Tobacco loading foot stand of semi-automatic bulk curing barn

The semi-automatic transmission wheel and tobacco chain system solves the safety hazards and labor intensity problems of high-rise tobacco loading in dense flue-curing houses, realizes an efficient and stable tobacco loading and unloading process, and improves the reliability of the tobacco loading stand and the baking quality.

CN223310632UActive Publication Date: 2025-09-09CHINA TOBACCO GUANGXI IND
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Patent Information

Application Number
CN202422484134.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-09-09
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

When loading smoke in the existing dense curing room, the operator needs to move around on the high-level platform, which poses a safety hazard, is labor-intensive, and has low loading efficiency.

Method used

A rotary drive device is used to drive the cigarette chain to rotate the transmission wheel to achieve semi-automatic cigarette loading. The bracket provides stable support. The transmission wheel group is set at intervals to evenly load the cigarette rods. The driving transmission rod and the driven transmission rod ensure synchronous rotation. The support wheel and support rod increase stability, and the position mark improves operating efficiency.

Benefits of technology

It reduces the safety hazards of high-rise smoke loading, improves smoke loading efficiency and equipment stability, reduces maintenance frequency and cost, and ensures the smooth movement of smoke rods and baking quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of tobacco loading foot stands, and discloses a semi-automatic bulk curing barn tobacco loading foot stand which comprises a support and a tobacco carrying chain, at least two transmission wheels are rotationally arranged on the support, rotating shafts of the two transmission wheels are arranged in parallel at intervals, and at least one transmission wheel is connected with a rotation driving device. The two tobacco carrying chains are symmetrically arranged, and tobacco rods are suitable for being erected between the two tobacco carrying chains; the cigarette carrying chain is connected with the two transmission wheels respectively, and the cigarette carrying chain is driven by the transmission wheels to rotate synchronously. The rotary driving device is adopted to drive the transmission wheel to rotate, the tobacco carrying chain is promoted to rotate synchronously, heavy manual carrying is not needed during tobacco loading, an operator only needs to place tobacco stems at marked positions of the chain, semi-automatic operation in the tobacco loading process can be achieved, the tobacco loading efficiency is improved, the labor intensity of the operator is relieved, and the tobacco loading efficiency is improved. And when cigarettes are loaded on a high layer, potential safety hazards caused by walking of operators are also reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of cigarette holders, in particular to a cigarette holder for a semi-automatic intensive baking room. Background Art

[0002] In tobacco leaf baking operations, intensive baking rooms have been widely promoted and used due to their strong baking capacity and large tobacco leaf capacity. When baking tobacco leaves, the traditional practice is to rely on manpower to place the tobacco rods or tobacco clips with braided tobacco leaves into the corresponding tripod position of the baking room for baking operations.

[0003] The existing cigarette rack generally has multiple layers of cigarette racks. When in use, multiple tobacco rods with braided tobacco leaves need to be placed manually on each layer of the cigarette rack.

[0004] However, in the actual process of loading cigarettes, due to the large number and heavy weight of the cigarette rods, when the cigarette rods need to be set up on a high-rise cigarette rack, the operators need to keep moving on the high-rise platform, which undoubtedly poses certain safety hazards. Utility Model Content

[0005] In view of this, the utility model provides a semi-automatic intensive smoke-curing room smoke-loading stand to solve the problem that smoke loading at high levels is laborious and unsafe.

[0006] The utility model provides a semi-automatic intensive baking room cigarette holder, comprising a bracket and a cigarette carrying chain, wherein at least two transmission wheels are rotatably arranged on the bracket, the rotation axes of the two transmission wheels are arranged in parallel and spaced apart, and at least one of the transmission wheels is connected to a rotary drive device; the cigarette carrying chains have two symmetrically arranged chains, and a space between the two cigarette carrying chains is suitable for setting up cigarette rods; the cigarette carrying chains are respectively connected to the two transmission wheels, and the cigarette carrying chains are driven to rotate synchronously by the transmission wheels.

[0007] By using a rotary drive to drive the transmission wheel and synchronize the movement of the cigarette chain, semi-automated cigarette loading is achieved, improving loading efficiency, reducing labor intensity, and mitigating safety hazards associated with high-rise loading. Furthermore, a bracket provides stable support for the cigarette loading stand, ensuring a stable loading process. The two parallel, spaced transmission wheels connecting the cigarette chain ensure smooth chain rotation and evenly load the cigarette rods, preventing them from falling or tilting. Furthermore, the reliable connection between the transmission wheel and the cigarette chain ensures stable operation over extended periods of use, reducing equipment failures and maintenance.

[0008] Optionally, the present invention provides a semi-automatic intensive baking room cigarette stand, wherein the stand has at least two transmission wheel groups spaced apart, and each transmission wheel group includes at least one driving wheel and at least one driven wheel.

[0009] The multiple, spaced-apart drive wheel assemblies provide more even support for the tobacco chain. The coordinated rotation of the driven wheel and the driving wheel ensures smooth chain operation, reduces shake and deflection, and improves the stability of the tobacco loading stand. Furthermore, multiple drive wheel assemblies distribute the weight of the tobacco rods, allowing multiple wheels to share the load, increasing the load capacity of the tobacco loading stand and accommodating tobacco curing operations of varying scales. Furthermore, if a drive wheel fails, the multiple drive wheel assemblies will not immediately cause the tobacco loading stand to cease operation. The faulty drive wheel can be maintained or replaced individually, reducing maintenance costs and time, and improving equipment availability and reliability.

[0010] Optionally, the utility model provides a semi-automatic intensive baking room cigarette stand, wherein the two driving wheels in two adjacent transmission wheel groups are connected by a driving transmission rod.

[0011] The drive transmission rod connection ensures synchronized rotation of adjacent drive wheels. Direct power transmission reduces energy loss and improves power efficiency, making the loading stand more energy-efficient and efficient, while also increasing work efficiency and tobacco loading and unloading speed. Furthermore, the drive transmission rod connection makes the loading stand more compact, saving space within limited flue-curing barns and facilitating installation and maintenance. This connection also facilitates disassembly and installation for maintenance or adjustment, and facilitates inspection and replacement of components such as the drive wheels.

[0012] Optionally, the utility model provides a semi-automatic intensive baking room cigarette stand, wherein the driving transmission rod rotates synchronously with the two driving wheels, and the rotary driving device is installed on one side of one of the driving wheels.

[0013] The synchronous rotation design ensures the synchronization of the tobacco chain's movement speed, ensuring smooth movement of the tobacco rods, improving the reliability and safety of the tobacco loading process, and ensuring efficient power transmission, improving transmission efficiency, reducing energy loss, and avoiding jamming or instability. At the same time, the rotary drive device is installed on the side of a drive wheel, making the tobacco loading stand more compact, reducing space, and facilitating installation and maintenance by maintenance personnel. Furthermore, by connecting multiple drive wheels through a drive transmission rod, if one drive wheel fails, the others can continue to operate, improving the reliability and stability of the tobacco loading stand and ensuring the continuity of tobacco loading in the flue-curing barn.

[0014] Optionally, the utility model provides a semi-automatic intensive baking room cigarette stand, wherein the two driven wheels in two adjacent transmission wheel groups are connected via a driven transmission rod.

[0015] Connecting the driven wheels via a driven transmission rod allows for more synchronized rotation of the driven wheels, improving the stability of the cigarette holder, reducing the likelihood of cigarette rods shaking or tilting, and enabling faster power transmission. Furthermore, connecting the driven transmission rods to adjacent driven wheels allows for smoother and more direct power transfer between the drive wheel groups, thereby reducing energy loss and improving the efficiency of the cigarette loading system. Furthermore, the driven transmission rods connecting the driven wheels add stability to the cigarette holder, allowing adjacent drive wheel groups to form a more stable overall structure, enhancing the mutual support and restraint between components, and reducing the risk of deformation of the cigarette holder.

[0016] Optionally, the utility model provides a semi-automatic intensive baking room cigarette stand, wherein the driven transmission rod rotates synchronously with the two driven wheels.

[0017] Synchronous rotation ensures the coordinated movement of the two driven wheels and the tobacco chain, making tobacco stems more stable and preventing sway or tilt. This ensures a stable tobacco curing position, improves curing quality, and reduces vibration, enhancing equipment stability and reliability, thereby extending service life. Furthermore, synchronized rotation allows for efficient power transfer between the driven wheels, reducing energy loss and improving power utilization. Furthermore, when the tobacco racks in the curing room are heavily loaded, the synchronized rotation of the driven transmission rod and driven wheels effectively shares the load, ensuring normal operation of the equipment under heavy loads, thereby improving load-bearing capacity and operating efficiency.

[0018] Optionally, the utility model provides a semi-automatic intensive curing room cigarette holder, wherein a plurality of position marks are arranged at intervals on the cigarette carrying chain.

[0019] Position markings improve tobacco loading speed and efficiency. They quickly determine the placement of tobacco rods, eliminating the need for repeated measurements and adjustments. This streamlines and standardizes loading operations, making it easier to identify and address issues during subsequent maintenance inspections. Furthermore, position markings help distribute tobacco rods more evenly along the chain, ensuring that heat from the flue-curing barn is more evenly distributed across each rod, improving tobacco leaf curing quality. Furthermore, multiple position markings serve as a reference for determining the operating status of the chain, enabling timely detection and adjustment of chain deviations or failures, thereby improving equipment reliability and stability.

[0020] Optionally, the utility model provides a semi-automatic intensive curing room cigarette stand, which also includes at least two support wheels, which are respectively supported between the two transmission wheels on the two cigarette carrying chains.

[0021] By providing at least two support wheels, the forces acting on the chain are balanced, distributing the weight of the cigarette rods and tobacco leaves, as well as the tension of the chain itself, ensuring even force across the chain and improving stability. Furthermore, the support wheels prevent the chain from sagging due to gravity, which can lead to poor engagement between the chain and the drive wheel. The presence of multiple support wheels evenly distributes the load, reducing the risk of damage from localized overloads and improving system reliability. Furthermore, if a single support wheel fails, it can be replaced independently without affecting the normal operation of the cigarette holder.

[0022] Optionally, the utility model provides a semi-automatic intensive baking room cigarette stand, which also includes a support rod, which is vertically spaced apart on the outside of the cigarette carrying chain, and the support rod has a rotating shaft extending toward the direction of the cigarette carrying chain, and the support wheel is rotatably connected to the support rod via the rotating shaft.

[0023] The support rods, arranged vertically and spaced apart on the outside of the cigarette-carrying chain, provide a stable support structure for the device, preventing the chain from shaking or shifting, ensuring that the cigarette rods are placed stably and facilitating even heating during baking. At the same time, the setting of the rotating shaft allows for more accurate installation of the support wheel, which neither hinders the movement of the chain nor hinders the chain, thus improving the applicability of loading cigarette rods of different lengths. Furthermore, the combination of the support rod and support wheel provides additional support for the cigarette-carrying chain, enhancing the reliability of the cigarette loading stand and reducing the probability of failure due to loose or deformed chains, thereby extending the service life of the device. Furthermore, the support wheel is rotatably connected to the support rod via a rotating shaft, allowing for easy removal and installation in the event of a failure or when replacement is required.

[0024] Optionally, the utility model provides a semi-automatic intensive baking room cigarette holder, wherein the cigarette carrying chain has multiple layers spaced apart in an upper and lower manner; the support rod and the bracket are connected by a reinforcing rod; and universal wheels are respectively provided at the bottom of the bracket and the support rod.

[0025] By installing multi-layered tobacco chains, the tobacco loading capacity and efficiency of the flue-curing barn can be increased. This ensures more even distribution of tobacco leaves, facilitating heat transfer and improving curing quality. Furthermore, reinforcing rods connecting the support rods and brackets enhance the structural strength of the tobacco loading bracket, reducing the risk of shaking and deformation, and enabling it to withstand greater tobacco loads. Furthermore, universal wheels are installed at the base of the brackets and support rods to facilitate tobacco loading and unloading operations, reducing labor intensity and improving efficiency. They also allow for flexible adjustment of the mounting position, thereby optimizing the curing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0027] Figure 1 This is a three-dimensional schematic diagram of the overall structure of a semi-automatic intensive baking room with a cigarette stand according to an embodiment of the present invention;

[0028] Figure 2 This is an enlarged schematic diagram of a driven transmission rod of a semi-automatic intensive baking room with a cigarette stand according to an embodiment of the present invention;

[0029] Figure 3 It is an enlarged schematic diagram of a cigarette carrying chain for installing cigarette holders in a semi-automatic intensive baking room according to an embodiment of the present invention.

[0030] Description of reference numerals:

[0031] 1. Bracket; 2. Transmission wheel; 3. Rotating shaft; 4. Rotating drive device; 5. Cigarette carrying chain; 6. Transmission wheel group; 7. Driving wheel; 8. Driven wheel; 9. Driving transmission rod; 10. Driven transmission rod; 11. Position mark; 12. Support wheel; 13. Support rod; 14. Rotating shaft; 15. Reinforcement rod; 16. Universal wheel. DETAILED DESCRIPTION

[0032] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without making creative efforts shall fall within the scope of protection of the present invention.

[0033] The following combination Figures 1 to 3 , describing the embodiments of the present utility model.

[0034] like Figure 1 As shown, a specific implementation method of a semi-automatic intensive baking room cigarette holder provided by this embodiment includes a bracket 1 and a cigarette carrying chain 5. At least two transmission wheels 2 are rotatably arranged on the bracket 1, and the rotating shafts 3 of the two transmission wheels 2 are arranged in parallel and spaced apart. At least one transmission wheel 2 is connected to a rotating drive device 4; the cigarette carrying chains 5 have two symmetrically arranged chains, and the space between the two cigarette carrying chains 5 is suitable for setting up cigarette rods; the cigarette carrying chains 5 are respectively connected to the two transmission wheels 2, and the transmission wheels 2 drive the cigarette carrying chains 5 to rotate synchronously.

[0035] This embodiment utilizes a rotary drive device 4 to rotate the transmission wheel 2, thereby causing the cigarette carrying chain 5 to rotate synchronously. This eliminates the need for laborious manual handling during cigarette loading; the operator simply places the cigarette rods at the marked positions on the chain. This achieves semi-automatic operation of the cigarette loading process, improving loading efficiency and reducing operator labor intensity during loading. Furthermore, when loading cigarettes at high levels, it also reduces the safety hazards caused by the operator's movement during loading. Furthermore, the bracket 1 provides a stable support for the entire cigarette loading stand, ensuring that it does not experience shaking or instability during loading. The parallel and spaced arrangement of the two transmission wheels 2 and the structural design of the cigarette carrying chain 5 connected to each transmission wheel 2 ensure smooth rotation of the cigarette carrying chain 5, evenly carrying the cigarette rods and preventing them from falling or tilting during rotation. Furthermore, the reliable connection between the transmission wheel 2 and the cigarette carrying chain 5 ensures stable operation over extended periods of use, reducing the frequency of equipment failures and maintenance.

[0036] like Figure 1 As shown, this is a specific implementation of a semi-automatic intensive baking room cigarette stand provided in this embodiment. The bracket 1 has at least two transmission wheel groups 6 spaced apart, and each transmission wheel group 6 includes at least one driving wheel 7 and at least one driven wheel 8.

[0037] This embodiment utilizes multiple transmission wheel assemblies 6 arranged at intervals to provide more even support for the tobacco chain 5 during operation. The drive wheel 7 in each transmission wheel assembly 6 provides power, and the driven wheel 8 rotates in conjunction. Together, these forces ensure smooth chain operation, reduce chain sway and deflection, and improve the stability of the entire cigarette rack during operation. Furthermore, the multiple transmission wheel assemblies 6 disperse the weight of the tobacco rods. When a tobacco rod is placed between two tobacco chains 5, the weight is transferred to each transmission wheel assembly 6 via the chains. Consequently, the multiple wheels in each transmission wheel assembly 6 share the load, allowing them to withstand greater weight than a single transmission wheel 2 and adapt to tobacco curing operations of varying scales. This improves the load capacity of the cigarette rack. Furthermore, if a transmission wheel 2 fails, the presence of multiple transmission wheel assemblies 6 does not cause the entire rack to immediately cease operation. The failed transmission wheel 2 can be maintained or replaced independently without affecting the normal operation of other components. This reduces maintenance costs and time, and improves the availability and reliability of the equipment.

[0038] like Figure 1 As shown, this is a specific implementation of a semi-automatic intensive baking room cigarette stand provided by this embodiment, where the two driving wheels 7 in the two adjacent transmission wheel groups 6 are connected via a driving transmission rod 9.

[0039] This embodiment can ensure that the drive wheels 7 in two adjacent transmission wheel groups 6 rotate synchronously by connecting the drive transmission rod 9. The drive transmission rod 9 can directly transmit the power of one drive wheel 7 to the adjacent drive wheel 7, reducing the energy loss during the power transmission process. Compared with other indirect power transmission methods, this direct connection can improve the efficiency of power utilization, making the operation of the entire cigarette mounting stand more energy-efficient and efficient. At the same time, efficient power transmission also helps to improve the working efficiency of the cigarette mounting stand and speed up the loading and unloading speed of tobacco leaves. At the same time, this connection method makes the structure of the cigarette mounting stand more compact. In the limited space of the drying room, the compact structure can save space and is easy to install and maintain. In addition, when the cigarette mounting stand needs to be maintained or adjusted, this connection method is convenient for the staff to disassemble and install, so as to inspect and replace the drive wheel 7 or other components.

[0040] like Figure 1 As shown, this is a specific implementation of a semi-automatic intensive baking room cigarette stand provided by this embodiment, where the driving transmission rod 9 rotates synchronously with the two driving wheels 7 and the rotary driving device 4 is installed on one side of a driving wheel 7.

[0041] This embodiment, through its synchronous rotation design, ensures that the rotational speeds of the drive wheels 7 are completely consistent, thereby maintaining the synchronized movement speeds of the two cigarette loading chains 5. This ensures smooth movement of the cigarette rods on the cigarette loading chains 5 during installation, preventing tilting or slipping caused by varying chain speeds. This improves the reliability and safety of the loading process. Furthermore, the synchronous rotation of the drive transmission rod 9 and the two drive wheels 7 ensures efficient power transmission between the multiple drive wheels 7, minimizing energy loss and preventing stalls or instability caused by insufficient power at a single drive point, thereby improving transmission efficiency. Furthermore, the rotary drive device 4 is mounted on one side of one drive wheel 7. This layout makes the entire cigarette loading stand more compact, reduces space requirements, and facilitates installation and maintenance by maintenance personnel. Furthermore, if one drive wheel 7 fails, the other drive wheels 7 can continue to operate thanks to the connecting action of the drive transmission rod 9, significantly improving the reliability and stability of the entire cigarette loading stand. This prevents the failure of a single drive wheel 7 from paralyzing the entire system, ensuring continuous loading operations in the tobacco curing barn.

[0042] like Figure 1 As shown, this is a specific implementation of a semi-automatic intensive baking room cigarette stand provided by this embodiment, where the two driven wheels 8 in two adjacent driving wheel groups 6 are connected via a driven transmission rod 10.

[0043] This embodiment uses the driven transmission rod 10 to connect the driven wheels 8 so that the rotation of each driven wheel 8 is more synchronized. After the driven transmission rod 10 is connected to the driven wheels 8, when one driven wheel 8 is driven by the cigarette chain 5 and rotates, the driven transmission rod 10 can quickly transmit power to the adjacent driven wheel 8, so that the rotation speed of all driven wheels 8 remains consistent, improving the operating stability of the cigarette loading stand and reducing the occurrence of cigarette rod shaking or tilting due to asynchrony. At the same time, by connecting adjacent driven wheels 8 through the driven transmission rod 10, power can be transmitted more smoothly between the transmission wheel group 6. Compared with the case where there is no driven transmission rod 10 connection, the power transmission path is more direct, reducing energy loss and improving the working efficiency of the entire cigarette loading system. In addition, the driven transmission rod 10 connected to the driven wheel 8 increases the stability of the structure of the entire cigarette holder. With the connection of the driven transmission rod 10, a more stable overall structure is formed between the adjacent transmission wheel groups 6, and the mutual support and restraining effect between the various components are enhanced, which can effectively resist external interference and reduce the risk of deformation or damage of the cigarette holder during use.

[0044] like Figure 1 As shown, this is a specific implementation of a semi-automatic intensive baking room cigarette stand provided by this embodiment, and the driven transmission rod 10 rotates synchronously with the two driven wheels 8.

[0045] This embodiment ensures the synchronization of the two driven wheels 8 during operation by synchronously rotating the driven transmission rod 10 and the two driven wheels 8. This ensures that the two chains 5 maintain consistent motion and prevents speed differences due to asynchronous rotation of the two driven wheels 8. This ensures greater stability during the tobacco rod installation process, preventing tobacco rod shaking or tilting, and ensuring a stable position of tobacco leaves during curing, which improves curing quality. Furthermore, the synchronous rotation effectively reduces vibration caused by asynchronous transmission and lowers the vibration amplitude of the entire tobacco loading stand, thereby improving the stability and reliability of the equipment and extending its service life. Furthermore, the synchronous rotation allows for smoother power transfer from one driven wheel 8 to the other, ensuring efficient power transfer between the two wheels 8, reducing energy loss and improving power utilization efficiency. Furthermore, when a large number of tobacco rods are installed on the tobacco loading stand in a curing barn, the equipment must bear a heavy load. The synchronous rotation of the driven transmission rod 10 and the driven wheels 8 effectively shares the load, ensuring normal operation of the equipment even under heavy loads, thereby improving the equipment's load-bearing capacity and operating efficiency.

[0046] like Figure 1 and Figure 2 As shown in FIG. 1 , a specific implementation method of a semi-automatic intensive curing room cigarette holder installation method provided by this embodiment is provided. A plurality of position marks 11 are arranged at intervals on the cigarette carrying chain 5 .

[0047] This embodiment can quickly determine the placement of the tobacco rods through the position marker 11, without the need for repeated measurements and adjustments, thereby improving the speed and efficiency of tobacco loading. At the same time, the position marker 11 helps to ensure that the tobacco rods are more evenly distributed on the tobacco carrying chain 5, so that when baking in the baking room, heat can be more evenly transferred to each tobacco rod, thereby improving the baking quality of the tobacco leaves. The provision of multiple position markers 11 makes the tobacco loading operation more standardized and normalized. Operators can perform accurate operations based on the position markers 11, thereby reducing human errors. At the same time, it is also easier to find and deal with problems during subsequent maintenance and inspection. In addition, the position marker 11 can be used as a reference to help determine the operating status of the tobacco carrying chain 5. If the chain is offset or fails, it can be discovered and adjusted in time through the position marker 11, thereby improving the reliability and stability of the equipment.

[0048] like Figure 1 As shown, this is a specific implementation of a semi-automatic intensive curing room cigarette stand provided by this embodiment, which also includes at least two support wheels 12, which are supported between the two transmission wheels 2 on the two cigarette carrying chains 5 respectively.

[0049] By providing at least two support wheels 12, this embodiment can effectively balance the stress on the chain during operation. Since the cigarette chain 5 needs to bear the weight of cigarette rods and tobacco leaves during operation, coupled with the tension of the chain itself and the inertial force generated by movement, it is prone to uneven stress. The presence of the support wheels 12 can disperse these forces, making the stress more evenly distributed across the chain, thereby improving the stability of the chain. At the same time, the support wheels 12 can support the chain and prevent it from sagging due to gravity. Without the support wheels 12, the chain may sag after long-term use due to its own weight and the weight of the items it carries, resulting in poor engagement between the chain and the transmission wheel 2, affecting transmission efficiency and stability. The distribution of multiple support wheels 12 can also make the load on the chain more evenly distributed across each support point, avoiding the occurrence of local overloads. This can reduce the risk of damage to the chain due to localized excessive stress and improve the reliability of the entire system. In addition, if a support wheel 12 malfunctions, it can be replaced individually without affecting the normal operation of the entire cigarette holder.

[0050] like Figure 1 and Figure 3 As shown, this embodiment provides a specific implementation of a semi-automatic intensive baking room cigarette stand, which also includes a support rod 13, which is vertically spaced apart on the outside of the cigarette carrying chain 5, and has a rotating shaft 14 extending toward the cigarette carrying chain 5 on the support rod 13, and the support wheel 12 is rotatably connected to the support rod 13 via the rotating shaft 14.

[0051] By vertically spacing support rods 13 outside the cigarette-carrying chains 5, this embodiment provides a stable support structure for the entire device. This effectively prevents the cigarette-carrying chains 5 from shaking or shifting during operation, ensuring that the cigarette rods can be stably placed between the two cigarette-carrying chains 5 and facilitating uniform heating of the cigarette rods during the roasting process. Furthermore, the provision of rotating shafts 14 on the support rods 13 allows the support wheels 12 to be accurately positioned, ensuring that the contact position between the support wheels 12 and the cigarette-carrying chains 5 is just right. This prevents the movement of the cigarette-carrying chains 5 from being obstructed while effectively supporting the chains 5, preventing them from sagging or deforming due to the weight of the cigarette rods. This improves the applicability of loading cigarette rods of different lengths. Furthermore, the combination of support rods 13 and support wheels 12 provides additional support for the cigarette-carrying chains 5, enhancing the reliability of the entire cigarette loading stand. Over extended use, this reduces the probability of failures caused by chain loosening or deformation, thereby extending the device's service life. In addition, when the support wheel 12 fails or needs to be replaced, since the support wheel 12 is rotatably connected to the support rod 13 via the rotating shaft 14, it can be easily disassembled and installed.

[0052] like Figure 1 and Figure 3 As shown, this is a specific implementation of a semi-automatic intensive baking room cigarette holder provided by this embodiment, the cigarette carrying chain 5 has multiple layers spaced apart in the upper and lower parts; the support rod 13 and the bracket 1 are connected by a reinforcing rod 15; the bottom of the bracket 1 and the support rod 13 are respectively provided with a universal wheel 16.

[0053] By providing a multi-layered tobacco chain 5, this embodiment can accommodate more tobacco rods within the same space, thereby increasing the tobacco loading capacity of the curing room and improving the efficiency of the curing room. The multi-layered design can make the tobacco leaves more evenly distributed in the curing room, which is conducive to the uniform transfer of heat, thereby improving the quality and consistency of tobacco leaf curing. At the same time, by connecting the support rod 13 and the bracket 1 with a reinforcing rod 15, the connection between the support rod 13 and the bracket 1 can be made more secure, thereby improving the structural strength of the entire tobacco loading stand. When the tobacco chain 5 carries tobacco leaves and the stand moves, it can better maintain stability and reduce the risk of shaking and deformation. Moreover, through the reinforcement of the reinforcing rod 15, the tobacco loading stand can withstand heavier tobacco leaf loads, ensuring that it will not be damaged due to excessive load during long-term use. In addition, by arranging universal wheels 16 at the bottom of the bracket 1 and the support rod 13, the cigarette loading stand can be easily moved in the baking room, which facilitates the loading and unloading operations of cigarettes, reduces the labor intensity of manual handling, and improves work efficiency. Moreover, according to the actual situation in the baking room and the baking requirements, the position of the cigarette loading stand can be flexibly adjusted so that the cigarette rods can better receive the heat distribution, thereby optimizing the baking effect.

[0054] Working principle: First, move the cigarette loading stand into the baking room, and flexibly adjust the position of the cigarette loading stand according to the baking requirements. After the adjustment is completed, the operator starts the rotary drive device 4 of each layer, drives the transmission rod 9 and the driving wheel 7 to start rotating, and the driven wheel 8, the cigarette carrying chain 5, the support wheel 12, and the driven transmission rod 10 are all driven synchronously. At this time, after the operator confirms that the transmission is normal, he stands at the rotary drive device 4 of the cigarette carrying chain 5 and starts the cigarette loading operation. The cigarette rods are placed in sequence according to the position mark 11 on the cigarette carrying chain 5. After the cigarette rods are evenly spread on the entire cigarette carrying chain 5, the rotary drive device 4 is immediately turned off. At this time, the cigarette rods of the cigarette carrying chain 5 on the first layer are placed. Then, the cigarette loading operation on the second, third or higher layers is started. The subsequent cigarette loading process is the same as that on the first layer, so it will not be repeated here.

[0055] Although the embodiments of the present invention have been described with reference to the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations are all within the scope of the present invention.

Claims

1. A semi-automatic intensive baking room with a cigarette stand, characterized in that: include: A bracket (1), wherein at least two transmission wheels (2) are rotatably arranged on the bracket (1), the rotation axes (3) of the two transmission wheels (2) are arranged in parallel and spaced apart, and at least one of the transmission wheels (2) is connected to a rotation drive device (4); The cigarette carrying chain (5) has two symmetrically arranged ones, and the space between the two cigarette carrying chains (5) is suitable for placing cigarette rods; The cigarette carrying chain (5) is connected to the two transmission wheels (2) respectively, and the cigarette carrying chain (5) is driven to rotate synchronously by the transmission wheels (2).

2. The semi-automatic intensive baking room cigarette stand according to claim 1, characterized in that: The bracket (1) is provided with at least two transmission wheel sets (6) arranged at intervals, and each transmission wheel set (6) comprises at least one driving wheel (7) and at least one driven wheel (8).

3. The semi-automatic intensive baking room cigarette stand according to claim 2, characterized in that: The two driving wheels (7) in two adjacent transmission wheel groups (6) are connected via a driving transmission rod (9).

4. The semi-automatic intensive baking room cigarette stand according to claim 3, characterized in that: The driving transmission rod (9) rotates synchronously with the two driving wheels (7), and the rotary driving device (4) is installed on one side of one of the driving wheels (7).

5. The semi-automatic intensive baking room cigarette stand according to claim 2, characterized in that: The two driven wheels (8) in two adjacent transmission wheel groups (6) are connected via a driven transmission rod (10).

6. The semi-automatic intensive baking room cigarette stand according to claim 5, characterized in that: The driven transmission rod (10) rotates synchronously with the two driven wheels (8).

7. The semi-automatic intensive baking room cigarette stand according to claim 1, characterized in that: A plurality of position marks (11) are arranged at intervals on the cigarette carrying chain (5).

8. The semi-automatic intensive baking room cigarette stand according to any one of claims 1 to 7, characterized in that: Also includes: There are at least two supporting wheels (12), which are respectively supported between the two transmission wheels (2) on the two cigarette carrying chains (5).

9. The semi-automatic intensive baking room cigarette stand according to claim 8, characterized in that: Also includes: A support rod (13) is vertically spaced apart and arranged outside the cigarette carrying chain (5); the support rod (13) has a rotating shaft (14) extending in the direction of the cigarette carrying chain (5); and the support wheel (12) is rotatably connected to the support rod (13) via the rotating shaft (14).

10. The semi-automatic intensive baking room cigarette stand according to claim 9, characterized in that: The cigarette carrying chain (5) has multiple layers spaced apart from each other. The support rod (13) and the bracket (1) are connected via a reinforcing rod (15); Universal wheels (16) are respectively provided at the bottoms of the bracket (1) and the support rod (13).