Raw material tank assembly and cigarette sugar spice feeding system

By designing raw material tank components with multiple intervals and a capping machine, the problem of low efficiency in the tobacco sugar flavoring feeding system was solved, realizing automated capping and capping, and improving feeding and handling efficiency.

CN224040821UActive Publication Date: 2026-03-27BAOYING RENHENG IND
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing tobacco flavoring and sugar feeding system is inefficient, and the manual opening and closing of the caps is also inefficient.

Method used

Multiple spaced raw material tank components were designed, each with a rectangular feed inlet and a flip-top mechanism. Combined with a capping machine, these components enable automated opening and capping operations, improving feeding efficiency.

Benefits of technology

By optimizing the layout of the raw material tanks and the design of the inlet, stable material conveying and efficient feeding were achieved, and the automated capping operation improved the handling efficiency of the material tanks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a raw material tank assembly and a cigarette sugar spice feeding system, and relates to the technical field of cigarette sugar spice processing devices, the raw material tank assembly comprises a plurality of raw material tanks, the raw material tanks are arranged at intervals, and rectangular feeding ports are formed in the tops of the raw material tanks; the multiple stirring assemblies are vertically installed on the raw material tank in a one-to-one correspondence mode, and the stirring ends of the stirring assemblies extend into the raw material tank; the cover turning mechanisms are installed on the raw material tanks in a one-to-one correspondence mode, and the movable ends of the cover turning mechanisms are matched with the feeding ports; the multiple supporting frames are arranged on the outer side of the raw material tank, and the supporting frames are distributed in the circumferential direction of the middle of the raw material tank at intervals. The cigarette sugar spice feeding system comprises the raw material tank assembly. The utility model solves the technical problem of low production and processing efficiency of sugar spices for cigarettes in the prior art.
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Description

TECHNICAL FIELD

[0001] The utility model relates to tobacco sugar flavor processing device technical field especially, relate to a raw material tank subassembly and tobacco sugar flavor feeding system. BACKGROUND

[0002] Tobacco sugar flavor is a mixture of various flavors (raw materials and solvents), with a certain flavor, which can be used for tobacco flavoring, adding material, improving tobacco product aroma or taste. Tobacco sugar flavor is composed of different components such as sweetener, acidifier, flavor enhancer, humectant, mildew inhibitor, etc. according to different requirements of tobacco quality, flavor, etc. to make the smoke soft and delicate, reduce irritation, improve aftertaste and physical properties, etc. In order to improve the processing efficiency of tobacco sugar flavor, the system is usually used for feeding and blending.

[0003] The existing feeding system usually arranges the raw material tanks in a straight line, which affects the feeding efficiency. Moreover, before pouring the sugar flavor in the tank into the stirring tank, the tank cover on the tank needs to be opened manually, and then the sugar flavor in the tank is poured into the stirring tank by other equipment. After completing the pouring work, the tank is recovered and the tank cover is reattached to the tank for repeated use. This method is low in efficiency. SUMMARY

[0004] The utility model provides a raw material tank subassembly and tobacco sugar flavor feeding system, which solves the technical problem of low production and processing efficiency of tobacco sugar flavor in the prior art.

[0005] The embodiment of the application discloses a raw material tank subassembly, which comprises:

[0006] A plurality of raw material tanks are arranged at intervals, and a rectangular feed inlet is formed in the top of each raw material tank;

[0007] A plurality of stirring assemblies are vertically installed one by one on the raw material tanks, and the stirring end of each stirring assembly extends into the raw material tank;

[0008] A plurality of flip cover mechanisms are installed one by one on the raw material tanks, and the movable end of each flip cover mechanism is matched with the feed inlet;

[0009] A plurality of support frames are arranged on the outer side of the raw material tanks, and the support frames are distributed at intervals along the circumference of the middle part of the raw material tanks.

[0010] The feed inlet is designed to improve the efficiency of feeding materials. At the same time, the rectangular feed inlet can also avoid material leakage to the outside of the raw material tank as much as possible.

[0011] On the basis of the above technical scheme, the embodiment of the application can also be improved as follows:

[0012] Further, the top of the raw material tank is provided with a baffle, which is located outside the feeding port. The beneficial effect of this step is that the baffle can limit the material port of the tank when feeding, and the material conveying can be stably completed.

[0013] Further, the raw material tank is eight, and the eight raw material tanks are arranged in a square shape. The beneficial effect of this step is that the number of raw material tanks is designed to improve the feeding efficiency.

[0014] The application also discloses a tobacco sugar flavor feeding system, which comprises:

[0015] A platform;

[0016] A plurality of aforementioned raw material tank assemblies are installed on the platform at intervals;

[0017] A logistics transfer device is installed on the platform, and the logistics transfer device is used for transferring the tank;

[0018] A plurality of cap screwing machines are installed on the platform at intervals, and the cap screwing machines are used for completing the uncapping and capping of the tank;

[0019] A plurality of feeding devices are installed on the platform at intervals, and the feeding devices are used for clamping and transporting the uncapped tank.

[0020] The cap screwing machine is designed in the embodiment of the application, and the uncapping and capping operations are completed through the cap screwing machine, so that the carrying efficiency of the tank is improved.

[0021] On the basis of the above technical solution, the embodiment of the application can also be improved as follows:

[0022] Further, the cap screwing machine comprises:

[0023] A rack;

[0024] A workbench plate is installed on the top surface of the rack;

[0025] At least one cap screwing assembly is arranged on the top surface of the workbench plate;

[0026] A tank cap conveying belt is arranged below the workbench plate and cooperates with the cap screwing assembly;

[0027] At least one tank placement table is adjacent to the rack and the tank cap conveying belt and located in the activity range of the cap screwing assembly. The beneficial effect of this step is that the uncapping and capping operations are completed through the cap screwing machine.

[0028] Further, the cap screwing assembly comprises:

[0029] A sliding table is arranged on the workbench plate, and a sliding rail of the sliding table is arranged vertically to the barrel cover conveying belt.

[0030] A lifting table is arranged on the sliding table.

[0031] A rotating arm is arranged on the lifting table, and a rotating clamp jaw is arranged at the bottom of the rotating arm, and the rotating clamp jaw is matched with the barrel cover of the material barrel.

[0032] Further, a plurality of equidistant barrel cover limiting blocks are arranged on the barrel cover conveying belt, and the barrel cover conveying belt is driven by a stepping motor.

[0033] The one or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages:

[0034] 1. The present application designs the arrangement of the raw material tank and the feed inlet of the raw material tank, thereby improving the feeding efficiency.

[0035] 2. The present application operates the cap screwing machine to complete the opening and closing operations of the material barrel, thereby improving the efficiency of the material barrel carrying. BRIEF DESCRIPTION OF DRAWINGS

[0036] In order to more clearly illustrate the technical scheme in the specific embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the specific embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0037] Figure 1 A structural schematic diagram of a raw material tank assembly according to an embodiment of the present application;

[0038] Figure 2 A structural schematic diagram of a tobacco sugar flavor feeding system according to an embodiment of the present application;

[0039] Figure 3 A structural schematic diagram of a cap screwing machine in Figure 2

[0040] Figure 4 A structural schematic diagram of a cap screwing machine in Figure 3

[0041] Figure 5 A top view of a cap screwing machine in Figure 2

[0042] ​​​1 - raw material tank; 2 - feed inlet; 3 - stirring assembly; 4 - flip cover mechanism; 5 - support frame; 6 - baffle; 7 - platform; 8 - raw material tank assembly; 9 - material flow transfer device; 10 - cap screwing machine; 11 - feeding device;

[0043] 101 - frame; 102 - workbench plate; 103 - cap screwing assembly; 104 - barrel cap conveying belt;

[0044] 105 - sliding table; 106 - lifting table; 107 - rotating arm; 108 - barrel cap limiting block; 109 - barrel placing table. DETAILED DESCRIPTION

[0045] The embodiments of the technical scheme of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical scheme of the present application, and therefore only serve as examples, and cannot limit the protection scope of the present application.

[0046] It should be noted that, unless otherwise specified, the technical terms or scientific terms used in the present application should be understood as the usual meaning understood by the technical personnel in the field to which the present application belongs.

[0047] In the description of the present application, it should be understood that the orientation or position relationship indicated by the terms "upper", "lower" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing 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.

[0048] In the present application, unless otherwise specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; 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; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0049] In order to better understand the above technical scheme, the above technical scheme will be described in detail below with reference to the drawings and specific embodiments.

[0050] Example 1:

[0051] As Figures 1-5As shown in the illustration, this application discloses a raw material tank assembly and a tobacco flavoring / sugar candy feeding system. Firstly, the raw material tank assembly is designed with an arrangement similar to a nine-square grid, which improves feeding efficiency. Secondly, the feed inlet of the raw material tank is designed as a rectangle to facilitate feeding (round inlets are prone to material leakage). To further ensure stability during feeding, a baffle is provided on the outside of the feed inlet to prevent displacement of the tank during feeding, thus improving feeding efficiency. This application also discloses a tobacco flavoring / sugar candy feeding system that integrates the raw material tank assembly, capping machine, and other components to achieve stable feeding.

[0052] like Figure 1 As shown, the specific structure of the raw material tank assembly in this application includes:

[0053] Multiple raw material tanks 1 are spaced apart, and each raw material tank 1 has a rectangular feed inlet 2 at its top. The feed inlets of existing raw material tanks 1 are usually circular. When the material buckets are transported to the raw material tank 1 and tilted, some of the material tends to spill outside the feed inlet. Designing the feed inlet as rectangular provides a margin, allowing the material to enter the raw material tank 1 stably. Moreover, the rectangular feed inlet allows two material buckets to be fed simultaneously.

[0054] Multiple stirring components 3 are vertically installed on the raw material tank 1 in a one-to-one correspondence, and the stirring end of the stirring component 3 extends into the inside of the raw material tank 1. The stirring component 3 is an existing stirring component, including stirring motor, stirring rod, etc., which can realize the stirring of materials, thus ensuring that multiple materials are fully stirred inside the raw material tank 1.

[0055] Multiple flip-top mechanisms 4 are installed one-to-one on the raw material tank 1, and the movable end of each flip-top mechanism 4 cooperates with the feed inlet 2. The flip-top mechanism 4 is mainly used to open and close the feed inlet 2. The flip-top mechanism 4 includes: a flip-top motor, a flip-top bracket, and a flip-top. The flip-top bracket is installed on the top of the raw material tank, and the flip-top is installed on the output shaft of the flip-top motor. When the flip-top motor is started, it can drive the flip-top to rotate. The area of ​​the flip-top is larger than the cross-sectional area of ​​the feed inlet 2. Thus, when the flip-top covers the feed inlet 2, it can close the feed inlet; when it is away from the feed inlet, it can open the feed inlet.

[0056] Multiple support frames 5 are disposed on the outside of the raw material tank 1, and the support frames 5 are distributed circumferentially along the middle of the raw material tank 1. Preferably, three support frames 5 are installed on the outside of each raw material tank 1, thus forming a triangular support to ensure the stability of the raw material tank 1.

[0057] When feeding materials, the material bucket is placed on the raw material tank from an incline and then gradually vertically. In order to ensure that the material bucket is stable after being placed vertically, this application also provides a baffle 6. The baffle 6 is provided on the top of the raw material tank 1. The baffle 6 is located outside the feed inlet 2. This can limit the position of the material bucket, thereby ensuring that the material can stably enter the raw material tank 1.

[0058] To further improve the efficiency of material feeding, this application designs the number of raw material tanks 1 to be eight, and the eight raw material tanks 1 are arranged in a square, which is similar to a nine-square grid structure, except that a central area is left, which facilitates the subsequent installation of valve components, thereby improving efficiency.

[0059] like Figures 2-5 As shown, this application also discloses a tobacco flavoring and sugar feeding system, comprising:

[0060] Platform 7 serves as a support platform to support the installation of subsequent devices and forms upper and lower structures to ensure the stability of subsequent processing.

[0061] Multiple raw material tank assemblies 8 are installed at intervals on the platform 7. The raw material tank assembly 8 is the aforementioned assembly. At the same time, multiple raw material tank assemblies 8 can form multiple sets of feeding lines, which can improve work efficiency.

[0062] The logistics transfer device 9 is installed on the platform 7 and is used to transfer the material barrels. The logistics transfer device 9 is an existing transfer device, including elevators, chain conveyors, etc. It can realize the transportation of the material barrels, that is, transport them to the subsequent capping machine for capping, and then complete the feeding process through the feeding device.

[0063] Multiple capping machines 10 are installed at intervals on the platform 7, and the capping machine 10 is used to open the lid of the material barrel. The capping machine 10 is used to cap the barrel, that is, to open the lid of the material barrel so that the feeding process can be completed when it is transported to the subsequent process.

[0064] Multiple feeding devices 11 are installed at intervals on the platform 7. The feeding devices 11 are used to clamp and transport the opened buckets, that is, to send them to the raw material tank for feeding or to transport the empty buckets to the logistics transfer device 9. The feeding device 11 is an existing device, that is, including tracks, moving mechanisms, robotic arms and lifting devices, etc., which will not be described in detail here.

[0065] The capping machine 10 in this application can be an existing capping machine, or it can be a further improvement on the capping machine 10, wherein the capping machine includes:

[0066] A rack 101, which is specifically located at the side of the feeding line, so that the subsequent cap screwing assembly part can perform cap screwing processing;

[0067] A workbench plate 102 installed on the top surface of the rack 101, which is used as a support for supporting the corresponding cap screwing part;

[0068] At least one cap screwing assembly 103 provided on the top surface of the workbench plate 102, the cap screwing part of which cooperates with the barrel opening of the bucket;

[0069] A cap conveying belt 104 arranged below the workbench plate 102 and cooperating with the cap screwing assembly 103, which is used to carry the screwed cap, and can subsequently install the cap on the bucket;

[0070] At least one bucket placement table 109 adjacent to the rack and the cap conveying belt 104 and located within the activity range of the cap screwing assembly.

[0071] The logistics transfer device 9 in the present application can transport the bucket to the cap screwing assembly 103, and then perform cap screwing operation through the cap screwing machine 10. After the cap screwing is completed, the bucket is continuously transported.

[0072] In an embodiment, the cap screwing assembly 103 in the present application comprises:

[0073] A sliding table 105 provided on the workbench plate 102, and the sliding rail of the sliding table 105 is arranged vertically to the cap conveying belt 104;

[0074] A lifting table 106 provided on the sliding table 105;

[0075] A rotating arm 107 provided on the lifting table 106, and the bottom of the rotating arm 107 is provided with a rotating clamp jaw, which is adapted to the cap of the bucket. Specifically, the cap screwing assembly 103 can realize horizontal and vertical movement, loosen and take off the cap from the bucket, temporarily place the cap on the cap conveying belt 104, put the empty bucket on the logistics transfer device, take the cap from the cap conveying belt 104, and screw the cap on the bucket.

[0076] In an embodiment, the bucket cover conveying belt 104 is provided with a plurality of equidistant bucket cover limiting blocks 108, the bucket cover limiting block 108 is composed of two symmetrical limiting blocks, and the bucket cover conveying belt 104 is driven by a stepping motor, the stroke of single rotation of the bucket cover conveying belt 104 driven by the stepping motor is the same as the distance between two adjacent bucket cover limiting blocks 108, so as to ensure the accuracy of the cap screwing assembly 103 in taking and placing the bucket cover, the bucket cover limiting block 108 can avoid the position deviation of the cap screwing assembly 103 when placing the bucket cover on the bucket cover conveying belt 104, so as to ensure that the cap screwing assembly 103 does not miss the bucket cover when taking the bucket cover from the bucket cover conveying belt 104 again.

[0077] Further description is made to the cap screwing assembly 103 in the application, when there are two cap screwing assemblies 103, the two cap screwing assemblies 103 are mirror image arranged on the top surface of the workbench plate 102; by increasing the number of cap screwing assemblies 103, the work efficiency can be improved.

[0078] In an embodiment, one side of the bucket cover conveying belt 104 is provided with a plurality of photoelectric sensors respectively located at the head end, tail end and the positions corresponding to the two cap screwing assemblies 103 of the bucket cover conveying belt 104;

[0079] Further, n bucket cover limiting blocks 108 exist between two of the cap screwing assemblies 103, and the position of the photoelectric sensor spaced n bucket cover limiting blocks 108 from the photoelectric sensor at the head end of the bucket cover conveying belt 104 is also provided with a photoelectric sensor, and the position of the photoelectric sensor spaced n bucket cover limiting blocks 108 from the photoelectric sensor at the tail end of the bucket cover conveying belt 104 is also provided with a photoelectric sensor. When the cap screwing assemblies 103 place the bucket covers on the bucket cover conveying belt 104, it is necessary to prevent excessive bucket covers from being placed on the bucket cover conveying belt 104, causing blockage. The photoelectric sensor is used to detect whether there are bucket covers on the bucket cover conveying belt 104. Specifically, the top surface of the bucket cover conveying belt 104 has a total of 14 bucket cover limiting blocks 108, which can place 14 bucket covers. When two cap screwing assemblies 103 are located at the center position of the bucket cover conveying belt 104, and there are 6 bucket cover limiting blocks 108 between the two cap screwing assemblies 103, and the 14 bucket cover limiting blocks 108 are numbered from left to right as n1, n2, n3…n14, under the initial condition that the bucket cover conveying belt 104 rotates from right to left and there are no bucket covers on the bucket cover conveying belt 104, the two cap screwing assemblies 103 will place the bucket covers at the n4 and n11 positions, respectively. With the driving of the stepping motor, n4 becomes n3, and n11 becomes n10. In this way, the bucket covers are continuously placed, and the photoelectric sensor at n1 will detect the bucket cover. The initial n11 becomes n8, and the photoelectric sensor at n8 will detect the bucket cover. When the two photoelectric sensors simultaneously detect the bucket cover, it means that the bucket covers on the bucket cover conveying belt 104 that rotates to the left are full and cannot continue to place the bucket covers. The bucket covers need to be screwed onto the empty bucket. Conversely, when the photoelectric sensors at the n7 and n14 positions simultaneously detect the bucket cover when the bucket cover conveying belt 104 rotates to the right, it means that the bucket covers are full, and the photoelectric sensor of the cap screwing assembly 103 detects whether there is a bucket cover at the corresponding position.

[0080] The following further describes the material bucket placement table 109. The material bucket placement table 109 can have the existing structure of the material bucket placement table 109, or the following structure. The material bucket placement table includes:

[0081] a mounting bracket;

[0082] a motor provided at the bottom surface of the mounting bracket, and the output shaft of the motor extends out of the mounting bracket;

[0083] a turntable, the bottom surface center of the turntable is connected with the output shaft;

[0084] The limiting structure is arranged on the top surface of the rotating disc, and the limiting structure is matched with the bucket. When the bucket is placed on the rotating disc 53, the position of the bucket may be deflected and does not correspond to the cap assembly. At this time, the attitude of the bucket needs to be adjusted by the rotating disc. Generally, if the bucket is a square, the bucket may be deflected by 90°, 180° or 270°. If the bucket is a rectangle, the bucket may be deflected by 180°. The rotating angle of the motor driven rotating disc can be manually controlled or automatically controlled by an angle encoder or the like.

[0085] In an embodiment, the top surface of the mounting bracket is centered on the output shaft, and a plurality of universal balls are uniformly distributed in a ring shape. The top edge of the universal ball abuts against the bottom surface of the rotating disc. Since the bucket contains liquid, the bucket will inevitably shake during the transportation process. Under the condition of long-term kinetic energy generated by the shaking, the output shaft may be bent, or the rotating disc and the output shaft may be loose, so that the bucket cannot be stably placed on the rotating disc. Therefore, the universal ball abuts against the rotating disc to ensure that the rotating disc rotates stably.

[0086] In an embodiment, the limiting structure is composed of a plurality of limiting plates. The lower edge of the limiting plate is provided with a horizontal bent fixing plate. The fixing plate is connected with the rotating disc. The limiting plate ensures that the bucket can be accurately placed on the rotating disc.

[0087] On the basis of the above technical solution, the upper edge of the limiting plate is provided with an outwardly bent guide plate. The guide plate guides the bucket into the limiting structure.

[0088] On the basis of the above technical solution, the included angle between the limiting plate and the fixing plate is 90°. This structure is direct limiting, and the limiting plate is attached to the bucket. However, this structure can only be applied to a bucket of a certain specification. Alternatively, the limiting plate is inclined to the center of the rotating disc, and the inclination angle ranges from 0° to 15°. This structure is flexible limiting. The connection between the limiting plate and the guide plate 542 abuts against the side wall of the bucket 6 by the elasticity of the limiting plate. This structure can be applied to a bucket of various specifications. Both of the two limiting structures can limit the deflection of the bucket caused by the stress on the cap.

[0089] In the above embodiments, the cap is opened or tightened by rotating the clamping jaw, and then the cap is sent to the corresponding position by combining the sliding table and the lifting table. It should be noted that the step speed of the cap conveying belt 104 needs to be matched with the cap assembly 103, so that the automatic opening and tightening of the cap can be realized by the above-mentioned assembly.

[0090] The following is explained with respect to the present application:

[0091] The material barrel is placed on the logistics transfer device 9, transported, when transported to the screw cap assembly 103, the opening operation is completed through the screw cap assembly, then continues to transport, the material barrel is clamped by the material feeding device, then sent to the raw material tank 1 to pour, so that the material enters the inside of the raw material tank 1, after the material barrel becomes an empty barrel, the material barrel is clamped by the material feeding device again, sent to the material transfer device, then the screw cap assembly 103 performs the screwing operation again.

[0092] In the description of the present application, a large number of specific details are described. However, it can be understood that the embodiments of the present application can be practiced without these specific details. In some examples, well-known methods, structures and techniques are not shown in detail in order not to obscure the understanding of the present description.

[0093] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the skilled in the art can combine and combine the different embodiments or examples described in the present application and the features of the different embodiments or examples without contradiction.

[0094] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application, and they should be covered in the scope of the claims and description of the present application.

Claims

1. A raw material tank assembly characterized by comprising: The utility model relates to a raw material tank assembly, which comprises: a plurality of raw material tanks (1) arranged at intervals, and a rectangular feeding port (2) formed on the top of each raw material tank (1); a plurality of stirring assemblies (3) vertically installed one-to-one on the raw material tanks (1), and the stirring end of each stirring assembly (3) extending into the raw material tank (1); a plurality of flip cover mechanisms (4) installed one-to-one on the raw material tanks (1), and the movable end of each flip cover mechanism (4) cooperating with the feeding port (2); a plurality of support frames (5) arranged on the outer side of the raw material tanks (1), and the support frames (5) being distributed at intervals along the circumference of the middle part of the raw material tanks (1).

2. The raw material tank assembly according to claim 1, characterized by The top of each raw material tank (1) is provided with a baffle (6) located on the outer side of the feeding port (2).

3. The raw material tank assembly according to claim 1, characterized by There are eight raw material tanks (1), and the eight raw material tanks (1) are arranged in a square shape.

4. A system for dosing a sugar flavour into a tobacco product, characterised in that, The utility model further relates to a raw material tank assembly platform, which comprises: a platform (7); a plurality of raw material tank assemblies (8) according to any one of claims 1-3 installed at intervals on the platform (7); a logistics transfer device (9) installed on the platform (7), and the logistics transfer device (9) being used for transferring material buckets; a plurality of cap screwing machines (10) installed at intervals on the platform (7), and the cap screwing machines (10) being used for completing the uncapping and capping of the material buckets; a plurality of feeding devices (11) installed at intervals on the platform (7), and the feeding devices (11) being used for clamping and transporting the uncapped material buckets.

5. A tobacco sugar flavour loading system according to claim 4, characterised in that, The cap screwing machine (10) comprises: a rack (101); a workbench plate (102) installed on the top surface of the rack (101); at least one cap screwing assembly (103) arranged on the top surface of the workbench plate (102); a bucket cap conveying belt (104) arranged below the workbench plate (102) and cooperating with the cap screwing assembly (103); at least one material bucket placement table (109) adjacent to the rack and the bucket cap conveying belt (104) and located within the movable range of the cap screwing assembly (103).

6. A tobacco sugar flavour loading system according to claim 5, characterised in that, The cap screwing assembly (103) comprises: a sliding table (105) arranged on the workbench plate (102), and the sliding rail of the sliding table (105) being arranged vertically to the bucket cap conveying belt (104); a lifting table (106) arranged on the sliding table (105); a rotating arm (107) arranged on the lifting table (106), and the bottom of the rotating arm (107) being provided with a rotating clamp jaw adapted to the bucket cap of the material bucket.

7. A tobacco sugar flavour loading system according to claim 6, characterised in that, A plurality of equidistant bucket cap limiting blocks (108) are arranged on the bucket cap conveying belt (104), and the bucket cap conveying belt (104) is driven by a stepping motor.

Citation Information

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