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A kind of control method of soymilk machine

A control method, the technology of soybean milk machine, applied in the field of control of soybean milk machine, can solve the problems of affecting the safety of the whole machine, the rise of machine temperature, and the overflow of slurry, so as to avoid the sharp rise of the temperature rise of the whole machine, reduce the heat, and ensure the production The effect of slurry efficiency

Active Publication Date: 2020-03-06
JOYOUNG CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At this time, if the soy milk is at a higher temperature, the heat generated by the motor is equivalent to secondary heating, which may cause the slurry to overflow and bring safety hazards
[0003] In addition, during the working process of the soybean milk machine, the machine is in a state of high temperature rise due to heating and water vapor. At this time, if the motor works at high speed, the internal temperature rise of the machine will rise sharply, which will affect the safety of the whole machine.

Method used

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  • A kind of control method of soymilk machine
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  • A kind of control method of soymilk machine

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0056] A control method for a soybean milk machine, such as figure 1 As shown, the method may include S101-S103:

[0057] S101. During the working process of the motor, detect the temperature inside the head of the soybean milk machine and the slurry temperature.

[0058] In the embodiment of the present invention, a thermistor can be pre-set in the upper space of the head of the soymilk machine to detect the temperature rise of the whole machine in the head (that is, the temperature inside the head of the soymilk machine), and a temperature sensor can be set at the lower part of the head. To check the slurry temperature. Set the temperature sensor at the lower part of the machine head as RT1, and the measured temperature is Tc1; the thermistor at the upper part of the machine head is RT2, and the measured temperature is Tc2; RT1 mainly detects the slurry temperature, and RT2 mainly detects the temperature inside the machine head.

[0059] S102. Determine the working conditi...

Embodiment 2

[0085] The difference between this embodiment and the first embodiment is that the working condition of the soymilk maker is determined by the rate of temperature change, thereby limiting the working mode of the soymilk maker, so as to prevent the risk of overflow and the risk of failure of electronic components.

[0086] Optionally, as in image 3 As shown, determining the working conditions of the soymilk maker according to the temperature inside the head of the soymilk maker and the slurry temperature may also include S301-S302:

[0087] S301. Calculate the first change rate of the slurry temperature within the preset first time difference, and calculate the second change rate of the temperature in the head within the preset second time difference;

[0088] S302. When the first change rate is greater than or equal to the preset first change rate threshold and the latest detected slurry temperature is greater than or equal to the preset second temperature threshold, determin...

Embodiment 3

[0102] On the basis of Examples 1 and 2, this example provides a scheme for cooling down the temperature of the soymilk machine before beating.

[0103] Optionally, the method also includes:

[0104] If the temperature in the machine head is greater than or equal to the preset fourth temperature threshold before beating, then increase the waiting time before starting beating until the temperature in the machine head is less than or equal to the preset fifth temperature threshold, according to the preset The beating process starts beating; wherein, the fifth temperature threshold is smaller than the fourth temperature threshold.

[0105] In the embodiment of the present invention, the fourth temperature threshold and the fifth temperature threshold can be defined according to different application scenarios, and the specific values ​​thereof are not limited. The fourth temperature threshold may include: 65°C-75°C, for example 70°C; the fifth temperature threshold may include: ...

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Abstract

An embodiment of the invention discloses a soybean milk maker control method. The soybean milk maker control method includes detecting internal temperature of a head of a soybean milk maker and temperature of soybean milk, determining working status of the soybean milk maker according to the internal temperature of the head of the soybean milk maker and the temperature of soybean milk, and regulating motion states of a motor during juicing according to the working status. According to the embodiment, by the soybean milk maker control method, the risk of spilling and potential safety hazard of the soybean milk maker can be detected in time and working performance of the whole soybean milk maker is improved.

Description

technical field [0001] The embodiment of the present invention relates to the control technology of cooking equipment, especially to a control method of a soybean milk machine. Background technique [0002] At present, when the soymilk machine is working, the motor generates a lot of heat when the blade rotates at high speed and grinds. At this time, if the soybean milk is at a relatively high temperature, the heat generated by the motor is equivalent to secondary heating, which may cause the slurry to overflow and bring potential safety hazards. [0003] In addition, during the working process of the soybean milk machine, the machine is in a state of high temperature rise due to heating and water vapor. At this time, if the motor works at high speed, the internal temperature rise of the machine will rise sharply, which will affect the safety of the whole machine. Contents of the invention [0004] The embodiment of the present invention provides a control method of a soy...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A47J43/04G05D23/20
CPCA47J43/04G05D23/20
Inventor 王旭宁窦小勇
Owner JOYOUNG CO LTD
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