing silk flexible feeding process structure according to claim 1, characterized in that, The mixing device (2) further comprises: An annular connecting block (25) fixedly connected to the inner wall of the heating tank (1) on the outer circumferential side and located above the rotating disc (22); An annular internal gear (26) fixedly connected inside the annular connecting block (25); Each stirring assembly (23) is meshingly connected with the annular internal gear (26) above.

3. The cloud cigarette intelligent manufacturing silk flexible feeding process structure according to claim 1 or 2, characterized in that, The stirring assembly (23) comprises: A hollow shaft (231) rotationally connected to the rotating disc (22) inside through the upper part of the rotating disc (22) and rotationally connected to the bottom inside the heating tank (1); A gear (232) fixedly connected to the outer circumferential side of the upper part of the hollow shaft (231) and meshingly connected with the annular internal gear (26); A mixing blade (233) connected to the hollow shaft (231) in a ring shape; A plurality of through holes are formed through the front and back surfaces of the mixing blade (233).

4. The cloud-based cigarette manufacturing process structure of claim 1, wherein, The cleaning assembly (3) is arranged on each stirring assembly (23) and comprises: an installation sleeve (31) connected to the upper and lower ends of the hollow shaft (231) respectively; A fixed cylinder (32) symmetrically connected to the two sides of each installation sleeve (31) respectively; A scraper connecting assembly (33) connected to each fixed cylinder (32) respectively; A scraper (34) connected to two scraper connecting assemblies (33) on the same side respectively.

5. The cloud production cigarette intelligent manufacturing silk flexible feeding process structure according to claim 4, characterized in that, A fixed cylinder installation cavity is formed inside the fixed cylinder (32) at the end away from the installation sleeve (31); The scraper connecting assembly (33) comprises: A connecting rod (331) having one end located inside the hollow shaft (231) and the other end sequentially located inside the fixed cylinder installation cavity through the hollow shaft (231) and the installation sleeve (31); A guide wheel (332) connected to the end of the connecting rod (331) located inside the hollow shaft (231). A sliding plate (333) is slidingly connected in the fixing cylinder mounting cavity and fixedly connected with the connecting rod (331) at the end; A fixed rod (334) is fixedly connected at one end with the sliding plate (333) away from the end of the connecting rod (331), and the other end of the fixed rod (334) extends to the outside of the fixing cylinder (32) and is fixedly connected with the scraper (34), and the fixed rod (334) is slidingly sealed in the inside of the fixing cylinder (32); A second spring (335) is sleeved on the outer circumferential side of the fixed rod (334), and the two ends of the second spring (335) are fixedly connected with the sliding plate (333) and the inner wall of the fixing cylinder (32) respectively.

6. The cloud-based cigarette manufacturing process structure of claim 4, wherein, The cleaning assembly (3) further comprises: A rotating seat (35) is rotatingly connected at the middle part of the top end of each hollow shaft (231), and rotating seat sliding grooves are formed in the inside of the rotating seat (35) on both sides; A connecting shaft (36) is fixedly connected with sliding blocks (361) on both sides of the upper segment of the connecting shaft (36), and the sliding blocks (361) are slidingly connected in the rotating seat sliding grooves, and the lower segment of the connecting shaft (36) is located in the hollow shaft (231); A roller (37) is connected at the top of the connecting shaft (36); Air cylinders (38) are symmetrically arranged at the top end of the heating tank (1) on both sides of the driving motor (21), and the output shafts of the air cylinders (38) pass through the top end of the heating tank (1) and are located in the inside of the heating tank (1); An annular plate (39) is arranged above the roller (37) and is fixedly connected with the output shafts of the two air cylinders (38).

7. The cloud production cigarette intelligent manufacturing silk flexible feeding process structure according to claim 6, characterized in that, The connecting shaft (36) is further provided with a connecting assembly, which comprises: A connecting plate (310) is slidingly connected in the upper part of the hollow shaft (231) and is fixedly connected with the outer periphery of the connecting shaft (36); First springs (311) are symmetrically connected below the connecting plate (310) on both sides; A fixed plate (312) is fixedly connected with the two first springs (311) on the upper surface, is fixedly connected with the inner wall of the hollow shaft (231) on the outer periphery, and is sleeved on the outside of the connecting shaft (36) in the middle part; Tapered blocks (313) are fixedly connected with the outer peripheries of the two ends of the connecting shaft (36) below the fixed plate (312), are slidingly connected in the hollow shaft (231), and are located above the two guide wheels (332) at the corresponding ends respectively; The tapered blocks (313) and the corresponding guide wheels (332) are matched to complete the cleaning work of the scraper (34) on the adhering objects on the inner wall of the heating tank (1).

8. The cloud-based cigarette manufacturing process structure of claim 1, wherein, The liquid conveying device (4) comprises: A connecting box (41) is fixedly connected with the bottom of the heating tank (1) through a connecting seat on the top, a first cavity (411) is formed in the inside of one side of the connecting box (41), and a second cavity (412) is formed in the inside of the other side of the connecting box (41) at the lower part; A liquid outlet pipe (42) is communicated with the upper part of the first cavity (411) at its lower end and communicated with the bottom of the heating tank (1) at its upper end, and a switch valve is arranged on the liquid outlet pipe (42); A liquid suction pipe (43) is communicated with one side of the bottom of the first cavity (411); A liquid suction pump (44) is connected with one end of the liquid suction pipe (43); A liquid delivery pipe (45) is connected with the output end of the liquid suction pump (44) at one end and communicated with the second cavity (412) at the other end; A liquid discharge pipe (46) is communicated with the other end of the second cavity (412); Two third cavities (413) are further arranged in parallel on the other side of the connecting box (41).

9. The cloud-based cigarette manufacturing process structure of claim 1, wherein, A liquid level display meter (6) is further arranged on one side of the bottom of the heating tank (1), the liquid level display meter (6) is made of transparent material, and a float ball is arranged in the liquid level display meter (6) for observation.

10. The cloud tobacco cigarette intelligent manufacturing silk flexible feeding process structure according to claim 1, characterized in that, A feeding port (11) is communicated with one side of the top of the heating tank (1), and a plurality of supporting legs (12) are connected with the bottom of the heating tank (1).

Citation Information

Patent Citations

  • Coating liquid mixing and preparing device for reconstituted tobacco

    CN203355664U