Preheating control method and device for glass kettle

The target temperature data is obtained through the temperature sensing device and preheating control is performed, which solves the problem of uneven heating caused by poor thermal conduction performance of the glass kettle, reduces the risk of rupture, and improves safety and user experience.

CN119969818APending Publication Date: 2025-05-13ZHONGSHAN MEIYANG ELECTRIC CO LTD
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Patent Information

Application Number
CN202510242661.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The existing glass kettle heating control technology has uneven heating caused by poor heat conduction performance, which may cause the glass kettle to break and affect the user experience and safety.

Method used

The target temperature data is obtained through the temperature sensing device, determine whether the preheating conditions are met, determine the preheating control parameters, and perform the preheating control operation to ensure that the overall heat of the glass kettle is evenly heated.

Benefits of technology

Reduces the cracking of the glass kettle caused by direct high temperature heating, improving the safety of use and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of kettle heating control, and discloses a preheating control method and device for a glass kettle, and the method comprises the steps: obtaining to-be-analyzed target temperature data through temperature sensing equipment after a starting instruction for the glass kettle is detected; according to the target temperature data, judging whether the target temperature data indicates that the glass kettle meets a preheating condition or not; if yes, determining preheating control parameters of the glass kettle, and performing preheating control on the glass kettle according to the preheating control parameters. Visibly, after the starting instruction of the glass kettle is received, whether the glass kettle meets the preheating condition or not can be intelligently judged according to the obtained target temperature data, and the glass kettle is preheated when the glass kettle meets the preheating condition, so that the heating efficiency of the glass kettle is improved. The situation that the glass kettle is broken due to direct high-temperature heating can be reduced, and therefore the use safety of the glass kettle and the use experience feeling of a user are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of kettle heating control, and in particular to a preheating control method and device for a glass kettle. Background Art

[0002] In the existing glass kettle heating control technology, direct heating is usually adopted, that is, the water temperature of the glass kettle is quickly increased by a heating element until it reaches the boiling point and the heating is automatically stopped. However, there is a significant problem with this heating method: due to the poor thermal conductivity of the glass material, the glass kettle is prone to uneven heating during the heating process, resulting in a sharp rise in the local temperature of the kettle, while the temperature in other areas changes slowly. This phenomenon of excessive regional temperature difference can easily produce thermal stress inside the glass, which may cause the glass kettle to break under long-term use or in extreme cases, which not only affects the user experience, but also poses a safety hazard. It can be seen that it is particularly important to provide a preheating control method for a glass kettle to improve the safety of glass kettle use. Summary of the invention

[0003] The present invention provides a preheating control method and device for a glass kettle, which can reduce the occurrence of glass kettle breakage caused by direct high-temperature heating, thereby improving the use safety of the glass kettle and the user's use experience.

[0004] In order to solve the above technical problems, the first aspect of the present invention discloses a preheating control method for a glass kettle, the method comprising:

[0005] After detecting a start instruction for the glass kettle, a preset temperature sensing device acquires target temperature data to be analyzed; the target temperature data includes regional temperature data of a target area of ​​the glass kettle, and / or water temperature data of current water storage in the glass kettle, and / or ambient temperature data corresponding to the environment where the glass kettle is located;

[0006] According to the target temperature data, determining whether the target temperature data indicates that the glass kettle meets the preheating condition;

[0007] When it is determined that the target temperature data indicates that the glass kettle meets the preheating condition, a preheating control parameter of the glass kettle is determined, and a preheating control operation is performed on the glass kettle according to the preheating control parameter.

[0008] As an optional embodiment, in the first aspect of the present invention, the regional temperature data of the target area of ​​the glass kettle includes the side wall temperature data of the bottle body of the glass kettle;

[0009] Wherein, judging, according to the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition includes:

[0010] When the target temperature data includes the side wall temperature data of the bottle body of the glass kettle, judging whether the side wall temperature data of the bottle body is less than a preset first standard temperature data according to the side wall temperature data of the bottle body of the glass kettle;

[0011] When it is determined that the temperature data of the side wall of the bottle body is less than the first standard temperature data, it is determined that the temperature data of the side wall of the bottle body indicates that the glass kettle meets the preheating condition.

[0012] As an optional implementation, in the first aspect of the present invention, judging, according to the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition includes:

[0013] When the target temperature data includes the water temperature data of the current water storage in the glass kettle, judging whether the water temperature data of the current water storage is less than the preset second standard temperature data according to the water temperature data of the current water storage in the glass kettle;

[0014] When it is determined that the water temperature data of the current water storage is less than the second standard temperature data, it is determined that the water temperature data of the current water storage indicates that the glass kettle meets the preheating condition.

[0015] As an optional implementation, in the first aspect of the present invention, judging, according to the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition includes:

[0016] When the target temperature data includes the ambient temperature data corresponding to the environment where the glass kettle is located, judging whether the ambient temperature data corresponding to the environment where the glass kettle is located is less than the preset third standard temperature data according to the ambient temperature data corresponding to the environment where the glass kettle is located;

[0017] When it is determined that the ambient temperature data corresponding to the environment is less than the third standard temperature data, it is determined that the ambient temperature data corresponding to the environment indicates that the glass kettle meets the preheating condition.

[0018] As an optional implementation, in the first aspect of the present invention, the preheating control parameter includes a preheating time control parameter and a preheating power control parameter, and the preheating time control parameter is fixed or determined based on the target temperature data;

[0019] Among them, the preheating duration control parameter has a corresponding preheating start time point parameter and a corresponding preheating stop time point parameter, and the preheating power control parameter has a corresponding preheating current control parameter and a corresponding preheating voltage control parameter;

[0020] And, the method further comprises:

[0021] In the process of performing the preheating control operation on the glass kettle, obtaining the preheating water temperature data of the current water stored in the glass kettle, and determining whether the preheating water temperature data of the current water stored is less than the preset second standard temperature data;

[0022] When it is determined that the preheating water temperature data of the current stored water is lower than the second standard temperature data, continuing to perform the preheating control operation on the glass kettle;

[0023] When it is determined that the preheating water temperature data of the current stored water is greater than or equal to the second standard temperature data, it is determined that the preheating of the glass kettle is completed.

[0024] As an optional embodiment, in the first aspect of the present invention, the method further comprises:

[0025] Determine a preheating stop control parameter of the glass kettle, and after the preheating of the glass kettle is completed, perform a target control operation on the glass kettle according to the preheating stop control parameter; the preheating stop control parameter includes a preheating stop duration control parameter; the preheating stop duration control parameter is fixed, or is determined based on preheating temperature data of the glass kettle, the preheating temperature data includes preheating water temperature data of current water storage in the glass kettle, and / or preheating area temperature data of a target area of ​​the glass kettle, wherein the preheating area temperature data of the target area includes preheating side wall temperature data of the bottle body of the glass kettle;

[0026] Wherein, performing a target control operation on the glass kettle according to the preheating stop control parameter includes:

[0027] According to the preheating stop time control parameter, the glass kettle is left to stand still and the preheating process is stopped within a preset preheating stop time.

[0028] As an optional embodiment, in the first aspect of the present invention, the method further comprises:

[0029] Determine cooling control parameters of the cooling device corresponding to the glass kettle, and after preheating the glass kettle, control the cooling device to cool the glass kettle according to the cooling control parameters; the cooling control parameters include at least one of a cooling temperature control parameter, a cooling time control parameter and a cooling power control parameter.

[0030] A second aspect of the present invention discloses a preheating control device for a glass kettle, the device comprising:

[0031] an acquisition module, configured to acquire target temperature data to be analyzed by a preset temperature sensing device after detecting a start instruction for the glass kettle; the target temperature data includes regional temperature data of a target area of ​​the glass kettle, and / or water temperature data of current water storage in the glass kettle, and / or ambient temperature data corresponding to the environment where the glass kettle is located;

[0032] a judgment module, configured to judge, based on the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition;

[0033] a determination module, configured to determine a preheating control parameter of the glass kettle when the determination module determines that the target temperature data indicates that the glass kettle meets the preheating condition;

[0034] A control module is used to perform a preheating control operation on the glass kettle according to the preheating control parameters.

[0035] As an optional embodiment, in the second aspect of the present invention, the regional temperature data of the target area of ​​the glass kettle includes the side wall temperature data of the bottle body of the glass kettle;

[0036] The method in which the judging module judges whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data specifically includes:

[0037] When the target temperature data includes the side wall temperature data of the bottle body of the glass kettle, judging whether the side wall temperature data of the bottle body is less than a preset first standard temperature data according to the side wall temperature data of the bottle body of the glass kettle;

[0038] When it is determined that the temperature data of the side wall of the bottle body is less than the first standard temperature data, it is determined that the temperature data of the side wall of the bottle body indicates that the glass kettle meets the preheating condition.

[0039] As an optional implementation, in the second aspect of the present invention, the judgment module judges whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data, specifically including:

[0040] When the target temperature data includes the water temperature data of the current water storage in the glass kettle, judging whether the water temperature data of the current water storage is less than the preset second standard temperature data according to the water temperature data of the current water storage in the glass kettle;

[0041] When it is determined that the water temperature data of the current water storage is less than the second standard temperature data, it is determined that the water temperature data of the current water storage indicates that the glass kettle meets the preheating condition.

[0042] As an optional implementation, in the second aspect of the present invention, the judgment module judges whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data, specifically including:

[0043] When the target temperature data includes the ambient temperature data corresponding to the environment where the glass kettle is located, judging whether the ambient temperature data corresponding to the environment where the glass kettle is located is less than the preset third standard temperature data according to the ambient temperature data corresponding to the environment where the glass kettle is located;

[0044] When it is determined that the ambient temperature data corresponding to the environment is less than the third standard temperature data, it is determined that the ambient temperature data corresponding to the environment indicates that the glass kettle meets the preheating condition.

[0045] As an optional implementation, in the second aspect of the present invention, the preheating control parameter includes a preheating time control parameter and a preheating power control parameter, and the preheating time control parameter is fixed or determined based on the target temperature data;

[0046] Among them, the preheating duration control parameter has a corresponding preheating start time point parameter and a corresponding preheating stop time point parameter, and the preheating power control parameter has a corresponding preheating current control parameter and a corresponding preheating voltage control parameter;

[0047] And, the acquisition module is also used for:

[0048] In the process of the control module performing the preheating control operation on the glass kettle, obtaining the preheating water temperature data of the current stored water in the glass kettle;

[0049] The judging module is further used to judge whether the water temperature data of the preheating of the current water storage is less than the preset second standard temperature data; when it is judged that the water temperature data of the preheating of the current water storage is less than the second standard temperature data, the control module is further triggered to execute the step of performing the preheating control operation on the glass kettle;

[0050] The determination module is further used to determine that the preheating of the glass kettle is completed when the judgment module determines that the water temperature data of the preheating of the current stored water is greater than or equal to the second standard temperature data.

[0051] As an optional implementation manner, in the second aspect of the present invention, the determining module is further used to:

[0052] Determining a preheating stop control parameter of the glass kettle;

[0053] The control module is further used for performing a target control operation on the glass kettle according to the preheating stop control parameter after the preheating of the glass kettle is completed; the preheating stop control parameter includes a preheating stop duration control parameter; the preheating stop duration control parameter is fixed, or is determined based on the preheating temperature data of the glass kettle, the preheating temperature data includes the preheating water temperature data of the current water storage of the glass kettle, and / or the preheating area temperature data of the target area of ​​the glass kettle, wherein the preheating area temperature data of the target area includes the preheating side wall temperature data of the bottle body of the glass kettle;

[0054] The control module performs a target control operation on the glass kettle according to the preheating stop control parameter, specifically including:

[0055] According to the preheating stop time control parameter, the glass kettle is left to stand still and the preheating process is stopped within a preset preheating stop time.

[0056] As an optional implementation manner, in the second aspect of the present invention, the determining module is further used to:

[0057] Determine the cooling control parameters of the cooling device corresponding to the glass kettle;

[0058] The control module is also used to control the cooling device to cool the glass kettle according to the cooling control parameters after the preheating of the glass kettle is completed; the cooling control parameters include at least one of a cooling temperature control parameter, a cooling time control parameter and a cooling power control parameter.

[0059] The third aspect of the present invention discloses another preheating control device for a glass kettle, the device comprising:

[0060] A memory storing executable program code;

[0061] a processor coupled to the memory;

[0062] The processor calls the executable program code stored in the memory to execute the preheating control method for the glass kettle disclosed in the first aspect of the present invention.

[0063] The fourth aspect of the present invention discloses a computer storage medium, wherein the computer storage medium stores computer instructions, and when the computer instructions are called, they are used to execute the preheating control method for the glass kettle disclosed in the first aspect of the present invention.

[0064] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:

[0065] In the embodiment of the present invention, after the start-up instruction for the glass kettle is detected, the target temperature data to be analyzed is obtained through the temperature sensing device; according to the target temperature data, it is judged whether the target temperature data indicates that the glass kettle meets the preheating condition; if so, the preheating control parameters of the glass kettle are determined, and the preheating control of the glass kettle is performed according to the preheating control parameters. It can be seen that the implementation of the present invention can make an intelligent judgment on whether the glass kettle meets the preheating condition according to the obtained target temperature data after receiving the start-up instruction of the glass kettle, and preheat the glass kettle when the glass kettle meets the preheating condition. In this way, the occurrence of the glass kettle cracking caused by direct high-temperature heating can be reduced, thereby improving the use safety of the glass kettle and the user's use experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0066] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0067] Figure 1 It is a flow chart of a preheating control method for a glass kettle disclosed in an embodiment of the present invention;

[0068] Figure 2 It is a flow chart of another preheating control method for a glass kettle disclosed in an embodiment of the present invention;

[0069] Figure 3 It is a structural schematic diagram of a preheating control device for a glass kettle disclosed in an embodiment of the present invention;

[0070] Figure 4 It is a structural schematic diagram of another preheating control device for a glass kettle disclosed in an embodiment of the present invention. DETAILED DESCRIPTION

[0071] In order to enable those skilled in the art to better understand the scheme of the present invention, the technical scheme in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0072] The terms "first", "second", etc. in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish different objects rather than to describe a specific order. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, device, product or end including a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units that are not listed, or may optionally include other steps or units inherent to these processes, methods, products or ends.

[0073] Reference to "embodiments" herein means that a particular feature, structure, or characteristic described in conjunction with the embodiments may be included in at least one embodiment of the present invention. The appearance of the phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0074] The present invention discloses a preheating control method and device for a glass kettle, which can reduce the occurrence of glass kettle breakage caused by direct high-temperature heating, thereby improving the use safety of the glass kettle and the user's use experience.

[0075] Embodiment 1

[0076] See also Figure 1 , Figure 1 1 is a flow chart of a preheating control method for a glass kettle disclosed in an embodiment of the present invention. Figure 1 The described preheating control method for a glass kettle can be applied to preheating control of a glass kettle, and can also be applied to preheating control of a ceramic kettle, which is not limited in the embodiments of the present invention. Optionally, the method can be implemented by a preheating control device, which can be integrated in a heating device (such as an electric furnace) corresponding to the glass kettle / ceramic kettle, or can be a local server or cloud server for processing the preheating control process of the glass kettle / ceramic kettle, which is not limited in the embodiments of the present invention. Figure 1 As shown, the preheating control method of the glass kettle may include the following operations:

[0077] 101. After detecting a start instruction for the glass kettle, a preset temperature sensing device obtains target temperature data to be analyzed.

[0078] In the embodiment of the present invention, the target temperature data may include regional temperature data of a target area of ​​the glass kettle, and / or water temperature data of the current water stored in the glass kettle, and / or ambient temperature data corresponding to the environment in which the glass kettle is located. The regional temperature data of the target area of ​​the glass kettle includes the side wall temperature data of the bottle body of the glass kettle, and may also include bottom temperature data, top temperature data, etc. of the bottle body of the glass kettle.

[0079] Further optionally, the temperature sensing device may include one or more of a thermocouple sensor, a thermistor sensor, a resistance temperature detector, an IC temperature sensor, an infrared temperature sensor, a fiber optic temperature sensor, a semiconductor temperature sensor, and the like.

[0080] 102. According to the target temperature data, determine whether the target temperature data indicates that the glass kettle meets the preheating condition.

[0081] In the embodiment of the present invention, it can be understood that according to the side wall temperature data of the bottle body of the glass kettle, it is judged whether the side wall temperature data of the bottle body is less than the preset first standard temperature data, or according to the water temperature data of the current water storage in the glass kettle, it is judged whether the water temperature data of the current water storage is less than the preset second standard temperature data, or according to the ambient temperature data corresponding to the environment where the glass kettle is located, it is judged whether the ambient temperature data corresponding to the environment is less than the preset third standard temperature data;

[0082] Alternatively, based on the temperature data of the side wall of the bottle body of the glass kettle and the temperature data of the current water stored in the glass kettle, it is judged successively or simultaneously whether the temperature data of the side wall of the bottle body is less than the preset first standard temperature data and whether the temperature data of the current water storage is less than the preset second standard temperature data; or, based on the temperature data of the side wall of the bottle body of the glass kettle and the ambient temperature data corresponding to the environment where the glass kettle is located, it is judged successively or simultaneously whether the temperature data of the side wall of the bottle body is less than the preset first standard temperature data and whether the ambient temperature data corresponding to the environment is less than the preset third standard temperature data; or, based on the temperature data of the current water storage in the glass kettle and the ambient temperature data corresponding to the environment where the glass kettle is located, it is judged successively or simultaneously whether the temperature data of the current water storage is less than the preset second standard temperature data and whether the ambient temperature data corresponding to the environment is less than the preset third standard temperature data;

[0083] Alternatively, based on the side wall temperature data of the glass kettle, the current water temperature data of the glass kettle and the ambient temperature data corresponding to the environment in which the glass kettle is located, it is judged successively or simultaneously whether the side wall temperature data of the bottle body is less than the preset first standard temperature data, whether the current water temperature data of the water is less than the preset second standard temperature data, and whether the ambient temperature data corresponding to the environment is less than the preset third standard temperature data, which can be one of the preheating condition judgment schemes for the seven glass kettles.

[0084] When any of the above-mentioned 7 preheating condition judgment schemes for the glass kettle is adopted, when the judgment results of the judgment scheme are all yes, it can be determined that the target temperature data in the judgment scheme indicates that the glass kettle meets the preheating conditions, and the glass kettle is then preheated; otherwise, the normal heating program of the glass kettle can be directly started to control the heating of the glass kettle (it should be noted that in the preheating control process, it can be understood that a preheating temperature / preheating power lower than the heating temperature / heating power in the heating control process is used to slowly heat the glass kettle, so as to ensure that the glass kettle is heated evenly as a whole before performing higher temperature heating control).

[0085] 103. When it is determined that the target temperature data indicates that the glass kettle meets the preheating condition, a preheating control parameter of the glass kettle is determined, and a preheating control operation is performed on the glass kettle according to the preheating control parameter.

[0086] In the embodiment of the present invention, further, the preheating control parameter includes a preheating duration control parameter and a preheating power control parameter, and may also include a preheating temperature control parameter, a preheating position control parameter, etc. Among them, the preheating duration control parameter has a corresponding preheating start time point parameter and a corresponding preheating stop time point parameter, and the preheating power control parameter has a corresponding preheating current control parameter and a corresponding preheating voltage control parameter.

[0087] Optionally, the preheating control parameters of the glass kettle may be those that have been set when the glass kettle leaves the factory (such as heating the glass kettle at a fixed preheating temperature of 45°C for 5 minutes), or may be determined based on the data difference between each temperature data in the aforementioned target temperature data and its corresponding standard temperature data, or may be determined based on the data difference between all temperature data and its corresponding standard temperature data, in combination with the current water storage volume parameter of the glass kettle, and / or the distribution parameter of water droplets inside and outside the bottle of the glass kettle, and / or the material parameter of the glass kettle, and / or the historical heating condition of the glass kettle, and / or the shape parameter of the glass kettle, and / or the thickness parameter of the glass kettle, and / or the heat dissipation parameter of the glass kettle, and / or the placement parameter of the glass kettle, and / or the ambient humidity parameter of the environment in which the glass kettle is located, and / or the user usage habit parameter of the glass kettle.

[0088] For example, in winter, the data difference between the ambient temperature parameters of the environment in which the glass kettle is located and the third standard temperature data is large. At this time, a larger preheating power control parameter A can be determined; in summer, the data difference between the ambient temperature parameters of the environment in which the glass kettle is located and the third standard temperature data is small. At this time, a smaller preheating power control parameter B can be determined, where A>B.

[0089] Similarly, if the difference between the side wall temperature data of the bottle body of the glass kettle and the first standard temperature data is large, then a larger preheating power control parameter C can be determined; and if the difference between the side wall temperature data of the bottle body of the glass kettle and the first standard temperature data is small, then a smaller preheating power control parameter D can be determined, wherein C>D.

[0090] In an embodiment of the present invention, further, the method further includes:

[0091] In the process of performing the preheating control operation on the glass kettle, obtaining the preheating water temperature data of the current water stored in the glass kettle, and determining whether the preheating water temperature data of the current water stored in the glass kettle is less than the preset second standard temperature data;

[0092] When it is determined that the preheating water temperature data of the current stored water is lower than the second standard temperature data, the preheating control operation of the glass kettle continues to be performed;

[0093] When it is determined that the preheating water temperature data of the current stored water is greater than or equal to the second standard temperature data, it is determined that the preheating of the glass kettle is completed.

[0094] It should be noted that, in the process of preheating control of the glass kettle, in addition to monitoring the preheating water temperature data of the current water storage in the glass kettle, in fact, it is also possible to monitor the preheating regional temperature data of the target area of ​​the glass kettle, such as the preheating side wall temperature data of the bottle body of the glass kettle, the preheating bottom temperature data of the bottle body, the preheating top temperature data of the bottle body, etc., and judge whether the preheating regional temperature data of the target area is less than the preset first standard temperature data. If so, continue to perform preheating control operation on the glass kettle; otherwise, it can be determined that the preheating of the glass kettle is completed, and then perform target control operation on the glass kettle (i.e., let it stand and stop preheating treatment), or cooling control, or start normal heating control.

[0095] It can be seen that the implementation of the embodiment of the present invention can make an intelligent judgment on whether the glass kettle meets the preheating conditions according to the acquired target temperature data after receiving the start-up instruction of the glass kettle, and preheat the glass kettle when the glass kettle meets the preheating conditions. In this way, it is ensured that the glass kettle is heated evenly as a whole, and the occurrence of glass kettle breakage caused by direct high-temperature heating can be reduced, thereby improving the safety of the glass kettle and the user's experience; at the same time, the preheating control parameters can be flexibly adjusted according to actual conditions, further meeting the needs of different users and usage scenarios, and also extending the service life of the glass kettle.

[0096] In an optional embodiment, judging whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data in the above step 102 includes:

[0097] When the target temperature data includes the side wall temperature data of the bottle body of the glass kettle, judging whether the side wall temperature data of the bottle body is less than the preset first standard temperature data according to the side wall temperature data of the bottle body of the glass kettle;

[0098] When it is determined that the temperature data of the side wall of the bottle body is less than the first standard temperature data, it is determined that the temperature data of the side wall of the bottle body indicates that the glass kettle meets the preheating condition.

[0099] In this optional embodiment, the temperature data of the side wall of the bottle body of the glass kettle can be, optionally, the average temperature data of the side wall of the bottle body of the glass kettle, or the data difference between the temperature data of any two points on the side wall of the bottle body of the glass kettle.

[0100] Further optionally, the first standard temperature data may be determined in the following manner (the aforementioned various standard temperature data may also be determined in the following manner, but the prediction algorithm / model used in the process of predicting the target heating condition of the glass kettle may be inconsistent):

[0101] Acquire target reference data of the glass kettle; the target reference data includes a current water storage volume parameter of the glass kettle, and / or a distribution parameter of water droplets inside and outside the glass kettle, and / or a material parameter of the glass kettle, and / or a historical heating condition of the glass kettle, and / or a shape parameter of the glass kettle, and / or a thickness parameter of the glass kettle, and / or a heat dissipation parameter of the glass kettle, and / or a placement parameter of the glass kettle, and / or an ambient humidity parameter of the environment in which the glass kettle is located, and / or a user usage habit parameter of the glass kettle;

[0102] Predicting a target heating condition of the glass kettle according to the target reference data of the glass kettle; the target heating condition includes a predicted temperature change of the glass kettle during the preheating process, and / or an expansion change, and / or a shape change, and / or a water overflow, and / or a lid falling off condition;

[0103] According to the target heating condition of the glass kettle, first standard temperature data corresponding to the glass kettle is determined.

[0104] Further, judging whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data includes:

[0105] When the target temperature data includes the bottom temperature data of the bottle body of the glass kettle, judging whether the bottom temperature data of the bottle body is less than the preset fourth standard temperature data according to the bottom temperature data of the bottle body of the glass kettle;

[0106] When it is determined that the bottom temperature data of the bottle body is less than the fourth standard temperature data, it is determined that the bottom temperature data of the bottle body indicates that the glass kettle meets the preheating condition; or,

[0107] When the target temperature data includes the top temperature data of the bottle body of the glass kettle, judging whether the top temperature data of the bottle body is less than the preset fifth standard temperature data according to the top temperature data of the bottle body of the glass kettle;

[0108] When it is determined that the top temperature data of the bottle body is less than the fifth standard temperature data, it is determined that the top temperature data of the bottle body indicates that the glass kettle meets the preheating condition; or,

[0109] When the target temperature data includes the side wall temperature data and the top temperature data of the bottle body of the glass kettle, or includes the side wall temperature data and the bottom temperature data, or includes the bottom temperature data and the top temperature data, calculate the temperature difference between the two temperature data, and determine whether the temperature difference is less than the preset sixth standard temperature data;

[0110] When it is determined that the temperature difference is less than the sixth standard temperature data, determining the target temperature data indicates that the glass kettle meets the preheating condition.

[0111] In this optional embodiment, optionally, the top / bottom temperature data of the glass kettle body can be respectively the average top / bottom temperature data of the glass kettle body, or can be respectively the data difference of the temperature data of any two points on the top / bottom of the glass kettle body.

[0112] It can be seen that this optional embodiment can compare the regional temperature parameters of the target area of ​​the glass kettle with the corresponding standard temperature data, and then realize an intelligent judgment process on whether the glass kettle meets the preheating conditions. In this way, the reliability and accuracy of the preheating condition judgment of the glass kettle are improved, and the safety of the use of the glass kettle is ensured; at the same time, the judgment process can also adapt to glass kettles of different specifications, materials and usage environments, thereby enhancing the flexibility, versatility and practicality of the judgment process.

[0113] In another optional embodiment, judging whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data in step 102 includes:

[0114] When the target temperature data includes the water temperature data of the current water storage in the glass kettle, judging whether the water temperature data of the current water storage is less than the preset second standard temperature data according to the water temperature data of the current water storage in the glass kettle;

[0115] When it is determined that the water temperature data of the current water storage is less than the second standard temperature data, it is determined that the water temperature data of the current water storage indicates that the glass kettle meets the preheating condition.

[0116] In this optional embodiment, the water temperature data of the current water storage in the glass kettle may be, optionally, the average water temperature data of the current water storage in the glass kettle, or the data difference between the temperature data of any two points of the water body of the current water storage in the glass kettle.

[0117] Furthermore, before determining that the water temperature data of the current water storage indicates that the glass kettle meets the preheating conditions, the method also includes: obtaining the volume parameter of the current water storage, and determining whether the volume parameter is greater than or equal to a preset volume parameter threshold; if so, determining that the water temperature data and volume parameter of the current water storage indicate that the glass kettle meets the preheating conditions; if not, determining that the water temperature data and volume parameter of the current water storage indicate that the glass kettle does not meet the preheating conditions.

[0118] Furthermore, when it is determined that the current water storage volume parameter is less than the volume parameter threshold, the glass kettle is directly left still without any heating operation, and a water shortage reminder message is generated and sent to the corresponding user.

[0119] It can be seen that this optional embodiment can compare the current water temperature data of the glass kettle with the corresponding standard temperature data, and then realize an intelligent judgment process on whether the glass kettle meets the preheating conditions. In this way, the reliability and accuracy of the preheating condition judgment of the glass kettle are further improved, the safety of the glass kettle is ensured, the occurrence of water overflow / water drying up is reduced, and the user experience and the intelligence level of the system are improved.

[0120] In yet another optional embodiment, judging whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data in step 102 includes:

[0121] When the target temperature data includes the ambient temperature data corresponding to the environment where the glass kettle is located, judging whether the ambient temperature data corresponding to the environment is less than the preset third standard temperature data according to the ambient temperature data corresponding to the environment where the glass kettle is located;

[0122] When it is determined that the ambient temperature data corresponding to the environment is less than the third standard temperature data, it is determined that the ambient temperature data corresponding to the environment indicates that the glass kettle meets the preheating condition.

[0123] In this optional embodiment, optionally, the ambient temperature data corresponding to the environment in which the glass kettle is located can be the average water temperature data within a preset environmental area of ​​the glass kettle, or can be the data difference between the temperature data of any two points within the preset environmental area of ​​the glass kettle.

[0124] It can be seen that this optional embodiment can compare the ambient temperature data corresponding to the environment in which the glass kettle is located with the corresponding standard temperature data, and then realize an intelligent judgment process on whether the glass kettle meets the preheating conditions. In this way, the reliability and accuracy of the preheating condition judgment of the glass kettle are further improved, ensuring that the preheating process of the glass kettle can adapt to different environments, and improving the applicability and user satisfaction of the preheating technology of the glass kettle.

[0125] Embodiment 2

[0126] See also Figure 2 , Figure 2 1 is a flow chart of another method for controlling the preheating of a glass kettle disclosed in an embodiment of the present invention. Figure 2The described preheating control method for a glass kettle can be applied to preheating control of a glass kettle, and can also be applied to preheating control of a ceramic kettle, which is not limited in the embodiments of the present invention. Optionally, the method can be implemented by a preheating control device, which can be integrated in a heating device (such as an electric furnace) corresponding to the glass kettle / ceramic kettle, or can be a local server or cloud server for processing the preheating control process of the glass kettle / ceramic kettle, which is not limited in the embodiments of the present invention. Figure 2 As shown, the preheating control method of the glass kettle may include the following operations:

[0127] 201. After detecting a start instruction for the glass kettle, a preset temperature sensing device obtains target temperature data to be analyzed.

[0128] 202. According to the target temperature data, determine whether the target temperature data indicates that the glass kettle meets the preheating condition.

[0129] 203. When it is determined that the target temperature data indicates that the glass kettle meets the preheating condition, a preheating control parameter of the glass kettle is determined, and a preheating control operation is performed on the glass kettle according to the preheating control parameter.

[0130] 204. Determine a preheating stop control parameter of the glass kettle, and after the preheating of the glass kettle is completed, perform a target control operation on the glass kettle according to the preheating stop control parameter.

[0131] In an embodiment of the present invention, further, the preheating stop control parameter includes a preheating stop duration control parameter, and may also include a preheating stop power control parameter, wherein the preheating stop duration control parameter has a corresponding preheating stop start time point parameter, and the preheating stop power control parameter has a corresponding preheating stop current control parameter and a preheating stop voltage control parameter.

[0132] Optionally, the preheating stop control parameter can be set for the glass kettle when it leaves the factory (i.e., fixed), or it can be determined based on the preheating temperature data of the glass kettle (the preheating temperature data includes the preheating water temperature data of the current water storage in the glass kettle, and / or the preheating side wall temperature data of the bottle body, and / or the preheating bottom temperature data of the bottle body, and / or the preheating top temperature data of the bottle body), or it can be determined based on the preheating temperature data of the glass kettle in combination with the historical preheating stop control conditions of the glass kettle and / or user usage habit parameters.

[0133] Further optionally, the temperature data of the side wall / bottom / top of the bottle body after preheating can be the average temperature data of the side wall / bottom / top of the bottle body of the glass kettle after preheating, or can be the data difference of the temperature data of any two points on the side wall / bottom / top of the bottle body of the glass kettle after preheating.

[0134] Furthermore, according to the preheating stop control parameter, the glass kettle is subjected to target control operation, including:

[0135] According to the preheating stop time control parameter, the glass kettle is left to stand within the preset preheating stop time and the preheating process is stopped.

[0136] For example, after the preheating is completed, the temperature rise control of the glass kettle is stopped for 10 seconds, and then the glass kettle is subjected to normal heating control.

[0137] In the embodiment of the present invention, for other descriptions of step 201 to step 203, please refer to the detailed description of step 101 to step 103 in the first embodiment, and the embodiment of the present invention will not be repeated.

[0138] It can be seen that the implementation of the embodiment of the present invention can perform targeted control operations on the glass kettle after the preheating of the glass kettle is completed by determining the preheating stop control parameters of the glass kettle. In this way, through targeted preheating and preheating stop control, the glass kettle is reduced from being in a high temperature state for a long time, and the thermal stress of the heating equipment is reduced, thereby extending the service life of the kettle and the equipment; at the same time, the intelligence of the preheating / preheating stop control of the glass kettle is also improved, thereby improving the reliability and accuracy of the preheating / preheating stop control of the glass kettle, providing users with a more convenient and comfortable use experience.

[0139] In an optional embodiment, the method further comprises:

[0140] The cooling control parameters of the cooling device corresponding to the glass kettle are determined, and after the preheating of the glass kettle is completed, the cooling device is controlled to perform a cooling operation on the glass kettle according to the cooling control parameters.

[0141] In this optional embodiment, optionally, the cooling device can be an electric fan, an intelligent air conditioner, or a cold water pipe device, etc.; and the cooling control parameters include at least one of a cooling temperature control parameter, a cooling duration control parameter, and a cooling power control parameter, wherein the cooling duration control parameter has a corresponding cooling start time point parameter and a corresponding cooling stop time point parameter, and the cooling power control parameter has a corresponding cooling current control parameter and a corresponding cooling voltage control parameter.

[0142] Further optionally, the cooling control parameter can be determined based on the preheating temperature data of the glass kettle (the preheating temperature data includes the preheating water temperature data of the current water storage in the glass kettle, and / or the preheating side wall temperature data of the bottle body, and / or the preheating bottom temperature data of the bottle body, and / or the preheating top temperature data of the bottle body), or can be determined based on the preheating temperature data of the glass kettle in combination with the historical cooling control conditions of the glass kettle and / or user usage habit parameters.

[0143] For example, after the preheating is completed, the cold water pipe equipment corresponding to the glass kettle is intelligently controlled to slowly cool the glass kettle for 3 seconds, and then the glass kettle is normally heated.

[0144] It can be seen that this optional embodiment can cool the glass kettle after the preheating of the glass kettle is completed by determining the cooling control parameters of the cooling equipment. In this way, through targeted preheating and cooling control, the cooling effect is guaranteed and the problems of glass breakage or material aging caused by rapid cooling are reduced; at the same time, the cooling efficiency of the glass kettle is improved, thereby providing users with a more convenient and comfortable use experience.

[0145] Embodiment 3

[0146] See also Figure 3 , Figure 3 Schematic diagram of the structure of a preheating control device for a glass kettle disclosed in an embodiment of the present invention. Figure 3 As shown, the preheating control device of the glass kettle may include:

[0147] The acquisition module 301 is used to acquire the target temperature data to be analyzed by a preset temperature sensing device after detecting the start instruction for the glass kettle;

[0148] A determination module 302 is used to determine whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data;

[0149] The determination module 303 is used to determine the preheating control parameters of the glass kettle when the determination module 302 determines that the target temperature data indicates that the glass kettle meets the preheating conditions;

[0150] The control module 304 is used to perform a preheating control operation on the glass kettle according to the preheating control parameters.

[0151] In an embodiment of the present invention, the target temperature data includes regional temperature data of a target area of ​​the glass kettle, and / or water temperature data of current water storage in the glass kettle, and / or ambient temperature data corresponding to the environment in which the glass kettle is located.

[0152] Furthermore, the preheating control parameter includes a preheating time control parameter and a preheating power control parameter. The preheating time control parameter is fixed or determined based on target temperature data.

[0153] Among them, the preheating duration control parameter has a corresponding preheating start time point parameter and a corresponding preheating stop time point parameter, and the preheating power control parameter has a corresponding preheating current control parameter and a corresponding preheating voltage control parameter.

[0154] Furthermore, the acquisition module 301 is further used for:

[0155] In the process of the control module 304 performing the preheating control operation on the glass kettle, the preheating water temperature data of the current stored water in the glass kettle is obtained;

[0156] The judging module 302 is further used to judge whether the water temperature data of the preheating of the current stored water is less than the preset second standard temperature data; when it is judged that the water temperature data of the preheating of the current stored water is less than the second standard temperature data, the control module 304 is continuously triggered to execute the step of performing the preheating control operation on the glass kettle;

[0157] The determination module 303 is also used to determine that the preheating of the glass kettle is completed when the judgment module 302 determines that the water temperature data of the preheating of the current stored water is greater than or equal to the second standard temperature data.

[0158] It can be seen that the implementation Figure 3 The preheating control device for the described glass kettle can, after receiving the start-up instruction of the glass kettle, make an intelligent judgment on whether the glass kettle meets the preheating conditions according to the acquired target temperature data, and preheat the glass kettle when the glass kettle meets the preheating conditions. In this way, it ensures that the glass kettle is heated evenly as a whole, and can reduce the occurrence of glass kettle breakage caused by direct high-temperature heating, thereby improving the safety of the glass kettle and the user's experience. At the same time, the preheating control parameters can be flexibly adjusted according to actual conditions, further meeting the needs of different users and usage scenarios, and also extending the service life of the glass kettle.

[0159] In an optional embodiment, the regional temperature data of the target region of the glass kettle includes the side wall temperature data of the bottle body of the glass kettle;

[0160] The method in which the judging module 302 judges whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data specifically includes:

[0161] When the target temperature data includes the side wall temperature data of the bottle body of the glass kettle, judging whether the side wall temperature data of the bottle body is less than the preset first standard temperature data according to the side wall temperature data of the bottle body of the glass kettle;

[0162] When it is determined that the temperature data of the side wall of the bottle body is less than the first standard temperature data, it is determined that the temperature data of the side wall of the bottle body indicates that the glass kettle meets the preheating condition.

[0163] It can be seen that the implementation Figure 3 The described preheating control device for the glass kettle can compare the regional temperature parameters of the target area of ​​the glass kettle with the corresponding standard temperature data, and then realize an intelligent judgment process on whether the glass kettle meets the preheating conditions. In this way, the reliability and accuracy of the preheating condition judgment of the glass kettle are improved, and the safety of the use of the glass kettle is ensured; at the same time, the judgment process can also adapt to glass kettles of different specifications, materials and usage environments, thereby enhancing the flexibility, versatility and practicality of the judgment process.

[0164] In another optional embodiment, the determination module 302 determines whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data, specifically including:

[0165] When the target temperature data includes the water temperature data of the current water storage in the glass kettle, judging whether the water temperature data of the current water storage is less than the preset second standard temperature data according to the water temperature data of the current water storage in the glass kettle;

[0166] When it is determined that the water temperature data of the current water storage is less than the second standard temperature data, it is determined that the water temperature data of the current water storage indicates that the glass kettle meets the preheating condition.

[0167] It can be seen that the implementation Figure 3 The preheating control device for the described glass kettle can compare the water temperature data of the current water storage in the glass kettle with the corresponding standard temperature data, and then realize an intelligent judgment process on whether the glass kettle meets the preheating conditions. In this way, the reliability and accuracy of the preheating condition judgment of the glass kettle are further improved, the safety of the use of the glass kettle is ensured, the occurrence of water overflow / water drying up is reduced, and the user experience and the intelligence level of the system are improved.

[0168] In another optional embodiment, the judging module 302 judges whether the target temperature data indicates that the glass kettle meets the preheating condition according to the target temperature data in a manner specifically including:

[0169] When the target temperature data includes the ambient temperature data corresponding to the environment where the glass kettle is located, judging whether the ambient temperature data corresponding to the environment is less than the preset third standard temperature data according to the ambient temperature data corresponding to the environment where the glass kettle is located;

[0170] When it is determined that the ambient temperature data corresponding to the environment is less than the third standard temperature data, it is determined that the ambient temperature data corresponding to the environment indicates that the glass kettle meets the preheating condition.

[0171] It can be seen that the implementation Figure 3 The described preheating control device for the glass kettle can compare the ambient temperature data corresponding to the environment in which the glass kettle is located with the corresponding standard temperature data, and then realize an intelligent judgment process on whether the glass kettle meets the preheating conditions. In this way, the reliability and accuracy of the preheating condition judgment of the glass kettle are further improved, ensuring that the preheating process of the glass kettle can adapt to different environments, and improving the applicability and user satisfaction of the preheating technology of the glass kettle.

[0172] In yet another optional embodiment, the determination module 303 is further configured to:

[0173] Determine the preheating stop control parameters for the glass kettle;

[0174] The control module 304 is further used to perform a target control operation on the glass kettle according to the preheating stop control parameter after the preheating of the glass kettle is completed;

[0175] The control module 304 performs the target control operation on the glass kettle according to the preheating stop control parameter, specifically including:

[0176] According to the preheating stop time control parameter, the glass kettle is left to stand within the preset preheating stop time and the preheating process is stopped.

[0177] In this optional embodiment, the preheating stop control parameter includes a preheating stop duration control parameter; the preheating stop duration control parameter is fixed, or is determined based on the preheating temperature data of the glass kettle, the preheating temperature data includes the preheating water temperature data of the current water storage in the glass kettle, and / or the preheating area temperature data of the target area of ​​the glass kettle, wherein the preheating area temperature data of the target area includes the preheating side wall temperature data of the bottle body of the glass kettle.

[0178] It can be seen that the implementation Figure 3The described preheating control device for a glass kettle can, after the preheating of the glass kettle is completed, perform targeted control operations on the glass kettle by determining the preheating stop control parameters of the glass kettle. In this way, through targeted preheating and preheating stop control, the glass kettle is reduced from being in a high temperature state for a long time, and the thermal stress of the heating equipment is also reduced, thereby extending the service life of the kettle and the equipment; at the same time, the intelligence of the preheating / preheating stop control of the glass kettle is also improved, thereby improving the reliability and accuracy of the preheating / preheating stop control of the glass kettle, providing users with a more convenient and comfortable use experience.

[0179] In yet another optional embodiment, the determination module 303 is further configured to:

[0180] Determine the cooling control parameters of the cooling device corresponding to the glass kettle;

[0181] The control module 304 is also used to control the cooling device to cool the glass kettle according to the cooling control parameters after the preheating of the glass kettle is completed.

[0182] In this optional embodiment, the cooling control parameter includes at least one of a cooling temperature control parameter, a cooling time control parameter, and a cooling power control parameter.

[0183] It can be seen that the implementation Figure 3 The described preheating control device for a glass kettle can cool the glass kettle after the preheating of the glass kettle is completed by determining the cooling control parameters of the cooling device. In this way, through targeted preheating and cooling control, the cooling effect is guaranteed and the problems of glass breakage or material aging caused by rapid cooling are reduced; at the same time, the cooling efficiency of the glass kettle is improved, thereby providing users with a more convenient and comfortable use experience.

[0184] Embodiment 4

[0185] See also Figure 4 , Figure 4 FIG. 1 is a schematic diagram of the structure of another preheating control device for a glass kettle disclosed in an embodiment of the present invention. Figure 4 As shown, the preheating control device of the glass kettle may include:

[0186] A memory 401 storing executable program codes;

[0187] a processor 402 coupled to the memory 401;

[0188] The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the preheating control method for the glass kettle described in the first embodiment of the present invention or the second embodiment of the present invention.

[0189] Embodiment 5

[0190] An embodiment of the present invention discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, they are used to execute the steps in the preheating control method for a glass kettle described in Embodiment 1 or Embodiment 2 of the present invention.

[0191] Embodiment 6

[0192] An embodiment of the present invention discloses a computer program product, which includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to enable a computer to execute the steps in the preheating control method for a glass kettle described in Example 1 or Example 2.

[0193] The device embodiments described above are only illustrative, wherein the modules described as separate components may or may not be physically separated, and the components displayed as modules may or may not be physical modules, i.e., they may be located in one place, or they may be distributed on multiple network modules. Some or all of the modules may be selected according to actual needs to achieve the purpose of the scheme of this embodiment. Those of ordinary skill in the art may understand and implement it without creative work.

[0194] Through the specific description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on such an understanding, the above technical solution can be essentially or partly contributed to the prior art in the form of a software product, and the computer software product can be stored in a computer-readable storage medium, and the storage medium includes a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electronically erasable rewritable read-only memory (EEPROM), a compact disc (CD-ROM) or other optical disc storage, magnetic disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.

[0195] Finally, it should be noted that the preheating control method and device for a glass kettle disclosed in the embodiment of the present invention only discloses a preferred embodiment of the present invention, which is only used to illustrate the technical solution of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, it should be understood by those skilled in the art that the technical solutions described in the aforementioned embodiments can still be modified, or some of the technical features therein can be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A preheating control method for a glass kettle, characterized in that: The method comprises: After detecting a start instruction for the glass kettle, a preset temperature sensing device acquires target temperature data to be analyzed; the target temperature data includes regional temperature data of a target area of ​​the glass kettle, and / or water temperature data of current water storage in the glass kettle, and / or ambient temperature data corresponding to the environment where the glass kettle is located; According to the target temperature data, determining whether the target temperature data indicates that the glass kettle meets the preheating condition; When it is determined that the target temperature data indicates that the glass kettle meets the preheating condition, a preheating control parameter of the glass kettle is determined, and a preheating control operation is performed on the glass kettle according to the preheating control parameter.

2. The preheating control method for a glass kettle according to claim 1, characterized in that: The regional temperature data of the target region of the glass kettle includes the side wall temperature data of the bottle body of the glass kettle; Wherein, judging, according to the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition includes: When the target temperature data includes the side wall temperature data of the bottle body of the glass kettle, judging whether the side wall temperature data of the bottle body is less than a preset first standard temperature data according to the side wall temperature data of the bottle body of the glass kettle; When it is determined that the temperature data of the side wall of the bottle body is less than the first standard temperature data, it is determined that the temperature data of the side wall of the bottle body indicates that the glass kettle meets the preheating condition.

3. The preheating control method for a glass kettle according to claim 1, characterized in that: The step of judging, according to the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition includes: When the target temperature data includes the water temperature data of the current water storage in the glass kettle, judging whether the water temperature data of the current water storage is less than the preset second standard temperature data according to the water temperature data of the current water storage in the glass kettle; When it is determined that the water temperature data of the current water storage is less than the second standard temperature data, it is determined that the water temperature data of the current water storage indicates that the glass kettle meets the preheating condition.

4. The preheating control method for a glass kettle according to claim 1, characterized in that: The step of judging, according to the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition includes: When the target temperature data includes the ambient temperature data corresponding to the environment where the glass kettle is located, judging whether the ambient temperature data corresponding to the environment where the glass kettle is located is less than the preset third standard temperature data according to the ambient temperature data corresponding to the environment where the glass kettle is located; When it is determined that the ambient temperature data corresponding to the environment is less than the third standard temperature data, it is determined that the ambient temperature data corresponding to the environment indicates that the glass kettle meets the preheating condition.

5. The preheating control method for a glass kettle according to any one of claims 1 to 4, characterized in that: The preheating control parameter includes a preheating time control parameter and a preheating power control parameter, and the preheating time control parameter is fixed or determined based on the target temperature data; Among them, the preheating duration control parameter has a corresponding preheating start time point parameter and a corresponding preheating stop time point parameter, and the preheating power control parameter has a corresponding preheating current control parameter and a corresponding preheating voltage control parameter; And, the method further comprises: In the process of performing the preheating control operation on the glass kettle, obtaining the preheating water temperature data of the current water stored in the glass kettle, and determining whether the preheating water temperature data of the current water stored is less than the preset second standard temperature data; When it is determined that the preheating water temperature data of the current stored water is lower than the second standard temperature data, continuing to perform the preheating control operation on the glass kettle; When it is determined that the preheating water temperature data of the current stored water is greater than or equal to the second standard temperature data, it is determined that the preheating of the glass kettle is completed.

6. The preheating control method for a glass kettle according to any one of claims 1 to 4, characterized in that: The method further comprises: Determine a preheating stop control parameter of the glass kettle, and after the preheating of the glass kettle is completed, perform a target control operation on the glass kettle according to the preheating stop control parameter; the preheating stop control parameter includes a preheating stop duration control parameter; the preheating stop duration control parameter is fixed, or is determined based on preheating temperature data of the glass kettle, the preheating temperature data includes preheating water temperature data of current water storage in the glass kettle, and / or preheating area temperature data of a target area of ​​the glass kettle, wherein the preheating area temperature data of the target area includes preheating side wall temperature data of the bottle body of the glass kettle; Wherein, performing a target control operation on the glass kettle according to the preheating stop control parameter includes: According to the preheating stop time control parameter, the glass kettle is left to stand still and the preheating process is stopped within a preset preheating stop time.

7. The preheating control method for a glass kettle according to any one of claims 1 to 4, characterized in that: The method further comprises: Determine cooling control parameters of the cooling device corresponding to the glass kettle, and after preheating the glass kettle, control the cooling device to cool the glass kettle according to the cooling control parameters; the cooling control parameters include at least one of a cooling temperature control parameter, a cooling time control parameter and a cooling power control parameter.

8. A preheating control device for a glass kettle, characterized in that: The device comprises: an acquisition module, configured to acquire target temperature data to be analyzed by a preset temperature sensing device after detecting a start instruction for the glass kettle; the target temperature data includes regional temperature data of a target area of ​​the glass kettle, and / or water temperature data of current water storage in the glass kettle, and / or ambient temperature data corresponding to the environment where the glass kettle is located; a judgment module, configured to judge, based on the target temperature data, whether the target temperature data indicates that the glass kettle meets the preheating condition; a determination module, configured to determine a preheating control parameter of the glass kettle when the determination module determines that the target temperature data indicates that the glass kettle meets the preheating condition; A control module is used to perform a preheating control operation on the glass kettle according to the preheating control parameters.

9. A preheating control device for a glass kettle, characterized in that: The device comprises: A memory storing executable program code; a processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the preheating control method for the glass kettle according to any one of claims 1 to 7.

10. A computer storage medium, characterized in that: The computer storage medium stores computer instructions, and when the computer instructions are called, they are used to execute the preheating control method for the glass kettle as described in any one of claims 1-7.