Continuous straw particle carbonization mixing equipment

The device addresses inefficiencies in straw particle carbonization by enabling continuous two-stage carbonization and mixing, improving efficiency and quality through a stirrer mechanism and multiple chambers.

CN223096654UActive Publication Date: 2025-07-15JIAXING TONGAO ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422249193.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-07-15
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The existing equipment cannot perform rapid and continuous carbonization of straw particles, and cannot effectively stir and mix, resulting in insufficient carbonization of straw particles and waste of residual particles.

Method used

A continuous straw pellet carbonization mixing equipment including a mixing barrel, a rotating motor, a telescopic rod, a stirring shaft, a fixing frame and a small carbonization furnace is designed. The telescopic rod is driven by a rotating motor to drive the stirring shaft to stir, and the stirring shaft is supported by a fixed frame to rotate, and the second carbonization is performed through a small carbonization furnace.

Benefits of technology

The rapid continuous two-time carbonization and effective mixing of straw particles are achieved, which avoids the problems of insufficient carbonization of straw particles and waste of residual particles in one go, and improves the carbonization efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of crop carbonization equipment, and discloses continuous straw particle carbonization mixing equipment which comprises a floor, a base is inserted into the upper surface of the floor, and a stirring barrel, a baffle, a furnace and an opening and closing plate are inserted into the base. The straw particle stirring and mixing device is reasonable in structure, the effect of firmly supporting the straw particle stirring and mixing device when the straw particle stirring and mixing device needs to be used is achieved through the base, and the problem that the whole device inclines due to shaking when straw particles are stirred and mixed is solved; the effect that the straw particles can be conveniently taken out from the interior of the stirring barrel after being stirred and mixed is achieved, the problem that the carbonization mixing operation is slowed down due to the fact that the straw particles cannot be rapidly taken out after being stirred and mixed in the stirring barrel is solved, the furnace can be supported through a support, and the carbonization mixing efficiency is improved. The effect that the stove can be firmly fixed on the upper surface of the stirring barrel when the opening and closing plate is opened to leak the straw particles into the stirring barrel is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of crop carbonization equipment, in particular to a continuous straw particle carbonization and mixing equipment. Background Technique

[0002] With the harvesting of crops in rural areas, a large amount of straw is produced every year, such as straw, rice husks, rice bran, peanut skins, tobacco stalks... etc. These straws are not fully utilized. In some areas, they are even burned, which not only wastes resources but also pollutes the environment. In some areas, coal is often purchased from other places to solve the fuel needed for daily life. This not only increases the burden on farmers but also adds pressure to railway transportation. Therefore, it is necessary to process straw into straw particles and carbonize the straw particles to solve the fuel needed for daily life.

[0003] In a straw carbonization device disclosed in the Chinese Utility Model Patent Application Publication Specification CN210287219U, although the straw carbonization device proposed by the utility model enables the carbonization chamber in the carbonization furnace to be evenly heated around, so that the straw in the carbonization chamber is fully carbonized. Through stirring, the straw in the center of the carbonization chamber is also fully carbonized, which enhances the quality of the carbonized straw and also speeds up the carbonization speed. However, the existing device lacks a device for continuously carbonizing straw particles twice, and it is very easy to have the problem that some straw particles cannot be effectively carbonized at one time due to the large number of straw particles. It also lacks a device for stirring and mixing the remaining carbonized straw particles and the newly carbonized straw particles for re-carbonization, and it is very easy to have the problem of wasting the remaining straw particles after the first carbonization. Therefore, we propose a new device to solve the above problems. Content of the Utility Model

[0004] (I) Technical Problems to be Solved

[0005] Aiming at the deficiencies of the prior art, the utility model provides a continuous straw particle carbonization and mixing equipment, which solves the problems that the existing device cannot carbonize straw particles quickly and continuously twice and cannot quickly stir and mix straw particles.

[0006] (II) Technical Solutions

[0007] To achieve the above object, the utility model is realized by the following technical solutions: A continuous straw particle carbonization mixing device, including a floor, on the upper surface of which a base is inserted. Inside the base, a stirring barrel is inserted. On one side of the stirring barrel, a baffle is inserted. On the upper surface of the floor, a bracket is inserted. Inside the bracket, a furnace is sleeved. On one side of the furnace, a tightening bolt is inserted. Through the tightening bolt, an opening and closing plate is inserted on the lower surface of the furnace. On one side of the opening and closing plate, a handle is fixedly connected. Inside the furnace, a carbonization furnace is sleeved. On the upper surface of the furnace, a cover plate is inserted. On the upper surface of the cover plate, a plug is inserted. On one side of the furnace, a smoke outlet is fixedly connected. Inside the stirring barrel, a fixing frame is clamped. Inside the fixing frame, a rotating motor is inserted. One end of the rotating motor is rotationally connected to a telescopic rod, and on the surface of the telescopic rod, a stirring shaft is slidably connected.

[0008] Optionally, the leg on one side of the bracket protrudes outward to avoid the opening and closing position of the opening and closing plate, and the bottom of the base is a long-shaped support structure to firmly support the stirring barrel.

[0009] Optionally, on the upper surface of the cover plate, a closing handle structure is provided to open or close the cover plate through the closing handle structure. On the surface of the telescopic rod, three holes corresponding to the surface of the stirring shaft are provided to manually adjust the height of the telescopic rod inside the stirring shaft.

[0010] Optionally, a spring button is inserted inside the stirring shaft, and the bottom of the stirring shaft is made of rubber material to avoid damage to the straw particles during multiple rotations.

[0011] Optionally, a driving motor is inserted inside the floor, and one end of the driving motor is rotationally connected to a turntable. The lower surface of the turntable is a rotating shaft structure and can rotate inside the floor.

[0012] Optionally, a storage box is fixedly connected to the upper surface of the turntable. Inside the storage box, a small carbonization furnace is inserted. Inside the storage box, a blocking structure is provided to divide the inside of the storage box into two spaces.

[0013] Optionally, a partition plate is inserted on the upper surface of the small carbonization furnace. The number of small carbonization furnaces is two, which are respectively located inside two placement positions opened inside the storage box, so that the two small carbonization furnaces can be exchanged for use.

[0014] Optionally, a handrail is inserted on one side of the partition plate. The surface of the handrail is provided with an anti-slip pad structure to play an anti-slip role during use.

[0015] In summary, the technical effects and advantages of the utility model:

[0016] 1. The structure of this utility model is reasonable. Through the base, it achieves the effect of firmly supporting the overall equipment when needed, avoiding the problem that the overall equipment tilts due to shaking during the stirring and mixing of straw particles. Through the baffle, it achieves the effect of conveniently taking out the straw particles from the inside of the stirring barrel after stirring and mixing the straw particles, avoiding the problem that the speed of the carbonization mixing operation slows down because the straw particles cannot be quickly taken out after being stirred and mixed in the stirring barrel. Through the bracket, the stove can be supported, achieving the effect that the stove can be firmly fixed on the upper surface of the stirring barrel when the opening and closing plate is opened to let the straw particles fall into the inside of the stirring barrel, avoiding the problem that the stove topples when the opening and closing plate is opened. Through the tightening bolt, it achieves the effect that the opening and closing plate can be quickly opened to let the straw particles that have completed the first carbonization in the stove fall into the inside of the stirring barrel for stirring and mixing after the straw particles are carbonized in the stove, avoiding the problem that many workers need to take out the straw particles from the inside of the stove and transfer them to the inside of the stirring barrel for stirring and mixing.

[0017] 2. In this utility model, through the cover plate, it achieves the effect that when carbonizing the straw particles is needed, the cover plate can be opened to add the straw particles into the stove and the cover plate can be closed for airtightness during the carbonization process, avoiding the problems that the straw particles cannot be added into the stove for carbonization and temperature loss occurs during the carbonization of the straw particles. Through the plug, it achieves the effect that the gas inside the stove can be quickly discharged after the stove is used, avoiding the problem that the cover plate cannot be opened because the gas remains inside the stove. Through the smoke exhaust port, it achieves the effect that the smoke inside the stove can be quickly discharged when the stove is operating, avoiding the problem that the internal pressure increases because the smoke inside the stove cannot be discharged. Through the rotating motor and the telescopic rod, it achieves the effect of quickly stirring and mixing the straw particles inside the stirring barrel, avoiding the problem that after the straw particles are carbonized for the first time many times, there are still straw particles remaining inside the stirring barrel and they cannot be thoroughly stirred, mixed and taken out. Through the fixing frame, it achieves the effect that the stirring shaft can rotate stably inside the stirring barrel to stir and mix the straw particles, avoiding the problem that the stirring shaft becomes loose after being used many times. Through the spring button, it achieves the effect that the height of the stirring shaft can be quickly adjusted according to the usage conditions, avoiding the problem that the straw particles cannot be effectively stirred and mixed because the height of the stirring shaft cannot be adjusted.

[0018] 3. In the present utility model, through the driving motor, the storage box can be conveniently rotated so that the two small carbonization furnaces inside the storage box are rotated to one side of the stirring barrel to receive the stirred and mixed straw particles, avoiding the problem that the stirred and mixed straw particles cannot be quickly dispersed and leaked into the small carbonization furnace for secondary carbonization. Through the small carbonization furnace, the effect of quickly performing secondary carbonization on the mixed straw particles can be achieved, avoiding the problem that the straw particles in the carbonization furnace are too many to be carbonized evenly. Through the handrail, the effect of conveniently opening the partition plate to enable the stirred and mixed straw particles to quickly flow into the small carbonization furnace for secondary carbonization and closing the partition plate during carbonization for airtight carbonization can be achieved, avoiding the problems that the stirred and mixed straw particles cannot flow into the small carbonization furnace and cannot be airtight during carbonization. Description of the Drawings

[0019] Figure 1 It is a schematic structural diagram of the present utility model;

[0020] Figure 2 It is an exploded structural diagram of the stirring barrel of the present utility model;

[0021] Figure 3 It is a schematic structural diagram of FIG. A of the present utility model;

[0022] Figure 4 It is an exploded structural diagram of the stirring shaft of the present utility model;

[0023] Figure 5 It is an exploded structural diagram of the storage box of the present utility model.

[0024] In the figure: 1, floor; 2, base; 3, stirring barrel; 4, baffle; 5, bracket; 6, furnace; 7, tightening bolt; 8, opening and closing plate; 9, handle; 10, carbonization furnace; 11, cover plate; 12, plug; 13, smoke exhaust port; 14, fixing frame; 15, rotating motor; 16, telescopic rod; 17, stirring shaft; 18, spring button; 19, driving motor; 20, turntable; 21, storage box; 22, small carbonization furnace; 23, partition plate; 24, handrail. Detailed Embodiment

[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0026] Embodiment: Refer to Figures 1 - 5A continuous straw pellet carbonization mixing device shown in the figure includes a floor 1. A base 2 is inserted on the upper surface of the floor 1. A stirring barrel 3 is inserted inside the base 2. A baffle 4 is inserted on one side of the stirring barrel 3. A bracket 5 is inserted on the upper surface of the floor 1. A furnace 6 is sleeved inside the bracket 5. A tightening bolt 7 is inserted on one side of the furnace 6. An opening and closing plate 8 is inserted on the lower surface of the furnace 6 through the tightening bolt 7. A handle 9 is fixedly connected to one side of the opening and closing plate 8. A carbonization furnace 10 is sleeved inside the furnace 6. A cover plate 11 is inserted on the upper surface of the furnace 6. A plug 12 is inserted on the upper surface of the cover plate 11. A smoke exhaust port 13 is fixedly connected to one side of the furnace 6. A fixing frame 14 is clamped inside the stirring barrel 3. A rotating motor 15 is inserted inside the fixing frame 14. One end of the rotating motor 15 is rotatably connected to a telescopic rod 16. A stirring shaft 17 is slidably connected to the surface of the telescopic rod 16.

[0027] As a preferred implementation method in this embodiment, such as Figures 1 to 3As shown in the figure, a base 2 is inserted into the upper surface of the floor 1. The bottom of the base 2 is a long-shaped support structure that can firmly support the mixing barrel 3. The mixing barrel 3 is inserted into the interior of the base 2. A baffle 4 is inserted into one side of the mixing barrel 3. A bracket 5 is inserted into the upper surface of the floor 1. The legs on one side of the bracket 5 protrude outward to avoid the opening and closing position of the opening and closing plate 8. A stove 6 is sleeved inside the bracket 5. A tightening bolt 7 is inserted into one side of the stove 6. An opening and closing plate 8 is inserted into the lower surface of the stove 6 through the tightening bolt 7. A handle 9 is fixedly connected to one side of the opening and closing plate 8. A carbonization furnace 10 is sleeved inside the stove 6. A cover plate 11 is inserted into the upper surface of the stove 6. A closing handle structure is provided on the upper surface of the cover plate 11, and the cover plate 11 can be opened or closed through the closing handle structure. A plug 12 is inserted into the upper surface of the cover plate 11. A smoke exhaust port 13 is fixedly connected to one side of the stove 6. During use, through the base 2, the overall equipment can be supported, achieving the effect of firmly supporting the overall equipment when needed, and avoiding the problem of the overall equipment tilting due to shaking during the mixing of straw particles. Through the baffle 4, the baffle 4 can be manually opened or closed on one side of the mixing barrel 3, achieving the effect of conveniently removing the straw particles from the interior of the mixing barrel 3 after mixing the straw particles, and avoiding the problem of slowing down the carbonization mixing operation due to the inability to quickly remove the straw particles from the interior of the mixing barrel 3 after mixing is completed. It should be noted that the bottom of the mixing barrel 3 is inclined to allow the straw particles to slide out of the interior of the mixing barrel 3. Through the bracket 5, the stove 6 can be supported, achieving the effect that the stove 6 can be firmly fixed on the upper surface of the mixing barrel 3 when the opening and closing plate 8 is opened to let the straw particles fall into the mixing barrel 3, and avoiding the problem of the stove 6 tipping over when the opening and closing plate 8 is opened. Through the tightening bolt 7, the opening and closing plate 8 can be fixed to the lower surface of the stove 6 and the opening and closing plate 8 can be manually rotated, achieving the effect of quickly opening the opening and closing plate 8 to let the straw particles that have been carbonized for the first time fall into the mixing barrel 3 for mixing after the straw particles are carbonized inside the stove 6, and avoiding the problem of allowing workers to take out the straw particles from the interior of the stove 6 and transfer them to the mixing barrel 3 for mixing by themselves. Through the carbonization furnace 10, the straw particles can be quickly carbonized. Through the cover plate 11, the cover plate 11 can be manually opened or closed on the upper surface of the stove 6, achieving the effect of opening the cover plate 11 to add the straw particles into the stove 6 when carbonizing the straw particles and closing the cover plate 11 for airtightness during carbonization, and avoiding the problems of being unable to add the straw particles into the stove 6 for carbonization and temperature loss during carbonization of the straw particles. Through the plug 12, the plug 12 can be manually opened to discharge the gas inside the stove 6, achieving the effect of quickly discharging the gas inside the stove 6 after using the stove 6, and avoiding the problem of being unable to open the cover plate 11 due to gas remaining inside the stove 6. Through the smoke exhaust port 13, the smoke inside the stove 6 can be exhausted.It achieves the effect of quickly exhausting the internal flue gas when the stove 6 is operating, avoiding the problem of increased internal pressure caused by the inability to exhaust the flue gas inside the stove 6.

[0028] Such as Figure 4 And Figure 5As shown in the figure, in this embodiment, a fixing frame 14 is snap-fitted inside the mixing barrel 3. A rotating motor 15 is inserted inside the fixing frame 14. One end of the rotating motor 15 is rotatably connected to a telescopic rod 16. Three holes corresponding to the surface of the mixing shaft 17 are provided on the surface of the telescopic rod 16, and the height of the telescopic rod 16 inside the mixing shaft 17 can be manually adjusted. A mixing shaft 17 is slidably connected to the surface of the telescopic rod 16. A spring button 18 is inserted inside the mixing shaft 17. The bottom of the mixing shaft 17 is made of rubber material to avoid damaging the straw particles during multiple rotations. A driving motor 19 is inserted inside the floor 1. One end of the driving motor 19 is rotatably connected to a turntable 20. The lower surface of the turntable 20 is a shaft structure and can rotate inside the floor 1. A storage box 21 is fixedly connected to the upper surface of the turntable 20. A small carbonization furnace 22 is inserted inside the storage box 21. A blocking structure is provided inside the storage box 21 to divide the interior of the storage box 21 into two spaces. A partition 23 is inserted on the upper surface of the small carbonization furnace 22. The number of small carbonization furnaces 22 is two, which are respectively located inside two placement positions opened inside the storage box 21, so that the two small carbonization furnaces 22 can be exchanged for use. An armrest 24 is inserted on one side of the partition 23. An anti-slip pad structure is provided on the surface of the armrest 24 to play an anti-slip role during use. During the use process, through the rotating motor 15 and the telescopic rod 16, the mixing shaft 17 can be driven to mix inside the mixing barrel 3, achieving the effect of quickly mixing the straw particles inside the mixing barrel 3, and avoiding the problem that after the first carbonization of the straw particles multiple times, there are still straw particles remaining inside the mixing barrel 3 and they cannot be thoroughly mixed and taken out. Through the fixing frame 14, the rotating motor 15 and the mixing shaft 17 can be supported, achieving the effect that the mixing shaft 17 can rotate stably inside the mixing barrel 3 to mix the straw particles, and avoiding the problem that the mixing shaft 17 becomes loose after multiple uses. Through the spring button 18, the baffle 4 can be opened and the spring button 18 can be manually pressed to adjust the height of the mixing shaft 17 inside the mixing barrel 3, achieving the effect of quickly adjusting the height of the mixing shaft 17 according to the use conditions, and avoiding the problem that the straw particles cannot be effectively mixed due to the inability to adjust the height of the mixing shaft 17. Through the driving motor 19, the turntable 20 and the storage box 21 can be driven to rotate, achieving the effect of conveniently rotating the storage box 21 to rotate the two small carbonization furnaces 22 inside the storage box 21 to the side of the mixing barrel 3 to receive the mixed straw particles, and avoiding the problem that the mixed straw particles cannot be quickly dispersed and leaked into the small carbonization furnace 22 for the second carbonization. Through the small carbonization furnace 22, the mixed straw particles can be secondarily carbonized, achieving the effect of quickly secondarily carbonizing the mixed straw particles, and avoiding the problem that the straw particles inside the carbonization furnace 10 are too many to be carbonized evenly. Through the armrest 24, the partition 23 can be manually opened or closed on the upper surface of the small carbonization furnace 22.It has achieved the effect that the partition plate 23 can be conveniently opened to enable the straw particles after stirring and mixing to quickly flow into the interior of the small carbonization furnace 22 for secondary carbonization, and the partition plate 23 can be closed during carbonization for airtight carbonization, avoiding the problems that the straw particles after stirring and mixing cannot flow into the interior of the small carbonization furnace 22 and cannot be airtight during carbonization.

[0029] The working principle of this utility model:

[0030] During use, the overall device can be supported through the base 2, achieving the effect of firmly supporting the overall device when needed, avoiding the problem of the overall device tilting due to shaking during the stirring and mixing of straw particles. Through the baffle 4, the baffle 4 can be manually opened or closed on one side of the mixing barrel 3, achieving the effect of conveniently removing the straw particles from the inside of the mixing barrel 3 after the stirring and mixing of the straw particles, avoiding the problem of slowing down the carbonization mixing operation due to the inability to quickly remove the straw particles from the inside of the mixing barrel 3 after the stirring and mixing is completed. Through the support 5, the furnace 6 can be supported, achieving the effect that the furnace 6 can be firmly fixed on the upper surface of the mixing barrel 3 when the opening and closing plate 8 is opened to let the straw particles fall into the inside of the mixing barrel 3, avoiding the problem of the furnace 6 tipping over when the opening and closing plate 8 is opened. Through the tightening bolt 7, the opening and closing plate 8 can be fixed on the lower surface of the furnace 6 and the opening and closing plate 8 can be manually rotated, achieving the effect that the opening and closing plate 8 can be quickly opened after the straw particles are carbonized inside the furnace 6 to let the straw particles that have completed the first carbonization fall into the inside of the mixing barrel 3 for stirring and mixing, avoiding the problem of allowing workers to manually remove the straw particles from the inside of the furnace 6 and transfer them to the inside of the mixing barrel 3 for stirring and mixing. Through the carbonization furnace 10, the straw particles can be quickly carbonized. Through the cover plate 11, the cover plate 11 can be manually opened or closed on the upper surface of the furnace 6, achieving the effect that the cover plate 11 can be opened to add the straw particles into the inside of the furnace 6 when carbonization of the straw particles is needed and the cover plate 11 can be closed for airtightness during the carbonization process, avoiding the problems of being unable to add the straw particles into the inside of the furnace 6 for carbonization and temperature loss during the carbonization of the straw particles. Through the plug 12, the plug 12 can be manually opened to discharge the gas inside the furnace 6, achieving the effect that the gas inside the furnace 6 can be quickly discharged after the furnace 6 is used, avoiding the problem of being unable to open the cover plate 11 due to the gas remaining inside the furnace 6. Through the smoke exhaust port 13, the smoke inside the furnace 6 can be exhausted, achieving the effect that the smoke inside the furnace 6 can be quickly exhausted during the operation of the furnace 6, avoiding the problem of increased internal pressure due to the inability to exhaust the smoke inside the furnace 6. Through the rotating motor 15 and the telescopic rod 16, the stirring shaft 17 can be driven to stir inside the mixing barrel 3, achieving the effect of quickly stirring and mixing the straw particles inside the mixing barrel 3, avoiding the problem that after multiple first carbonizations of the straw particles, there are still straw particles remaining inside the mixing barrel 3 and being unable to thoroughly stir and mix and remove the remaining straw particles. Through the fixing frame 14, the rotating motor 15 and the stirring shaft 17 can be supported, achieving the effect that the stirring shaft 17 can rotate stably inside the mixing barrel 3 to stir and mix the straw particles, avoiding the problem of the stirring shaft 17 becoming loose after multiple uses. Through the spring button 18, the baffle 4 can be opened and the spring button 18 can be manually pressed to adjust the height of the stirring shaft 17 inside the mixing barrel 3.It achieves the effect of quickly adjusting the height of the stirring shaft 17 according to the usage conditions, avoiding the problem that the straw particles cannot be effectively stirred and mixed due to the inability to adjust the height of the stirring shaft 17. Through the driving motor 19, the turntable 20 and the storage box 21 can be driven to rotate, achieving the effect of conveniently rotating the storage box 21 to rotate the two small carbonization furnaces 22 inside the storage box 21 to the side of the stirring barrel 3 to receive the stirred and mixed straw particles, avoiding the problem that the stirred and mixed straw particles cannot be quickly dispersed and leaked into the small carbonization furnace 22 for secondary carbonization. Through the small carbonization furnace 22, the stirred and mixed straw particles can be subjected to secondary carbonization, achieving the effect of quickly performing secondary carbonization on the mixed straw particles, avoiding the problem that the straw particles in the carbonization furnace 10 are too many to be carbonized evenly. Through the handrail 24, the partition plate 23 can be manually opened or closed on the upper surface of the small carbonization furnace 22, achieving the effect of conveniently opening the partition plate 23 to enable the stirred and mixed straw particles to quickly flow into the small carbonization furnace 22 for secondary carbonization and closing the partition plate 23 during carbonization for airtight carbonization, avoiding the problems that the stirred and mixed straw particles cannot flow into the small carbonization furnace 22 and cannot be airtight during carbonization.,

[0031] The electrical components mentioned in this article are all electrically connected to the external main controller and 220V mains electricity, and the main controller can be a conventional known device such as a computer for control purposes.

[0032] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A continuous straw pellet carbonization mixing device, comprising a floor (1), characterized in that: The upper surface of the floor (1) is plugged with a base (2), the inside of the base (2) is plugged with a stirring barrel (3), one side of the stirring barrel (3) is plugged with a baffle (4), the upper surface of the floor (1) is plugged with a bracket (5), the inside of the bracket (5) is sleeved with a stove (6), one side of the stove (6) is plugged with a tightening bolt (7), the lower surface of the stove (6) is plugged with an opening and closing plate (8) through the tightening bolt (7), one side of the opening and closing plate (8) is fixedly connected with a handle (9), the inside of the stove (6) is sleeved with a carbonization furnace (10), the upper surface of the stove (6) is plugged with a cover plate (11), the upper surface of the cover plate (11) is plugged with a plug (12), one side of the stove (6) is fixedly connected with a smoke outlet (13), the inside of the stirring barrel (3) is clamped with a fixing frame (14), the inside of the fixing frame (14) is plugged with a rotating motor (15), one end of the rotating motor (15) is rotatably connected with a telescopic rod (16), and the surface of the telescopic rod (16) is slidably connected with a stirring shaft (17).

2. The continuous straw pellet carbonization mixing equipment according to claim 1, characterized in that: The legs on one side of the bracket (5) protrude outward to avoid the opening and closing position of the opening and closing plate (8), and the bottom of the base (2) is a long-shaped support structure to firmly support the stirring barrel (3).

3. The continuous straw pellet carbonization mixing device according to claim 1, wherein: The upper surface of the cover plate (11) is provided with a closing handle structure to open or close the cover plate (11) through the closing handle structure, and the surface of the telescopic rod (16) is provided with three holes corresponding to the surface of the stirring shaft (17) to manually adjust the height of the telescopic rod (16) inside the stirring shaft (17).

4. A continuous straw particle carbonization mixing device according to claim 1, characterized in that: A spring button (18) is plugged inside the stirring shaft (17), and the bottom of the stirring shaft (17) is made of rubber to avoid damaging the straw particles during multiple rotations.

5. A continuous straw particle carbonization mixing device according to claim 1, characterized in that: A driving motor (19) is plugged inside the floor (1), one end of the driving motor (19) is rotatably connected with a turntable (20), and the lower surface of the turntable (20) is a rotating shaft structure to rotate inside the floor (1).

6. The continuous straw pellet carbonization mixing equipment according to claim 5, characterized in that: A storage box (21) is fixedly connected to the upper surface of the turntable (20), a small carbonization furnace (22) is plugged inside the storage box (21), and a blocking structure is provided inside the storage box (21) to divide the inside of the storage box (21) into two spaces.

7. A continuous straw pellet carbonization mixing device according to claim 6, characterized in that: A partition plate (23) is plugged on the upper surface of the small carbonization furnace (22), and the number of the small carbonization furnaces (22) is two, which are respectively located inside two placement positions opened inside the storage box (21) to enable the two small carbonization furnaces (22) to be used interchangeably.

8. A continuous straw pellet carbonization mixing device according to claim 7, characterized in that: An armrest (24) is plugged on one side of the partition plate (23), and an anti-slip pad structure is provided on the surface of the armrest (24) to play an anti-slip role during use.

Citation Information

Patent Citations

  • Straw carbonization device

    CN210287219U