CN213955913U - Environment-friendly energy-saving fine dried noodle drying equipment - Google Patents

Environment-friendly energy-saving fine dried noodle drying equipment Download PDF

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Publication number
CN213955913U
CN213955913U CN202022680030.5U CN202022680030U CN213955913U CN 213955913 U CN213955913 U CN 213955913U CN 202022680030 U CN202022680030 U CN 202022680030U CN 213955913 U CN213955913 U CN 213955913U
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drying
automatic
fine dried
noodle
drying tunnel
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CN202022680030.5U
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赵祥涛
魏巍
李西江
任永灿
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Henan Dongfang Noodle Machine Group Co ltd
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Henan Dongfang Noodle Machine Group Co ltd
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Abstract

The utility model relates to an environment-friendly energy-saving dried noodle drying device, which comprises a continuous drying system and an automatic transfer system; the continuous drying system comprises a drying tunnel, an air supply fan, a heat pump unit and a moisture exhaust device, wherein a uniform fan is fixed in the drying tunnel; the automatic transfer system comprises a plurality of fine dried noodle automatic conveyors, a fine dried noodle input device and a fine dried noodle output device, wherein the fine dried noodle input device comprises an upper end and an upper conveyor, and the fine dried noodle output device comprises a lower end and a lower conveyor. The automatic vermicelli conveyor is arranged inside the drying tunnel, and the vermicelli input device and the vermicelli output device are respectively arranged at two ends of the drying tunnel. The utility model discloses can dry, automatic undercarriage, automatic cutting off in continuous preforming, the automatic putting on shelf of vermicelli drying process, carry in succession, realize the automatic transportation of vermicelli, automatically, get into the process in next stage, dry through the continuous low temperature of heat pump set, improve production efficiency, have energy saving and emission reduction, green's characteristics.

Description

Environment-friendly energy-saving fine dried noodle drying equipment
Technical Field
The utility model relates to a vermicelli production technical field especially relates to an environmental protection and energy saving vermicelli drying equipment.
Background
With the development of society, people have higher and higher requirements on the food industry, and the fine dried noodles are used as foods which are convenient to eat, so that the life of people is influenced. At present, the production equipment level of the fine dried noodles is greatly improved, and the fine dried noodles have the production prototype of the modern food industry. However, the phenomena of rough control, high heat energy consumption and unstable product quality exist in the drying link of fine dried noodle production, the conventional fine dried noodle drying technology mostly adopts a coal-fired boiler, an oil-fired boiler and a gas-fired boiler to supply heat through a heat exchanger, the mode has more energy consumption waste and high cost, and the quality of the fine dried noodle drying process is not easy to control. Meanwhile, the automatic degree of drying of the existing fine dried noodles is low, continuous work cannot be performed between devices, and the production process is mainly manual auxiliary transfer, so that the production efficiency is influenced.
Disclosure of Invention
The utility model discloses a solve traditional vermicelli stoving in-process degree of automation low, consume the too high problem of energy consumption, provide an environmental protection and energy saving vermicelli drying equipment, through the continuous low temperature drying of heat pump set, improve production efficiency, have energy saving and emission reduction, green's characteristics.
In order to realize the purpose, the technical scheme of the utility model is that:
an environment-friendly energy-saving vermicelli drying device comprises a continuous drying system and an automatic transfer system;
the continuous drying system comprises a drying tunnel, a heat pump unit, an air supply heater and a moisture removal device, wherein the air supply heater is connected with the drying tunnel and the heat pump unit, the heat pump unit is connected with the drying tunnel, the moisture removal device is arranged at the upper part of the drying tunnel, the moisture removal device is connected with the drying tunnel, and a plurality of uniform fans are fixed inside the drying tunnel;
the automatic transferring system comprises a plurality of fine dried noodle automatic conveyors, fine dried noodle input devices and fine dried noodle output devices; the automatic noodle conveyor is characterized in that the automatic noodle conveyors are arranged inside the drying tunnel, the noodle input device is arranged at the head end of the drying tunnel, and the noodle output device is fixed at the tail end of the drying tunnel.
Further, the dehumidifying device comprises a dehumidifying fan and a dehumidifying pipe, the dehumidifying fan is connected with the dehumidifying pipe, a plurality of air collecting openings are formed in the top of the drying tunnel, the dehumidifying pipe is fixedly communicated with the air collecting openings, an air outlet of the dehumidifying pipe is formed in the outside of the drying tunnel, and the dehumidifying fan is connected with the dehumidifying pipe.
Further, the fine dried noodle input device comprises an upper frame end and an upper frame conveyor, the upper frame end is fixed at the head end of the drying tunnel, and the upper frame conveyor is connected with the upper frame end.
Further, the racking conveyor is connected with a continuous tablet press.
Further, the fine dried noodle output device comprises a lower frame end and a lower frame conveyor, the lower frame end is fixed at the tail end of the drying tunnel, and the lower frame conveyor is connected with the lower frame end.
Further, the lower frame conveyor is connected with an automatic single-blade noodle cutting machine.
Further, the lower automatic single-blade noodle cutting machine is connected with a coarse crusher.
Through the technical scheme, the beneficial effects of the utility model are that:
the utility model discloses a set up heat pump set, air supply heater, stoving tunnel, hydrofuge fan and even fan and dry to the vermicelli, the heat energy temperature that the heat pump stoving produced is low, can avoid unsaturated fatty acid's oxidation in the food material, reduces the thermal denaturation of protein simultaneously, discolours, the loss of flavor material. The drying tunnel is of a closed structure, so that brown stain and nutrient loss of the fine dried noodles are reduced, and natural mellow fragrance of the product is guaranteed; the automatic fine dried noodle transferring is realized through the fine dried noodle automatic conveyor, the upper end socket, the upper conveyor, the lower end socket and the lower conveyor, the fine dried noodle automatically enters the next stage of process, manual transferring is not needed, and the automation degree is high; the upper frame conveyor is connected with a continuous tablet press, the lower frame conveyor is connected with an automatic single-blade noodle cutting machine and a coarse crusher, the working continuity of the device is guaranteed, the automation degree of the device is improved, and the production efficiency is improved.
Drawings
Fig. 1 is a schematic structural view of the environment-friendly and energy-saving noodle drying device of the utility model.
Fig. 2 is a schematic side view of fig. 1 of an environment-friendly and energy-saving noodle drying device of the present invention.
Fig. 3 is a schematic view of the drying tunnel of the environment-friendly and energy-saving noodle drying device.
The reference numbers in the drawings are as follows: the automatic noodle cutting machine comprises a continuous tablet press 1, an upper conveyor 2, an upper end 3, a drying tunnel 4, a uniform fan 5, a dehumidifying fan 6, a lower end 7, a lower conveyor 8, an automatic single-blade noodle cutting machine 9, a coarse crusher 10, a heat pump unit 11, an automatic noodle conveyor 12, fine noodles 13, a dehumidifying pipe 14, a heating fan 15, an air inlet pipe 16 and a return air pipe 17.
Detailed Description
The invention will be further described with reference to the accompanying drawings and specific embodiments:
as shown in fig. 1-3, an environment-friendly and energy-saving noodle drying device comprises a continuous drying system and an automatic transfer system. The continuous drying system comprises a drying tunnel 4, a heat supply fan 15, a heat pump unit 11, an air inlet pipe 16, a return air pipe 17 and a dehumidifying device, and the drying tunnel 4 is of a closed structure in order to realize quick drying; the heat supply fan 15 is connected with the drying tunnel 4 through an air inlet pipe 16, the heat pump unit 11 is connected with the heat supply fan 15, and the heat pump unit 11 is connected with the drying tunnel 4 through a return air pipe 17; the air supply fans 15 and the heat pump units 4 are multiple and are uniformly distributed on one side of the drying tunnel 4; the heat pump unit 11 includes a compressor, a condenser, an evaporator, an expansion valve, and the like, which are capable of implementing a heat pump principle. The heat generated by the heat pump unit 11 is introduced into the top of the drying tunnel 4 through the air inlet pipe 16 by the heat supply fan 15, and the waste heat is connected with the heat pump unit 4 through the air return pipe 17 at the bottom of the drying tunnel 4 and recovered to form closed cycle heat supply.
The dehumidifying device is arranged on the upper portion of the drying tunnel 4 and is connected with the drying tunnel 4, specifically, the dehumidifying device comprises a dehumidifying fan 6 and a dehumidifying pipe 14, the dehumidifying fan 6 is connected with the dehumidifying pipe 14, an air outlet of the dehumidifying pipe 14 is arranged outside the drying tunnel 4, a plurality of air collecting ports are formed in the top of the drying tunnel 4, and the dehumidifying pipe 14 is fixedly communicated with the air collecting ports.
In order to improve the speed of drying, the inside even fan 5 that still is fixed with of drying tunnel 4, even fan 5 interval is laid on drying tunnel 4 upper portion, promotes the inside quick even circulation of heat energy in drying tunnel 4.
The automatic transferring system comprises a plurality of fine dried noodle automatic conveyors 12, a fine dried noodle input device and a fine dried noodle output device; the automatic vermicelli conveyors 12 are arranged inside the drying tunnel 4, and the automatic vermicelli conveyors 12 are transmission chain type automatic conveyors; a fine dried noodle suspension device is arranged on a transmission chain of the fine dried noodle automatic conveyor 12, and a fine dried noodle rod is arranged on the fine dried noodle suspension device when fine dried noodles are conveyed, so that the fine dried noodles are prevented from falling off in the conveying process of the fine dried noodle conveyor 12; the fine dried noodle input device is arranged at the head end of the drying tunnel 4, and the fine dried noodle output device is fixed at the tail end of the drying tunnel 4; specifically, the fine dried noodle input device comprises an upper frame end 3 and an upper frame conveyor 2, wherein the upper frame end 3 is fixed at the head end of a drying tunnel 4, and the upper frame conveyor 2 is connected with the upper frame end 3; the fine dried noodle output device comprises a lower frame end 7 and a lower frame conveyor 8, wherein the lower frame end 7 is fixed at the tail end of the drying tunnel 4, and the lower frame conveyor 8 is connected with the lower frame end 7. In the embodiment, the upper frame end 3 and the lower frame end 7 are both composed of track translation transmission mechanisms and are used for transferring the noodle hanging rod; the upper rack conveyor 2 is used for conveying the fine dried noodles at the continuous tablet press 1 to the drying tunnel 4, and the lower rack conveyor 8 is used for conveying the dried fine dried noodles to the automatic single-blade noodle cutting machine 9 and the coarse crusher 10.
In order to further improve the working continuity of the device and the automation degree of the device, the upper rack conveyor 2 is connected with a continuous tabletting machine 1, the continuous tabletting machine 1 is used for pressing the dough into sheets, and the tail end of the continuous tabletting machine 1 is provided with a cutter which is used for cutting the pressed dough into strips; the lower rack conveyor 8 is connected with an automatic single-knife noodle cutting machine 9, the automatic single-knife noodle cutting machine 9 is used for cutting off dried noodles, and the automatic single-knife noodle cutting machine 9 is connected with a coarse crusher 10.
In the embodiment, the upper frame conveyor 2, the upper frame end 3, the heat pump unit 11, the heat supply fan 15, the dehumidifying fan 6, the lower frame end 7 and the lower frame conveyor 8 all realize automatic operation through a control system. The control system in this embodiment is a control device that realizes an automatic operation by parameter setting of a controller in the related art.
When the continuous tablet press works, the continuous tablet press 1 is used for pressing dough into sheets, a cutter is arranged at the tail end of the continuous tablet press 1 and used for cutting the sheet-pressed dough into strips, an upper rack conveyor 2 is used for conveying fine dried noodles at the position of the continuous tablet press 1 to an upper rack end 3, the upper rack end 3 is used for horizontally conveying fine dried noodles to be dried to an automatic fine dried noodle conveyor 12 of a drying tunnel 4, the automatic fine dried noodle conveyor 12 drives the fine dried noodles to move in the drying tunnel 4, heat energy provided by a compressor of a heat pump unit 11 and a heat supply fan 15 is transmitted to the top of the drying tunnel 4 through an air inlet pipe 16, the heat energy is quickly and uniformly dispersed in the whole drying tunnel 4 under the action of a uniform fan 5, the fine dried noodles are dehydrated and dried under the action of the heat energy, a condenser and an evaporator of the heat pump unit 11 circulate the heat energy in the drying tunnel 4 to the heat pump unit 11 through a return pipe 17, so that the heat pump unit 11 forms a closed loop, the heat energy is recycled. The moisture exhaust fan 6 of the moisture exhaust device collects moisture in the drying tunnel 4 through the air collecting opening and the moisture exhaust pipe 14 to be exhausted out of the drying tunnel 4, and drying efficiency is improved. Dried fine dried noodles are conveyed to a lower conveyor 8 through a lower end 7, the dried fine dried noodles are conveyed to an automatic single-knife noodle cutting machine 9 by the lower conveyor 8, and the fine dried noodles cut by the automatic single-knife noodle cutting machine 9 are conveyed to a coarse crusher 10 for crushing.
The utility model discloses a heat pump set 11 is dried to the vermicelli, and the heat energy temperature that the heat pump was dried and is produced is low, can avoid unsaturated fatty acid's oxidation in the food material, reduces the heated denaturation of protein simultaneously, discolours, the loss of flavor material. The drying tunnel 4 is of a closed structure, so that brown stain and nutrient loss of the dried noodles are reduced, and natural mellow fragrance of the product is guaranteed. The problem of traditional vermicelli stoving in-process produce degree of automation low, with high costs is solved.
The above-mentioned embodiments are merely preferred embodiments of the present invention, and not intended to limit the scope of the present invention, so that equivalent changes or modifications made by the structure, features and principles of the present invention should be included in the claims of the present invention.

Claims (7)

1. An environment-friendly energy-saving fine dried noodle drying device is characterized by comprising a continuous drying system and an automatic transfer system;
the continuous drying system comprises a drying tunnel (4), a heat pump unit (11), a heat supply fan (15) and a dehumidifying device, wherein the heat supply fan (15) is connected with the drying tunnel (4) and the heat pump unit (11), the heat pump unit (11) is connected with the drying tunnel (4), the dehumidifying device is arranged at the upper part of the drying tunnel (4), the dehumidifying device is connected with the drying tunnel (4), and a plurality of uniform fans (5) are fixed inside the drying tunnel (4);
the automatic transferring system comprises a plurality of fine dried noodle automatic conveyors (12), a fine dried noodle input device and a fine dried noodle output device; the automatic noodle drying device is characterized in that the automatic noodle conveyors (12) are arranged inside the drying tunnel (4), the noodle input device is arranged at the head end of the drying tunnel (4), and the noodle output device is fixed at the tail end of the drying tunnel (4).
2. The environment-friendly and energy-saving fine dried noodle drying equipment according to claim 1, wherein the moisture discharging device comprises a moisture discharging fan (6) and a moisture discharging pipe (14), the moisture discharging fan (6) is connected with the moisture discharging pipe (14), a plurality of air collecting ports are formed in the top of the drying tunnel (4), the moisture discharging pipe (14) is fixedly communicated with the air collecting ports, and the air outlet of the moisture discharging pipe (14) is formed outside the drying tunnel (4).
3. The environment-friendly and energy-saving fine dried noodle drying equipment according to claim 1, wherein the fine dried noodle input device comprises an upper frame end (3) and an upper frame conveyor (2), the upper frame end (3) is fixed at the head end of the drying tunnel (4), and the upper frame conveyor (2) is connected with the upper frame end (3).
4. An environment-friendly and energy-saving dried noodle drying device according to claim 3, wherein the racking conveyor (2) is connected with a continuous tabletting machine (1).
5. The environment-friendly and energy-saving fine dried noodle drying equipment according to claim 1, wherein the fine dried noodle output device comprises a lower end socket (7) and a lower conveyor (8), the lower end socket (7) is fixed at the tail end of the drying tunnel (4), and the lower conveyor (8) is connected with the lower end socket (7).
6. An environment-friendly and energy-saving dried noodle drying device according to claim 5, wherein the lower rack conveyor (8) is connected with an automatic single-blade noodle cutting machine (9).
7. An environment-friendly and energy-saving dried noodle drying device according to claim 6, wherein the automatic single-blade noodle cutting machine (9) is connected with a coarse crusher (10).
CN202022680030.5U 2020-11-19 2020-11-19 Environment-friendly energy-saving fine dried noodle drying equipment Active CN213955913U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022680030.5U CN213955913U (en) 2020-11-19 2020-11-19 Environment-friendly energy-saving fine dried noodle drying equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022680030.5U CN213955913U (en) 2020-11-19 2020-11-19 Environment-friendly energy-saving fine dried noodle drying equipment

Publications (1)

Publication Number Publication Date
CN213955913U true CN213955913U (en) 2021-08-13

Family

ID=77209727

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022680030.5U Active CN213955913U (en) 2020-11-19 2020-11-19 Environment-friendly energy-saving fine dried noodle drying equipment

Country Status (1)

Country Link
CN (1) CN213955913U (en)

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