CN114259007B - Bagged food water bath cooling device - Google Patents

Bagged food water bath cooling device Download PDF

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Publication number
CN114259007B
CN114259007B CN202111619963.6A CN202111619963A CN114259007B CN 114259007 B CN114259007 B CN 114259007B CN 202111619963 A CN202111619963 A CN 202111619963A CN 114259007 B CN114259007 B CN 114259007B
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China
Prior art keywords
driving
cooling
transmission shaft
gear
water bath
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Active
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CN202111619963.6A
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Chinese (zh)
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CN114259007A (en
Inventor
李鑫
潘雯瑶
唐勇
王冶
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Beijing Jiaheyipin Enterprise Management Co ltd
Shandong New Hope Liuhe Group Co Ltd
New Hope Liuhe Co Ltd
Original Assignee
Beijing Jiaheyipin Enterprise Management Co ltd
Shandong New Hope Liuhe Group Co Ltd
New Hope Liuhe Co Ltd
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Application filed by Beijing Jiaheyipin Enterprise Management Co ltd, Shandong New Hope Liuhe Group Co Ltd, New Hope Liuhe Co Ltd filed Critical Beijing Jiaheyipin Enterprise Management Co ltd
Priority to CN202111619963.6A priority Critical patent/CN114259007B/en
Publication of CN114259007A publication Critical patent/CN114259007A/en
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Abstract

The invention discloses a bagged food water bath cooling device, which relates to the field of food production equipment and adopts the technical scheme that the bagged food water bath cooling device comprises a rack, wherein a cooling tank for cooling the bagged food water bath is fixedly arranged on the rack, a conveying mechanism is arranged in the cooling tank in a rotating way, the conveying mechanism comprises a plurality of rotating drums which are connected in a head-to-tail rotating way, two ends of the outer wall of each rotating drum are respectively provided with a bearing, an inner ring of each bearing is fixedly connected with the outer wall of each rotating drum, an outer ring of each bearing is fixedly connected with the inner wall of the cooling tank, and the rotating drums are rotatably connected with the cooling tank through the bearings. The beneficial effects of the invention are as follows: improve the effect of water bath cooling of food in bags, reduce the length of water bath cooling production line, can cooperate the pipelining, reduce the time of water bath cooling.

Description

Bagged food water bath cooling device
Technical Field
The invention relates to the field of food production equipment, in particular to a bagged food water bath cooling device.
Background
The Central Kitchen (English) is a kind of catering industry, and is widely used for providing more than 1000 people with meals in a single meal time, or providing cooked food at different places 2 or manufacturing prefabricated food (ready-made food) which needs simple heating. The central kitchen adopts huge operation room, and each links such as purchasing, selecting vegetables, cutting vegetables, seasoning are all responsible for special people, and semi-finished products and the seasonings are transported to the branch shops in a specified time in a unified transportation mode.
After the porridge is manufactured in a central kitchen, the porridge is packaged into a bagged food, and the porridge just produced is relatively hot, so that the porridge needs to be cooled, and is convenient for subsequent storage and transportation. Most of the cooling methods of the bagged food adopt a water bath cooling mode, and the bagged food is cooled to a preset temperature within a set time. The current water bath cooling equipment is when cooling down the porridge in bags, and the cooling effect is relatively poor, and the inside cooling of wrapping bag is inhomogeneous, and inside cooling speed is slow, and traditional water bath cooling assembly line is longer, and the investment is great, still can occupy too much factory building space.
Disclosure of Invention
Aiming at the technical problems, the invention provides a bagged food water bath cooling device.
The technical scheme includes that the food cooling device comprises a frame, wherein a cooling groove for cooling bagged food in a water bath is fixedly formed in the frame, a conveying mechanism is rotationally arranged in the cooling groove, the conveying mechanism comprises a plurality of rotary drums which are sequentially connected in a head-to-tail mode, two ends of the outer wall of each rotary drum are respectively provided with a bearing, an inner ring of each bearing is fixedly connected with the outer wall of each rotary drum, an outer ring of each bearing is fixedly connected with the inner wall of the cooling groove, the rotary drums are rotationally connected with the cooling groove through the bearings, one end of each cooling groove is fixedly provided with an inclined sliding plate, a low-level end of each sliding plate extends into the rotary drum, one end, close to the sliding plate, of each sliding plate is an inlet end of the conveying mechanism, and the other end of each conveying mechanism is an outlet end;
the other end of the cooling tank is provided with an inclined conveyor belt, and the low horizontal end of the conveyor belt extends to the lower part of the outlet end of the conveying mechanism;
and a driving mechanism for driving the conveying mechanism to rotate.
Preferably, a plurality of water inlet holes are arranged on the side wall of each rotary drum in an array manner, and a plurality of spiral feeding tables are arranged on the inner wall of each rotary drum in an array manner;
the gear ring is fixedly arranged on the outer surface of the rotary cylinder.
Preferably, the screw threads of the feeding tables of two adjacent rotary drums are opposite in rotation direction.
Preferably, the driving mechanism comprises a driving motor fixedly arranged in the middle of the frame, driving bevel gears are coaxially and fixedly arranged on a motor shaft of the driving motor, the driving bevel gears are meshed with two driven bevel gears, the two driven bevel gears are oppositely arranged, one side of each driven bevel gear, which is opposite to the other side of each driven bevel gear, is respectively provided with a transmission unit, and each transmission unit is used for respectively driving two rotary cylinders on one side of the driving motor to rotate.
Preferably, the transmission unit comprises a transmission shaft coaxially and fixedly connected with the driven bevel gear, a driving shaft is sleeved on the outer side of the transmission shaft, two ends of the transmission shaft extend to the outer side of the driving shaft respectively, the driving shaft and the transmission shaft axially and fixedly rotate radially, one end, far away from the driven bevel gear, of the driving shaft and the transmission shaft is coaxially and fixedly provided with a driving gear respectively, the driving gear at one end of the transmission shaft is meshed with a gear ring far away from the driving motor, and the driving gear at one end of the driving shaft is meshed with the gear ring close to the driving motor;
the device also comprises a linkage unit arranged between the transmission shaft and the driving shaft.
Preferably, the linkage unit comprises a power gear coaxially and fixedly arranged with the transmission shaft and the driving shaft respectively, each power gear is positioned at one end of the transmission shaft and one end of the driving shaft, which are close to the driven bevel gear, each power gear is meshed with an intermediate gear respectively, and the two intermediate gears are meshed with each other;
the device also comprises a bracket fixedly arranged on the frame, and the bracket is respectively and rotatably connected with the two intermediate gears.
Preferably, a plurality of supporting frames are fixedly arranged on the frame, and the supporting frames are respectively connected with the transmission shaft and the driving shaft in a rotating mode.
Preferably, a plurality of drainage branch pipes are arranged at the lower part of the cooling tank in an array manner, and each drainage branch pipe is communicated with a drainage pipe;
the cooling device is characterized by further comprising a water inlet pipe fixedly arranged on the cooling tank, wherein a plurality of water inlet branch pipes are arranged on the pipe body of the water inlet pipe in an array mode, and the water outlet ends of the water inlet branch pipes face the inside of the cooling tank.
Preferably, the outer surface of the conveyor belt is provided with a plurality of bosses in an array, and the high-level end of the conveyor belt extends to the outer side of the cooling groove.
The technical scheme provided by the embodiment of the invention has the beneficial effects that: the water bath cooling effect of the bagged food is improved, the length of the water bath cooling production line is reduced, the investment is small, the assembly line operation can be matched, the water bath cooling time is reduced, the use cost is low, and the production efficiency is high.
Drawings
Fig. 1 is a schematic overall structure of an embodiment of the present invention.
Fig. 2 is a schematic diagram of a conveying mechanism and a driving mechanism according to an embodiment of the present invention.
Fig. 3 is a cross-sectional view of a transfer mechanism according to an embodiment of the present invention.
Fig. 4 is a schematic diagram of a driving mechanism according to an embodiment of the invention.
Fig. 5 is a schematic diagram of a transmission unit and a linkage unit according to an embodiment of the invention.
Wherein, the reference numerals are as follows: 1. a frame; 1-1, a cooling tank; 1-2, a sliding plate; 1-3, a conveyor belt; 1-4, a drain pipe; 1-5, a water inlet pipe; 2. a conveying mechanism; 2-1, rotating the cylinder; 2-12 parts of a feeding table; 2-2, a bearing; 2-3, gear ring; 3. a driving mechanism; 3-1, driving a motor; 3-2, driving bevel teeth; 3-3, driven bevel teeth; 3-4, a transmission unit; 3-41, a transmission shaft; 3-42, driving shaft; 3-43, a driving gear; 3-5, a linkage unit; 3-51, a power gear; 3-52, an intermediate gear; 3-53, a bracket; 3-6, supporting frame.
Detailed Description
The present invention will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present invention more apparent. Of course, the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
It should be noted that, without conflict, the embodiments of the present invention and features of the embodiments may be combined with each other.
In the description of the invention, it should be understood that the terms "center," "longitudinal," "transverse," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like indicate orientations or positional relationships that are based on the orientation or positional relationships shown in the drawings, merely to facilitate describing the invention and simplify the description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be configured and operate in a particular orientation, and therefore should not be construed as limiting the invention. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first", "a second", etc. may explicitly or implicitly include one or more such feature. In the description of the invention, unless otherwise indicated, the meaning of "a plurality" is two or more.
In the description of the invention, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the creation of the present invention can be understood by those of ordinary skill in the art in a specific case.
Example 1
Referring to fig. 1 to 5, the invention provides a bagged food water bath cooling device, which comprises a frame 1, wherein a cooling tank 1-1 for cooling the bagged food in a water bath is fixedly arranged on the frame 1, a conveying mechanism 2 is arranged in the cooling tank 1-1 in a rotating way, the conveying mechanism 2 comprises a plurality of rotating drums 2-1 which are connected in a rotating way from beginning to end, two ends of the outer wall of each rotating drum 2-1 are respectively provided with a bearing 2-2, the inner ring of each bearing 2-2 is fixedly connected with the outer wall of each rotating drum 2-1, the outer ring of each bearing 2-2 is fixedly connected with the inner wall of the cooling tank 1-1, the rotating drums 2-1 are rotatably connected with the cooling tank 1-1 through the bearings 2-2, one end of each cooling tank 1-1 is fixedly provided with an inclined sliding plate 1-2, the low horizontal end of each sliding plate 1-2 extends into the rotating drums 2-1, one end close to each sliding plate 1-2 is an inlet end of the conveying mechanism 2, and the other end of each conveying mechanism 2 is an outlet end;
the other end of the cooling tank 1-1 is provided with an inclined conveyor belt 1-3, and the low horizontal end of the conveyor belt 1-3 extends to the lower part of the outlet end of the conveying mechanism 2;
and a driving mechanism 3 for driving the conveying mechanism 2 to rotate.
A plurality of water inlets are arrayed on the side wall of each rotary drum 2-1, and a plurality of spiral feeding tables 2-12 are arrayed on the inner wall of the rotary drum 2-1; the feeding table 2-12 can drive the bagged food to roll in the rotary barrel, and the spiral feeding table 2-12 can drive the bagged food to move towards one end of the outlet end in the rolling process;
and the gear ring 2-3 is fixedly arranged on the outer surface of the rotary cylinder 2-1.
The screw threads of the feeding tables 2-12 of the two adjacent rotary drums 2-1 are opposite in rotation direction.
The rotary drum 2-1 can enable the bagged food to roll in the rotary drum 2-1, so that the mobility of food inside the bagged food is improved, the cooling effect inside the bagged food is effectively improved, the length of a water bath cooling assembly line is reduced, and the occupied area of water bath cooling equipment is reduced.
The driving mechanism 3 comprises a driving motor 3-1 fixedly arranged in the middle of the frame 1, a motor shaft of the driving motor 3-1 is coaxially and fixedly provided with a driving bevel gear 3-2, the driving bevel gear 3-2 is meshed with two driven bevel gears 3-3, the two driven bevel gears 3-3 are oppositely arranged, one side of each driven bevel gear 3-3 opposite to the other side is respectively provided with a transmission unit 3-4, and each transmission unit 3-4 is used for respectively driving two rotary cylinders 2-1 positioned on one side of the driving motor 3-1 to rotate.
The driving motor 3-1 drives the driving bevel gear 3-2 to rotate, and then drives the two driven bevel gears 3-3 to rotate respectively, the rotation directions of the two driven bevel gears 3-3 are opposite, and the rotary drum 2-1 is driven to rotate respectively through the transmission unit 3-4, so that the bagged food can be rolled in the cooling tank 1-1, and the cooling effect is improved.
The transmission unit 3-4 comprises a transmission shaft 3-41 which is coaxially and fixedly connected with the driven bevel gear 3-3, a driving shaft 3-42 is sleeved on the outer side of the transmission shaft 3-41, two ends of the transmission shaft 3-41 respectively extend to the outer side of the driving shaft 3-42, the driving shaft 3-42 and the transmission shaft 3-41 axially and fixedly rotate radially, one end, far away from the driven bevel gear 3-3, of the driving shaft 3-42 and one end, far away from the driven bevel gear 3-3, of the transmission shaft 3-42 are respectively and fixedly provided with a driving gear 3-43, the driving gear 3-43 at one end of the transmission shaft 3-41 is meshed with a gear ring 2-3 far away from the driving motor 3-1, and the driving gear 3-43 at one end of the driving shaft 3-42 is meshed with the gear ring 2-3 close to the driving motor 3-1;
and a linkage unit 3-5 arranged between the transmission shaft 3-41 and the driving shaft 3-42. The transmission of power between the transmission shaft 3-41 and the driving shaft 3-42 is realized through the linkage unit 3-5, so that the transmission shaft 3-41 drives the driving shaft 3-42 to synchronously rotate in the rotating process.
The linkage unit 3-5 comprises a power gear 3-51 which is coaxially and fixedly arranged with the transmission shaft 3-41 and the driving shaft 3-42 respectively, each power gear 3-51 is positioned at one end of the transmission shaft 3-41 and one end of the driving shaft 3-42, which is close to the driven bevel gear 3-3, each power gear 3-51 is meshed with one intermediate gear 3-52 respectively, and the two intermediate gears 3-52 are meshed with each other;
the transmission shaft 3-41 drives the driving shaft 3-42 to reversely rotate through the cooperation of the plurality of power gears 3-51 and the intermediate gears 3-52, so that the rotation of the two adjacent rotating drums 2-1 is reversely rotated;
the device also comprises a bracket 3-53 fixedly arranged on the frame 1, and the brackets 3-53 are respectively and rotatably connected with the two intermediate gears 3-52.
The frame 1 is fixedly provided with a plurality of supporting frames 3-6, and the supporting frames 3-6 are respectively connected with a transmission shaft 3-41 and a driving shaft 3-42 in a rotating way.
The support frame 3-6 can improve the stability of the transmission shaft 3-41 and the driving shaft 3-42 in the use process.
The lower part of the cooling tank 1-1 is provided with a plurality of drainage branch pipes in an array manner, and each drainage branch pipe is communicated with a drainage pipe 1-4;
the cooling device further comprises a water inlet pipe 1-5 fixedly arranged on the cooling tank 1-1, a plurality of water inlet branch pipes are arranged on the pipe body of the water inlet pipe 1-5 in an array mode, and the water outlet ends of the water inlet branch pipes are arranged towards the inside of the cooling tank 1-1.
Further set up the water tank in frame 1 one side, set up temperature regulation equipment in the water tank for ensure the invariable of water temperature in the water tank, inlet tube 1-5 and outlet pipe communicate the water tank respectively, in the water flow direction cooling tank 1-1 through inlet tube 1-5, in the water flow direction water tank in the cooling tank 1-1 through drain pipe 1-4, make the water in the cooling tank 1-1 slide, keep the stability of the temperature of water in the cooling tank 1-1, avoid along with the increase of bagged food, lead to the temperature of water in the cooling tank 1-1 to rise, influence the cooling effect to the bagged food.
The outer surface of the conveyor belt 1-3 is provided with an array of several bosses which facilitate the movement of the bagged food on the conveyor belt 1-3, the high-level end of the conveyor belt 1-3 extending outside the cooling tank 1-1.
The transmission belt is used for transferring the cooled bagged food to the outer side of the cooling tank 1-1, and collecting and storing the bagged food uniformly, so that the bagged food can be transported in the later period conveniently.
When the automatic packaging machine is used, packaged bagged food flows into the rotary drum 2-1 through the sliding plate 1-2, the bagged food is pushed by the feeding tables 2-12 of different rotary drums 2-1 to move from the inlet end to the outlet end of the conveying mechanism 2, the rotary drum 2-1 can drive the bagged food to roll in the rotary drum 2-1 in the moving process of the bagged food, and the food in the bagged food flows in the rolling process, so that the food in the bagged food is contacted with water in the cooling tank 1-1, the temperature of the bagged food is reduced, the rotary drums 2-1 in different rotary directions can realize the change of the rolling direction of the bagged food, and the temperature reducing effect of the bagged food is improved;
after the temperature of the bagged food is reduced, the bagged food is moved onto the conveyor belt 1-3 through the outlet end of the conveying mechanism 2, and the bagged food is moved to the outer side of the cooling tank 1-1 through the conveyor belt 1-3 to be collected and stored uniformly.
The foregoing is only illustrative of the present invention and is not to be construed as limiting thereof, but rather as various modifications, equivalent arrangements, improvements, etc., within the spirit and principles of the present invention.

Claims (5)

1. The utility model provides a bagged food water bath heat sink, its characterized in that includes frame (1), fixed setting is used for the cooling bath of bagged food (1-1) on frame (1), cooling bath (1-1) internal rotation sets up transport mechanism (2), transport mechanism (2) include a plurality of rotary drum (2-1) that rotate in proper order from beginning to end and connect, every rotary drum (2-1) outer wall both ends set up a bearing (2-2) respectively, the inner circle of bearing (2-2) with the outer wall fixed connection of rotary drum (2-1), the outer lane of bearing (2-2) with cooling bath (1-1) inner wall fixed connection, rotary drum (2-1) pass through bearing (2-2) with cooling bath (1-1) rotation is connected, cooling bath (1-1)'s one end fixed setting inclined slide (1-2), the low level end of slide (1-2) extends to in rotary drum (2-1), be close to transport mechanism's one end (2) of the other end is transport mechanism's (2);
the other end of the cooling groove (1-1) is provided with an inclined conveyor belt (1-3), and the low horizontal end of the conveyor belt (1-3) extends to the lower part of the outlet end of the conveying mechanism (2);
the device also comprises a driving mechanism (3) for driving the conveying mechanism (2) to rotate;
a plurality of water inlets are arranged on the side wall of each rotary cylinder (2-1) in an array manner, and a plurality of spiral feeding tables (2-12) are arranged on the inner wall of each rotary cylinder (2-1) in an array manner;
the rotary cylinder also comprises a gear ring (2-3) fixedly arranged on the outer surface of the rotary cylinder (2-1);
the driving mechanism (3) comprises a driving motor (3-1) fixedly arranged in the middle of the frame (1), driving bevel gears (3-2) are coaxially and fixedly arranged on a motor shaft of the driving motor (3-1), the driving bevel gears (3-2) are meshed with two driven bevel gears (3-3), the two driven bevel gears (3-3) are oppositely arranged, one side of each driven bevel gear (3-3) opposite to the other side is respectively provided with a transmission unit (3-4), and each transmission unit (3-4) respectively drives two rotary cylinders (2-1) on one side of the driving motor (3-1) to rotate;
the transmission unit (3-4) comprises a transmission shaft (3-41) which is coaxially and fixedly connected with the driven bevel gear (3-3), a driving shaft (3-42) is sleeved on the outer side of the transmission shaft (3-41), two ends of the transmission shaft (3-41) respectively extend to the outer side of the transmission shaft (3-42), the transmission shaft (3-42) and the transmission shaft (3-41) axially and fixedly rotate radially, one end, far away from the driven bevel gear (3-3), of the transmission shaft (3-42) is coaxially and fixedly provided with a driving gear (3-43), the driving gear (3-43) at one end of the transmission shaft (3-41) is meshed with a gear ring (2-3) far away from the driving motor (3-1), and the driving gear (3-43) at one end of the transmission shaft (3-42) is meshed with the gear ring (2-3) close to the driving motor (3-1);
the device also comprises a linkage unit (3-5) arranged between the transmission shaft (3-41) and the driving shaft (3-42);
the linkage unit (3-5) comprises a power gear (3-51) which is coaxially and fixedly arranged with the transmission shaft (3-41) and the driving shaft (3-42), each power gear (3-51) is respectively positioned at one end of the transmission shaft (3-41) and one end of the driving shaft (3-42) close to the driven bevel gear (3-3), each power gear (3-51) is respectively meshed with an intermediate gear (3-52), and the two intermediate gears (3-52) are meshed with each other;
the device also comprises brackets (3-53) fixedly arranged on the frame (1), wherein the brackets (3-53) are respectively and rotatably connected with the two intermediate gears (3-52).
2. A bagged food water bath temperature reducing device according to claim 1, characterized in that the screw threads of the feeding tables (2-12) of two adjacent rotating drums (2-1) are opposite in direction.
3. The bagged food water bath cooling device according to claim 1, characterized in that a plurality of supporting frames (3-6) are fixedly arranged on the frame (1), and the supporting frames (3-6) are respectively connected with the transmission shaft (3-41) and the driving shaft (3-42) in a rotating way.
4. The bagged food water bath cooling device according to claim 1, characterized in that the lower part of the cooling tank (1-1) is provided with a plurality of drainage branch pipes in array, and each drainage branch pipe is communicated with a drainage pipe (1-4);
the cooling device is characterized by further comprising a water inlet pipe (1-5) fixedly arranged on the cooling tank (1-1), wherein a plurality of water inlet branch pipes are arranged on the pipe body of the water inlet pipe (1-5) in an array mode, and the water outlet ends of the water inlet branch pipes face the inside of the cooling tank (1-1).
5. A bagged food water bath cooling apparatus according to claim 1, characterized in that the outer surface of the conveyor belt (1-3) is provided with a plurality of bosses in an array, the high level end of the conveyor belt (1-3) extending to the outside of the cooling tank (1-1).
CN202111619963.6A 2021-12-23 2021-12-23 Bagged food water bath cooling device Active CN114259007B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111619963.6A CN114259007B (en) 2021-12-23 2021-12-23 Bagged food water bath cooling device

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Application Number Priority Date Filing Date Title
CN202111619963.6A CN114259007B (en) 2021-12-23 2021-12-23 Bagged food water bath cooling device

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Publication Number Publication Date
CN114259007A CN114259007A (en) 2022-04-01
CN114259007B true CN114259007B (en) 2023-10-20

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN209910350U (en) * 2019-05-09 2020-01-07 中核华纬工程设计研究有限公司 Internal screw indirect heating and cooling rotary drum all-in-one machine
CN210157948U (en) * 2018-03-28 2020-03-20 张玉瀚 Cooling tank for food processing
CN112322855A (en) * 2020-10-29 2021-02-05 徐州欧百瑞智能设备有限公司 Aluminum profile air cooling equipment
CN112728867A (en) * 2020-12-30 2021-04-30 北京嘉和一品企业管理有限公司 Bagged food cooling system
CN216660612U (en) * 2021-12-23 2022-06-03 北京嘉和一品企业管理有限公司 Water bath cooling device for soft-packaged food

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN210157948U (en) * 2018-03-28 2020-03-20 张玉瀚 Cooling tank for food processing
CN209910350U (en) * 2019-05-09 2020-01-07 中核华纬工程设计研究有限公司 Internal screw indirect heating and cooling rotary drum all-in-one machine
CN112322855A (en) * 2020-10-29 2021-02-05 徐州欧百瑞智能设备有限公司 Aluminum profile air cooling equipment
CN112728867A (en) * 2020-12-30 2021-04-30 北京嘉和一品企业管理有限公司 Bagged food cooling system
CN216660612U (en) * 2021-12-23 2022-06-03 北京嘉和一品企业管理有限公司 Water bath cooling device for soft-packaged food

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