Base assembly and cooking equipment
The automatic water inlet system, controlled by water control components and temperature switches, solves the problems of high cost and noise in water pump supply schemes in steam stew pots. It achieves automatic water supply, reduces equipment costs and noise, improves cooking convenience and safety, simplifies the structure and avoids pollution.
Patent Information
- Application Number
- CN202423323752.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-31
AI Technical Summary
In existing steam cookers, water pump supply solutions are costly and noisy, while communicating vessel solutions are prone to contamination of the water storage components, and users need to manually control water replenishment, affecting cooking convenience and safety.
The water control component is used to control the water inlet status of the steam generator through a temperature switch, automatically adjusting the passage between the water supply end and the water inlet. Combined with the connecting pipe, it can be directly connected to the water supply port of the steam generator, avoiding additional piping structure, simplifying internal installation and reducing noise.
The automatic water filling function of the steam stew pot has been realized, which reduces equipment costs and noise, improves the convenience and safety of water supply, avoids the backflow and contamination of food juices, simplifies the structural installation, and shortens the cooking time.
Smart Images

Figure CN223873761U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cooking equipment technical field, specifically, bottom base assembly and cooking equipment. BACKGROUND
[0002] Steam stew pot heats stew cup and food material in stew cup through water vapor, in order to guarantee cooking speed, the temperature in cavity needs to be raised quickly and keep stable in the whole cooking process, that is, need to stably supply water to heating assembly and continuously produce steam.
[0003] The product on market usually uses water pump to produce steam with a certain rate of water supply to heating assembly, or directly makes into a communicating vessel between water storage assembly and heating assembly, so that the water in water storage assembly continuously enters heating assembly. However, the water pump scheme has high cost and large noise, and the communicating vessel scheme also heats the water in water storage assembly in the working process, and the juice or other dirt of food material in cooking cavity can flow back to water storage assembly, causing pollution. SUMMARY
[0004] The utility model aims at solving one of the technical problems existing in prior art or related art.
[0005] Therefore, in a first aspect, the utility model provides a bottom base assembly, and a cooking equipment has a cooking cavity, and the bottom base assembly comprises: a bottom base; a steam generation assembly arranged in the bottom base, wherein the steam generation assembly comprises a heating disc and a steam generation piece, the heating disc is used for heating water in the steam generation piece to provide steam into the cooking cavity, and the steam generation piece is provided with a water replenishment opening; and a water control assembly arranged in the bottom base, wherein the water control assembly comprises a temperature switch and a connecting pipe, one end of the connecting pipe extends out of the top of the heating disc and is connected with the water replenishment opening, the water control assembly is provided with a water inlet opening, the water inlet opening is connected with the connecting pipe, the water inlet opening is located below the temperature switch, the temperature of the temperature switch changes with the temperature change of the heating disc, when the temperature of the temperature switch is greater than or equal to a first set temperature T1, the water control assembly is used for connecting the water supply end with the water inlet opening, when the temperature of the temperature switch is less than a second set temperature T2, the water control assembly closes the passage between the water supply end and the water inlet opening, and T1 is greater than or equal to T2.
[0006] When the water in the water supply end enters the steam generation piece, the heating disc is heated to make the water become steam. The cooking equipment has the cooking cavity, and the steam in the steam generation piece can flow into the cooking cavity, so that the food material in the cooking cavity can be heated.
[0007] The water control assembly is arranged in the base, and in the working state of the steam generating assembly, the heating disc is heated and warmed up, and the temperature of the temperature switch in the water control assembly changes with the heating disc, that is, when the temperature of the heating disc rises, the temperature of the temperature switch also rises. When the temperature of the temperature switch reaches the first set temperature, the water supply end and the connecting pipe are in communication with each other, and the water in the water supply end enters the steam generating element through the connecting pipe. At this time, the heating disc is in a state of high temperature, and the water entering the steam generating element is rapidly evaporated to form steam. During the evaporation of the water in the steam generating element, the temperature of the heating disc gradually decreases, and the temperature of the temperature switch also decreases. When the temperature of the temperature switch is less than the second set temperature, the water control assembly closes the passage between the water supply end and the connecting pipe, and the water in the water supply end stops entering the steam generating element, until the temperature of the temperature switch reaches the first set temperature again, the water control assembly connects the water supply end and the connecting pipe again, and the above process is repeated.
[0008] In this way, the water control assembly can open or close the passage between the water supply end and the connecting pipe according to the temperature of the temperature switch, and then the cooking device controls the water inlet state of the steam generating element through the temperature of the temperature switch. The cooking device realizes the automatic water inlet function, avoids the user manually opening or closing the water supply port, reduces the risk of long-time dry burning of the heating disc, improves the water supply convenience and safety of the cooking device, and the user does not need to stay beside the cooking device during cooking, which provides convenience for the user to use the cooking device. Moreover, the water control assembly ensures that a certain amount of water enters the steam generating cavity, the heating disc heats the certain amount of water, improves the steam generation speed of the heating disc, and is beneficial to shorten the cooking time.
[0009] The above-mentioned mode realizes the automatic water inlet of the steam generating element, does not need to install a water pump for water supply in the base, reduces the cost of the base assembly, and also reduces the noise of the base assembly during work. Moreover, the water supply end and the steam generating element are not continuously supplied with water through a communicating vessel, and the juice or other dirt of the food material in the cooking cavity will not flow back to the water supply end, avoiding pollution of the water supply end.
[0010] In the scheme, the connecting pipe is arranged on the control assembly, the connecting pipe is directly connected to the water supply port on the steam generating element, and therefore, an additional pipeline structure does not need to be arranged between the water control assembly and the steam generating element, which can simplify the installation process of the internal structure of the base assembly, and also reduce the risk of water leakage by reducing the pipeline interface.
[0011] Since the heating disc is arranged at the bottom of the steam generating element, the connecting pipe is stretched out of the top of the heating disc, the end of the connecting pipe can be connected to the water supply port by lengthening the connecting pipe, and the length of the connecting pipe is sufficient to be connected to the water supply port without using an additional pipeline.
[0012] In order to avoid water overflow of the steam generating element, the water supply opening on the steam generating element is usually arranged at a high position, and in the present scheme, the end of the connecting pipe extends out of the top of the heating disc and extends towards the water supply opening, so that the connecting pipe can be connected to the water supply opening without a large angle bending.
[0013] The water inlet is arranged below the temperature switch, and the water inlet is arranged at a low position, so that the pipeline between the water supply end and the water inlet does not need to be bent upwards to be connected to the water inlet. Through the above-mentioned mode, the pipeline between the water supply end and the water inlet, and the pipeline between the water control assembly and the steam generating assembly, do not need to be bent at a large angle, so as to ensure the smoothness of the pipeline and improve the smoothness of water inlet.
[0014] In addition, the base assembly in the above technical scheme according to the present application can also have the following additional technical features:
[0015] In some technical schemes, optionally, the water supply opening is arranged on the side of the steam generating element, and a part of the connecting pipe extends to the side of the steam generating element.
[0016] The water supply opening is arranged on the side of the steam generating element, so that the water supply opening and the heating disc are arranged at intervals, and in the case that the connecting pipe is connected to the water supply opening, the end of the connecting pipe is prevented from being overheated and damaged, and the connection stability of the connecting pipe and the water supply opening is ensured.
[0017] A part of the connecting pipe is higher than the top of the heating disc, so that the end of the connecting pipe can extend to the side of the steam generating element, and the connecting pipe is convenient to be connected to the water supply opening. By extending the connecting pipe to the water supply opening, the water inlet structure extending towards the connecting pipe does not need to be arranged at the water supply opening, which is beneficial to simplify the internal structure of the base assembly.
[0018] The other end of the connecting pipe is connected to the main structure of the water control assembly, and the other end of the connecting pipe is lower than the heating disc, so that most of the structures in the water control assembly do not occupy the space on the side of the steam generating element, thereby avoiding that the width of the base assembly is too large, and the space utilization rate in the base assembly is improved.
[0019] In some technical schemes, optionally, in the direction perpendicular to the horizontal plane, the other end of the connecting pipe is distributed in a staggered manner with the water supply opening, and a part of the connecting pipe is bent compared to the other part, so as to connect one end of the connecting pipe to the water supply opening.
[0020] In the case that the connecting pipe and the water supply opening are staggered, a part of the connecting pipe is bent, so that a part of the connecting pipe can extend towards the water supply opening, thereby being able to connect the connecting pipe and the water supply opening, and a connecting component does not need to be arranged between the connecting pipe and the water supply opening, which is beneficial to simplify the structure of the base assembly.
[0021] In some embodiments, the connecting pipe extends in the first direction, and the water supply port is located in the extension direction of the connecting pipe.
[0022] In some embodiments, the connecting pipe extends in the first direction, and the water supply port is located in the extension direction of the connecting pipe.
[0023] In some embodiments, the heating disc is provided with a mounting portion, and the temperature switch is connected to the mounting portion. In the direction perpendicular to the horizontal plane, the water supply port and the mounting portion are distributed in a staggered manner.
[0024] In some embodiments, the heating disc is provided with a mounting portion, and the temperature switch is connected to the mounting portion. In the direction perpendicular to the horizontal plane, the water supply port and the mounting portion are distributed in a staggered manner.
[0025] In some embodiments, the heating disc is provided with a mounting portion, and the temperature switch is connected to the mounting portion. In the direction perpendicular to the horizontal plane, the water supply port and the mounting portion are distributed in a staggered manner.
[0026] As the water on the heating disc is gradually evaporated, the water at the position where the recess is not provided on the heating disc is first dried, and at this time, the heating disc at the position where the recess is not provided starts to heat up.
[0027] The mounting portion and the recess are distributed in a staggered manner, so the installation position of the temperature switch is opposite to the position where the recess is not provided on the heating disc. When the heating disc starts to heat up, the temperature switch heats up and deforms. During the heating process of the temperature switch, the water in the recess continues to evaporate, thereby ensuring that steam is continuously generated before water is supplied, and avoiding the phenomenon of steam interruption.
[0028] In some embodiments, the water control assembly is provided with a drain port, one end of the connecting pipe is connected to the drain port, and in the direction perpendicular to the horizontal plane, the drain port and the mounting portion are distributed in a staggered manner.
[0029] Since the water supply port and the mounting portion are distributed in a staggered manner, the drain port and the mounting portion are also distributed in a staggered manner, and therefore, the two ends of the connecting pipe are also distributed in a staggered manner with the mounting portion, which is conducive to reducing the degree of staggering of the two ends of the connecting pipe, thereby avoiding bending the connecting pipe or reducing the bending angle of the connecting pipe, and ensuring smooth water supply.
[0030] In some embodiments, the water control assembly is provided with a water outlet, and one end of the connecting pipe is connected to the water outlet. The steam generating assembly further comprises a heating element, which is arranged on the heating disc and used for heating the heating disc. In a direction perpendicular to the horizontal plane, the water inlet and the water outlet are lower than the heating element.
[0031] The water inlet and the water outlet are both lower than the heating element, so that the water inlet and the water outlet are both low in height. The water inlet is low in position, which facilitates the connection of the water supply end and the water inlet. The water outlet is low in position, which avoids interference between the water outlet and the connecting pipe at the connection position.
[0032] In some embodiments, the water control assembly is provided with a water outlet, and one end of the connecting pipe is connected to the water outlet. The water control assembly is located on the first side of the heating disc. A second direction is defined from the first side of the heating disc to the second side of the heating disc. The water inlet and the water outlet are sequentially arranged in the second direction.
[0033] The water inlet and the water outlet are sequentially arranged in the second direction, so that the water outlet and the water inlet are not arranged in a vertical distribution form, thereby facilitating the installation of the temperature switch above the water inlet and the installation of the connecting pipe above the water outlet.
[0034] In some embodiments, the water control assembly is provided with a water outlet, and one end of the connecting pipe is connected to the water outlet. The water control assembly is located on the first side of the heating disc. A second direction is defined from the first side of the heating disc to the second side of the heating disc. A third direction is defined parallel to the horizontal plane and perpendicular to the second direction. The water inlet and the water outlet are sequentially arranged in the third direction.
[0035] The water inlet and the water outlet are sequentially arranged in the third direction, so that the water outlet and the water inlet are not arranged in a vertical distribution form, thereby facilitating the installation of the temperature switch above the water inlet and the installation of the connecting pipe above the water outlet.
[0036] In some embodiments, the water control assembly further comprises a valve body shell connected to the heating disc, and the water inlet and the water outlet are arranged on the valve body shell. An elastic sealing member is connected to the valve body shell. The temperature switch is used to drive the elastic sealing member to move relative to the valve body shell. When the elastic sealing member is pushed by the temperature switch, the elastic sealing member opens the water inlet to allow the water inlet to communicate with the connecting pipe. When the elastic sealing member is in an initial position, the elastic sealing member closes the water inlet.
[0037] The temperature switch can push the elastic sealing member, and the elastic sealing member opens the water inlet when being pushed, so that the water supply end is communicated with the connecting pipe, and the water in the water supply end flows into the steam generating member through the connecting pipe. When the temperature switch does not push the elastic sealing member, the elastic sealing member closes the water inlet, and the water in the water supply end cannot flow into the steam generating member.
[0038] When the temperature switch stops pushing the elastic sealing member, the elastic sealing member can be automatically reset under the action of the elastic force, thereby realizing the function of automatically opening and closing the water inlet. In addition, the elastic sealing member is soft, so that the elastic sealing member can be tightly attached to the valve body shell, thereby improving the sealing effect of the water inlet.
[0039] The temperature switch directly pushes the elastic sealing member, and no other intermediate component is arranged between the temperature switch and the elastic sealing member, so that the problem that the intermediate component cannot lift the elastic sealing member due to the installation error of the intermediate component and the valve body shell, or the elastic sealing member cannot close the water inlet under the action of the intermediate component after the temperature switch is restored, can be avoided. By saving the intermediate component, the cooperation stability of the temperature switch and the elastic sealing member can be ensured, and the elastic sealing member can stably open or close the water inlet.
[0040] In some technical solutions, the water inlet is arranged on the bottom wall of the valve body shell, and the water outlet is arranged on the top wall of the valve body shell.
[0041] The water inlet is arranged on the bottom wall of the valve body shell, so that the position of the water inlet is low, and the pipeline between the water supply end and the water inlet does not need to be bent upward.
[0042] The water outlet is arranged on the top wall of the valve body shell, and the water supply opening is arranged above the water outlet, so that the water outlet and the connecting pipe can be connected.
[0043] In some technical solutions, the steam generating assembly further comprises a connecting support, the connecting support is arranged on the side of the heating disc, and the valve body shell is connected with the connecting support.
[0044] The valve body shell is connected with the connecting support, and the position of the valve body shell is fixed through the connecting support and the heating disc. The connecting support moves the valve body shell away from the heating disc, so that the high temperature of the heating disc does not damage some structures on the water control assembly.
[0045] In some technical solutions, the connecting support comprises: an extension section, the extension section is connected with the heating disc, and the extension section is parallel to the heating disc; and a connecting section, the connecting section is arranged on the side of the extension section away from the heating disc, the connecting section is located at the bottom of the extension section, and the connecting section is connected with the valve body shell.
[0046] The extending section extends away from the heating disc, and the connecting section is arranged on the side of the extending section away from the heating disc, so that the valve body shell is spaced apart from the heating disc when the connecting section is connected to the valve body shell.
[0047] In an exemplary embodiment, the connecting section and the valve body shell are connected by means of insertion, clamping or the like.
[0048] In some embodiments, the connecting pipe and the elastic sealing member are in an integrated structure.
[0049] The connecting pipe and the elastic sealing member are connected, and the connecting pipe is integrally formed on the elastic sealing member, so that the connecting pipe and the elastic sealing member do not need to be machined separately, the machining difficulty of the water control assembly is reduced, and the installation precision of the connecting pipe and the elastic sealing member is improved.
[0050] In some embodiments, the elastic sealing member comprises: a movable part, the temperature switch is used to push the movable part, and an end of the movable part is used to open or close the water inlet; and an elastic part connected to the movable part and the valve body shell, and the elastic part is deformed when the movable part is pushed.
[0051] The temperature switch can push the movable part, the movable part moves relative to the valve body shell and opens the water inlet, the elastic part is arranged between the movable part and the valve body shell, and the elastic member is deformed during the movement of the movable part, so that the elastic member accumulates elastic potential energy. When the temperature switch stops pushing the movable part, the elastic member drives the movable part to move back to the original position by the elastic force, so as to close the water inlet.
[0052] Part of the elastic sealing member is arranged to be adapted to the structure of the water inlet, so that the water inlet can be tightly closed, and the other part of the elastic sealing member is arranged to be adapted to be deformed, so that the movable part can be stably driven to reset.
[0053] In some embodiments, the elastic sealing member further comprises: a spring sleeved on the movable part, and the spring is located between the movable part and the valve body shell, and the spring is deformed when the movable part is pushed.
[0054] The spring is sleeved on the movable part, one end of the spring abuts against the movable part, and the other end of the spring abuts against the valve body shell. When the movable part is pushed, the spring is compressed, and when the movable part stops being pushed, the spring drives the movable part to reset together with the elastic part. By adding the spring as a component for driving the movable part to reset, the reset stability of the movable part can be improved, so that the movable part can stably close the water inlet, and the problem of continuous water inflow in the steam generating element and water overflow can be prevented.
[0055] In some technical solutions, at least a part of the elastic sealing member is located in the valve body shell, the valve body shell is provided with a mounting opening, one end of the elastic sealing member extends out of the mounting opening, the temperature switch is used for pushing one end of the movable part, and the other end of the elastic sealing member is used for opening or closing the water inlet.
[0056] The valve body shell is provided with a mounting opening for the elastic sealing member to extend out of, and the temperature switch can push the part of the elastic sealing member extending out of the mounting opening. A part of the structure of the elastic sealing member is mounted in the valve body shell, and the valve body shell limits the elastic sealing member to avoid the elastic sealing member from being separated from the mounting position.
[0057] In some technical solutions, in the direction perpendicular to the horizontal plane, the water outlet of the water supply end is higher than the water supplement opening and the heating disc.
[0058] In the case that the water inlet is opened, the water supply end and the steam generating element form a communicating vessel, water flows into the steam generating element under the action of gravity, and a pump body or the like does not need to be arranged, so that the structure is simplified and noise is reduced.
[0059] In a second aspect, the utility model provides a kind of cooking equipment, including the base assembly as in the first aspect.
[0060] The additional aspects and advantages of the utility model will become apparent from the following description part, or be understood by the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0061] The above and / or additional aspects and advantages of the utility model will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0062] Figure 1 Fig. 1 shows a structural schematic diagram of a cooking equipment in an embodiment of the utility model;
[0063] Figure 2 Fig. 2 shows a structural schematic diagram of a base assembly in an embodiment of the utility model;
[0064] Figure 3 Fig. 3 shows a structural schematic diagram of a base assembly in an embodiment of the utility model;
[0065] Figure 4 Fig. 4 shows a structural schematic diagram of a water control assembly and a heating disc in an embodiment of the utility model;
[0066] Figure 5 Fig. 5 shows a structural schematic diagram of a water control assembly and a heating disc in an embodiment of the utility model;
[0067] Figure 6 Fig. 6 shows a structural schematic diagram of a water control assembly in an embodiment of the utility model;
[0068] Figure 7 The structural schematic view of the water control assembly and the heating disc in the embodiment of the utility model is shown.
[0069] Reference signs:
[0070] 100 base assembly, 110 base, 111 horizontal surface, 120 steam generation assembly, 121 heating disc, 122 steam generation piece, 123 water replenishment opening, 124 heating piece, 125 mounting portion, 126 groove, 127 connecting support, 128 extension section, 129 connecting section, 130 water control assembly, 131 temperature switch, 1311 deformation portion, 1312 pushing portion, 132 connecting pipe, 133 valve body shell, 1331 valve body upper cover, 1332 valve body lower cover, 134 water inlet, 135 elastic sealing piece, 136 movable portion, 137 elastic portion, 138 spring, 139 mounting opening, 140 water outlet, 200 cooking device, 210 cooking cavity, 300 water supply end, 310 water outlet, 400 cover body. DETAILED DESCRIPTION
[0071] In order to more clearly understand the above purpose, features and advantages of the utility model, the utility model will be further described in detail below in combination with the drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0072] In the following description, a lot of specific details are set forth in order to facilitate a thorough understanding of the utility model, however, the utility model can also be implemented in other ways different from the description herein, therefore, the protection scope of the utility model is not limited by the specific embodiments disclosed below.
[0073] The following refers to Figures 1 to 7 The base assembly and the cooking device provided according to some embodiments of the utility model are described.
[0074] In combination with Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 6As shown, in some embodiments of the utility model, a kind of base assembly 100 is proposed, cooking equipment 200 has cooking cavity 210, and base assembly 100 includes: base 110, steam generation assembly 120 and water control component 130.Steam generation assembly 120 is located in base 110, and steam generation assembly 120 includes heating disc 121 and steam generation piece 122, heating disc 121 is used to heat the water in steam generation piece 122, to provide steam in cooking cavity 210, and steam generation piece 122 is equipped with water replenishment port 123.Water control component 130 is located in base 110, and water control component 130 includes temperature switch 131 and connecting pipe 132, one end of connecting pipe 132 extends the top of heating disc 121, and is connected with water replenishment port 123, and water control component 130 is equipped with water inlet 134, water inlet 134 is communicated with connecting pipe 132, and water inlet 134 is below temperature switch 131, and the temperature of temperature switch 131 changes with the temperature change of heating disc 121, when the temperature of temperature switch 131 is greater than or equal to first set temperature T1, water control component 130 is used to make water supply end 300 and water inlet 134 communicate, when the temperature of temperature switch 131 is less than second set temperature T2, water control component 130 closes the passage between water supply end 300 and water inlet 134, T1≥T2.
[0075] In the case that the water of water supply end 300 enters steam generation piece 122, heating disc 121 increases temperature and makes water increase temperature and become steam.Cooking equipment 200 has cooking cavity 210, and the steam in steam generation piece 122 can flow into cooking cavity 210, so that the food material in cooking cavity 210 can be heated.
[0076] Water control component 130 is arranged in base 110, steam generation assembly 120 is in working state, heating disc 121 heats and increases temperature, and the temperature of temperature switch 131 in water control component 130 changes with heating disc 121, that is, in the case that the temperature of heating disc 121 increases, the temperature of temperature switch 131 also increases.When the temperature of temperature switch 131 reaches first set temperature, water supply end 300 and connecting pipe 132 communicate with each other, and the water of water supply end 300 enters steam generation piece 122 through connecting pipe 132.At this time, heating disc 121 is in the state of higher temperature, and water enters steam generation piece 122 and evaporates rapidly to form steam to form steam.Water in steam generation piece 122 evaporates, and the temperature of heating disc 121 gradually decreases, and the temperature of temperature switch 131 also decreases.When the temperature of temperature switch 131 is less than second set temperature, water control component 130 closes the passage between water supply end 300 and connecting pipe 132, and the water of water supply end 300 stops entering steam generation piece 122, until the temperature of temperature switch 131 reaches first set temperature again, and water control component 130 connects water supply end 300 and connecting pipe 132 again, and the above process is repeated.
[0077] In this way, the water control assembly 130 can open or close the passage between the water supply end 300 and the connecting pipe 132 according to the temperature of the temperature switch 131, so as to control the water inlet state of the steam generating element 122 through the temperature of the temperature switch 131, so that the cooking device 200 realizes the automatic water inlet function, avoids the user to manually open or close the water inlet port 123, reduces the risk of long-time dry burning of the heating disc 121, improves the water supply convenience and safety of the cooking device 200, and the user does not need to stay beside the cooking device 200 during cooking, which provides convenience for the user to use the cooking device 200. In addition, the water control assembly 130 ensures that a certain amount of water enters the steam generating cavity, and the heating disc 121 heats the certain amount of water, which improves the steam generation speed of the heating disc 121 and is beneficial to shorten the cooking time.
[0078] In the above manner, the automatic water inlet of the steam generating element 122 is realized, and a water pump for water supply does not need to be installed in the base 110, so as to reduce the cost of the base assembly 100 and also reduce the noise of the base assembly 100 during work. In addition, the water supply end 300 and the steam generating element 122 are not continuously water-inlet through the communicating vessel, and the juice or other dirt of the food material in the cooking cavity 210 will not flow back to the water supply end 300, so as to avoid pollution to the water supply end 300.
[0079] In the present scheme, the connecting pipe 132 is arranged on the control assembly, and the connecting pipe 132 is directly connected to the water inlet port 123 on the steam generating element 122, so that an additional pipeline structure does not need to be arranged between the water control assembly 130 and the steam generating element 122, which can simplify the installation process of the internal structure of the base assembly 100 and also reduce the risk of water leakage by reducing the pipeline interface.
[0080] Since the heating disc 121 is arranged at the bottom of the steam generating element 122, the connecting pipe 132 is extended out of the top of the heating disc 121, and the end of the connecting pipe 132 can be connected to the water inlet port 123 by extending the connecting pipe 132, so as to avoid that the length of the connecting pipe 132 is not enough to be connected to the water inlet port 123 by using an additional pipeline.
[0081] In order to avoid water overflow of the steam generating element 122, the position of the water inlet port 123 on the steam generating element 122 is usually arranged to be high, and in the present scheme, the end of the connecting pipe 132 is extended out of the top of the heating disc 121 and extends towards the water inlet port 123, so that the connecting pipe 132 can be connected to the water inlet port 123 without large-angle bending.
[0082] The water inlet 134 is arranged below the temperature switch 131, and the water inlet 134 is arranged at a lower position, so that the pipeline between the water supply end 300 and the water inlet 134 does not need to be bent upward to be connected to the water inlet 134. In this way, the pipeline between the water supply end 300 and the water inlet 134, and the pipeline between the water control assembly 130 and the steam generation assembly 120, do not need to be bent at a large angle, so as to ensure the smoothness of the pipeline and improve the smoothness of water inflow.
[0083] As shown in Figure 5 In a possible application, the steam generation assembly 120 further includes a heating member 124, the heating member 124 is connected to the heating disc 121, and the heating member 124 is configured to heat the heating disc 121. For example, the heating member 124 can be a heating pipe or a heating wire.
[0084] In a possible application, the first set temperature T1 is greater than 100°C, for example, the first set temperature T1 is 110°C or 120°C.
[0085] As shown in Figure 3 and Figure 5 In some embodiments, the water supply port 123 is arranged at a side of the steam generation member 122, and a part of the connecting pipe 132 extends to the side of the steam generation member 122.
[0086] The water supply port 123 is arranged at the side of the steam generation member 122, so that the water supply port 123 is spaced apart from the heating disc 121. In the case that the connecting pipe 132 is connected to the water supply port 123, the end of the connecting pipe 132 is prevented from being overheated and damaged, and the connection stability of the connecting pipe 132 and the water supply port 123 is ensured.
[0087] A part of the connecting pipe 132 is higher than the top of the heating disc 121, so that the end of the connecting pipe 132 can extend to the side of the steam generation member 122, and the connecting pipe 132 is conveniently connected to the water supply port 123. By extending the connecting pipe 132 to the water supply port 123, the water inflow structure extending toward the connecting pipe 132 does not need to be arranged at the water supply port 123, which is beneficial to simplify the internal structure of the base assembly 100.
[0088] The other end of the connecting pipe 132 is connected to the main structure of the water control assembly 130, and the other end of the connecting pipe 132 is lower than the heating disc 121. Most of the structures in the water control assembly 130 do not occupy the space at the side of the steam generation member 122, so that the width of the base assembly 100 is prevented from being too large, and the space utilization in the base assembly 100 is improved.
[0089] As shown in Figure 2 In some embodiments, the direction perpendicular to the horizontal plane 111 is the direction of the height of the base assembly 100, and the direction perpendicular to the horizontal plane 111 is the direction of the width of the base assembly 100. Figure 2The other end of the connecting pipe 132 is distributed in a staggered manner with the water replenishing port 123, and a part of the connecting pipe 132 is bent compared to the other part, so as to connect one end of the connecting pipe 132 with the water replenishing port 123.
[0090] In the case that the connecting pipe 132 and the water replenishing port 123 are staggered, a part of the connecting pipe 132 is bent, so that the part of the connecting pipe 132 can extend towards the water replenishing port 123, thereby connecting the connecting pipe 132 and the water replenishing port 123, without the need to set a connecting component between the connecting pipe 132 and the water replenishing port 123, which is conducive to simplifying the structure of the base assembly 100.
[0091] As shown in FIG. 1, Figure 3 in some embodiments, optionally, the connecting pipe 132 extends along the first direction (arrow direction in H1), and the water replenishing port 123 is located in the extending direction of the connecting pipe 132. Figure 3
[0092] In the case that a part of the connecting pipe 132 is bent, there is a risk that the connecting pipe 132 is deformed and blocked. Therefore, in the present solution, the structure and assembly mode of the connecting pipe 132 are adjusted, so that the water replenishing port 123 is located in the extending direction of the connecting pipe 132, that is, the connecting pipe 132 and the water replenishing port 123 are in the same cross section, so that the connecting pipe 132 does not need to be bent, which is convenient for connecting the connecting pipe 132 and the water replenishing port 123, and can prevent the problem of pipe blockage.
[0093] As shown in FIG. 1, Figure 5 in some embodiments, optionally, the heating disc 121 is provided with a mounting portion 125, the temperature switch 131 is connected with the mounting portion 125, and the water replenishing port 123 is distributed in a staggered manner with the mounting portion 125 in the direction perpendicular to the horizontal plane 111.
[0094] In the case that the water replenishing port 123 is distributed in a staggered manner with the mounting portion 125, the temperature switch 131 is also distributed in a staggered manner with the water replenishing port 123, so that the temperature switch 131 is not arranged below the water replenishing port 123. When the water replenishing port 123 is filled with water, the part of the heating disc 121 below the water replenishing port 123 will be quickly lowered, and if the temperature switch 131 is arranged below the water replenishing port 123, the temperature of the temperature switch 131 will also be quickly lowered, and the temperature switch 131 will be quickly deformed and closed, resulting in the problem of less water inflow. In the present solution, the temperature switch 131 is avoided below the water replenishing port 123, and in the water inflow process, the temperature of the temperature switch 131 will not be quickly lowered, which is conducive to improving the water inflow amount of a single time.
[0095] As shown in FIG. 1, Figure 5 As shown, in some embodiments, optionally, the top of the heating plate 121 is provided with a groove 126, and the mounting part 125 is staggered with the groove 126 in a direction perpendicular to the horizontal plane 111.
[0096] As the water on the heating plate 121 gradually evaporates, the water in the area of the heating plate 121 without the groove 126 is dried first, and then the heating plate 121 without the groove 126 begins to heat up.
[0097] The mounting part 125 and the groove 126 are misaligned, so the installation position of the temperature switch 131 is directly opposite the position in the heating plate 121 where the groove 126 is not provided. When the heating plate 121 starts to heat up, the temperature switch 131 deforms due to the heat. During the heating process of the temperature switch 131, the water in the groove 126 continues to evaporate, thereby ensuring that steam is continuously generated before water enters, avoiding the phenomenon of steam interruption.
[0098] like Figure 5 As shown, in some embodiments, optionally, the water control assembly 130 is provided with a drain outlet 140, one end of the connecting pipe 132 is connected to the drain outlet 140, and the drain outlet 140 and the mounting part 125 are staggered in a direction perpendicular to the horizontal plane 111.
[0099] Because the water inlet 123 and the mounting part 125 are misaligned, and the drain outlet 140 is also misaligned with the mounting part 125, both ends of the connecting pipe 132 are misaligned with the mounting part 125. This helps to reduce the degree of misalignment at both ends of the connecting pipe 132, thereby avoiding bending of the connecting pipe 132 or reducing the bending angle of the connecting pipe 132, and ensuring smooth water inflow.
[0100] like Figure 5 As shown, in some embodiments, optionally, the water control assembly 130 is provided with a drain outlet 140, one end of the connecting pipe 132 is connected to the drain outlet 140, and the steam generating assembly 120 further includes a heating element 124, which is disposed on the heating plate 121 and is used to heat the heating plate 121. In the direction perpendicular to the horizontal plane 111, the water inlet 134 and the drain outlet 140 are lower than the heating element 124.
[0101] Both the inlet 134 and the outlet 140 are lower than the heating element 124, resulting in lower heights for both. The lower position of the inlet 134 facilitates connection between the water supply end 300 and the inlet 134. The lower position of the outlet 140 prevents the connection point between the outlet 140 and the connecting pipe 132 from being too high and interfering with other components.
[0102] Combination Figure 4 and Figure 5As shown, in some embodiments, optionally, the water control assembly 130 is provided with a drain outlet 140, and one end of the connecting pipe 132 is connected to the drain outlet 140; the water control assembly 130 is located on the first side of the heating plate 121, and the direction from the first side of the heating plate 121 to the second side of the heating plate 121 is defined as the second direction. Figure 4 (The arrow at L1 points to) the inlet 134 and outlet 140 are distributed sequentially in the second direction.
[0103] The inlet 134 and outlet 140 are distributed sequentially in the second direction, such that the outlet 140 and the inlet 134 are not directly opposite each other, which facilitates the installation of a temperature switch 131 above the inlet 134 and a connecting pipe 132 above the outlet 140.
[0104] Combination Figure 6 and Figure 7 As shown, in some embodiments, optionally, the water control assembly 130 is provided with a drain outlet 140, and one end of the connecting pipe 132 is connected to the drain outlet 140; the water control assembly 130 is located on the first side of the heating plate 121, and the direction from the first side of the heating plate 121 to the second side of the heating plate 121 is defined as the second direction. Figure 7 The arrow at L1 points to), setting a third direction ( Figure 7 The arrow at L2 points parallel to the horizontal plane 111, and the third direction is perpendicular to the second direction. The inlet 134 and outlet 140 are distributed sequentially in the third direction.
[0105] The inlet 134 and outlet 140 are distributed sequentially in a third direction, so that the outlet 140 and the inlet 134 are not directly opposite each other, which facilitates the installation of temperature switch 131 above the inlet 134 and connecting pipe 132 above the outlet 140.
[0106] Combination Figure 4 , Figure 5 and Figure 6 As shown, in some embodiments, optionally, the water control assembly 130 further includes: a valve body housing 133 and an elastic seal 135. The valve body housing 133 is connected to the heating plate 121, and a water inlet 134 is provided on the valve body housing 133. The elastic seal 135 is connected to the valve body housing 133. A temperature switch 131 is used to drive the elastic seal 135 to move relative to the valve body housing 133. When the elastic seal 135 is pushed by the temperature switch 131, the elastic seal 135 opens the water inlet 134 so that the water inlet 134 is connected to the connecting pipe 132. When the elastic seal 135 is in the initial position, the elastic seal 135 closes the water inlet 134.
[0107] The temperature switch 131 can push the elastic sealing member 135, and when the elastic sealing member 135 is pushed, the elastic sealing member opens the water inlet 134, and at this time, the water supply end 300 is in communication with the connecting pipe 132, and the water supply end 300 flows into the steam generating element 122 through the connecting pipe 132. In the case where the temperature switch 131 does not push the elastic sealing member 135, the elastic sealing member 135 closes the water inlet 134, and the water of the water supply end 300 cannot flow into the steam generating element 122.
[0108] When the temperature switch 131 stops pushing the elastic sealing member 135, the elastic sealing member 135 can be automatically reset under the action of the elastic force, thereby realizing the function of automatically opening and closing the water inlet 134. In addition, the elastic sealing member 135 is soft in texture, so that the elastic sealing member 135 can be tightly attached to the valve body shell 133, thereby being beneficial to improving the sealing effect of the water inlet 134.
[0109] The temperature switch 131 directly pushes the elastic sealing member 135, and no other intermediate components are needed between the temperature switch 131 and the elastic sealing member 135, thereby avoiding the problem that the intermediate components cannot lift the elastic sealing member 135 due to installation errors of the intermediate components and the valve body shell 133, or the elastic sealing member 135 cannot close the water inlet 134 under the action of the intermediate components after the temperature switch 131 recovers. By saving the intermediate components, the cooperation stability of the temperature switch 131 and the elastic sealing member 135 can be ensured, and the elastic sealing member 135 can stably open or close the water inlet 134.
[0110] The valve body shell 133 is assembled on the heating disc 121, so as to control the assembly and size error, and avoid the deviation in height after assembly when the components are respectively assembled on different components, thereby causing the temperature switch 131 to be deformed and unable to push the elastic sealing member 135, and ensuring the installation precision.
[0111] Exemplarily, the elastic sealing member 135 is a rubber elastic member or a silica gel elastic member.
[0112] In combination with the figures shown in Figure 4 , Figure 5 and Figure 6 , in some embodiments, optionally, the temperature switch 131 comprises a deformation part 1311 and a pushing part 1312. The deformation part 1311 is connected with the heating disc 121, and when the temperature of the deformation part 1311 is greater than or equal to a first set temperature T1, the deformation part 1311 is deformed, and when the temperature of the deformation part 1311 is less than a second set temperature T2, the deformation part 1311 is in an original state. The pushing part 1312 is connected with the deformation part 1311, and in the case where the deformation part 1311 is deformed, the pushing part 1312 pushes the elastic sealing member 135.
[0113] The pushing part 1312 is in contact with the deformed part 1311, and the pushing part 1312 is overlapped on the position of the deformed part 1311 that can be deformed. The deformed part 1311 is used to push the pushing part 1312. When the deformed part 1311 is deformed, the pushing part 1312 can move following the deformation of the deformed part 1311.
[0114] In this way, when the deformed part 1311 and the elastic seal 135 are staggered, the linkage between them can be realized by the pushing part 1312, which facilitates the reasonable layout of the internal structure of the cooking device 200.
[0115] The temperature switch 131 can be deformed according to the change of its own temperature. For example, the material of the temperature switch 131 can be a temperature-sensitive material, such as a liquid crystal elastomer and a memory metal, or the temperature switch 131 adopts a bimetallic material composed of two metals with different thermal expansion and contraction coefficients.
[0116] In combination with Figure 5 , Figure 6 and Figure 7 , in some embodiments, the water inlet 134 is arranged on the bottom wall of the valve body shell 133, and the water outlet 140 is arranged on the top wall of the valve body shell 133.
[0117] The water inlet 134 is arranged on the bottom wall of the valve body shell 133, so the position of the water inlet 134 is relatively low, and the pipeline between the water supply end 300 and the water inlet 134 does not need to be bent upward.
[0118] The water outlet 140 is arranged on the top wall of the valve body shell 133, and the water replenishing port is arranged above the water outlet 140, so as to facilitate the connection of the water outlet 140 and the connecting pipe 132.
[0119] As shown in Figure 4 , in some embodiments, the steam generating assembly 120 further comprises a connecting bracket 127, which is arranged on the side of the heating disc 121, and the valve body shell 133 is connected with the connecting bracket 127.
[0120] The valve body shell 133 is connected with the connecting bracket 127, and the position of the valve body shell 133 is fixed by the connecting bracket 127 and the heating disc 121. The connecting bracket 127 moves the valve body shell 133 away from the heating disc 121, so as to avoid the damage of the high temperature of the heating disc 121 to some structures on the water control assembly.
[0121] As shown in Figure 4As shown in the drawings, in some embodiments, the connecting bracket 127 comprises an extension section 128 and a connecting section 129, the extension section 128 is connected with the heating disc 121, and the extension section 128 is parallel to the heating disc 121. The connecting section 129 is arranged on the side of the extension section 128 away from the heating disc 121, and the connecting section 129 is arranged at the bottom of the extension section 128 and connected with the valve body shell 133.
[0122] The extension section 128 extends away from the heating disc 121, and the connecting section 129 is arranged on the side of the extension section 128 away from the heating disc 121. When the connecting section 129 is connected with the valve body shell 133, the distance between the valve body shell 133 and the heating disc 121 is large.
[0123] For example, the connecting section 129 and the valve body shell 133 are connected by means of insertion, clamping or the like.
[0124] As shown in the drawings, in some embodiments, the connecting pipe 132 and the elastic sealing member 135 are in an integrated structure. Figure 4
[0125] The connecting pipe 132 and the elastic sealing member 135 are connected, and the connecting pipe 132 is integrally formed on the elastic sealing member 135, so that the connecting pipe 132 and the elastic sealing member 135 do not need to be machined separately, the machining difficulty of the water control assembly 130 is reduced, and the installation precision of the connecting pipe 132 and the elastic sealing member 135 is improved.
[0126] As shown in the drawings, in some embodiments, the elastic sealing member 135 comprises a movable part 136 and an elastic part 137, the temperature switch 131 is used to push the movable part 136, the end of the movable part 136 is used to open or close the water inlet 134, the elastic part 137 is connected with the movable part 136 and the valve body shell 133, and the elastic part 137 is deformed when the movable part 136 is pushed. Figure 5 Figure 6 The temperature switch 131 can push the movable part 136, the movable part 136 moves relative to the valve body shell 133 and opens the water inlet 134, the elastic part 137 is arranged between the movable part 136 and the valve body shell 133, and the elastic part 137 is deformed during the movement of the movable part 136, so that the elastic part accumulates elastic potential energy. When the temperature switch 131 stops pushing the movable part 136, the elastic part drives the movable part 136 to move back to the original position by the elastic force, so as to close the water inlet 134.
[0127] The temperature switch 131 can push the movable part 136, the movable part 136 moves relative to the valve body shell 133 and opens the water inlet 134, the elastic part 137 is arranged between the movable part 136 and the valve body shell 133, and the elastic part 137 is deformed during the movement of the movable part 136, so that the elastic part accumulates elastic potential energy. When the temperature switch 131 stops pushing the movable part 136, the elastic part drives the movable part 136 to move back to the original position by the elastic force, so as to close the water inlet 134.
[0128] Part of the elastic sealing member 135 is configured to fit into the water inlet 134, so as to tightly close the water inlet 134, and another part of the elastic sealing member 135 is configured to be deformed, so as to stably drive the movable part 136 to reset.
[0129] In combination Figure 4 and Figure 6 As shown in FIG. 13, in some embodiments, the elastic sealing member 135 further comprises a spring 138, the spring 138 is sleeved on the movable part 136, and the spring 138 is located between the movable part 136 and the valve body shell 133. When the movable part 136 is pushed, the spring 138 is deformed.
[0130] The spring 138 is sleeved on the movable part 136, one end of the spring 138 abuts against the movable part 136, and the other end of the spring 138 abuts against the valve body shell 133. When the movable part 136 is pushed, the spring 138 is compressed. When the movable part 136 stops being pushed, the spring 138 drives the movable part 136 to reset together with the elastic part 137. By adding the spring 138 as a component for driving the movable part 136 to reset, the reset stability of the movable part 136 can be improved, so as to ensure that the movable part 136 can stably close the water inlet 134, and prevent the problem of continuous water inflow in the steam generator 122 and water overflow.
[0131] In combination Figure 4 and Figure 6 As shown in FIG. 13, in some embodiments, at least part of the elastic sealing member 135 is located in the valve body shell 133, the valve body shell 133 is provided with a mounting opening 139, one end of the elastic sealing member 135 extends out of the mounting opening 139, the temperature switch 131 is used to push one end of the movable part 136, and the other end of the elastic sealing member 135 is used to open or close the water inlet 134.
[0132] The valve body shell 133 is provided with the mounting opening 139 for the elastic sealing member 135 to extend out of, and the temperature switch 131 can push part of the elastic sealing member 135 extending out of the mounting opening 139. Part of the structure of the elastic sealing member 135 is mounted in the valve body shell 133, and the valve body shell 133 limits the elastic sealing member 135 to avoid the elastic sealing member 135 from being separated from the mounting position.
[0133] The valve body housing 133 includes an upper valve body cover 1331 and a lower valve body cover 1332. A portion of the resilient seal 135 is installed between the upper valve body cover 1331 and the lower valve body cover 1332. The lower valve body cover 1332 is mounted on the heating plate 121. A water inlet 134 is located on the upper valve body cover 1331, and a mounting port 139 is located on the upper valve body cover 1331. When the temperature switch 131 pushes the resilient seal 135, a portion of the resilient seal 135 descends, thereby opening the water inlet 134.
[0134] In some embodiments, optionally, in a direction perpendicular to the horizontal plane 111, the outlet 310 of the water supply end 300 is higher than the water inlet 123 and the heating plate 121.
[0135] With the inlet 134 open, a communication vessel is formed between the water supply end 300 and the steam generator 122. Water flows into the steam generator 122 under the action of gravity. There is no need to install components such as a pump body, which simplifies the structure and reduces noise.
[0136] In an embodiment of this utility model, a cooking device 200 is proposed, which includes a base assembly 100 as described in any of the above embodiments and can achieve the same technical effect, which will not be repeated here.
[0137] For example, the cooking appliance 200 can be a steam stew pot, a steam cooking machine, etc.
[0138] like Figure 1 As shown, the water supply end 300 includes a water tank for storing water, which is mounted on the base assembly 100. The water control assembly 130 is used to open or close the passage between the water tank and the steam generator 122. When the water supply end 300 and the connecting pipe 132 are connected, the water tank and the steam generator 122 are connected by a communicating vessel principle to allow water to enter the steam generator 122. The cooking device 200 also includes a cover 400, which is mounted on the base assembly 100, forming a cooking cavity 210 between the cover 400 and the base assembly 100.
[0139] In this utility model, the term "multiple" refers to two or more unless otherwise explicitly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0140] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "a specific embodiment", and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0141] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A base assembly for a cooking apparatus, the cooking apparatus having a cooking cavity, characterised in that, The base assembly comprises: a base; a steam generating assembly arranged in the base, the steam generating assembly comprising a heating disc and a steam generating piece, the heating disc being used for heating water in the steam generating piece to provide steam into the cooking cavity, the steam generating piece being provided with a water replenishing opening; a water control assembly arranged in the base, the water control assembly comprising a temperature switch and a connecting pipe, one end of the connecting pipe extending out of the top of the heating disc and being connected with the water replenishing opening, the water control assembly being provided with a water inlet opening, the water inlet opening being in communication with the connecting pipe, the water inlet opening being below the temperature switch, the temperature of the temperature switch changing with the temperature of the heating disc, when the temperature of the temperature switch is greater than or equal to a first set temperature T1, the water control assembly being used for connecting a water supply end with the water inlet opening, when the temperature of the temperature switch is less than a second set temperature T2, the water control assembly closing the passage between the water supply end and the water inlet opening, T1≥T2.
2. The base assembly of claim 1, wherein, The water replenishing opening is located at the side of the steam generating piece, and a part of the connecting pipe extends to the side of the steam generating piece.
3. The base assembly of claim 2, wherein, In a direction perpendicular to the horizontal plane, the other end of the connecting pipe is distributed in a staggered manner with the water replenishing opening, and a part of the connecting pipe is bent compared to another part for connecting one end of the connecting pipe with the water replenishing opening.
4. The base assembly of claim 1, wherein, The connecting pipe extends in a first direction, and the water replenishing opening is located in the extension direction of the connecting pipe.
5. The base assembly of any one of claims 1 to 4, wherein, The heating disc is provided with a mounting portion, the temperature switch is connected with the mounting portion, and in a direction perpendicular to the horizontal plane, the water replenishing opening is distributed in a staggered manner with the mounting portion.
6. The base assembly of claim 5, wherein, The top of the heating disc is provided with a groove, and in a direction perpendicular to the horizontal plane, the mounting portion is distributed in a staggered manner with the groove.
7. The base assembly of claim 5, wherein, The water control assembly is provided with a water outlet opening, one end of the connecting pipe is connected with the water outlet opening, and in a direction perpendicular to the horizontal plane, the water outlet opening is distributed in a staggered manner with the mounting portion.
8. The base assembly of any one of claims 1-4, wherein, The water control assembly is provided with a water outlet opening, one end of the connecting pipe is connected with the water outlet opening, the steam generating assembly further comprises a heating piece, the heating piece is arranged on the heating disc and is used for heating the heating disc, and in a direction perpendicular to the horizontal plane, the water inlet opening and the water outlet opening are lower than the heating piece.
9. The base assembly of any one of claims 1-4, wherein, The water control assembly is provided with a water outlet opening, one end of the connecting pipe is connected with the water outlet opening; The water control assembly is located at the first side of the heating disc, the first side of the heating disc to the second side of the heating disc is defined as a second direction, and the water inlet opening and the water outlet opening are sequentially distributed in the second direction.
10. The base assembly of any one of claims 1-4, wherein, The water control assembly is provided with a water outlet opening, one end of the connecting pipe is connected with the water outlet opening; The water control assembly is located at the first side of the heating disc, the first side of the heating disc to the second side of the heating disc is defined as a second direction, a third direction is defined as being parallel to the horizontal plane and perpendicular to the second direction, and the water inlet opening and the water outlet opening are sequentially distributed in the third direction.
11. The base assembly of any one of claims 1 to 4, wherein, The water control assembly further comprises: a valve body shell connected with the heating disc, the valve body shell being provided with the water inlet opening and the water outlet opening; An elastic sealing member is connected to the valve body shell, the temperature switch is used to drive the elastic sealing member to move relative to the valve body shell, when the elastic sealing member is pushed by the temperature switch, the elastic sealing member opens the water inlet, so that the water supply end is connected to the water inlet, when the elastic sealing member is in the initial position, the elastic sealing member closes the water inlet.
12. The base assembly of claim 11, wherein, The water control assembly is provided with a drain port, and one end of the connecting pipe is connected to the drain port. The water inlet is arranged on the bottom wall of the valve body shell, and the drain port is arranged on the top wall of the valve body shell.
13. The base assembly of claim 11, wherein, The steam generating assembly further comprises a connecting bracket, and the connecting bracket is arranged on the side of the heating disc.
14. The base assembly of claim 13, wherein, The connecting bracket comprises: An extension section is connected to the heating disc, and the extension section is parallel to the heating disc; A connecting section is arranged on the side of the extension section away from the heating disc, and the connecting section is located at the bottom of the extension section, and the connecting section is connected to the valve body shell.
15. The base assembly of claim 11, wherein, The connecting pipe and the elastic sealing member are in an integral structure.
16. The base assembly of claim 11, wherein, The elastic sealing member comprises: A movable part is used to push the movable part by the temperature switch, and the end of the movable part is used to open or close the water inlet; An elastic part is connected to the movable part and the valve body shell, and the elastic part is deformed when the movable part is pushed.
17. The base assembly of claim 16, wherein, The elastic sealing member further comprises: A spring is sleeved on the movable part, and the spring is located between the movable part and the valve body shell, and the spring is deformed when the movable part is pushed.
18. The base assembly of claim 11, wherein, At least a part of the elastic sealing member is located in the valve body shell, and the valve body shell is provided with a mounting port, one end of the elastic sealing member protrudes from the mounting port, the temperature switch is used to push one end of the elastic sealing member, and the other end of the elastic sealing member is used to open or close the water inlet.
19. The base assembly of any one of claims 1-4, wherein, In the direction perpendicular to the horizontal plane, the water outlet of the water supply end is higher than the water supplement port and the heating disc.
20. A cooking apparatus, characterized by, It comprises: The base assembly according to any one of claims 1 to 19.