CN218942178U - Thermal ultrasonic homogenizing pasteurizer - Google Patents

Thermal ultrasonic homogenizing pasteurizer Download PDF

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Publication number
CN218942178U
CN218942178U CN202223546400.1U CN202223546400U CN218942178U CN 218942178 U CN218942178 U CN 218942178U CN 202223546400 U CN202223546400 U CN 202223546400U CN 218942178 U CN218942178 U CN 218942178U
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milk
water bath
ultrasonic
wall
channel
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张同波
张子薇
龙丰羽
张子扬
张梓琦
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Abstract

A thermal ultrasonic homogenizing and pasteurizing machine belongs to the technical field of dairy processing devices, and particularly relates to a thermal ultrasonic homogenizing and pasteurizing machine. The utility model provides a thermal ultrasonic homogenizing pasteurizer which achieves various dairy treatment effects such as homogenization, pasteurization and the like by utilizing heating and ultrasonic technology, and has the advantages of simple structure, easy operation and good use effect. The utility model comprises a shell, wherein the outer wall of the shell is provided with a power input end, a concave box is arranged in the shell, a groove above the concave box is a milk storage tank, a hollow space inside the concave box is a water bath tank, an electric heater is arranged inside the water bath tank, an ultrasonic generator and a total control board are arranged below the concave box, the ultrasonic generator is connected with a plurality of ultrasonic vibrators arranged on the outer wall of the concave box, and the total control board is connected with the power input end, the ultrasonic generator and the electric heater.

Description

Thermal ultrasonic homogenizing pasteurizer
Technical Field
The utility model belongs to the technical field of dairy processing devices, and particularly relates to a thermal ultrasonic homogenizing pasteurizer.
Background
The ultrasonic wave with certain frequency, sound intensity and action time has good emulsifying, homogenizing and non-thermal sterilizing effects, and is an ideal method and means for small-scale dairy processing. However, under the conditions of equipment investment and reasonable price ratio in the prior art and energy consumption, the non-thermal sterilization can not completely meet the requirements of milk pasteurization. The auxiliary heating process is needed to a certain extent, so that better effect than the traditional pasteurization can be achieved, and the protection of fresh milk nutrition and bioactive immune substances is further improved. The shelf life of the fresh milk is prolonged to a corresponding extent. Meanwhile, the homogenization treatment of the dairy products is finished in the thermal ultrasonic pasteurization process, the processing is simple and efficient, the cost is low, and the method is particularly suitable for the small-scale dairy product processing.
Disclosure of Invention
The utility model aims at the problems and provides the thermal ultrasonic homogenizing pasteurizer which combines the ultrasonic technology and the heat treatment technology to realize pasteurization and homogenization simultaneously, has a simple structure and can monitor the temperature and adjust the water level in real time.
In order to achieve the purpose, the utility model adopts the following technical scheme that the multifunctional milk box comprises a shell, wherein a power input end is arranged on the outer wall of the shell, a concave box is arranged in the shell, a milk storage groove is arranged in a groove above the concave box, a water bath groove is arranged in a hollow space inside the concave box, an ultrasonic generator and a total control board are arranged below the concave box, the ultrasonic generator is connected with a plurality of ultrasonic vibrators arranged on the outer wall of the concave box, and the total control board is connected with the power input end, the ultrasonic generator and an electric heater.
As a preferable scheme of the utility model, a milk tank cover is arranged above the milk tank.
Further, a milk tank cover handle is arranged on the milk tank cover.
As another preferable scheme of the utility model, a water bath temperature sensor is arranged in the water bath, and the water bath temperature sensor is connected with the main control board.
As a third preferred scheme of the utility model, a milk storage tank temperature sensor is arranged in the milk storage tank and is connected with the main control board.
As a fourth preferred scheme of the utility model, the inner wall of the water bath is provided with a working water level sensor, the height of the working water level sensor corresponds to the working water level, and the working water level sensor is connected with the main control board.
As a fifth preferred scheme of the utility model, a first channel is arranged between the bottom of the water bath and the outer wall of the shell, and a water inlet and drainage electric valve is arranged at the outlet of the first channel close to the outer wall of the shell and is connected with a main control board.
As a sixth preferred scheme of the utility model, a second channel is arranged between the milk storage tank and the outer wall of the shell, and a milk discharging valve is arranged at the position, close to the outlet of the outer wall of the shell, of the second channel.
As a seventh preferred scheme of the utility model, a third channel is arranged between the side wall of the water bath tank and the outer wall of the shell, and the position of the third channel is higher than the working water level.
As an eighth preferred scheme of the utility model, the milk storage tank and the water bath tank are separated into independent devices, and a plurality of milk storage tanks with milk storage tank handles are arranged in the water bath tank.
Further, a handheld milk tank temperature sensor is arranged in the milk storage tank and is connected with a milk temperature sensor coupler arranged on the outer wall of the shell, and the milk temperature sensor coupler is connected with the total control board.
The utility model has the beneficial effects that: the utility model uses ultrasonic technology and heat treatment technology, and can realize pasteurization and homogenization treatment of milk product at the same time. The integrated and split schemes meet two different use environments of large-scale industrial production and families. The milk storage tank temperature sensor arranged inside the milk storage tank and the water bath tank temperature sensor arranged inside the water bath tank can monitor the change of temperature in real time, and the water tank temperature sensor can regulate and control the temperature in the water bath tank and the milk storage tank more accurately by controlling the water injection quantity of the water inlet and outlet electric valve to the water bath tank. The working water level sensor and the third channel can prevent overflow, and the purpose of rapid cooling can be achieved through the drainage of the third channel.
Drawings
FIG. 1 is a schematic structural diagram of an integrated embodiment of the present utility model.
Fig. 2 is a schematic structural view of a split embodiment of the present utility model.
In the drawing, 1 is a shell, 2 is a power input end, 3 is a concave box, 4 is a milk storage tank, 5 is a water bath tank, 6 is an ultrasonic generating device and a control board, 7 is an ultrasonic vibrator, 8 is an electric heater, 9 is a milk tank cover, 10 is a milk tank cover handle, 11 is a water bath tank temperature sensor, 12 is a milk storage tank temperature sensor, 13 is a first channel, 14 is a water inlet and outlet electric valve, 15 is a second channel, 16 is a milk discharge valve, 17 is a third channel, 18 is a water level sensor, 19 is a handheld milk temperature sensor, 20 is a milk temperature sensor coupler, 21 is a milk storage tank handle, and 22 is a total control board.
Detailed Description
As shown in figure 1, the utility model comprises a shell 1, wherein the outer wall of the shell 1 is provided with a power input end 2, a concave box 3 is arranged in the shell 1, a milk storage tank 4 is arranged in a groove above the concave box 3, a water bath 5 is arranged in a hollow space inside the concave box 3, an ultrasonic generator 6 and a total control board 22 are arranged below the concave box 3, the ultrasonic generator 6 is connected with a plurality of ultrasonic vibrators 7 arranged on the outer wall of the concave box, and the total control board 22 is connected with the power input end 2, the ultrasonic generator 6 and an electric heater 8.
As a preferable scheme of the utility model, a milk tank cover 9 is arranged above the milk tank 4, and a milk tank cover handle 10 is arranged on the milk tank cover 9.
As another preferable scheme of the utility model, a water bath temperature sensor 11 is arranged inside the water bath 5, and the water bath temperature sensor 11 is connected with a main control board 22.
As a third preferred embodiment of the present utility model, the milk tank 4 is internally provided with a milk tank temperature sensor 12, and the milk tank temperature sensor 12 is connected to a main control board 22.
As a fourth preferred scheme of the utility model, the inner side wall of the water bath 5 is provided with a working water level sensor 18, the height of the working water level sensor 18 corresponds to the working water level, and the working water level sensor 18 is connected with a main control panel 22.
As a fifth preferred scheme of the utility model, a first channel 13 is arranged between the bottom of the water bath 5 and the outer wall of the shell 1, a water inlet and outlet electric valve 14 is arranged at the outlet of the first channel 13 close to the outer wall of the shell 1, the water inlet and outlet electric valve 14 is connected with a total control board 22, and water is injected into the water bath 5 by controlling the water inlet and outlet electric valve 14 so as to regulate the temperatures in the water bath 5 and the milk storage tank 4.
As a sixth preferred solution of the utility model, a second channel 15 is arranged between the milk storage tank 4 and the outer wall of the housing 1, and a milk release valve 16 is arranged at the outlet of the second channel 15 close to the outer wall of the housing 1.
As a seventh preferred solution of the present utility model, a third channel 17 is provided between the side wall of the water bath 5 and the outer wall of the housing 1, the third channel 17 is located higher than the working water level, and the third channel 17 serves as an overflow port, so that the water can be discharged when the water in the water bath 5 is excessive.
As shown in fig. 2, there is a second split embodiment of the present utility model.
As an eighth preferred solution of the utility model, the milk storage tank 4 and the water bath tank 5 are separated into independent devices, and a plurality of milk storage tanks 4 with milk storage tank handles 21 can be arranged in the water bath tank 5.
Further, a hand-held milk tank temperature sensor 19 is arranged in the milk tank 4, the hand-held milk tank temperature sensor 19 is connected with a milk temperature sensor coupler 20 arranged on the outer wall of the shell 1, and the milk temperature sensor coupler 20 is connected with the ultrasonic generating device and the control board 6.
The first embodiment of the utility model is designed as a whole, the milk storage tank 4 and the water bath tank 5 are integrated, the milk to be processed is put into the milk storage tank 4 when in operation, the power supply input end 2 is connected with a power supply, the water inlet and outlet electric valve 14 is controlled to fill water into the water bath tank 5, the water level reaches the working water level, the working water level sensor 18 can provide feedback to control the water inlet and outlet electric valve 14 to stop filling water, the ultrasonic generator 6 and the electric heater 8 work simultaneously to pasteurize and homogenize the milk, the ultrasonic generator 6 and the electric heater 8 stop working after the milk is processed, the water inlet and outlet electric valve 14 continuously fills water to rapidly reduce the temperature in the water bath tank 5 and the milk storage tank 4, redundant water can be discharged through a third channel, after the target temperature is reached, residual water in the water bath tank is discharged from the water inlet and outlet electric valve 14, and cooled milk can be discharged by the milk discharging valve 16.
The second embodiment of the utility model is a split type design, the milk storage tank 4 and the water bath tank 5 are two independent devices, the split type milk storage tank is suitable for small household application, a plurality of milk storage tanks 4 can be placed in the water bath tank 5, the handheld milk temperature sensor 19 is inserted into any one of the milk storage tanks 4, the size is reduced compared with the first embodiment, so that the electric heater 8 is arranged on the outer wall of the water bath tank 5, the water inlet and outlet electric valve 14 is a manual device, a working water level sensor is not required to be arranged, milk is put into the milk storage tank 4 during working, a power supply is connected to the power supply input end 2, the water inlet and outlet electric valve 14 is manually opened to fill water into the water bath tank 5, water injection is stopped after the daily working water level is observed, the ultrasonic generator 6 and the electric heater 8 simultaneously work to pasteurize and homogenize milk, after the completion, the ultrasonic generator 6 and the electric heater 8 stop working, the water inlet and outlet electric heater 14 are manually opened to continuously fill water into the water bath tank 14 to reduce the water temperature in the water bath tank 5, thereby reducing the milk temperature in the milk storage tank 4, the redundant water can be discharged from the third channel 17, after reaching the target temperature, the water inlet and outlet electric valve 14 stops water injection, the water injection and water into the milk outlet electric valve 5 to fill water tank 5, the water after the residual milk is discharged from the water bath tank 21, and the milk storage tank is discharged through the water tank 4.
It should be understood that the foregoing detailed description of the present utility model is provided for illustration only and is not limited to the technical solutions described in the embodiments of the present utility model, and those skilled in the art should understand that the present utility model may be modified or substituted for the same technical effects; as long as the use requirement is met, the utility model is within the protection scope of the utility model.

Claims (10)

1. The utility model provides a thermal ultrasonic homogeneity pasteurization machine, including shell (1), shell (1) outer wall is provided with power input (2), be provided with spill case (3) in shell (1), spill case (3) top recess is milk storage tank (4), spill case (3) inside cavity space is water bath (5), its characterized in that, spill case (3) below is provided with supersonic generator (6) and total control panel (22), supersonic generator (6) are connected in supersonic vibrator (7) of spill case outer wall with a plurality of setting, total control panel (22) are connected with power input (2), supersonic generator (6) and electric heater (8).
2. A thermo-ultrasonic homogeneous pasteurization machine according to claim 1, characterized in that a milk channel cover (9) is arranged above the milk channel (4), and that a milk channel cover handle (10) is arranged on the milk channel cover (9).
3. A thermo-ultrasonic homogeneous pasteurization machine according to claim 1, characterized in that the water bath (5) is internally provided with a water bath temperature sensor (11), the water bath temperature sensor (11) being connected with the general control board (22).
4. A thermo-ultrasonic homogeneous pasteurization machine according to claim 1, characterized in that the milk tank (4) is internally provided with a milk tank temperature sensor (12), the milk tank temperature sensor (12) being connected with the general control board (22).
5. A thermo-ultrasonic homogeneous pasteurization machine according to claim 1, characterized in that the inner side wall of the water bath (5) is provided with a working water level sensor (18), the working water level sensor (18) is corresponding in height to the working water level, and the working water level sensor (18) is connected with the master control board (22).
6. A thermal ultrasonic homogenizing pasteurizer according to claim 1, characterized in that a first channel (13) is arranged between the bottom of the water bath (5) and the outer wall of the housing (1), a water inlet and outlet electric valve (14) is arranged at the outlet of the first channel (13) close to the outer wall of the housing (1), and the water inlet and outlet electric valve (14) is connected with a total control board (22).
7. A thermo-ultrasonic homogeneous pasteurization machine according to claim 1, characterized in that a second channel (15) is arranged between the milk reservoir (4) and the outer wall of the housing (1), and that a milk discharge valve (16) is arranged at the outlet of the second channel (15) close to the outer wall of the housing (1).
8. A thermo-ultrasonic homogeneous pasteurization machine according to claim 1, characterized in that a third channel (17) is arranged between the side wall of the water bath (5) and the outer wall of the housing (1), the third channel (17) being located above the working water level.
9. A thermo-ultrasonic homogeneous pasteurization machine according to claim 1, characterized in that the milk storage tank (4) is separated from the water bath (5) into separate units, and that several milk storage tanks (4) with milk storage tank handles (21) are arranged inside the water bath (5).
10. A thermo-ultrasonic homogeneous pasteurization machine according to claim 9, characterized in that a hand-held milk tank temperature sensor (19) is arranged in the milk tank (4), the hand-held milk tank temperature sensor (19) is connected with a milk temperature sensor coupler (20) arranged on the outer wall of the housing (1), and the milk temperature sensor coupler (20) is connected with the total control board (22).
CN202223546400.1U 2022-12-30 2022-12-30 Thermal ultrasonic homogenizing pasteurizer Active CN218942178U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223546400.1U CN218942178U (en) 2022-12-30 2022-12-30 Thermal ultrasonic homogenizing pasteurizer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223546400.1U CN218942178U (en) 2022-12-30 2022-12-30 Thermal ultrasonic homogenizing pasteurizer

Publications (1)

Publication Number Publication Date
CN218942178U true CN218942178U (en) 2023-05-02

Family

ID=86103575

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223546400.1U Active CN218942178U (en) 2022-12-30 2022-12-30 Thermal ultrasonic homogenizing pasteurizer

Country Status (1)

Country Link
CN (1) CN218942178U (en)

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