Tobacco flavoring device
By adjusting the center of gravity of the support barrel and increasing the gravitational potential energy of the flavoring, the problems of the support barrel tipping over and the gear pump overload were solved, thus achieving stability and extending the life of the tobacco flavoring device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI CHINA TOBACCO INDUSTRY CO LTD
- Filing Date
- 2025-06-10
- Publication Date
- 2026-05-29
AI Technical Summary
During the tobacco flavoring process, the high center of gravity of the support bucket leads to unstable conveying and easy tipping. In addition, the gear pump is prone to overload operation during long-term use, reducing its service life.
A tobacco flavoring device was designed. By adjusting the components, the center of gravity of the carrying barrel is lowered, and the gravitational potential energy of the flavoring is increased during the conveying process, which is converted into kinetic energy to improve the flow rate, reduce the output power of the gear pump, and prevent tipping and overload operation.
It achieves stable transport of the carrying tank, avoids tipping, extends the service life of the gear pump, and improves the efficiency of fragrance spraying.
Smart Images

Figure CN224291252U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tobacco processing technology, and in particular to a tobacco flavoring device. Background Technology
[0002] During the flavoring process of tobacco, a mobile trolley pushes a container filled with flavoring essence to the flavoring machine in a straight line. Then, a gear pump pressurizes the flavoring essence in the container into a mist, so that the misty flavoring essence is evenly sprayed onto the tobacco in the flavoring machine to complete the flavoring operation.
[0003] However, during the process of the mobile trolley pushing the container of fragrance along a straight line to the fragrance dispenser, the container's center of gravity is relatively high, making it prone to tipping over when pushed on sloping ground, thus compromising the stability of the container's transport. Furthermore, during the process of pumping the fragrance in the container into a mist state using a gear pump, the fragrance's viscosity causes the gear pump to operate under overload during prolonged use, reducing its service life.
[0004] To address the above problems, there is an urgent need for a tobacco flavoring device. Utility Model Content
[0005] The purpose of this invention is to provide a tobacco flavoring device that can lower the center of gravity of the carrying barrel to ensure the stability of the transport of the carrying barrel, and can increase the gravitational potential energy of the carrying barrel and the flavoring inside it, so as to reduce the overload operation of the gear pump during long-term use and improve the service life of the gear pump.
[0006] To achieve this objective, the present invention adopts the following technical solution:
[0007] The tobacco flavoring device includes:
[0008] A mobile vehicle and a fragrance dispenser, wherein the mobile vehicle can move in a straight line to the fragrance dispenser, and the fragrance dispenser contains tobacco shreds;
[0009] The adjustment component and the carrying container are provided. One end of the adjustment component is connected to the mobile vehicle body, and the other end is driven to the carrying container. The carrying container is used to seal and hold fragrance, and the top surface of the carrying container is higher than the top surface of the fragrance dispensing machine. When the mobile vehicle body moves the carrying container to the fragrance dispensing machine, the adjustment component can drive the carrying container to move downward along the Z-axis relative to the mobile vehicle body to and stop at the lowest position.
[0010] The gear pump is used to pump the flavoring in the carrier barrel into a mist and spray it onto the tobacco. The adjustment component can drive the carrier barrel to move upward along the Z-axis relative to the moving vehicle body to and stop at the highest position.
[0011] As an optional solution, the adjustment component includes:
[0012] An electric push rod extends along the Z-axis, and the fixed end of the electric push rod is located on the moving vehicle body;
[0013] A support plate is provided, and the support bucket is mounted on the support plate. The drive rod of the electric push rod is driven to the support plate, and the electric push rod is used to push the support plate up and down along the Z-axis.
[0014] As an optional solution, multiple electric push rods are provided, each of which is evenly distributed at the bottom end of the support plate, and each of the electric push rods pushes the support plate synchronously.
[0015] As an optional solution, the support plate is provided with an annular groove, and the bottom of the support barrel is locked into the annular groove.
[0016] As an optional solution, the adjustment component further includes:
[0017] A guide slide rod extends along the Z-axis, and the bottom end of the guide slide rod is connected to the moving vehicle body. The guide slide rod is provided with height markings along the Z-axis.
[0018] A guide slider is connected to the outer peripheral surface of the support plate, and the guide slider is slidably sleeved on the guide slide rod along the Z-axis.
[0019] As an optional solution, the mobile vehicle body includes:
[0020] Mounting plate, the fixed end of the electric push rod is connected to the mounting plate;
[0021] The mounting plate has a drive wheel and a swivel wheel, which are rotatably connected to opposite ends of the bottom surface of the mounting plate. The rotation of the drive wheel can drive the swivel wheel to rotate, thereby moving the mounting plate in a straight line.
[0022] As an optional solution, the tobacco flavoring device further includes:
[0023] A drive assembly, one end of which is connected to the mounting plate and the other end of which is driven to the drive wheel, is used to drive the drive wheel to rotate.
[0024] As an optional solution, the driving component includes:
[0025] A drive motor and a drive gear are provided, wherein the fixed end of the drive motor is disposed on the mounting plate, and the drive gear is sleeved on the output shaft of the drive motor;
[0026] A driven gear and a drive shaft, the drive shaft being rotatable and spaced below the mounting plate, the drive wheels being respectively fitted at opposite ends of the drive shaft, the driven gear being fitted in the middle of the drive shaft, and the drive gear passing through the mounting plate with clearance to mesh with the driven gear.
[0027] As an optional solution, the driving component further includes:
[0028] A battery pack is mounted on the mounting plate and located on the side of the drive gear away from the drive motor. The battery pack is electrically connected to the drive motor and is used to supply power to the drive motor.
[0029] The chassis is mounted on the mounting plate and covers the outside of the drive motor, the drive gear and the battery pack.
[0030] As an optional solution, the tobacco flavoring device further includes:
[0031] A pusher is mounted on the mounting plate, and the pusher is located on the side of the bearing barrel away from the drive motor;
[0032] Two push handles are provided opposite each other on the upper part of the push frame.
[0033] The beneficial effects of this utility model are as follows:
[0034] By connecting one end of the adjusting component to the moving vehicle and the other end to the carrier barrel drive, when the moving vehicle moves the carrier barrel and its contents along a straight line to the fragrance dispenser, the adjusting component can drive the carrier barrel to move downwards along the Z-axis relative to the moving vehicle and stop at its lowest position. This lowers the height of the carrier barrel relative to the moving vehicle, thereby lowering the center of gravity of the entire carrier barrel. This makes it less likely for the carrier barrel to tip over when pushed on sloping ground, thus ensuring the stability of the carrier barrel's transport. When the fragrance in the carrier barrel is pumped into a mist by a gear pump and sprayed into the fragrance dispenser... When the tobacco is applied, the adjusting component can drive the carrier barrel to move upward along the Z-axis relative to the moving vehicle body and stop at the highest position. This increases the gravitational potential energy of the carrier barrel and the flavoring inside. Since the top surface of the carrier barrel is higher than the top surface of the flavoring machine, the increased gravitational potential energy of the flavoring inside the carrier barrel is converted into kinetic energy, thereby accelerating the flow rate of the flavoring from the carrier barrel into the flavoring machine. Correspondingly, while ensuring that the gear pump has the same pressurized atomization effect on the flavoring, the output power of the gear pump can be reduced, which can reduce the overload operation of the gear pump during long-term use and thus improve the service life of the gear pump. Attached Figure Description
[0035] Figure 1This is a schematic diagram of the tobacco flavoring device provided in this utility model. Figure 1 ;
[0036] Figure 2 This is a schematic diagram of the tobacco flavoring device (excluding the casing) provided in this utility model. Figure 2 ;
[0037] Figure 3 This is a schematic diagram of the tobacco flavoring device (excluding the casing) provided in this utility model. Figure 3 .
[0038] Explanation of reference numerals in the attached figures:
[0039] 1-Mobile vehicle body; 11-Mounting plate; 12-Drive wheel; 13-Swivel wheel;
[0040] 2-Adjusting assembly; 21-Electric push rod; 22-Bearing plate; 23-Guide slide rod; 24-Guide slider;
[0041] 3-Loading container; 4-Sealing lid;
[0042] 5-Drive assembly; 51-Drive motor; 511-Output shaft; 52-Drive gear; 53-Driven gear; 54-Transmission shaft; 55-Battery pack; 56-Chassis;
[0043] 6-Push frame; 61-Vertical rod; 62-Mounting panel;
[0044] 7-Push handle; 8-Control panel. Detailed Implementation
[0045] All features disclosed in this specification, or all steps in all disclosed methods or processes, may be combined in any way, except for mutually exclusive features and / or steps.
[0046] Any feature disclosed in this specification, unless specifically stated otherwise, may be replaced by other equivalent or similar features. That is, unless specifically stated otherwise, each feature is merely one example of a series of equivalent or similar features. Throughout this specification, the same reference numerals indicate the same elements.
[0047] To make the technical problem solved by this utility model, the technical solution adopted, and the technical effect achieved clearer, the technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0048] This embodiment proposes a tobacco flavoring device that can stably flavor tobacco. Specifically, it can form the flavoring essence into a mist under high pressure and then evenly spray the mist onto the tobacco to complete the flavoring operation. This tobacco flavoring device can ensure the stability of the flavoring essence throughout the entire transportation process and prevent the flavoring essence from tilting and spilling out. Furthermore, it can improve the service life of the entire tobacco flavoring device.
[0049] Specifically, such as Figures 1 to 3 As shown, the tobacco flavoring device includes a mobile vehicle 1, a flavoring machine, an adjusting component 2, a carrying container 3, and a gear pump. The mobile vehicle 1 can move linearly to the flavoring machine, which contains tobacco. One end of the adjusting component 2 is connected to the mobile vehicle 1, and the other end is driven to the carrying container 3. The carrying container 3 is used to seal and hold flavoring, and its top surface is higher than the top surface of the flavoring machine; that is, along the Z-axis, at least a portion of the carrying container 3 is higher than the flavoring machine. When the moving vehicle 1 moves the carrying tank 3 and its flavorings along a straight line to the flavoring machine, the adjusting component 2 can drive the carrying tank 3 to move downward along the Z-axis relative to the moving vehicle 1 and stop at the lowest position to lower the center of gravity of the carrying tank 3; when the gear pump is used to pump the flavorings in the carrying tank 3 into a mist and spray it onto the tobacco, the adjusting component 2 can drive the carrying tank 3 to move upward along the Z-axis relative to the moving vehicle 1 and stop at the highest position to increase the gravitational potential energy of the carrying tank 3 and its flavorings.
[0050] Compared to existing technologies, the tobacco flavoring device in this embodiment adds an adjustment component 2 that works in conjunction with the carrying container 3. One end of the adjustment component 2 is connected to the moving vehicle 1, and the other end is driven to the carrying container 3. When the moving vehicle 1 moves the carrying container 3 and its flavoring agent along a straight line to the flavoring machine, the adjustment component 2 can drive the carrying container 3 to move downwards along the Z-axis relative to the moving vehicle 1 and stop at its lowest position. This lowers the height of the carrying container 3 relative to the moving vehicle 1, thereby lowering the center of gravity of the entire carrying container 3 and the moving vehicle 1. This reduces the likelihood of the carrying container 3 tipping over when pushed on sloping ground, thus ensuring the smooth transport of the carrying container 3. Stability: When the flavoring in the carrier tank 3 is pumped into a mist by the gear pump and sprayed onto the tobacco in the flavoring machine, the adjusting component 2 can drive the carrier tank 3 to move upward along the Z-axis relative to the moving vehicle 1 and stop at the highest position. This increases the gravitational potential energy of the carrier tank 3 and the flavoring inside. Since the top surface of the carrier tank 3 is higher than the top surface of the flavoring machine, the increased gravitational potential energy of the flavoring in the carrier tank 3 is converted into kinetic energy, thereby accelerating the flow rate of the flavoring from the carrier tank 3 into the flavoring machine. Correspondingly, while ensuring that the gear pump has the same pressurized atomization effect on the flavoring, the output power of the gear pump can be reduced, thus reducing the risk of overload operation during long-term use and improving the service life of the gear pump. The lowest and highest positions mentioned above need to be determined according to the specific adjustment conditions; no specific limitation is made here.
[0051] Specifically, in order to ensure the integrity and coverage of the flavoring of the tobacco, the flavoring liquid level in the carrying container 3 is usually high, which makes the center of gravity of the entire carrying container 3 high. However, by using the aforementioned adjustment component 2, the center of gravity of the entire carrying container 3 can be lowered. A lower center of gravity reduces the lever arm of the tipping moment. Therefore, when the moving vehicle 1 is pushed on a sloping ground, the pushing inertial force acts on the center of gravity of the carrying container 3, which reduces the tipping moment of the entire moving vehicle 1. This can better avoid the problem of the carrying container 3 tipping over and ensure the smooth transport of the carrying container 3.
[0052] It is worth noting that the flavoring machine in this embodiment can adopt the structure of a common drum flavoring machine in the prior art; the specific type of flavoring is not limited and needs to be determined according to the actual flavoring requirements of the tobacco; and the gear pump can be a common gear pump in existing flavoring technology. Here, the specific flavoring process and working principle of the tobacco are not described in detail, but can be referred to as common flavoring processes and working principles in the prior art.
[0053] The following is a detailed description of adjustment component 2:
[0054] Specifically, such as Figures 1 to 3As shown, the adjustment assembly 2 includes an electric push rod 21 and a support plate 22; wherein, the electric push rod 21 extends along the Z-axis, and the fixed end of the electric push rod 21 is provided on the moving vehicle body 1; the support bucket 3 is installed on the support plate 22, and the drive rod of the electric push rod 21 is drivenly connected to the support plate 22. The electric push rod 21 is used to push the support plate 22 up and down along the Z-axis to raise or lower the center of gravity of the support bucket 3.
[0055] By setting up an electric push rod 21 and a support plate 22 that work together, it is possible to ensure that the support plate 22 is always placed horizontally during the operation, thereby ensuring the smoothness and accurate control of the lifting of the support barrel 3, and thus ensuring that the support barrel 3 is placed horizontally, so as to avoid the fragrance in the support barrel 3 tilting and overflowing during the height adjustment process.
[0056] Furthermore, such as Figures 1 to 3 As shown, multiple electric push rods 21 are provided, each evenly distributed at the bottom end of the support plate 22. Each electric push rod 21 synchronously pushes the support plate 22; that is, by synchronously pushing the support plate 22 with each electric push rod 21, the horizontal placement of the support plate 22 can be better ensured, further guaranteeing the stability and accuracy of the height adjustment of the support bucket 3. In this embodiment, a total of five electric push rods 21 are provided. The specific number of electric push rods 21 is not limited here.
[0057] Specifically, an annular groove is provided on the support plate 22, and the bottom limit of the support bucket 3 is engaged in the annular groove so that the support bucket 3 can be quickly installed and fixed on the support plate 22, ensuring the stability of the support bucket 3 on the support plate 22, thereby preventing the support bucket 3 from falling off the support plate 22.
[0058] Furthermore, such as Figures 1 to 3 As shown, the adjustment assembly 2 also includes a guide slide rod 23 and a guide slider 24; wherein, the guide slide rod 23 extends along the Z-axis, and the bottom end of the guide slide rod 23 is connected to the moving vehicle body 1; the guide slider 24 is connected to the outer peripheral surface of the support plate 22, and the guide slider 24 is slidably sleeved on the guide slide rod 23 along the Z-axis. The support plate 22 and the guide slider 24 are an integral structure.
[0059] When the electric push rod 21 pushes the support plate 22 to move up and down along the Z-axis, the guide slider 24 slides along the guide slide rod 23 on the Z-axis, so as to provide guidance for the movement of the support plate 22 on the Z-axis, thereby ensuring the guidance and stability of the height adjustment of the support plate 22 and the support barrel 3 on the Z-axis.
[0060] Specifically, such as Figures 1 to 3As shown, the guide slide rod 23 is a square rod, and correspondingly, the guide slider 24 is a square block. That is, the square rod is inserted into the square block to better ensure the circumferential limit between the guide slider 24 and the guide slide rod 23, thereby ensuring that the guide slider 24 can only move up and down along the Z-axis on the guide slide rod 23 and will not rotate.
[0061] Furthermore, a height scale is provided on the guide slide rod 23 along the Z-axis. That is, during the up and down movement of the support plate 22 along the Z-axis, the specific height of the support barrel 3 relative to the moving vehicle body 1 can be quickly determined by directly observing the specific height scale position of the guide slider 24 on the guide slide rod 23. This allows for direct observation of the height scale to quickly obtain the specific adjustment height of the support barrel 3, making the height adjustment of the support barrel 3 more intuitive and visual, thereby ensuring the intuitiveness and accuracy of the height adjustment of the support barrel 3.
[0062] The following is a detailed description of the carrying tank 3:
[0063] Specifically, such as Figures 1 to 3 As shown, the carrier 3 is actually a cylindrical body with an opening at the top. The fragrance is placed inside the cylindrical body, and a sealing cap 4 is provided at the opening at the top of the cylindrical body. That is, the fragrance can be carried and placed in the carrier 3, and the opening at the top of the carrier 3 can be sealed by the sealing cap 4, thereby ensuring that the fragrance is sealed inside the carrier 3.
[0064] The following is a detailed description of the moving vehicle body 1:
[0065] Specifically, such as Figures 1 to 3 As shown, the mobile vehicle body 1 includes a mounting plate 11, drive wheels 12, and casters 13; wherein, the fixed end of the electric push rod 21 is mounted on the mounting plate 11, and the bottom of the aforementioned guide slide rod 23 is mounted on the mounting plate 11; the drive wheels 12 and casters 13 are respectively rotatably connected to opposite ends of the bottom surface of the mounting plate 11, and the rotation of the drive wheels 12 can drive the casters 13 to rotate, thereby driving the mounting plate 11 to move in a straight line, thereby driving the carrying bucket 3 on the mounting plate 11 to move in a straight line to the fragrance dispenser.
[0066] By setting omnidirectional wheels 13 to facilitate the steering of the entire mobile vehicle 1, and by rotating the drive wheels 12 to drive the entire mobile vehicle 1 to move, it is easy to directly push the mobile vehicle 1 to move, thereby reducing the strength required for the staff to push the entire mobile vehicle 1 to move, and thus reducing the staff's pushing work intensity.
[0067] Furthermore, such as Figures 1 to 3As shown, there are two casters 13 and two drive wheels 12. The two casters 13 are positioned opposite each other at one end of the mounting plate 11, and the two drive wheels 12 are positioned opposite each other at the other end of the mounting plate 11. Thus, the two casters 13 and the two drive wheels 12 can better ensure the smoothness and reliability of the movement and steering of the mounting plate 11.
[0068] The following is a detailed description of driver component 5:
[0069] Furthermore, such as Figure 1 and Figure 2 As shown, the tobacco flavoring device also includes a drive assembly 5. One end of the drive assembly 5 is connected to the mounting plate 11, and the other end of the drive assembly 5 is driven to the drive wheel 12. The drive assembly 5 is used to drive the drive wheel 12 to rotate. Thus, by driving the drive wheel 12 through the drive assembly 5, the rotation speed of the drive wheel 12 can be increased and the rotation driving force of the drive wheel 12 can be reduced. This can better reduce the strength required for the staff to push the entire mobile vehicle 1, further reduce the staff's pushing work intensity, and greatly improve work efficiency.
[0070] Specifically, such as Figures 1 to 3 As shown, the drive assembly 5 includes a drive motor 51, a drive gear 52, a driven gear 53, and a transmission shaft 54. The fixed end of the drive motor 51 is mounted on the mounting plate 11. The drive gear 52 is sleeved on the output shaft 511 of the drive motor 51, and the rotation of the output shaft 511 can synchronously drive the drive gear 52 to rotate. The transmission shaft 54 rotates and is spaced below the mounting plate 11. A drive wheel 12 is sleeved on each of the opposite ends of the transmission shaft 54. The driven gear 53 is sleeved in the middle of the transmission shaft 54 to avoid interference between the mounting plate 11, the drive wheel 12, the transmission shaft 54, and the driven gear 53. The drive gear 52 passes through the mounting plate 11 with a gap to mesh with the driven gear 53, so that the drive gear 52 can rotate relative to the mounting plate 11 and can synchronously drive the rotation of the driven gear 53 through the rotation of the drive gear 52.
[0071] Specifically, when the drive motor 51 is working, the output shaft 511 of the drive motor 51 rotates to drive the drive gear 52 on it to rotate. The drive gear 52 rotates to synchronously drive the driven gear 53 to rotate, thereby driving the transmission shaft 54 to rotate. This causes the two drive wheels 12 on the transmission shaft 54 to rotate synchronously, and then drives the mounting plate 11 to move in a straight line.
[0072] By setting up a drive motor 51, a driving gear 52, a driven gear 53, and a transmission shaft 54 that work together, the structure of the entire drive assembly 5 can be made simpler, the layout more reasonable and compact, and the cost lower. On the other hand, the gear meshing transmission can ensure the accuracy and reliability of the power transmission, thereby ensuring the stability and reliability of the rotation of the drive wheel 12.
[0073] Furthermore, such as Figures 1 to 3 As shown, the drive assembly 5 also includes a battery pack 55 and a chassis 56. The battery pack 55 is mounted on the mounting plate 11 and located on the side of the drive gear 52 furthest from the drive motor 51; that is, the drive gear 52 is located between the battery pack 55 and the drive motor 51, allowing for a more rational and compact overall layout of the drive assembly 5. Furthermore, the battery pack 55 is electrically connected to the drive motor 51 and supplies power to the drive motor 51. The chassis 56 is mounted on the mounting plate 11 and covers the drive motor 51, the drive gear 52, and the battery pack 55. The battery pack 55 can employ a common battery pack structure found in the prior art.
[0074] By using the battery pack 55 to power the drive motor 51, that is, without the need for an additional plug to be inserted into a fixed socket to provide power to the drive motor 51, the battery pack 55 can be moved along with the mounting plate 11 while ensuring the power supply to the drive motor 51. This makes it easier and more convenient to move the mobile vehicle body 1 and the carrier bucket 3 as a whole.
[0075] Furthermore, by covering the drive motor 51, drive gear 52, and battery pack 55 with the chassis 56, protection can be provided for the drive motor 51, drive gear 52, and battery pack 55, thereby better protecting the drive motor 51, drive gear 52, and battery pack 55; and by covering the drive motor 51, drive gear 52, and battery pack 55 with the chassis 56, the overall aesthetic appearance of the drive assembly 5 can be improved.
[0076] The following is a detailed description of the other structures in the tobacco flavoring device:
[0077] Furthermore, such as Figures 1 to 3 As shown, the tobacco flavoring device also includes a pusher 6 and a push handle 7. The lower part of the pusher 6 is mounted on the mounting plate 11. The pusher 6 is located on the side of the carrying tank 3 away from the drive motor 51. That is, the carrying tank 3 is located in the middle between the drive motor 51 and the pusher 6, so that the overall structure layout is more reasonable and compact, and the pusher 6 can be pushed directly. Two push handles 7 are provided on the upper part of the pusher 6, so that the entire mobile vehicle 1 can be pushed by holding and pushing the two push handles 7, making the pushing of the mobile vehicle 1 more effortless and convenient.
[0078] Specifically, such as Figures 1 to 3 As shown, the pusher 6 includes two vertical rods 61 and a mounting panel 62. The two vertical rods 61 are arranged opposite each other, with the lower part of the vertical rods 61 mounted on the mounting plate 11. The mounting panel 62 is connected between the two vertical rods 61 and located on the upper part of the vertical rods 61. The push handle 7 is mounted on the side of the mounting panel 62 away from the carrying tank 3 to avoid interference between the push handle 7 and the carrying tank 3, and to facilitate pushing the push handle 7 located on the outer side. Specifically, the two vertical rods 61 and the mounting panel 62 can be an integral structure.
[0079] By setting up a pusher 6 that includes two vertical rods 61 and a mounting panel 62, it is possible to ensure that the pusher 6 provides installation space for the push handle 7 while making the overall structure of the pusher 6 relatively simple and compact. This ensures that the pusher 6 will not interfere with other surrounding structures, making the pusher 6 more independent and reducing its installation cost.
[0080] Furthermore, such as Figure 3 As shown, the tobacco flavoring device also includes an operation panel 8 and a controller. The operation panel 8 is mounted on the upper part of the pusher 6 and located between the two push handles 7, that is, the operation panel 8 is specifically mounted on the mounting panel 62. The controller is mounted on one of the push handles 7 and is electrically connected to the operation panel 8, the drive motor 51, and the electric push rod 21. The operation panel 8 can adopt a common operation panel structure in the prior art, and the controller can adopt a common controller structure in the prior art.
[0081] By setting up an operation panel 8, operators can easily use the operation panel 8 to operate the entire tobacco flavoring device. For example, the operation panel 8 has several operation buttons, and pressing the operation buttons will cause the tobacco flavoring device to perform corresponding operation actions. Furthermore, by electrically connecting the controller to the operation panel 8, the drive motor 51, and the electric push rod 21, the controller can control the operation of the drive motor 51 and the electric push rod 21 according to the operation panel 8. For example, when it is necessary to start the electric push rod 21 and the drive motor 51, the corresponding start operation button on the operation panel 8 is pressed. At this time, after receiving the start feedback signal from the operation panel 8, the controller simultaneously controls the drive motor 51 and each electric push rod 21 to start, so as to accurately ensure the synchronous driving effect of each electric push rod 21 on the support plate 22.
[0082] Furthermore, such as Figure 3As shown, the ends of the two push handles 7 that are not connected to the mounting panel 62 gradually move away from each other. That is, the two push handles 7 can form an flared structure, which is conducive to holding the push handles 7 and ensures that the two push handles 7 do not obstruct or interfere with the operation panel 8, thus ensuring that the operation panel 8 can be observed and operated intuitively and clearly.
[0083] The specific working process of the tobacco flavoring device in this embodiment is as follows:
[0084] First, add the fragrance into the carrier container 3 and seal the cover 4. Then, press the start button on the control panel 8. When the controller receives the start feedback signal from the control panel 8, the controller controls the drive motor 51 to start. At this time, hold the two push handles 7 to push the entire mobile vehicle 1. At the same time, the battery pack 55 in the chassis 56 provides power to the drive motor 51 so that the drive motor 51 drives the drive gear 52 to rotate, which in turn drives the driven gear 53 and the transmission shaft 54 to rotate, thereby driving the two drive wheels 12 to rotate synchronously, so as to reduce the workload required for the staff to push the mobile vehicle 1.
[0085] During the process of pushing the mobile vehicle 1 to move in a straight line, the controller will simultaneously control each electric push rod 21 to start, so that each electric push rod 21 synchronously drives the bearing plate 22 to move downward along the Z-axis and stop at the lowest position, so as to lower the center of gravity of the entire mobile vehicle 1 and thus ensure the smooth transport of the bearing bucket 3.
[0086] Then, after the moving vehicle 1 moves the entire carrying tank 3 to the flavoring machine, the sealing cover 4 is opened, and the carrying tank 3 is connected to the gear pump through a pipe. The gear pump is then activated to extract the flavoring essence from the carrying tank 3, which is then atomized and sprayed onto the tobacco in the flavoring machine. Simultaneously, during the atomization and spraying of the flavoring essence onto the tobacco, the controller simultaneously activates each electric push rod 21, causing each electric push rod 21 to synchronously move the carrying plate 22 upward along the Z-axis and stop at the highest position. This increases the gravitational potential energy of the carrying tank 3 and the flavoring essence within it, allowing the gravitational potential energy to be converted into kinetic energy, thus increasing the flow rate of the flavoring essence and reducing the overload operation of the gear pump. Whether the carrying plate 22 has moved to the lowest or highest position can be quickly determined by directly observing the height scale on the guide slide rod 23.
[0087] In this embodiment, the tobacco flavoring device is equipped with an adjustment component 2 that can adjust the height of the support tank 3 along the Z-axis. This allows the support plate 22 and the support tank 3 on it to move downward along the Z-axis to the lowest position during the movement of the moving vehicle 1, thereby lowering the center of gravity of the entire moving vehicle 1 and preventing the support tank 3 from tipping over during movement. Furthermore, when flavoring the tobacco in a mist, the support plate 22 and the support tank 3 on it are driven to move downward along the Z-axis to the highest position to increase the gravitational potential energy of the flavoring, thereby reducing the overload operation of the gear pump.
[0088] In this embodiment, the tobacco flavoring device simultaneously drives the guide slider 24 to move linearly along the guide slide rod 23 during the movement of the support plate 22 along the Z-axis, thereby improving the guiding and stability of the movement of the support plate 22 and the support barrel 3 along the Z-axis; and the specific moving height of the support barrel 3 can be quickly obtained by directly observing the height scale on the guide slide rod 23.
[0089] The tobacco flavoring device in this embodiment, by setting up a mobile vehicle 1 and a drive assembly 5 that work together, enables the drive assembly 5 to drive two drive wheels 12 to rotate, thereby driving the mounting plate 11 to move in a straight line. This reduces the force required for workers to push the mobile vehicle 1, reduces the intensity of the workers' pushing work, and improves work efficiency.
[0090] In this embodiment, the tobacco flavoring device, by setting up a housing 56 and a battery pack 55, can provide protection for the drive motor 51, the drive gear 52 and the battery pack 55 through the housing 56 covering the outside; and, while ensuring the power supply to the drive motor 51 through the battery pack 55, it makes the overall movement of the mobile vehicle 1 and the carrying tank 3 simple and convenient.
[0091] The structural contents not described in detail in this embodiment belong to the prior art known to those skilled in the art; in this embodiment, each technical solution is only described in terms of its difference from other solutions. As long as the technical solutions do not conflict with each other, they can be combined arbitrarily. The embodiments formed by the combination are also within the scope of this utility model. Considering the brevity of this article, the embodiments formed by the combination will not be described separately.
[0092] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A tobacco flavoring device, characterized in that, include: The mobile vehicle (1) and the aroma generator are provided with tobacco shreds. The mobile vehicle (1) can move in a straight line to the aroma generator. Adjustment component (2) and carrier bucket (3), one end of adjustment component (2) is connected to the mobile vehicle body (1), and the other end is driven to the carrier bucket (3). The carrier bucket (3) is used to seal and hold fragrance, and the top surface of the carrier bucket (3) is higher than the top surface of the fragrance dispenser. When the mobile vehicle body (1) moves the carrier bucket (3) to the fragrance dispenser, the adjustment component (2) can drive the carrier bucket (3) to move downward along the Z-axis relative to the mobile vehicle body (1) to and stop at the lowest position. When the gear pump pumps the flavoring in the carrier barrel (3) into a mist and sprays it onto the tobacco, the adjusting component (2) can drive the carrier barrel (3) to move upward along the Z-axis relative to the moving vehicle body (1) to and stop at the highest position.
2. The tobacco flavoring device as described in claim 1, characterized in that, The adjustment component (2) includes: An electric push rod (21) extends along the Z-axis, and the fixed end of the electric push rod (21) is located on the moving vehicle body (1); The support plate (22) is mounted on the support plate (22), and the drive rod of the electric push rod (21) is driven to the support plate (22). The electric push rod (21) is used to push the support plate (22) up and down along the Z-axis.
3. The tobacco flavoring device as described in claim 2, characterized in that, Multiple electric push rods (21) are provided, and each electric push rod (21) is evenly distributed at the bottom end of the support plate (22). Each electric push rod (21) pushes the support plate (22) synchronously.
4. The tobacco flavoring device as described in claim 2, characterized in that, The support plate (22) is provided with an annular groove, and the bottom of the support barrel (3) is locked in the annular groove.
5. The tobacco flavoring device as described in claim 2, characterized in that, The adjustment component (2) further includes: A guide slide rod (23) extends along the Z-axis. The bottom end of the guide slide rod (23) is connected to the moving vehicle body (1). The guide slide rod (23) has a height scale along the Z-axis. The guide slider (24) is connected to the outer peripheral surface of the bearing plate (22), and the guide slider (24) is slidably sleeved on the guide slide rod (23) along the Z-axis.
6. The tobacco flavoring device according to any one of claims 2-5, characterized in that, The mobile vehicle body (1) includes: Mounting plate (11), the fixed end of the electric push rod (21) is connected to the mounting plate (11); The drive wheel (12) and the universal wheel (13) are rotatably connected to opposite ends of the bottom surface of the mounting plate (11). The rotation of the drive wheel (12) can drive the universal wheel (13) to rotate, thereby driving the mounting plate (11) to move in a straight line.
7. The tobacco flavoring device as described in claim 6, characterized in that, The tobacco flavoring device also includes: The drive assembly (5) has one end connected to the mounting plate (11) and the other end connected to the drive wheel (12). The drive assembly (5) is used to drive the drive wheel (12) to rotate.
8. The tobacco flavoring device as described in claim 7, characterized in that, The driving component (5) includes: A drive motor (51) and a drive gear (52) are provided. The fixed end of the drive motor (51) is provided on the mounting plate (11), and the drive gear (52) is sleeved on the output shaft (511) of the drive motor (51). The driven gear (53) and the drive shaft (54) are rotated and spaced below the mounting plate (11). The drive wheel (12) is respectively sleeved at the opposite ends of the drive shaft (54). The driven gear (53) is sleeved in the middle of the drive shaft (54). The driving gear (52) passes through the mounting plate (11) with a gap to mesh with the driven gear (53).
9. The tobacco flavoring device as described in claim 8, characterized in that, The driving component (5) also includes: A battery pack (55) is disposed on the mounting plate (11) and located on the side of the drive gear (52) away from the drive motor (51). The battery pack (55) is electrically connected to the drive motor (51) and is used to supply power to the drive motor (51). A chassis (56) is mounted on the mounting plate (11), and the chassis (56) covers the outside of the drive motor (51), the drive gear (52) and the battery pack (55).
10. The tobacco flavoring device as described in claim 8, characterized in that, The tobacco flavoring device also includes: Pusher (6) is mounted on the mounting plate (11) and is located on the side of the bearing barrel (3) away from the drive motor (51); Push handle (7), two push handles (7) are provided opposite each other on the upper part of the push frame (6).