CN220657418U - Milk processing blending tank - Google Patents

Milk processing blending tank Download PDF

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Publication number
CN220657418U
CN220657418U CN202322263470.4U CN202322263470U CN220657418U CN 220657418 U CN220657418 U CN 220657418U CN 202322263470 U CN202322263470 U CN 202322263470U CN 220657418 U CN220657418 U CN 220657418U
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China
Prior art keywords
stirring
tank
tube
fixedly connected
steam
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Active
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CN202322263470.4U
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Chinese (zh)
Inventor
刘俊峰
邸鹏飞
尹雪霆
杨丽斌
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Shanxi Jiuniu Animal Husbandry Co ltd
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Shanxi Jiuniu Animal Husbandry Co ltd
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Priority to CN202322263470.4U priority Critical patent/CN220657418U/en
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Abstract

The application relates to a milk processing allotment jar relates to the technical field of milk processing, and it includes jar body, agitator tube, stirring board and steam generator, and the agitator tube rotates to set up in jar internal, and the circumference and the axis of agitator tube are all provided with a plurality of along the agitator tube, and the inside cavity of agitator board, and communicate in the agitator tube, and the one end of agitator tube communicates in steam generator, is provided with the driving piece in the agitator tube, and the driving piece is used for driving the agitator tube and rotates when steam lets in the agitator tube. The milk heating device has the effect that milk is heated easily and uniformly.

Description

Milk processing blending tank
Technical Field
The application relates to the technical field of milk processing, in particular to a milk processing blending tank.
Background
In the milk processing process, the blending tank is an indispensable device and is mainly used for uniformly stirring milk products and other auxiliary materials after being matched.
When the blending tank is used for stirring, the milk needs to be heated, the heating mode of the blending tank is usually steam heating, and the blending tank is used for stirring the milk through the motor-driven stirring plate while heating, so that the milk is uniformly blended.
Because steam of the blending tank can only exchange heat with milk close to the side wall of the blending tank, the milk at the center of the blending tank is difficult to heat synchronously, and uneven heating of the milk is easy to cause.
Disclosure of Invention
In order to enable milk to be heated easily and uniformly, the application provides a milk processing and blending tank.
The application provides a milk processing blending tank adopts following technical scheme:
the utility model provides a milk processing blending jar, includes jar body, agitator tube, stirring board and steam generator, the agitator tube rotate set up in the jar body, the stirring board is followed circumference and the axis of agitator tube all are provided with a plurality ofly, the inside cavity of stirring board, and communicate in the agitator tube, the one end of agitator tube communicate in steam generator, be provided with the driving piece in the agitator tube, the driving piece is used for driving when steam lets in the agitator tube rotates.
Through adopting above-mentioned technical scheme, steam generator produces steam, and in the steam flows the agitator tube, the drive piece drive agitator tube rotated, and in the agitator tube was flowed to the agitator plate, the steam in agitator tube and the agitator plate carried out the heat exchange with the internal milk of jar, because the drive piece can drive the agitator tube and rotate when steam lets in the agitator tube to make agitator tube and agitator plate can be in the stirring to milk heating, and then make the heating of the interior milk of blending jar easily even.
Optionally, the tank wall of the tank body is hollow, one end of the stirring pipe, which is far away from the steam generator, is communicated with the tank wall of the tank body, the tank wall of the tank body is also communicated with the steam generator, and steam of the steam generator flows back to the inside of the tank body along the tank wall of the tank body from the stirring pipe.
By adopting the technical scheme, the steam in the stirring pipe flows into the tank wall of the tank body, so that the steam can heat the milk close to the tank wall of the tank body after heating the milk in the center of the regulating tank, and the utilization rate of the steam is improved; meanwhile, steam flows back to the steam generator from the side wall of the tank body, so that the steam can be recycled, and the heating effect of the steam on milk is easy to keep.
Optionally, the driving piece includes drive shaft and impeller, the drive shaft with the coaxial fixedly connected of stirring pipe, the impeller is provided with a plurality ofly, and follows the axis direction coaxial fixedly connected of drive shaft in the drive shaft.
Through adopting above-mentioned technical scheme, steam lets in the agitator tube, and strikes on the impeller, and steam promotes the impeller and rotates, and the impeller drives the drive shaft and rotates, and the drive shaft drives the agitator tube and rotates to make the agitator tube be convenient for rotate with the help of steam.
Optionally, the stirring inboard has linked firmly the baffle, the baffle makes stirring inboard internal partition is two mutual intercommunication's cavity, two cavities all with the stirring pipe intercommunication, and the intercommunication department is followed the flow direction of steam in the stirring pipe is arranged, has all linked firmly a plurality of guide plates in every cavity, and is a plurality of the guide plate is in the baffle with set up in turn between the inside wall of stirring board, and all set up along the flow direction slope of indoor steam.
Through adopting above-mentioned technical scheme, steam flows to a cavity of stirring board earlier, flows in another cavity again, and steam flows along the guide plate that the slope set up in the cavity, makes the time extension that steam remains in the stirring board through separating flow board and guide plate, has improved the heating effect of stirring board.
Optionally, the stirring plate is fixedly connected with a plurality of first heat conducting fins.
Through adopting above-mentioned technical scheme, through setting up first conducting strip on the stirring board, further improved the heating effect of stirring board.
Optionally, the inside wall of the tank body has fixedly connected with a plurality of second heat conducting fins, and is a plurality of the second heat conducting fins are followed the axis direction of stirring pipe is arranged, and with follow the stirring board that stirring pipe axis direction was arranged sets up in turn.
Through adopting above-mentioned technical scheme, through setting up the second conducting strip, improved the heating effect of jar body lateral wall.
Optionally, an insulating layer is fixedly connected to the outer side of the tank wall of the tank body.
Through adopting above-mentioned technical scheme, through setting up the heat preservation for the inside heat of jar body jar wall is difficult for losing, has reduced jar body heating's energy consumption.
Optionally, the lateral wall of stirring pipe all is provided with a plurality of temperature sensor along circumference and axial, temperature sensor has linked firmly thermal-insulated pole, thermal-insulated pole keep away from temperature sensor's one end link firmly in the stirring pipe, link firmly display panel on the lateral wall of the jar body, display panel with all temperature sensor is all electrically connected, display panel is used for showing all temperature sensor's measured value.
Through adopting above-mentioned technical scheme, a plurality of temperature sensor carries out the multi-point position measurement to the inside milk of blending jar, and display panel will all measured values visual display for the user is convenient for learn whether the interior milk of blending jar heats evenly.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the steam is introduced into the stirring pipe, the stirring plate and the tank wall of the tank body, so that the milk in the blending tank is easy to heat uniformly;
2. the driving shaft and the impeller are arranged, so that the stirring pipe and the stirring plate are convenient for heating milk in the stirring process;
3. through setting up baffle and guide plate for the dwell time of stirring inboard steam is prolonged, has improved the heating effect of stirring board.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present application;
fig. 2 is a cross-sectional view of an embodiment of the present application.
Reference numerals illustrate:
1. a tank body; 11. a second heat conductive sheet; 12. a heat preservation layer; 2. a stirring tube; 3. a stirring plate; 31. a flow barrier; 32. a deflector; 33. a first heat conductive sheet; 4. a steam generator; 5. a driving member; 51. a drive shaft; 52. an impeller; 6. a temperature sensor; 61. a heat insulating rod; 7. a display panel.
Detailed Description
The present application is described in further detail below in conjunction with figures 1-2.
The embodiment of the application discloses a milk processing blending tank. Referring to fig. 1 and 2, a milk processing and preparing tank comprises a tank body 1, a stirring pipe 2, a stirring plate 3 and a steam generator 4, wherein the stirring pipe 2 is rotatably arranged in the tank body 1, the stirring plate 3 is hollow and communicated with the stirring pipe 2, and one end of the stirring pipe 2 is communicated with the steam generator 4.
When the milk preparing device is used, the steam generator 4 generates steam and is led into the stirring pipe 2, the steam in the stirring pipe 2 flows into the stirring plate 3, and the steam in the stirring pipe 2 and the stirring plate 3 exchanges heat with milk in the center of the tank body 1, so that the milk in the preparing tank is easy to heat uniformly.
Referring to fig. 2, the tank 1 is in a shape of a circular box and is vertically arranged, the interior of the tank wall of the tank 1 is hollow, and the bottom end of the tank wall of the tank 1 is communicated with the steam generator 4 through a pipeline. The outer side of the tank wall of the tank body 1 is fixedly connected with an insulating layer 12.
The stirring pipe 2 is circular tubular, and is located inside the jar body 1, and stirring pipe 2 and jar body 1 coaxial setting, and the both ends of axis direction rotate with jar body 1 inside top and bottom respectively and be connected, and the top of stirring pipe 2 communicates with jar body 1 jar top of wall, and the bottom of stirring pipe 2 passes through the pipeline intercommunication with steam generator 4, and steam generator 4's steam flows back to self inside from stirring pipe 2 along jar body 1's jar wall.
A driving piece 5 is arranged in the stirring tube 2, the driving piece 5 comprises a driving shaft 51 and an impeller 52, and the driving shaft 51 is fixedly connected with the stirring tube 2 in a coaxial way; the impellers 52 are provided in plural and arranged in the axial direction of the drive shaft 51, and the impellers 52 are fixedly connected coaxially with the drive shaft 51.
The stirring plate 3 is provided in plurality, and a plurality of stirring plates 3 are provided along the circumference and the axial direction of the stirring tube 2, and the stirring plate 3 is rectangular plate-shaped, and the width direction is the same as the axis direction of the stirring tube 2.
The inside of the stirring plate 3 is fixedly connected with a flow separation plate 31, the flow separation plate 31 is rectangular plate-shaped and horizontally arranged, the length direction of the flow separation plate 31 is identical to the length direction of the stirring plate 3, the inside of the stirring plate 3 is divided into two mutually communicated chambers by the flow separation plate 31, the communicated positions of the two chambers are located at one end, far away from the stirring pipe 2, of the flow separation plate 31, and the communicated positions of the two chambers and the stirring pipe 2 are distributed along the vertical direction.
A plurality of rectangular plate-shaped guide plates 32 are fixedly connected in the two chambers, the plurality of guide plates 32 are alternately arranged between the flow separation plates 31 and the inner side walls of the stirring plates 3, the guide plates 32 are obliquely arranged along the flow direction of steam in the chambers, and the width direction of the guide plates 32 is the same as the thickness direction of the inner space of the stirring plates 3.
The stirring plate 3 is provided with a plurality of first heat conducting fins 33, the plurality of first heat conducting fins 33 are distributed along the length direction of the stirring plate 3, the first heat conducting fins 33 are rectangular and annular, the stirring plate 3 is sleeved with the first heat conducting fins 33, and the first heat conducting fins 33 are fixedly connected with the stirring plate 3.
The inside wall of jar body 1 is provided with a plurality of second conducting strips 11, and a plurality of second conducting strips 11 are arranged along the axis direction of agitator tube 2, and second conducting strip 11 is circular cyclic annular, and with the coaxial setting of agitator tube 2, and the second stirring strip links firmly with the inside wall of jar body 1, and a plurality of second stirring strips set up in turn with the stirring board 3 of arranging along the axis direction of agitator tube 2.
When the stirring device is used, the steam generator 4 is started, the steam generator 4 generates steam, the steam flows into the stirring pipe 2, the impeller 52 is pushed to rotate, the impeller 52 drives the driving shaft 51 to rotate, the driving shaft 51 drives the stirring pipe 2 to rotate, the stirring pipe 2 drives the stirring plate 3 to rotate, the stirring plate 3 stirs milk, the steam flows into the stirring plate 3 and flows into another chamber from one chamber of the stirring plate 3, the steam flows in the chamber along the guide plate 32, the steam in the stirring pipe 2 flows back to the steam generator 4 from the tank wall of the tank body 1, and the stirring pipe 2, the stirring plate 3 and the tank wall of the tank body 1 are in heat exchange with the milk in the tank body 1, so that the milk is easy to heat uniformly in the tank body 1.
Referring to fig. 2, the outer side wall of the agitating pipe 2 is provided with a plurality of temperature sensors 6, the plurality of temperature sensors 6 are arranged in the circumferential direction and the axial direction of the agitating pipe 2, and the temperature sensors 6 arranged in the axial direction of the agitating pipe 2 are also alternately arranged with the second heat conductive sheets 11.
The temperature sensor 6 is fixedly connected with a heat insulation rod 61, the heat insulation rod 61 is in a round rod shape and is horizontally arranged, and one end of the heat insulation rod 61 far away from the temperature sensor 6 is fixedly connected with the outer side wall of the stirring tube 2.
The display panel 7 is fixedly connected to the outer side wall of the tank body 1, and the display panel 7 is electrically connected with all the temperature sensors 6 and is used for displaying the measured values of all the temperature sensors 6.
When the milk pot is used, a user can observe the measured values on the display panel 7, and monitor the multi-point temperature of the milk in the pot body 1 according to all the measured values on the display panel 7, so that the user can easily know whether the milk in the pot body 1 is heated uniformly.
The implementation principle of the milk processing and blending tank provided by the embodiment of the application is as follows: when the stirring device is used, the steam generator 4 is started, the steam generator 4 generates steam, the steam flows into the stirring pipe 2 and the stirring plate 3, the steam flows back to the steam generator 4 from the tank wall of the tank body 1, the steam drives the stirring pipe 2 to rotate through the impeller 52 and the driving shaft 51, and flows along the guide plate 32 in the stirring plate 3, so that the stirring pipe 2 and the stirring plate 3 can exchange heat with milk in the stirring process, and the stirring pipe 2, the stirring plate 3 and the tank wall of the tank body 1 can exchange heat with the milk simultaneously, so that the milk in the tank body 1 is easy to heat uniformly.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (8)

1. Milk processing blending jar, its characterized in that: including jar body (1), agitator tube (2), stirring board (3) and steam generator (4), agitator tube (2) rotate set up in jar body (1), stirring board (3) are followed circumference and the axis of agitator tube (2) all are provided with a plurality ofly, inside cavity of stirring board (3), and communicate in agitator tube (2), the one end of agitator tube (2) communicate in steam generator (4), be provided with driving piece (5) in agitator tube (2), driving piece (5) are used for when steam lets in agitator tube (2) the drive agitator tube (2) rotate.
2. The milk processing and blending tank of claim 1, wherein: the steam generator is characterized in that the tank wall of the tank body (1) is hollow, one end of the stirring tube (2) away from the steam generator (4) is communicated with the tank wall of the tank body (1), the tank wall of the tank body (1) is also communicated with the steam generator (4), and steam of the steam generator (4) flows back into the tank body (1) from the stirring tube (2) along the tank wall of the tank body.
3. The milk processing and blending tank of claim 2, wherein: the driving piece (5) comprises a driving shaft (51) and impellers (52), the driving shaft (51) is fixedly connected with the stirring pipe (2) in a coaxial mode, and the impellers (52) are arranged in a plurality and are fixedly connected with the driving shaft (51) in a coaxial mode along the axial direction of the driving shaft (51).
4. The milk processing and blending tank of claim 2, wherein: the stirring device is characterized in that a flow isolation plate (31) is fixedly connected in the stirring plate (3), the flow isolation plate (31) enables the interior of the stirring plate (3) to be divided into two chambers which are mutually communicated, the two chambers are communicated with the stirring pipe (2), the communicating parts are arranged along the flow direction of steam in the stirring pipe (2), a plurality of guide plates (32) are fixedly connected in each chamber, and the guide plates (32) are alternately arranged between the flow isolation plate (31) and the inner side wall of the stirring plate (3) and are obliquely arranged along the flow direction of steam in the chambers.
5. The milk processing and blending tank of claim 1, wherein: a plurality of first heat conducting fins (33) are fixedly connected to the stirring plate (3).
6. The milk processing and blending tank of claim 2, wherein: the inner side wall of the tank body (1) is fixedly connected with a plurality of second heat conducting fins (11), and the second heat conducting fins (11) are distributed along the axis direction of the stirring pipe (2) and are alternately arranged with stirring plates (3) distributed along the axis direction of the stirring pipe (2).
7. The milk processing and blending tank of claim 1, wherein: an insulating layer (12) is fixedly connected to the outer side of the tank wall of the tank body (1).
8. The milk processing and blending tank of claim 1, wherein: the stirring tube is characterized in that a plurality of temperature sensors (6) are arranged on the outer side wall of the stirring tube (2) along the circumferential direction and the axial direction, the temperature sensors (6) are fixedly connected with a heat insulation rod (61), one end of each heat insulation rod (61) away from each temperature sensor (6) is fixedly connected with the stirring tube (2), a display panel (7) is fixedly connected to the outer side wall of the tank body (1), the display panels (7) are electrically connected with all the temperature sensors (6), and the display panels (7) are used for displaying measured values of all the temperature sensors (6).
CN202322263470.4U 2023-08-22 2023-08-22 Milk processing blending tank Active CN220657418U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322263470.4U CN220657418U (en) 2023-08-22 2023-08-22 Milk processing blending tank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322263470.4U CN220657418U (en) 2023-08-22 2023-08-22 Milk processing blending tank

Publications (1)

Publication Number Publication Date
CN220657418U true CN220657418U (en) 2024-03-26

Family

ID=90354048

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322263470.4U Active CN220657418U (en) 2023-08-22 2023-08-22 Milk processing blending tank

Country Status (1)

Country Link
CN (1) CN220657418U (en)

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