CN220670089U - Multi-return drying device - Google Patents

Multi-return drying device Download PDF

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Publication number
CN220670089U
CN220670089U CN202322051610.1U CN202322051610U CN220670089U CN 220670089 U CN220670089 U CN 220670089U CN 202322051610 U CN202322051610 U CN 202322051610U CN 220670089 U CN220670089 U CN 220670089U
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China
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conveying mechanism
pipes
box
fixedly connected
conveying
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CN202322051610.1U
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Chinese (zh)
Inventor
苏奇
刘玉亮
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Henan Haiqi Environmental Protection Technology Co ltd
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Henan Haiqi Environmental Protection Technology Co ltd
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Abstract

The utility model provides a many return strokes drying device, relates to material stoving technical field, fixedly connected with conveying mechanism that the equidistance was arranged in the box, and install guiding mechanism respectively on the conveying mechanism of centre and downside, two guiding mechanism respectively with upside and downside conveying mechanism's discharge end corresponds, install heating mechanism in the conveying mechanism, and heating mechanism's inlet end is located outside the box, fixedly connected with air discharge fan that the equidistance was arranged on the box; according to the multi-return drying device, biomass charcoal to be dried is conveyed through the conveying mechanism, heat is provided for the biomass charcoal on the conveying mechanism through the heat supply mechanism, the biomass charcoal on the conveying mechanism is dried, the biomass charcoal falling off from the conveying mechanism is guided through the guide mechanism, the biomass charcoal is uniformly sprinkled on the conveying mechanism on the lower side, and the phenomenon that the biomass charcoal is piled up together to influence the drying effect is avoided.

Description

Multi-return drying device
Technical Field
The utility model relates to the technical field of material drying, in particular to a multi-return drying device.
Background
The biomass charcoal needs to be dried in the processing process, the biomass charcoal needs to be dried for many times during drying, time and labor are consumed, and meanwhile, the biomass charcoal can be piled up during drying, so that the drying effect can be influenced.
Disclosure of Invention
In order to overcome the defects in the background art, the utility model discloses a multi-return drying device, which is used for conveying biomass charcoal to be dried through a conveying mechanism, supplying heat to the biomass charcoal on the conveying mechanism through a heat supply mechanism, drying the biomass charcoal on the conveying mechanism, guiding the biomass charcoal falling off the conveying mechanism through a flow guiding mechanism, and uniformly spraying the biomass charcoal on the conveying mechanism at the lower side, so that the biomass charcoal is prevented from being piled up together, and the drying effect is prevented from being influenced.
In order to achieve the aim of the utility model, the utility model adopts the following technical scheme:
the utility model provides a many return strokes drying device, includes the box, and fixedly connected with switch group on the box, switch group's input is connected with external power source's output, fixedly connected with equidistance arranges conveying mechanism in the box, and installs guiding mechanism on middle and the conveying mechanism of downside respectively, two guiding mechanisms respectively with upside and downside conveying mechanism's discharge end corresponding, install heating mechanism in the conveying mechanism, and heating mechanism's inlet end is located outside the box, fixedly connected with equidistance arranges the air discharge fan on the box, conveying mechanism and air discharge fan's power supply input and switch group's power supply output electricity are connected.
The conveying mechanism comprises a locating rack, a servo motor and a conveying belt, wherein the locating racks are arranged at equal intervals and are fixedly connected with the inside of the box body, two ends of the locating rack are respectively located outside the box body, two ends of the locating rack located outside the box body are respectively connected with a connecting shaft in a rotating mode, the connecting shaft at one end penetrates through the wall of the locating rack to be connected with the servo motor, a belt pulley is fixedly connected to the connecting shaft, the belt pulleys are connected through the conveying belt, and a flow guiding mechanism is installed on the locating rack at the middle and the lower side.
The guide mechanism comprises a guide frame, a first guide plate and a second guide plate, wherein the guide frame is positioned on the positioning frame and is fixedly connected, the guide frame is internally connected with the first guide plate through a movable shaft, the number of the second guide plates is two, the two second guide plates are respectively positioned on the positioning frame at the middle and upper sides and are fixedly connected, and the positions of the second guide plates and the guide frame are corresponding.
One end of the first guide plate is in contact connection with the upper surface of the conveying belt.
One end of the second guide plate positioned in the positioning frame is in contact connection with the conveyor belt.
The heat supply mechanism comprises heat discharging pipes, first shunt pipes, second shunt pipes and heat supply pipes, wherein the heat discharging pipes are arranged at equal intervals and are fixedly connected with the inside of the locating frame, the heat discharging pipes are located between the conveying belts, the heat discharging holes in the heat discharging pipes correspond to the belts on the upper sides of the conveying belts, the heat discharging pipes are communicated through the first shunt pipes, the first shunt pipes are communicated with each other through the second shunt pipes, the heat supply pipes are fixedly connected with the inside of the air inlets of the second shunt pipes, and the air inlets of the heat supply pipes are located outside the box body.
Due to the adoption of the technical scheme, the utility model has the following beneficial effects:
according to the multi-return drying device, biomass charcoal to be dried is conveyed through the conveying mechanism, heat is provided for the biomass charcoal on the conveying mechanism through the heat supply mechanism, the biomass charcoal on the conveying mechanism is dried, the biomass charcoal falling off from the conveying mechanism is guided through the guide mechanism, the biomass charcoal is uniformly sprinkled on the conveying mechanism on the lower side, and the phenomenon that the biomass charcoal is piled up together to influence the drying effect is avoided.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a cross-sectional view of the present utility model;
FIG. 3 is an enlarged schematic view of the structure of the present utility model at A;
1. a case; 2. a heating mechanism; 201. a heat discharging pipe; 202. a first shunt; 203. a second shunt tube; 204. a heat supply pipe; 3. a diversion mechanism; 301. a flow guiding frame; 302. a first deflector; 303. a second deflector; 4. a conveying mechanism; 401. a positioning frame; 402. a servo motor; 403. a conveyor belt; 5. a power switch group.
Detailed Description
The utility model will be explained in more detail by the following examples, the purpose of which is to protect all technical improvements within the scope of the utility model.
The utility model provides a many return strokes drying device that combines 1~3 of attached hereto, includes box 1, and fixedly connected with switch group 5 on the box 1, switch group 5's input is connected with the output of external power source, be equipped with the conveying mechanism 4 of equidistance range in the box 1, and install guide mechanism 3 on middle and downside conveying mechanism 4 respectively, two guide mechanisms 3 respectively with upside and downside conveying mechanism 4's discharge end corresponding, install heating mechanism 2 in the conveying mechanism 4, and heating mechanism 2's inlet end is located box 1 outside, fixedly connected with air discharge fan of equidistance range on the box 1, the power supply input of conveying mechanism 4 and air discharge fan is connected with switch group 5's power supply output electricity, be equipped with the shift knob corresponding with all consumer in conveying mechanism 4 and the air discharge fan on the switch group 5 to control conveying mechanism 4 and all consumer work in the air discharge fan through switch group 5.
The conveying mechanism 4 comprises a positioning frame 401, a servo motor 402 and a conveying belt 403, wherein the positioning frame 401 is arranged at equal intervals and is fixedly connected with the inside of the box body 1, two ends of the positioning frame 401 are respectively located outside the box body 1, two ends of the positioning frame 401 located outside the box body 1 are respectively and rotatably connected with a connecting shaft, the connecting shaft at one end penetrates through the frame wall of the positioning frame 401 and is connected with the servo motor 402, a belt pulley is fixedly connected on the connecting shaft, the belt pulleys are connected through the conveying belt 403, small particle protrusions are arranged on the conveying belt 403, biomass charcoal is prevented from being accumulated together, and a flow guiding mechanism 3 is arranged on the positioning frame 401 at the middle and lower sides.
The flow guiding mechanism 3 comprises a flow guiding frame 301, a first flow guiding plate 302 and a second flow guiding plate 303, the flow guiding frame 301 is located on a locating frame 401 and is fixedly connected, the flow guiding frame 301 is internally connected with the first flow guiding plate 302 through a movable shaft, the number of the second flow guiding plates 303 is two, the two second flow guiding plates 303 are respectively located on the locating frames 401 on the middle and upper sides and are fixedly connected, and the positions of the second flow guiding plates 303 and the flow guiding frame 301 are corresponding.
One end of the first deflector 302 is in contact connection with the upper surface of the conveyor belt 403, and small particle protrusions on the conveyor belt 403 drive the first deflector 302 to shake.
One end of the second baffle 303, which is located in the positioning frame 401, is in contact connection with the conveying belt 403.
The heat supply mechanism 2 comprises heat discharging pipes 201, first shunt pipes 202, second shunt pipes 203 and a heat supply pipe 204, wherein the heat discharging pipes 201 are arranged in an equidistant manner in the positioning frame 401 and are fixedly connected, the heat discharging pipes 201 are positioned between the conveying belts 403, heat discharging holes in the heat discharging pipes 201 correspond to belts on the upper sides of the conveying belts 403, the heat discharging pipes 201 are communicated through the first shunt pipes 202, the first shunt pipes 202 are communicated through the second shunt pipes 203, the heat supply pipes 204 are fixedly connected in air inlets of the second shunt pipes 203, the air inlets of the heat supply pipes 204 are positioned outside the box body 1, and the heat discharging pipes 204 are connected with air outlets of an external hot air furnace.
A many return strokes drying device, when using, the staff is connected the gas vent of heat supply pipe 204 and hot gas stove, the heat supply pipe 204 is discharged hot gas to the exhaust pipe 201 through second shunt tube 203 and first shunt tube 202, discharge hot gas through heat release pipe 201, start servo motor 402 through switch group 5, servo motor 402 drives conveyer belt 403 through connecting axle and belt pulley and removes, carry biomass charcoal through conveyer belt 403, carry the in-process through the steam that heat release pipe 201 discharged to biomass charcoal, the pyrolysis gas that produces during the stoving is discharged through the exhaust fan on box 1, the biomass charcoal that the uppermost conveyer belt 403 drops on second guide plate 303, with biomass charcoal water conservancy diversion frame 301 in through second guide plate 303, conveyer belt 403 drives first guide plate 302 in the removal in-process and shakes, the biomass charcoal that makes guide frame 301 shake through first guide plate 302 evenly and spill on the conveyer belt 403 of downside, avoid biomass charcoal to pile up together.
While the utility model has been particularly shown and described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the utility model as defined by the appended claims.

Claims (6)

1. The utility model provides a many return strokes drying device, includes box (1), and fixedly connected with switch group (5) on box (1), switch group (5)'s input is connected, characterized by with external power source's output: conveying mechanism (4) that fixedly connected with equidistance was arranged in box (1), and install guiding mechanism (3) on middle and downside conveying mechanism (4) respectively, two guiding mechanism (3) respectively with upside and downside conveying mechanism (4) discharge end corresponding, install heating mechanism (2) in conveying mechanism (4), and the inlet end of heating mechanism (2) is located outside box (1), fixedly connected with air discharge fan that the equidistance was arranged on box (1), the power supply input of conveying mechanism (4) and air discharge fan is connected with the power supply output electricity of switch group (5).
2. The multi-return drying apparatus according to claim 1, wherein: conveying mechanism (4) are including locating rack (401), servo motor (402) and conveyer belt (403), in locating rack (401) equidistance range and box (1) and fixed connection, and the both ends of locating rack (401) are located outside box (1) respectively, the both ends that locating rack (401) are located outside box (1) are rotated respectively and are connected with the connecting axle, and the connecting axle of one end passes the frame wall of locating rack (401) and is connected with servo motor (402), fixedly connected with belt pulley on the connecting axle, and be connected through conveyer belt (403) between the belt pulley, install guiding mechanism (3) on middle and downside locating rack (401).
3. The multi-return drying apparatus according to claim 1, wherein: the guide mechanism (3) comprises a guide frame (301), a first guide plate (302) and a second guide plate (303), wherein the guide frame (301) is positioned on the positioning frame (401) and is fixedly connected, the guide frame (301) is internally connected with the first guide plate (302) through a movable shaft, the number of the second guide plates (303) is two, the two second guide plates (303) are respectively positioned on the positioning frame (401) on the middle and upper side and are fixedly connected, and the positions of the second guide plates (303) and the guide frame (301) are corresponding.
4. A multi-return drying apparatus according to claim 3, wherein: one end of the first guide plate (302) is in contact connection with the upper surface of the conveying belt (403).
5. A multi-return drying apparatus according to claim 3, wherein: one end of the second guide plate (303) positioned in the positioning frame (401) is in contact connection with the conveying belt (403).
6. The multi-return drying apparatus according to claim 1, wherein: the heat supply mechanism (2) comprises heat discharging pipes (201), first shunt pipes (202), second shunt pipes (203) and heat supplying pipes (204), wherein the heat discharging pipes (201) are arranged at equal intervals and fixedly connected with the locating frame (401), the heat discharging pipes (201) are located between the conveying belts (403), heat discharging holes in the heat discharging pipes (201) correspond to the belt bodies on the upper sides of the conveying belts (403), the heat discharging pipes (201) are communicated through the first shunt pipes (202), the first shunt pipes (202) are communicated through the second shunt pipes (203), the heat supplying pipes (204) are fixedly connected in air inlets of the second shunt pipes (203), and the air inlets of the heat supplying pipes (204) are located outside the box body (1).
CN202322051610.1U 2023-08-02 2023-08-02 Multi-return drying device Active CN220670089U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322051610.1U CN220670089U (en) 2023-08-02 2023-08-02 Multi-return drying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322051610.1U CN220670089U (en) 2023-08-02 2023-08-02 Multi-return drying device

Publications (1)

Publication Number Publication Date
CN220670089U true CN220670089U (en) 2024-03-26

Family

ID=90333241

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322051610.1U Active CN220670089U (en) 2023-08-02 2023-08-02 Multi-return drying device

Country Status (1)

Country Link
CN (1) CN220670089U (en)

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