CN210980709U - Multilayer pneumatic drying device - Google Patents

Multilayer pneumatic drying device Download PDF

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Publication number
CN210980709U
CN210980709U CN201922084147.4U CN201922084147U CN210980709U CN 210980709 U CN210980709 U CN 210980709U CN 201922084147 U CN201922084147 U CN 201922084147U CN 210980709 U CN210980709 U CN 210980709U
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Prior art keywords
airflow
drying
plate
framework
air
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CN201922084147.4U
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Chinese (zh)
Inventor
白凤臣
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Shenyang Hanchenyi Medical Technology Co ltd
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Shenyang Hanchenyi Medical Technology Co ltd
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Abstract

The utility model discloses a multilayer air current drying device, including a drying section of thick bamboo, the upper portion lateral wall of a drying section of thick bamboo is equipped with the feed inlet, and bottom central point puts and is provided with the discharge gate, and the both sides of a drying section of thick bamboo are provided with the intake pipe, and the intake pipe links to each other with the drying device air supply pipe, and the drying device air supply pipe links to each other with dry gaseous total intake pipe, the top of a drying section of thick bamboo is provided with the gas outlet, still is provided with the air current drying board inside a drying section of thick bamboo, through setting up the air current drying board, can make the betaine granule that contains moisture carry out drying process under the effect of the dry hot gas flow of each direction that distributes on the air current board inner frame pore jet, makes.

Description

Multilayer pneumatic drying device
Technical Field
The utility model relates to a chemical industry equipment technical field, concretely relates to multilayer air current drying device.
Background
In the production process of betaine, the final flow is to carry out drying treatment on the prepared betaine to obtain dried betaine particles, the drying modes commonly adopted in the prior art are moisture absorption drying and spray drying, and the problems of inconvenient operation, low drying efficiency and the like exist in the drying process, so that the rationality of the drying process and the improvement of the drying efficiency become important directions for the research and development of betaine drying equipment.
Disclosure of Invention
In order to solve the technical problem, the utility model provides a multilayer air flow drying device accomplishes the drying to the betaine granule through set up multilayer air flow drying plate in drying cylinder, makes the drying more thorough, and simple structure, convenient operation.
The utility model discloses a concrete technical scheme as follows:
a multi-layer airflow drying device comprises a drying cylinder, wherein a feed inlet is formed in the side wall of the upper portion of the drying cylinder, a discharge outlet is formed in the center of the bottom of the drying cylinder, intake pipes are arranged on two sides of the drying cylinder and are connected with an air supply pipe of a drying device, the air supply pipe of the drying device is connected with a main dry air inlet pipe, an air outlet is formed in the top of the drying cylinder, an airflow drying plate which is arranged in a relatively inclined mode is arranged inside the drying cylinder and comprises an airflow plate framework, an airflow air inlet and a baffle plate, the airflow plate framework comprises an airflow plate outer framework and an airflow plate inner framework, the outer framework and the inner framework are both of hollow tubular structures, an opening used for being connected with the airflow plate inner framework and the airflow air inlet is formed in the airflow plate outer framework, and the airflow plate outer framework, the airflow plate inner framework and the airflow plate inner framework are welded, the air channel that whole air current board skeleton is inside to be formed and to supply the gas to flow, the air inlet links to each other with the intake pipe, air pocket is being distributed to air current board inner frame surface evenly, the baffle is fixed in between air current board outer frame and the air current board inner frame, the relative position of air inlet is the breach of unloading the tip of air current board outer frame and air current board inner frame of breach one side of unloading is the blind end.
Furthermore, the airflow drying plate is oval, and the outer edge of the outer framework of the airflow plate is connected with the inner side wall of the drying cylinder.
Further, the thickness of the baffle plate is one fourth of the diameter of a circular pipe of the inner framework of the airflow plate.
Further, the discharge gate is for leaking hopper-shaped.
Furthermore, the outer framework of the airflow plate and the inner framework of the airflow plate are stainless steel metal pipes.
The utility model has the advantages that:
the utility model discloses a set up multilayer air current drying plate in drying device and accomplish the drying to the betaine granule. Because the gas pocket evenly is provided with at air current board inner frame, after the betaine granule gets into the drying cylinder from the feed inlet that is located drying device upper portion, carry out drying process under the continuous effect of each direction air current that air current board inner frame gas pocket sprays, the betaine granule through drying is finally discharged by the discharge gate that is located the drying cylinder lower part, and this equipment structure is simple, has improved drying efficiency moreover greatly.
Drawings
FIG. 1 is a schematic structural view of the multi-layer pneumatic drying device of the present invention;
FIG. 2 is a schematic view of the pneumatic drying plate of the present invention;
Detailed Description
The technical solution of the present invention will be described in detail with reference to the accompanying drawings.
The specific embodiment is as follows:
the utility model provides a multilayer air current drying device, includes drying cylinder 1 the upper portion lateral wall of drying cylinder 1 is equipped with betaine granule feed inlet 101, drying cylinder bottom central point puts and is provided with the betaine exhaust discharge gate 102 after supplying the drying, the both sides wall of drying cylinder is crisscross to be provided with intake pipe 103 so that let in dry hot-air to drying cylinder inside, the intake pipe 103 of both sides links to each other with the drying device air supply pipe 301 of both sides respectively, drying device air supply pipe 301 links to each other with dry gas total intake pipe 3, outside air feeder supplies air to drying device through dry gas total intake pipe 3, the top of drying cylinder is provided with gas outlet 104, and ultimate waste gas passes through gas outlet 104 and discharges, and gas outlet 104 can link to each other with the exhaust treatment device of rear end, reduces waste gas to atmospheric pollution.
A plurality of airflow drying plates 2 which are arranged in an inclined manner are arranged in the drying cylinder 1, each airflow drying plate 2 comprises an airflow plate framework, an airflow air inlet 203 and a baffle plate 204, each airflow plate framework comprises an airflow plate outer framework 201 and an airflow plate inner framework 202, the inner framework and the outer framework are of hollow tubular structures, openings for connecting the airflow plate inner framework 202 and the airflow air inlet 203 are formed in the airflow plate outer framework 201, the openings can enable the airflow plate outer framework 201, the airflow plate inner framework 202 and the airflow plate inner framework 202 to form an air path for air circulation after the airflow drying plates 2 are welded and fixed, the airflow air inlet 203 is connected with an air inlet pipe 103 and used for guiding dry hot air into the airflow drying plates 2, air holes for spraying dry hot air are uniformly distributed in the airflow plate inner framework 202, the baffle plate 204 is fixed between the airflow plate outer framework 201 and the airflow plate inner framework 202, and the upper and lower surfaces of the baffle plate 204 than the airflow plate inner framework, therefore, dry hot air can be sprayed out from the air holes on the inner frame 202 of the airflow plate on both sides of the airflow plate drying plate 2, the opposite position of the airflow inlet 203 on the outer frame 201 of the airflow plate is the discharging gap 205, and the end parts of the outer frame 201 of the airflow plate and the inner frame 202 of the airflow plate on one side of the discharging gap 205 are closed, so that the dry hot air entering the airflow drying plate 2 can be sprayed out from the air holes on the inner frame 202 of the airflow plate only.
The airflow drying plates 2 can be selected to have different shapes according to the shape of the drying cylinder, in this embodiment, each airflow drying plate 2 is preferably oval, and the outer edge part of the outer framework of each airflow drying plate 2 is connected with the inner side wall of the drying cylinder.
The thickness of the baffle 204 is one fourth of the diameter of the circular tube forming the inner framework of the airflow plate, and the arrangement can ensure that the airflow drying plates positioned on the upper surface side and the lower surface side of the baffle 204 are sprayed with dry hot air.
The outer framework of the airflow plate and the inner framework of the airflow plate are stainless steel metal pipes.
When the drying device is started, dry hot air enters from the main air inlet pipe 3 and finally enters the airflow drying plate 2 in the drying cylinder from the air inlet pipes 103 positioned at the two sides of the drying cylinder 1, the dried hot air is ejected from the air holes of the air flow drying plate, at this time, the betaine particles to be dried are put in from the feed inlet 101, when the betaine particles pass through the air flow drying plate from top to bottom, the hot dry air ejected by the airflow drying plates blows up, the moisture in the betaine particles can be taken away by the hot dry air passing through the floating betaine particles, the hot dry air ejected by each airflow drying plate can dry the betaine particles from all angles along with the falling of the betaine particles, the processed dry betaine particles are finally discharged from the funnel-shaped discharge hole 102 through each discharge notch 205, and the dry waste gas in the drying cylinder is discharged from the air outlet 104.

Claims (5)

1. The utility model provides a multilayer pneumatic drying device, includes drying cylinder (1), the upper portion lateral wall of drying cylinder is equipped with feed inlet (101), and bottom central point puts and is provided with discharge gate (102), and the both sides of drying cylinder are provided with intake pipe (103), and intake pipe (103) link to each other with drying device air supply pipe (301), and drying device air supply pipe (301) link to each other with dry gas total intake pipe (3), the top of drying cylinder (1) is provided with gas outlet (104), its characterized in that:
the drying cylinder (1) is also internally provided with a plurality of airflow drying plates (2) which are arranged in a relatively inclined manner, each airflow drying plate (2) comprises an airflow plate framework, an airflow air inlet (203) and a baffle (204), each airflow plate framework comprises an airflow plate outer framework (201) and an airflow plate inner framework (202), and the outer frameworks and the inner frameworks are both hollow tubular structures,
the outer framework (201) of the airflow plate is provided with an opening which is used for being connected with the inner framework (202) of the airflow plate and the airflow inlet (203), after the outer framework (201), the inner framework (202) of the airflow plate and the airflow inlet (203) are welded and fixed at the opening of the outer framework of the airflow plate, an air path for air to flow is formed in the whole framework of the airflow plate,
the air flow plate is characterized in that the air flow inlet (203) is connected with the air inlet pipe (103), air holes are uniformly distributed on the surface of the inner airflow plate framework (202), the baffle plate (204) is fixed between the outer airflow plate framework (201) and the inner airflow plate framework (202), the air flow inlet (203) is provided with a discharging notch (205) at the relative position, and the end parts of the outer airflow plate framework (201) and the inner airflow plate framework (202) on one side of the discharging notch are closed ends.
2. A multi-layer pneumatic drying apparatus as claimed in claim 1, wherein: the airflow drying plate (2) is oval, and the outer edge part of the outer framework (201) of the airflow drying plate is connected with the inner side wall of the drying cylinder (1).
3. A multi-layer pneumatic drying apparatus as claimed in claim 2, wherein: the outer framework (201) and the inner framework (202) of the airflow plate are stainless steel metal pipes.
4. A multi-layer pneumatic drying apparatus as claimed in claim 3, wherein: the thickness of the baffle plate (204) is one fourth of the diameter of the inner framework (202) of the airflow plate.
5. A multi-layer pneumatic drying apparatus as claimed in any one of claims 1 to 4, wherein: the discharge hole (102) is funnel-shaped.
CN201922084147.4U 2019-11-28 2019-11-28 Multilayer pneumatic drying device Active CN210980709U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922084147.4U CN210980709U (en) 2019-11-28 2019-11-28 Multilayer pneumatic drying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922084147.4U CN210980709U (en) 2019-11-28 2019-11-28 Multilayer pneumatic drying device

Publications (1)

Publication Number Publication Date
CN210980709U true CN210980709U (en) 2020-07-10

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CN201922084147.4U Active CN210980709U (en) 2019-11-28 2019-11-28 Multilayer pneumatic drying device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112648837A (en) * 2020-12-22 2021-04-13 长泰鑫顺泰实业发展有限公司 Pig feed drying device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112648837A (en) * 2020-12-22 2021-04-13 长泰鑫顺泰实业发展有限公司 Pig feed drying device

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