CN217226249U - Low-temperature air-cooled charging barrel for granulator - Google Patents

Low-temperature air-cooled charging barrel for granulator Download PDF

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Publication number
CN217226249U
CN217226249U CN202122368515.5U CN202122368515U CN217226249U CN 217226249 U CN217226249 U CN 217226249U CN 202122368515 U CN202122368515 U CN 202122368515U CN 217226249 U CN217226249 U CN 217226249U
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air
cooled
feeding bin
air cooling
granulator
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CN202122368515.5U
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Chinese (zh)
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吴爱华
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Ruian Debang Machinery Co ltd
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Ruian Debang Machinery Co ltd
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Abstract

The utility model relates to a granulator is with low temperature forced air cooling feed cylinder, its characterized in that: the material storage barrel comprises a material storage barrel, the upper end of the material storage barrel is provided with a feeding hole, the lower end of the material storage barrel is provided with a first discharging hole, the lower end of the material storage barrel is provided with a first air-cooling feeding bin which is in conduction connection with the first discharging hole, the lower end of the first air-cooling feeding bin is linked with an air cooler, and the side part of the first air-cooling feeding bin is provided with a second discharging hole. The utility model has the advantages that: the low-temperature air-cooled charging barrel for the granulator replaces a water cooling mode in the prior art, solves the problem of water resource waste and saves water resources.

Description

Low-temperature air-cooled charging barrel for granulator
Technical Field
The utility model relates to a granulator technical field, concretely relates to low temperature forced air cooling feed cylinder for granulator.
Background
When the plastic extrusion granulator works, raw materials are added into a feeding hopper of the plastic extrusion granulator, the raw materials are extruded by a discharge plate arranged at a first discharge port of the plastic extrusion granulator after being compacted and compressed and plasticized under the action of a screw rod in the plastic extrusion granulator, and then are cut into granules, and the materials after the granule cutting treatment need to be cooled. At present granulator is carrying out the in-process of producing, and the product of production will be cooled down through the basin, and used water in the basin directly discharges as waste water, has caused a large amount of wastes, and is not environmental protection. And the temperature of the particles separated from the cutter is higher, the particles are discharged from the granulating chamber in a short time after being contacted with cooling water, the cooling time is shorter, and the cooling effect is unsatisfactory.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that lie in to above-mentioned prior art not enough, provide low temperature forced air cooling feed cylinder for granulator, replace water-cooling form among the prior art, solve water waste's problem, water economy resource.
In order to achieve the above purpose, the utility model provides a following technical scheme: the low-temperature air-cooled material barrel for the granulator comprises a material storage barrel and is characterized in that a feeding hole is formed in the upper end of the material storage barrel, a first discharging hole is formed in the lower end of the material storage barrel, a first air-cooled feeding bin which is in conduction connection with the first discharging hole is arranged at the lower end of the material storage barrel, the lower end of the first air-cooled feeding bin is linked with an air cooler, and a second discharging hole is formed in the side portion of the first air-cooled feeding bin.
By adopting the technical scheme, the water cooling form in the prior art is replaced, and the air cooling form is converted, so that the problem of water resource waste is solved, and the water resource is saved; set up the upper and lower both ends with the storage vat respectively into feed inlet and discharge gate, make the material after getting into the storage vat, pile up from top to bottom, then loop through the discharge gate again and drop to carrying out the forced air cooling in the first air-cooled storehouse, carry out ejection of compact processing through the second discharge gate again, whole process adopts the forced air cooling form, and no waste water produces, alleviates the blowdown burden for the producer, accords with green, environmental protection development theory.
The low-temperature air-cooled charging barrel for the granulator can be further set as follows: the storage vat periphery cover is equipped with a forced air cooling section of thick bamboo, forced air cooling section of thick bamboo tip is equipped with the spliced pole, the inside cavity of spliced pole and both ends opening, the spliced pole both ends respectively with the first discharge gate of storage vat, first forced air cooling feeding bin switch on connection.
By adopting the technical scheme, the air cooling barrel is additionally arranged, so that the materials can be preliminarily air-cooled in the storage barrel, and the air cooling efficiency is accelerated.
The low-temperature air-cooled charging barrel for the granulator can be further set as follows: the air cooling cylinder is located on the outer side of the connecting column and is evenly provided with a plurality of groups of air exchange holes, and the air cooling cylinder is located at the air exchange holes and is detachably connected with a blocking piece.
By adopting the technical scheme, the hot air absorbing heat in the air cooling cylinder can be discharged by arranging the ventilation holes, and the air cooling effect is better.
The low-temperature air-cooled charging barrel for the granulator can be further set as follows: the storage vat includes column feeding zone and the toper blanking district with column feeding zone turn-on connection, the tip in toper blanking district distributes towards first air-cooled feeding bin one side.
By adopting the technical scheme, the columnar feeding area can store materials; the material of being convenient for discharges in toper blanking district utilizes self conical structure, and the discharge material volume in the steerable unit interval of conical tip prevents because too much discharge of material leads to the not thorough phenomenon of forced air cooling to produce in the unit interval, promotes the forced air cooling effect, and the forced air cooling is thorough.
The low-temperature air-cooled charging barrel for the granulator can be further set as follows: and a second air-cooled feeding bin is arranged between the first air-cooled feeding bin and the storage barrel, and two ends of the second air-cooled feeding bin are respectively in conduction connection with the first discharge hole and the first air-cooled feeding bin.
By adopting the technical scheme, the second air-cooling feeding bin is additionally arranged, so that secondary air cooling can be performed on the material, the air cooling effect is further improved, and the air cooling is thorough.
The low-temperature air-cooled charging barrel for the granulator can be further set as follows: the second air-cooled feeding bin comprises a columnar air-cooled area and a conical air-cooled area in conduction connection with the columnar air-cooled area, and the small end of the conical air-cooled area is distributed towards one side of the first air-cooled bin.
By adopting the technical scheme, the columnar air cooling area is used for temporarily receiving materials from the storage barrel and carrying out secondary air cooling on the materials, and the conical air cooling area can control the amount of the materials discharged in unit time, prevent the phenomenon of incomplete air cooling caused by the discharge of excessive materials in unit time, improve the air cooling effect and realize thorough air cooling.
The low-temperature air-cooled charging barrel for the granulator can be further set as follows: the periphery of the air cooling cylinder is fixedly connected with a mounting bracket.
By adopting the technical scheme, the air cooling cylinder and the granulator body can be conveniently assembled by arranging the mounting bracket.
The present invention will be described in further detail with reference to the accompanying drawings and examples.
Drawings
Fig. 1 is an exploded view of an embodiment of the present invention;
fig. 2 is a schematic view of an assembled state of the embodiment of the present invention;
FIG. 3 is a schematic sectional view of an assembled state according to an embodiment of the present invention;
fig. 4 is a schematic diagram of a plurality of groups of connection states according to an embodiment of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The low-temperature air-cooling charging barrel for the granulator, as shown in fig. 1 to 3, comprises a storage barrel 1, wherein a feeding hole 11 is formed in the upper end of the storage barrel 1, a first discharging hole 12 is formed in the lower end of the storage barrel 1, a first air-cooling feeding bin 2 which is in conduction connection with the first discharging hole 12 is arranged at the lower end of the storage barrel 1, an air-cooling machine 3 is linked to the lower end of the first air-cooling feeding bin 2, and a second discharging hole 21 is formed in the side portion of the first air-cooling feeding bin 2.
The periphery of storage vat 1 overlaps and is equipped with a forced air cooling section of thick bamboo 4, 4 tip of a forced air cooling section of thick bamboo are equipped with spliced pole 41, the inside cavity of spliced pole 41 and both ends opening, spliced pole 41 both ends respectively with storage vat 1's first discharge gate 12, first forced air cooling feed bin 2 turn-on connection. The air cooling barrel 4 is additionally arranged, so that the materials can be preliminarily air-cooled in the storage barrel 1, and the air cooling efficiency is accelerated.
Two groups of ventilation holes are uniformly distributed on the outer side of the connecting column 41 of the air cooling cylinder 4, and a baffle 42 is detachably connected to the ventilation holes of the air cooling cylinder 4. Through setting up the draught hole, can discharge the hot-blast of absorbing heat in the forced air cooling section of thick bamboo 4, the forced air cooling effect is better.
Storage vat 1 includes column feeding zone 13 and the toper blanking district 14 with column feeding zone 13 turn-on connection, the tip of toper blanking district 14 distributes towards first air-cooled feed bin 2 one side. The columnar feeding area 13 can store materials; the conical blanking area 14 is convenient for material discharge by utilizing a conical structure, the conical small end can control the amount of the material discharged in unit time, the phenomenon of incomplete air cooling caused by too much material discharged in unit time is prevented, the air cooling effect is improved, and the air cooling is thorough.
And a second air-cooled feeding bin 5 is arranged between the first air-cooled feeding bin 2 and the storage barrel 1, and two ends of the second air-cooled feeding bin 5 are respectively connected with the first discharge hole 12 and the first air-cooled feeding bin 2 in a conduction manner. And a second air-cooling feeding bin 5 is additionally arranged, so that secondary air cooling can be performed on the materials, the air cooling effect is further improved, and the air cooling is thorough.
The second air-cooled feeding bin 5 comprises a columnar air-cooled area 51 and a conical air-cooled area 52 in conduction connection with the columnar air-cooled area 51, and the small end of the conical air-cooled area 52 is distributed towards one side of the first air-cooled bin. The columnar air cooling area 51 is used for temporarily receiving materials from the storage barrel 1 and carrying out secondary air cooling on the materials, and the conical air cooling area 52 is used for controlling the amount of the materials discharged in unit time, preventing the phenomenon of incomplete air cooling caused by discharging excessive materials in unit time, improving the air cooling effect and completely cooling the air.
The periphery of the air cooling cylinder 4 is fixedly connected with a mounting bracket 6, so that the air cooling cylinder 4 and the granulator body can be conveniently assembled.
Above-mentioned concrete technical scheme has replaced water-cooling form among the prior art, converts into the forced air cooling form, solves the problem of water waste, the water economy resource. Set up the upper and lower both ends with storage vat 1 respectively to feed inlet 11 and discharge gate, make the material after getting into storage vat 1, pile up from top to bottom, then loop through the discharge gate again and drop to carrying out the forced air cooling in the first air-cooled storehouse, carry out ejection of compact processing through second discharge gate 21 again, whole process adopts the forced air cooling form, and no waste water produces, alleviates the blowdown burden for the producer, accords with green, environmental protection development theory. The number of the low-temperature air-cooling charging barrels can be freely combined and matched according to actual requirements, and only the second discharge ports and the feed ports of two adjacent sets of low-temperature air-cooling charging barrels are connected through pipelines, as shown in the attached figure 4.

Claims (7)

1. Low temperature forced air cooling feed cylinder for granulator includes storage vat, its characterized in that: the improved pneumatic conveying device is characterized in that a feeding hole is formed in the upper end of the storage barrel, a first discharging hole is formed in the lower end of the storage barrel, a first air-cooled feeding bin which is in conduction connection with the first discharging hole is arranged at the lower end of the storage barrel, the lower end of the first air-cooled feeding bin is linked with a pneumatic cooler, and a second discharging hole is formed in the side portion of the first air-cooled feeding bin.
2. A low temperature air-cooled cartridge for a granulator according to claim 1, wherein: the storage vat periphery cover is equipped with a forced air cooling section of thick bamboo, forced air cooling section of thick bamboo tip is equipped with the spliced pole, the inside cavity of spliced pole and both ends opening, the spliced pole both ends respectively with the first discharge gate of storage vat, first forced air cooling feeding bin switch on connection.
3. A low temperature air-cooled cartridge for a pelletizer as set forth in claim 2, wherein: the air cooling cylinder is located on the outer side of the connecting column and is evenly provided with a plurality of groups of air exchange holes, and the air cooling cylinder is located at the air exchange holes and is detachably connected with a blocking piece.
4. A low temperature air-cooled cartridge for a granulator according to claim 1 or 2, wherein: the storage vat includes column feeding zone and the toper blanking district with column feeding zone turn-on connection, the tip in toper blanking district distributes towards first air-cooled feeding bin one side.
5. A low temperature air-cooled cartridge for a granulator according to claim 1 or 2, wherein: and a second air-cooled feeding bin is arranged between the first air-cooled feeding bin and the storage barrel, and two ends of the second air-cooled feeding bin are respectively in conduction connection with the first discharge port and the first air-cooled feeding bin.
6. A low temperature air-cooled barrel for a granulator according to claim 5, wherein: the second air-cooled feeding bin comprises a cylindrical air-cooled area and a conical air-cooled area in conduction connection with the cylindrical air-cooled area, and the small end of the conical air-cooled area is distributed towards one side of the first air-cooled bin.
7. A low temperature air-cooled cartridge for a granulator according to claim 2 or 3, wherein: the periphery of the air cooling cylinder is fixedly connected with a mounting bracket.
CN202122368515.5U 2021-09-27 2021-09-27 Low-temperature air-cooled charging barrel for granulator Active CN217226249U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122368515.5U CN217226249U (en) 2021-09-27 2021-09-27 Low-temperature air-cooled charging barrel for granulator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122368515.5U CN217226249U (en) 2021-09-27 2021-09-27 Low-temperature air-cooled charging barrel for granulator

Publications (1)

Publication Number Publication Date
CN217226249U true CN217226249U (en) 2022-08-19

Family

ID=82818132

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122368515.5U Active CN217226249U (en) 2021-09-27 2021-09-27 Low-temperature air-cooled charging barrel for granulator

Country Status (1)

Country Link
CN (1) CN217226249U (en)

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