CN214283104U - Top material homogenizing device of grain drying equipment - Google Patents

Top material homogenizing device of grain drying equipment Download PDF

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Publication number
CN214283104U
CN214283104U CN202020764985.6U CN202020764985U CN214283104U CN 214283104 U CN214283104 U CN 214283104U CN 202020764985 U CN202020764985 U CN 202020764985U CN 214283104 U CN214283104 U CN 214283104U
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China
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section
cereal
bulk cargo
hot air
dryer
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CN202020764985.6U
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Chinese (zh)
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祁振杰
董邦超
江晓飞
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Hefei Maidaozhixing Machinery Co ltd
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Hefei Maidaozhixing Machinery Co ltd
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Abstract

The utility model discloses a cereal drying equipment top mixing device, including the desiccator, desiccator top-down divide into slow su mixing section, stoving section and row's material section, the blanking mouth has been seted up to the desiccator upper surface, mixing bin fixed mounting is in desiccator upper end surface blanking mouth position, slow su mixing section inside is located blanking mouth lower position and installs first bulk cargo mechanism, and first bulk cargo mechanism below is provided with second bulk cargo mechanism, the tuber pipe of intercommunication cold wind passageway and hot-blast channel is installed to the stoving section. The utility model discloses compact structure, reasonable, cereal evenly gets into slow su homocline section through the homocline storehouse, can separate into two parts through the baffle of group with cereal and scatter to the filter plate surface, and cereal slides on the filter plate surface, evenly scatters to the stoving section in its filtration pore, has improved the effect of slow su to the drying efficiency of cereal has been improved.

Description

Top material homogenizing device of grain drying equipment
Technical Field
The utility model relates to a grain drying technology field, more specifically say, in particular to grain drying equipment top mixing device.
Background
At present, when grains are dried, high drying speed and high quality are required, a circulating dryer generally adopts a drying-tempering drying process, the grains are firstly stored for a period of time, part of moisture is evaporated, then the grains are kept warm for a period of time, the moisture in the grains is diffused to the surface, the moisture gradient in the grains is reduced, and then the grains enter the next drying process. The process can improve the quality of the grains and reduce the energy consumption, and the grains contain certain moisture and are easy to stick together when entering the drying equipment, so that the tempering effect is poor, and the drying efficiency is reduced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a grain drying equipment top mixing device.
In order to achieve the above purpose, the utility model adopts the following technical scheme: a top material homogenizing device of grain drying equipment comprises a dryer, wherein the dryer is divided into a tempering material homogenizing section, a drying section and a material discharging section from top to bottom, the tempering material homogenizing section and the drying section are consistent in height, a cold air channel and a hot air channel are respectively arranged on two sides inside the dryer, a hot air bin is arranged on one side surface of the dryer at the position of the hot air channel and used for providing hot air for the hot air channel, a lifting machine is arranged at the bottom of the dryer, a feed inlet is communicated with one side of the lower end of the lifting machine, an integrated lifting machine upper section is arranged at the upper end of the lifting machine and penetrates through the upper end of the hot air channel, a winnowing device is connected to the upper section of the lifting machine, an induced duct and a material sliding pipe are communicated with one side of the winnowing device, the other end of the induced duct is communicated with the cold air channel, the other end of the material sliding pipe is communicated with a material homogenizing bin, and a material discharging opening is arranged on the upper surface of the dryer, even feed bin fixed mounting is in desiccator upper end surface blanking mouth position, the inside position that is located the blanking mouth lower part of tempering material homogenizing section is installed first bulk cargo mechanism, and first bulk cargo mechanism below is provided with second bulk cargo mechanism, the tuber pipe of intercommunication cold wind passageway and hot-blast passageway is installed to the stoving section.
Preferably, first bulk cargo mechanism includes riser and a plurality of connecting pipe, and is a plurality of the parallel mount of connecting pipe is established in slow su homocline section, riser fixed mounting is middle part on the connecting pipe, and the riser is located under the blanking mouth, and the equal fixed mounting in riser both sides has the baffler, and the baffler is the type of falling V.
Preferably, the second bulk cargo mechanism includes two filter plates, and two filter plates are located riser below both sides position respectively, and two filter plates constitute V type structure, have the clearance between two filter plates, and the filter plate surface evenly seted up a plurality of filtration pores that are used for the cereal through-hole.
Preferably, a V-shaped buffer plate is fixedly installed inside the homogenizing bin.
Compared with the prior art, the utility model has the advantages of:
the utility model discloses compact structure, reasonable, cereal evenly gets into slow su homocline section through the homocline storehouse, can separate into two parts through the baffle of group with cereal and scatter to the filter plate surface, and cereal slides on the filter plate surface, evenly scatters to the stoving section in its filtration pore, has improved the effect of slow su to the drying efficiency of cereal has been improved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a sectional view of the dryer of the present invention;
FIG. 2 is a structural diagram of a first material scattering mechanism of the present invention;
fig. 3 is a structural diagram of the equalizing bin of the utility model.
In the figure: 140 tempering material homogenizing sections, 141 blanking ports, 1421 supporting plates, 143 connecting pipes, 144 blocking plates, 150 drying sections, 151 air pipes, 152 filter plates, 160 discharging sections, 161 discharging bins, 171 material homogenizing bins, 1711V-shaped buffer plates, 172 air guiding pipes, 190 lifting machines, 191 feeding ports, 192 lifting machine upper sections, 193 air separation devices, 195 material sliding pipes, 300 cold air channels, 400 hot air channels and 500 hot air bins.
Detailed Description
The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, and the scope of the present invention can be more clearly and clearly defined.
Referring to fig. 1, 2 and 3, the utility model provides a top homogenizing device of grain drying equipment, which comprises a drier, the drier is divided into a tempering homogenizing section 140, a drying section 150 and a discharging section 160 from top to bottom, the tempering homogenizing section 140 is in height coincidence with the drying section 150, two sides of the inner part of the drier are respectively provided with a cold air channel 300 and a hot air channel 400, one side surface of the drier at the position of the hot air channel 400 is provided with a hot air bin 500, the hot air bin 500 is used for providing hot air to the hot air channel 400, the bottom of the drier is provided with a lifter 190, one side of the lower end of the lifter 190 is communicated with a feed inlet 191, the upper end of the lifter 190 is provided with an upper section 192 of an integrated structure, the upper section 192 of the lifter is communicated with the upper end of the hot air channel 400, the upper section of the lifter is connected with a winnowing device 193, one side of the winnowing device 193 is communicated with an air guiding pipe 172 and a material sliding pipe 195, the other end of the air guiding pipe 172 is communicated with the cold air channel 300, the other end of the material sliding pipe 195 is connected with a material homogenizing bin 171 in a communicating manner, a blanking port 141 is formed in the upper surface of the drying machine, the material homogenizing bin 171 is fixedly installed at the position of the blanking port 141 in the upper surface of the drying machine, a first material dispersing mechanism is installed at the position, below the blanking port 141, of the inside of the tempering material homogenizing section 140, a second material dispersing mechanism is arranged below the first material dispersing mechanism, an air pipe 151 communicated with a cold air channel 300 and a hot air channel 400 is installed in the drying section 150, and an air outlet filter is arranged at the bottom of the air pipe 151.
In this embodiment, the first material scattering mechanism includes a vertical plate and a plurality of connecting pipes 143, the plurality of connecting pipes 143 are parallel to be fixed on the tempering material-homogenizing section 140, the vertical plate is fixedly installed in the middle of the connecting pipe 143, the vertical plate is located right below the blanking port 141, blocking plates 144 are fixedly installed on both sides of the vertical plate, and the blocking plates 144 are inverted V-shaped.
In this embodiment, the second bulk cargo mechanism includes two filter plates 152, the two filter plates 152 are respectively located at two sides below the vertical plate, the two filter plates 152 form a V-shaped structure, a gap is formed between the two filter plates 152, and a plurality of filter holes for grain through holes are uniformly formed on the surface of the filter plates 152.
In this embodiment, a V-shaped buffer plate 1711 is fixedly installed inside the equalizing bin 171.
The working principle is as follows: cereal gets into lifting machine 190 from feed inlet 191, get into sorting unit 193 through lifting machine 190 effect, wind selector 193 is arranged in blowing into induced duct 172 with lighter dust and piece in the cereal, wind selector 193 is the device of the separation cereal piece that is common among the prior art, do not do much to describe here, dust and piece get into cold wind passageway 300 and discharge through exhaust pipe 182, cereal evenly gets into tempering material homogenizing section 140 through material homogenizing storehouse 171, can separate into two parts with cereal and scatter to the filter plate 152 surface through group baffle 144, cereal slides on the filter plate 152 surface, evenly scatter to stoving section 150 in its filtration pore, the effect of tempering has been improved, when cereal falls to stoving section 150, hot-blast entering tuber 151 and connecting pipe 143 that hot-blast storehouse 500 blew out, hot-blast air goes out the filter outlet and contacts with cereal from tuber 151 bottom, dry cereal.
Although the embodiments of the present invention have been described with reference to the accompanying drawings, various changes and modifications can be made by the owner within the scope of the appended claims, and the protection scope of the present invention should not be exceeded by the claims.

Claims (4)

1. The utility model provides a grain drying equipment top mixing device, includes the desiccator, its characterized in that: the dryer is divided into a tempering material homogenizing section, a drying section and a discharging section from top to bottom, the tempering material homogenizing section and the drying section are consistent in height, a cold air channel and a hot air channel are respectively arranged on two sides inside the dryer, a hot air bin is arranged on one side surface of the dryer at the position of the hot air channel and used for providing hot air to the hot air channel, a lifting machine is arranged at the bottom of the dryer, a feed inlet is communicated with one side of the lower end of the lifting machine, an integral lifting machine upper section is arranged at the upper end of the lifting machine, the lifting machine upper section penetrates through the upper end of the hot air channel and is connected with a winnowing device, one side of the winnowing device is communicated and connected with an induced duct and a material sliding pipe, the other end of the induced duct is communicated with the cold air channel, the other end of the material sliding pipe is communicated and connected with a material homogenizing bin, a blanking port is arranged on the upper surface of the dryer, and the material homogenizing bin is fixedly arranged at the position of the blanking port on the upper end of the dryer, the tempering is all expected the section inside and is located blanking mouth lower position and installs first bulk cargo mechanism, and first bulk cargo mechanism below is provided with second bulk cargo mechanism, the tuber pipe of intercommunication cold wind passageway and hot-blast channel is installed to the stoving section.
2. The top homogenizing device of a grain drying apparatus according to claim 1, wherein: first bulk cargo mechanism includes riser and a plurality of connecting pipe, and is a plurality of connecting pipe parallel mount is established in slow su homocline section, riser fixed mounting is middle part on the connecting pipe, and the riser is located under the blanking mouth, and the equal fixed mounting in riser both sides has the baffler, and the baffler is the type of falling V.
3. The top homogenizing device of a grain drying apparatus according to claim 2, wherein: the second bulk cargo mechanism includes two filter plates, and two filter plates are located riser below both sides position respectively, and two filter plates constitute V type structure, have the clearance between two filter plates, and the filter plate surface evenly sets up a plurality of filtration pores that are used for the cereal through-hole.
4. The top homogenizing device of a grain drying apparatus according to claim 1, wherein: and a V-shaped buffer plate is fixedly arranged in the material homogenizing bin.
CN202020764985.6U 2020-05-11 2020-05-11 Top material homogenizing device of grain drying equipment Active CN214283104U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020764985.6U CN214283104U (en) 2020-05-11 2020-05-11 Top material homogenizing device of grain drying equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020764985.6U CN214283104U (en) 2020-05-11 2020-05-11 Top material homogenizing device of grain drying equipment

Publications (1)

Publication Number Publication Date
CN214283104U true CN214283104U (en) 2021-09-28

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CN202020764985.6U Active CN214283104U (en) 2020-05-11 2020-05-11 Top material homogenizing device of grain drying equipment

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115560577A (en) * 2022-08-26 2023-01-03 南通久华环保设备科技有限公司 Closed cycle drying device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115560577A (en) * 2022-08-26 2023-01-03 南通久华环保设备科技有限公司 Closed cycle drying device

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