Water tank structure and integrated cooker
By using sealing components in the water tank structure to control the flow of the pipeline, the problem of water dripping when the water tank is removed is solved, ensuring the cleanliness of the water tank shell and the safety of the components, thus improving the user experience.
Patent Information
- Application Number
- CN202423251210.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-27
AI Technical Summary
When the existing water tank structure is removed from the water tank shell, a large amount of water drips from the water pipe on the water tank shell, causing damage to electronic components and water accumulation.
Design a water tank structure including a water tank box, a water tank shell, and a water passage connection component. Use a sealing component to seal or connect the first and second pipelines under different pressures to ensure that the first pipeline is sealed when the water tank box is removed to prevent dripping.
It effectively prevents water dripping from the water tank casing, improves the cleanliness of the water tank casing and the protection of electronic components, and enhances the user experience.
Smart Images

Figure CN223731223U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cooking equipment, in particular to a water tank structure and an integrated cooker. BACKGROUND
[0002] The integrated cooker comprises a steam oven and a water tank structure connected with a water system of the steam oven, and the water tank structure is used for supplying water for the steam oven.
[0003] The existing water tank structure comprises a water tank box and a water tank shell, the water tank shell is arranged on the steam oven, the water tank box is placed in the water tank shell, a first pipeline is arranged on the water tank shell, a second pipeline is arranged on the water tank box, one end of the first pipeline is communicated with the water system of the steam oven, the other end of the first pipeline penetrates into the water tank shell and is communicated with the inner cavity of the water tank box through the second pipeline, so that the water in the inner cavity of the water tank box can be sequentially input into the water system from the second pipeline and the first pipeline through the water pump of the water system, and the water is used for the steam oven.
[0004] After the water in the water tank box is used up, the user needs to remove the water tank box from the water tank shell, then add water in the water tank box, and after the water is added, the water tank box is placed in the water tank shell. Since the first pipeline and the second pipeline need to be disconnected when the water tank box is removed from the water tank shell, a large amount of water will drip in the second pipeline after the first pipeline and the second pipeline are disconnected. After a long time of use, the dripping water will accumulate in the water tank shell, which is easy to cause damage to the electronic components arranged on the water tank shell. Invention content
[0005] The present application provides a water tank structure and an integrated cooker to solve the technical problem that a large amount of water drips from the water supply pipe on the water tank shell when the water tank box is removed from the water tank shell.
[0006] The first aspect of the embodiment of the present application provides a water tank structure, comprising a water tank box, a water tank shell and at least one water channel communication assembly;
[0007] The water tank box is detachably arranged in the water tank shell, and the water tank shell is arranged on the integrated cooker;
[0008] The water channel communication assembly comprises a first pipeline, a plugging member and a second pipeline, the first pipeline is arranged on the water tank shell, the second pipeline is arranged on the water tank box, one end of the first pipeline is used for being communicated with the water system of the integrated cooker, the other end of the first pipeline penetrates into the water tank shell and is detachably communicated with one end of the second pipeline, the other end of the second pipeline is communicated with the inner cavity of the water tank box, and the plugging member is arranged in the first pipeline;
[0009] The blocking piece is configured to block the first pipeline when the pressure received is less than or equal to a preset value, and to connect the first pipeline when the pressure received is greater than the preset value.
[0010] In a possible implementation, the blocking piece is an elastic blocking piece, a circumferential side of the elastic blocking piece abuts against an inner wall of the first pipeline, and a cutout is arranged on the elastic blocking piece.
[0011] The cutout is configured to close to make the elastic blocking piece block the first pipeline when the pressure received is less than or equal to a closing force of the cutout, and to open to make the elastic blocking piece connect the first pipeline when the pressure received is greater than the closing force of the cutout.
[0012] In a possible implementation, the number of the blocking pieces is two, and another blocking piece is arranged in the second pipeline.
[0013] The blocking piece arranged in the second pipeline is configured to block the second pipeline when the pressure received is less than or equal to a preset value, and to connect the second pipeline when the pressure received is greater than the preset value.
[0014] In a possible implementation, the blocking piece arranged in the second pipeline is an elastic blocking piece, a circumferential side of the elastic blocking piece abuts against an inner wall of the second pipeline, and a cutout is arranged on the elastic blocking piece.
[0015] The cutout is configured to close to make the elastic blocking piece block the second pipeline when the pressure received is less than or equal to a closing force of the cutout, and to open to make the elastic blocking piece connect the second pipeline when the pressure received is greater than the closing force of the cutout.
[0016] In a possible implementation, a thickness of the blocking piece in a direction in which the first pipeline extends is less than a wall thickness of the first pipeline.
[0017] In a possible implementation, the first pipeline and the blocking piece are integrally formed.
[0018] In a possible implementation, the blocking piece is a silica gel piece.
[0019] In a possible implementation, the second pipeline includes a first pipe body segment, a second pipe body segment and a third pipe body segment connected in sequence, a communication hole is arranged on the water tank box, a diameter of the second pipe body segment is greater than a diameter of the communication hole, the first pipe body passes through the communication hole and is connected with an inner cavity of the water tank box, the second pipe body segment abuts against an outer wall of the water tank box, and the third pipe body segment passes through the cutout to be connected with the first pipeline.
[0020] In a possible implementation, the water tank structure further comprises a support plate and at least one extension pipe, the support plate is arranged in the inner cavity of the water tank box, each of the extension pipes is arranged on the support plate, one end of each of the extension pipes is close to the bottom of the inner cavity of the water tank box, and the other end of each of the extension pipes is in communication with one end of the second pipe away from the first pipe.
[0021] The second aspect of the embodiment of the present application provides an integrated cooker, which comprises a water system and the water tank structure as described in any one of the preceding embodiments, and the water system is connected with the water tank structure.
[0022] The water tank structure and the integrated cooker provided in the present application, the water tank structure comprises a water tank box, a water tank shell and at least one water channel communication assembly; the water tank box is detachably arranged in the water tank shell, and the water tank shell is arranged on the integrated cooker; the water channel communication assembly comprises a first pipe, a blocking piece and a second pipe, the first pipe is arranged on the water tank shell, the second pipe is arranged on the water tank box, one end of the first pipe is used for being in communication with a water channel system of the integrated cooker, the other end of the first pipe penetrates into the water tank shell and is detachably communicated with one end of the second pipe, the other end of the second pipe is in communication with an inner cavity of the water tank box, and the blocking piece is arranged in the first pipe. In the process of using the water tank structure of the present application, when the water in the water tank box is used up, the user replenishes the water tank box, and needs to remove the water tank box from the water tank shell, the second pipe is arranged on the water tank box, and the second pipe will move together with the water tank box, at this time, the second pipe will be separated from the first pipe arranged on the water tank shell, that is, the second pipe will not exert pressure on the blocking piece in the first pipe, so that the pressure received by the blocking piece is less than a preset value, so that the blocking piece blocks the first pipe, so that the first pipe will not have a dripping phenomenon, that is, when the second pipe is removed from the first pipe after the water tank box is removed from the water tank shell, the first pipe on the water tank shell is blocked by the blocking piece, and the first pipe will not have a dripping phenomenon, thereby solving the technical problem that a large amount of water drips from the water channel on the water tank shell when the water tank box is removed from the water tank shell in the existing water tank structure. BRIEF DESCRIPTION OF DRAWINGS
[0023] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and serve to explain the principles of the present application together with the specification.
[0024] Figure 1 The structural schematic diagram of the water tank structure provided for the embodiment of the present application;
[0025] Figure 2 The structural schematic diagram of the water tank structure provided for the embodiment of the present application; Figure 1 The structural schematic diagram of the water tank structure provided for the embodiment of the present application;
[0026] Figure 3 The structural schematic diagram of the water tank structure provided for the embodiment of the present application;Figure 2 Enlarged structural schematic view at A in the middle;
[0027] Figure 4 Structural schematic view of the first pipeline in the water tank structure provided for the embodiments of the present application;
[0028] Figure 5 Structural schematic view of the water tank box in the water tank structure provided for the embodiments of the present application;
[0029] Figure 6 Structural schematic view of the inside of the water tank box in the water tank structure provided for the embodiments of the present application;
[0030] Figure 7 Structural schematic view of the second pipeline in the water tank structure provided for the embodiments of the present application;
[0031] Figure 8 Another structural schematic view of the inside of the water tank box in the water tank structure provided for the embodiments of the present application.
[0032] Explanation of reference signs:
[0033] 10 - waterway system;
[0034] 100 - water tank box; 110 - water tank cover; 120 - silica gel cover; 130 - communication hole;
[0035] 200 - water tank shell;
[0036] 300 - waterway communication assembly; 310 - first pipeline; 320 - plugging piece; 321 - cutout; 330 - second pipeline; 331 - first pipe section; 332 - second pipe section; 333 - third pipe section;
[0037] 400 - connecting piece;
[0038] 500 - support plate;
[0039] 600 - extension pipe;
[0040] 700 - gland;
[0041] 800 - joint.
[0042] Through the above drawings, the specific embodiments of the present application have been shown, and will be described in more detail hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application by any means, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0043] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0044] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0045] In this application, unless otherwise expressly specified and limited, the terms "connection," "fixed," etc., should be interpreted broadly. For example, "fixed" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0046] Furthermore, if the embodiments of this application involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the meaning of "and / or" throughout the text includes three parallel solutions; for example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0047] An integrated cooktop includes a steam oven and a water tank structure connected to the water system of the steam oven, the water tank structure being used to supply water to the steam oven.
[0048] The existing water tank structure includes a water tank box and a water tank shell. The water tank shell is arranged on the steam oven, and the water tank box is placed in the water tank shell. A water pipe is arranged on the water tank box, and a water pipe is also arranged on the water tank shell. One end of the water pipe on the water tank box is in communication with the inner cavity of the water tank box. The other end of the water pipe on the water tank box is detachably connected with one end of the water pipe on the water tank shell. The other end of the water pipe on the water tank shell is in communication with the water system of the steam oven. The water pump of the water system sequentially inputs the water in the inner cavity of the water tank box into the water system through the water pipes on the water tank box and the water tank shell for use of the steam oven. After the water in the water tank box is used up, the user needs to remove the water tank box from the water tank shell, then add water in the water tank box, and then place the water tank box in the water tank shell after the water is added.
[0049] When the water tank box needs to be removed from the water tank shell, the water pipe on the water tank box will be disconnected with the water pipe on the water tank shell. Since there is accumulated water in the water pipe on the water tank shell, a large amount of water will drop from the water pipe on the water tank shell. After a long time of use, the dropped water will accumulate in the water tank shell. Since the micro switch and other electronic components are arranged on the water tank shell, the dropped water and the accumulated water will easily cause damage to the electronic components arranged on the water tank shell.
[0050] In order to solve the technical problem that a large amount of water drops from the water pipe on the water tank shell when the water tank box is removed from the water tank shell, the application provides a water tank structure and an integrated kitchen. The water tank structure includes a water tank box, a water tank shell and at least one water channel communication assembly. The water tank box is detachably arranged in the water tank shell, and the water tank shell is arranged on the integrated kitchen. The water channel communication assembly includes a first pipe, a blocking piece and a second pipe. The first pipe is arranged on the water tank shell, and the second pipe is arranged on the water tank box. One end of the first pipe is in communication with the water system of the integrated kitchen, and the other end of the first pipe penetrates into the water tank shell and is detachably communicated with one end of the second pipe. The other end of the second pipe is in communication with the inner cavity of the water tank box. The blocking piece is arranged in the first pipe. The blocking piece is configured to block the first pipe when the pressure received is less than or equal to a preset value, and to communicate the first pipe when the pressure received is greater than the preset value.
[0051] In the process of using the water tank structure, when the water in the water tank box is used up, the user replenishes the water tank box with water, the water tank box needs to be removed from the water tank shell, the second pipeline is arranged on the water tank box, the second pipeline will move together with the water tank box, at this time the second pipeline will be separated from the first pipeline arranged on the water tank shell, that is, the second pipeline will not exert pressure on the blocking piece in the first pipeline, so that the pressure received by the blocking piece is less than the preset value, so that the blocking piece blocks the first pipeline, so that the first pipeline will not have a dripping phenomenon, that is, when the water tank box is removed from the water tank shell, the second pipeline is removed from the first pipeline, the first pipeline on the water tank shell will not have a dripping phenomenon due to being blocked by the blocking piece, solving the technical problem that a large amount of water drips from the water supply pipe on the water tank shell when the water tank box is removed from the water tank shell, and improving the cleanliness of the water tank shell, avoiding the user cleaning and wiping the accumulated water in the water tank shell.
[0052] The technical solutions of the application will be described in detail below with specific examples in combination with the drawings. The following specific examples can be combined with each other, and the same or similar concepts or processes can not be described in detail in some examples.
[0053] Referring to Figures 1 to 8 shown in the drawings, Figure 1 a structural schematic view of the water tank structure provided by the embodiments of the application; Figure 2 for Figure 1 a sectional structural schematic view from another angle; Figure 3 for Figure 2 an enlarged structural schematic view of position A in FIG. Figure 4 a structural schematic view of the first pipeline in the water tank structure provided by the embodiments of the application; Figure 5 a structural schematic view of the water tank box in the water tank structure provided by the embodiments of the application; Figure 6 a structural schematic view of the inside of the water tank box in the water tank structure provided by the embodiments of the application; Figure 7 a structural schematic view of the second pipeline in the water tank structure provided by the embodiments of the application; Figure 8 another structural schematic view of the inside of the water tank box in the water tank structure provided by the embodiments of the application.
[0054] In the embodiments of the application, referring to Figures 1 to 4 shown, the embodiments of the application provide a water tank structure, which comprises a water tank box 100, a water tank shell 200 and at least one water path communication assembly 300.
[0055] The water tank box 100 is detachably arranged in the water tank shell 200, and the water tank shell 200 is arranged on an integrated stove.
[0056] The waterway communication assembly 300 comprises a first pipeline 310, a blocking piece 320 and a second pipeline 330. The first pipeline 310 is arranged on the water tank shell 200, and the second pipeline 330 is arranged on the water tank box 100. One end of the first pipeline 310 is used for communication with the waterway system 10 of the integrated cooker, and the other end of the first pipeline 310 penetrates into the water tank shell 200 and is detachably communicated with one end of the second pipeline 330. The other end of the second pipeline 330 is communicated with the inner cavity of the water tank box 100. The blocking piece 320 is arranged in the first pipeline 310.
[0057] The blocking piece 320 is configured to block the first pipeline 310 when the pressure received is less than or equal to a preset value, and to communicate the first pipeline 310 when the pressure received is greater than the preset value.
[0058] The water tank structure of the embodiment of the present application refers to Figure 5 As shown in the figure, the water tank box 100 comprises a water tank cover 110, and a silica gel cover 120 is arranged on the water tank cover 110. When the user adds water, the silica gel cover 120 can be opened.
[0059] The water tank shell 200 is arranged on the integrated cooker, specifically, on the cooking device of the integrated cooker, such as a steaming oven. The water tank shell 200 can be integrally formed with the steaming oven or can be separately arranged.
[0060] The number of the waterway communication assembly 300 in the water tank structure of the embodiment of the present application is at least one. Generally, the number of the waterway communication assembly 300 is two. One is used to deliver water in the water tank box 100 to the waterway system 10 of the integrated cooker, and the other is used to deliver water in the waterway system 10 to the water tank box 100.
[0061] It should be noted that the waterway system 10 of the integrated cooker can be the waterway system 10 of the cooking device, such as the waterway system 10 of the steaming oven.
[0062] The blocking piece 320 is arranged in the first pipeline 310. When the second pipeline 330 is communicated with the first pipeline 310, the water pump of the waterway system 10 opens the blocking piece 320 by suction force, so that the first pipeline 310 is communicated, or the second pipeline 330 abuts against the blocking piece 320. At this time, the abutting force is greater than the preset value, so that the first pipeline 310 is opened, and the second pipeline 330 is communicated with the first pipeline 310.
[0063] When the second pipeline 330 is disconnected from the first pipeline 310, the water pump is closed at this time, and the pressure received by the blocking piece 320 is less than the preset value, so that the blocking piece 320 blocks the first pipeline 310; or because the second pipeline 330 does not abut against the blocking piece 320 at this time, no pressure is applied to the blocking piece 320, so that the pressure received by the blocking piece 320 is less than the preset value, and the blocking piece 320 blocks the first pipeline 310.
[0064] In the process of using the water tank structure of the present application, when the water in the water tank box 100 is used up, the user replenishes the water tank box 100, and needs to remove the water tank box 100 from the water tank shell 200. The second pipeline 330 is arranged on the water tank box 100, and the second pipeline 330 will move with the water tank box 100. At this time, the second pipeline 330 will be separated from the first pipeline 310 arranged on the water tank shell 200, that is, the second pipeline 330 will not exert pressure on the blocking piece 320 in the first pipeline 310, so that the pressure on the blocking piece is less than the preset value, so that the blocking piece 320 blocks the first pipeline 310, so that the first pipeline 310 will not have a dripping phenomenon. That is, when the water tank box 100 is removed from the water tank shell 200, and the second pipeline 330 is removed from the first pipeline 310, the first pipeline 310 on the water tank shell 200 will not have a dripping phenomenon due to the blocking of the blocking piece 320. The technical problem of a large amount of water dripping from the water supply pipe on the water tank shell 200 when the water tank box 100 is removed from the water tank shell 200 is solved, and the cleanliness of the water tank shell 200 is improved, avoiding the user cleaning and wiping the accumulated water in the water tank shell 200.
[0065] In another embodiment, the blocking piece 320 is an elastic blocking piece, the peripheral side of the elastic blocking piece abuts against the inner wall of the first pipeline 310, and the blocking piece 320 is provided with a cutout 321; the cutout 321 is configured to close to block the first pipeline 310 when the pressure received is less than or equal to the closing force of the cutout 321; and open to communicate the first pipeline 310 when the pressure received is greater than the closing force of the cutout 321.
[0066] In this embodiment, the peripheral side of the blocking piece 320 abuts against the inner wall of the first pipeline 310, that is, the peripheral side of the blocking piece 320 and the inner wall of the first pipeline 310 are in a sealed state.
[0067] The blocking piece 320 is provided with a cutout 321, and the cutout 321 is in a closed state when not subjected to external force, that is, the blocking piece 320 will block the first pipeline 310.
[0068] When the second pipeline 330 passes through the cutout 321, the pressure received by the cutout 321 is greater than the closing force of the cutout 321, at this time the cutout 321 abuts against the peripheral side of the second pipeline 330, sealing the gap between the second pipeline 330, at this time the second pipeline 330 and the first pipeline 310 are in a communicating state, that is, the water in the second pipeline 330 can be transported to the first pipeline 310, through the transportation of the water pump in the waterway system 10, that is, the water in the water tank box 100 can be transported to the waterway system 10 in turn from the second pipeline 330 and the first pipeline 310.
[0069] In the process of using the water tank structure of the present application, when the water in the water tank box 100 is used up, the user replenishes the water tank box 100 with water, and needs to remove the water tank box 100 from the water tank shell 200. The second pipeline 330 is arranged on the water tank box 100, and the second pipeline 330 will move together with the water tank box 100. At this time, the second pipeline 330 will be separated from the first pipeline 310 arranged on the water tank shell 200, that is, the second pipeline 330 is separated from the notch 321 on the blocking piece 320 in the first pipeline 310. Since the notch 321 is separated from the second pipeline 330, the pressure received by the notch 321 is less than the preset pressure, that is, the notch 321 is in a closed state at this time, so that the blocking piece 320 blocks the first pipeline 310. Therefore, the first pipeline 310 will not have a dripping phenomenon. That is, when the water tank box 100 is removed from the water tank shell 200, and the second pipeline 330 is removed from the first pipeline 310, the first pipeline 310 on the water tank shell 200 will not have a dripping phenomenon due to being blocked by the blocking piece 320. The technical problem of a large amount of water dripping from the water tank shell 200 when the water tank box 100 is removed from the water tank shell 200 in the existing water tank structure is solved.
[0070] In other embodiments, the number of blocking pieces 320 is two, and the other blocking piece 320 is arranged in the second pipeline 330. The blocking piece 320 arranged in the second pipeline 330 is configured to block the second pipeline 330 when the pressure received is less than or equal to a preset value, and to communicate the second pipeline 330 when the pressure received is greater than the preset value.
[0071] In this embodiment, after the second pipeline 330 is communicated with the first pipeline 310, when the water pump in the waterway system 10 is working, the pressure generated by the water pump on the blocking piece 320 is greater than the preset value, and the blocking piece 320 is opened, that is, the second pipeline 330 is opened. At this time, the water in the water tank box 100 can be communicated into the first pipeline 310 from the second pipeline 330.
[0072] When the water tank box 100 is removed from the water tank shell 200, the second pipeline 330 is disconnected from the first pipeline 310 at this time. At this time, the pressure received by the blocking piece 320 will be less than the preset value, and the blocking piece 320 is closed, so that the blocking piece 320 blocks the second pipeline 330. Therefore, there will be no water dripping at the second pipeline 330.
[0073] In the existing water tank structure, when the user moves the water tank box 100 to the water tank shell 200 after adding water to the water tank box 100, the water tank box 100 will shake, causing the water in the water tank box 100 to overflow from the water pipe on the water tank box 100, affecting the user experience. The water tank structure of the embodiment will block the second pipeline 330 with the blocking piece 320 after disconnecting the second pipeline 330 from the first pipeline 310, so that no water will drop at the second pipeline 330, i.e. the water in the water tank box 100 will not overflow and there will be no dripping phenomenon, ensuring the cleanliness during use and improving the user experience.
[0074] In some embodiments, the blocking piece 320 arranged in the second pipeline 330 is an elastic blocking piece, the peripheral side of the elastic blocking piece abuts against the inner wall of the second pipeline 330, and the elastic blocking piece is provided with a cutout 321; the cutout 321 is configured to be closed to block the second pipeline 330 with the elastic blocking piece when the pressure received is less than or equal to the closing force of the cutout 321; and the cutout 321 is opened to communicate the second pipeline 330 with the elastic blocking piece when the pressure received is greater than the closing force of the cutout 321.
[0075] In the embodiment, after the second pipeline 330 is communicated with the first pipeline 310, when the water pump in the waterway system 10 works, the pressure generated by the water pump is greater than the closing force of the cutout 321 on the blocking piece 320, so that the cutout 321 is opened, i.e. the cutout 321 communicates the two end faces of the blocking piece 320, and the second pipeline 330 is opened, at this time the water in the water tank box 100 can be communicated into the first pipeline 310 from the second pipeline 330.
[0076] When the water tank box 100 is removed from the water tank shell 200, at this time the second pipeline 330 is disconnected from the first pipeline 310, at this time the pressure received by the end face of the blocking piece 320 will be less than the closing force of the cutout 321, i.e. at this time the cutout 321 is in a closed state, the cutout 321 will close the two end faces of the blocking piece 320, so that the blocking piece 320 blocks the second pipeline 330, so that no water will drop at the second pipeline 330.
[0077] In another possible embodiment, the thickness of the blocking piece 320 in the extension direction of the first pipeline 310 is less than the wall thickness of the first pipeline 310.
[0078] In the embodiment, the wall thickness of the first pipeline 310 is greater than the distance between the two end faces of the blocking piece 320, which ensures the structural strength of the first pipeline 310 and makes the cutout 321 on the blocking piece 320 easy to be opened.
[0079] In some possible embodiments, the first pipeline 310 and the blocking piece 320 are integrally formed.
[0080] In the embodiment, the first pipe 310 is integrally formed with the blocking member 320, so that the blocking member 320 is prevented from falling off from the first pipe 310, and the stability of the structure is ensured.
[0081] Further, the second pipe 330 is integrally formed with the blocking member 320.
[0082] In other possible embodiments, the blocking member 320 is a silica gel sheet.
[0083] In the embodiment, the blocking member 320 is a silica gel sheet, so that the opening or closing of the cut 321 on the blocking member 320 is facilitated.
[0084] It should be noted that the second pipe 330 and the blocking member 320 can be silica gel, for example, the second pipe 330 and the blocking member 320 are integrally formed into a sealed silica gel valve.
[0085] In some embodiments, referring to Figs. 1 and 2, the second pipe 330 includes a first pipe segment 331, a second pipe segment 332 and a third pipe segment 333 which are sequentially communicated, and the water tank box 100 is provided with a communication hole 130, the diameter of the second pipe segment 332 is greater than the diameter of the communication hole 130, the first pipe segment 331 penetrates through the communication hole 130 and is communicated with the inner cavity of the water tank box 100, the second pipe segment 332 abuts against the outer wall of the water tank box 100, and the third pipe segment 333 penetrates through the cut 321 to be communicated with the first pipe 310. Figure 7 Figure 8 As shown in Figs. 1 and 2, the second pipe 330 includes a first pipe segment 331, a second pipe segment 332 and a third pipe segment 333 which are sequentially communicated, and the water tank box 100 is provided with a communication hole 130, the diameter of the second pipe segment 332 is greater than the diameter of the communication hole 130, the first pipe segment 331 penetrates through the communication hole 130 and is communicated with the inner cavity of the water tank box 100, the second pipe segment 332 abuts against the outer wall of the water tank box 100, and the third pipe segment 333 penetrates through the cut 321 to be communicated with the first pipe 310.
[0086] In the embodiment, the first pipe segment 331 of the second pipe 330 is arranged in the communication hole 130, specifically, the first pipe segment 331 abuts against the inner wall of the communication hole 130, so that the sealing property is ensured, the second pipe segment 332 abuts against the outer wall of the water tank box 100, so that the second pipe 330 is fixed, and the third pipe segment 333 is used to be communicated with the first pipe 310.
[0087] In a possible embodiment, the support plate 500 and at least one extension pipe 600 are further included, the support plate 500 is arranged in the inner cavity of the water tank box 100, each extension pipe 600 is arranged on the support plate 500, one end of each extension pipe 600 is close to the bottom of the inner cavity of the water tank box 100, and the other end of each extension pipe 600 is communicated with one end of the second pipe 330 which is away from the first pipe 310.
[0088] In the embodiment, the extension pipe 600 is arranged, so that the water in the water tank box 100 can be pumped out by the water pump of the waterway system 10.
[0089] In some possible embodiments, the outer diameter of the third pipe segment 333 is less than the inner diameter of the first pipe 310.
[0090] In the embodiment, the outer diameter of the third pipe segment 333 is smaller than the inner diameter of the first pipe 310, so that the third pipe segment 333 is installed in the first pipe 310, improving the convenience of installation, and enabling the third pipe segment 333 to smoothly pass through the cutout 321 on the blocking member 320.
[0091] In other possible embodiments, the first pipe 310, the blocking member 320, the second pipe 330, and the blocking member 320 are all made of silica gel.
[0092] In the embodiment, the silica gel has a certain elasticity, so that the cutout 321 on the blocking member 320 is closed when the external force received is smaller than the closing force of the cutout 321, or is opened when the external force received is greater than the closing force of the cutout 321.
[0093] In another embodiment, the shape of the cutout 321 is cross-shaped, hoshi-shaped, snowflake-shaped, or Y-shaped.
[0094] It should be noted that the shape of the cutout 321 can be any shape, as long as the cutout is closed when the external force received is smaller than the closing force of the cutout, or is opened when the external force received is greater than the closing force of the cutout.
[0095] Further, referring to FIG. 8, the water tank structure further includes a plurality of joints 800, and the extension pipe 600 is connected to the second pipe 330 through the joints 800, so as to ensure the stability of the communication between the extension pipe 600 and the second pipe 330. Figure 6 Figure 8 Further, referring to FIG. 8, the water tank structure further includes a plurality of joints 800, and the extension pipe 600 is connected to the second pipe 330 through the joints 800, so as to ensure the stability of the communication between the extension pipe 600 and the second pipe 330.
[0096] Further, referring to FIG. 8, the water tank structure further includes a plurality of joints 800, and the extension pipe 600 is connected to the second pipe 330 through the joints 800, so as to ensure the stability of the communication between the extension pipe 600 and the second pipe 330. Figure 1 Further, referring to FIG. 8, the water tank structure further includes a plurality of joints 800, and the extension pipe 600 is connected to the second pipe 330 through the joints 800, so as to ensure the stability of the communication between the extension pipe 600 and the second pipe 330.
[0097] Figure 3 Further, referring to FIG. 8, the water tank structure further includes a plurality of joints 800, and the extension pipe 600 is connected to the second pipe 330 through the joints 800, so as to ensure the stability of the communication between the extension pipe 600 and the second pipe 330.
[0098] The second aspect of the embodiment of the present application provides an integrated cooker, including a waterway system 10, and further including the water tank structure of any of the above embodiments, and the waterway system 10 is connected to the water tank structure.
[0099] The integrated stove provided by the embodiment of the present application is connected with the water tank structure of the embodiment of the present application, and the water tank structure comprises a water tank box 100, a water tank shell 200 and at least one water channel communication assembly 300; the water tank box 100 is detachably arranged in the water tank shell 200, and the water tank shell 200 is arranged on the integrated stove; the water channel communication assembly 300 comprises a first pipeline 310, a blocking piece 320 and a second pipeline 330; the first pipeline 310 is arranged on the water tank shell 200, the second pipeline 330 is arranged on the water tank box 100, one end of the first pipeline 310 is arranged to be in communication with the water channel system 10 of the integrated stove, the other end of the first pipeline 310 penetrates into the water tank shell 200 and is detachably communicated with one end of the second pipeline 330, the other end of the second pipeline 330 is communicated with the inner cavity of the water tank box 100, and the blocking piece 320 is arranged in the first pipeline 310; the blocking piece 320 is configured to block the first pipeline 310 when the pressure received is less than or equal to a preset value, and to communicate the first pipeline 310 when the pressure received is greater than the preset value.
[0100] In the process of using the integrated stove and the water tank structure of the present application, when the water in the water tank box 100 is used up and the user replenishes the water tank box 100, the water tank box 100 needs to be removed from the water tank shell 200, and the second pipeline 330 will move together with the water tank box 100, at this time, the second pipeline 330 will be separated from the first pipeline 310 arranged on the water tank shell 200, that is, the second pipeline 330 will not exert pressure on the blocking piece 320 in the first pipeline 310, so that the pressure received by the blocking piece is less than the preset value, thereby the blocking piece 320 blocks the first pipeline 310, so that the first pipeline 310 will not have a dripping phenomenon, that is, when the second pipeline 330 is removed from the first pipeline 310 after the water tank box 100 is removed from the water tank shell 200, the first pipeline 310 on the water tank shell 200 will not have a dripping phenomenon due to being blocked by the blocking piece 320, thereby solving the technical problem that a large amount of water drips from the water channel on the water tank shell 200 when the water tank box 100 is removed from the water tank shell 200, and improving the cleanliness of the water tank shell 200, thereby avoiding the user from cleaning and wiping the accumulated water in the water tank shell 200.
[0101] Other embodiments of the present application will be apparent to those skilled in the art from consideration of the specification and practice of the features disclosed herein. It is intended that the present application cover any and all variations of the application that come within the scope of the general inventive concepts described herein and including all such variations that are within the true spirit and scope of the application. The specification and examples are to be considered exemplary only, with the true scope and spirit of the application indicated by the following claims.
[0102] It is to be understood that the application is not limited to the precise construction already described above and shown in the drawings, and that various modifications and changes can be made by those skilled in the art without departing from the scope of the application. The scope of the application should only be limited by the claims appended hereto.
Claims
1. A water tank structure, characterized by comprising: The water tank box (100), the water tank shell (200) and at least one waterway communication assembly (300) are provided. The water tank box (100) is detachably arranged in the water tank shell (200), and the water tank shell (200) is arranged on the integrated cooker. The waterway communication assembly (300) comprises a first pipeline (310), a blocking piece (320) and a second pipeline (330). The first pipeline (310) is arranged on the water tank shell (200), the second pipeline (330) is arranged on the water tank box (100), one end of the first pipeline (310) is used for communicating with a waterway system (10) of the integrated cooker, the other end of the first pipeline (310) penetrates into the water tank shell (200) and is detachably communicated with one end of the second pipeline (330), the other end of the second pipeline (330) is communicated with an inner cavity of the water tank box (100), and the blocking piece (320) is arranged in the first pipeline (310). The blocking piece (320) is configured to block the first pipeline (310) when the pressure received is less than or equal to a preset value, and to communicate the first pipeline (310) when the pressure received is greater than the preset value.
2. The water tank structure according to claim 1, characterized by The blocking piece (320) is an elastic blocking piece, a circumferential side of the elastic blocking piece abuts against an inner wall of the first pipeline (310), and a cutout (321) is arranged on the elastic blocking piece. The cutout (321) is configured to close to make the elastic blocking piece block the first pipeline (310) when the pressure received is less than or equal to a closing force of the cutout (321), and to open to make the elastic blocking piece communicate the first pipeline (310) when the pressure received is greater than the closing force of the cutout (321).
3. The water tank structure according to claim 1, characterized by The number of the blocking pieces (320) is two, and the other blocking piece (320) is arranged in the second pipeline (330). The blocking piece (320) arranged in the second pipeline (330) is configured to block the second pipeline (330) when the pressure received is less than or equal to a preset value, and to communicate the second pipeline (330) when the pressure received is greater than the preset value.
4. The water tank structure according to claim 3, characterized by The blocking piece (320) arranged in the second pipeline (330) is an elastic blocking piece, a circumferential side of the elastic blocking piece abuts against an inner wall of the second pipeline (330), and a cutout (321) is arranged on the elastic blocking piece. The cutout (321) is configured to close to make the elastic blocking piece block the second pipeline (330) when the pressure received is less than or equal to a closing force of the cutout (321), and to open to make the elastic blocking piece communicate the second pipeline (330) when the pressure received is greater than the closing force of the cutout (321).
5. The water tank structure according to claim 2, characterized by The thickness of the blocking piece (320) in the extension direction of the first pipeline (310) is less than the wall thickness of the first pipeline (310).
6. The water tank structure according to claim 2, wherein The first pipeline (310) and the blocking piece (320) are integrally formed.
7. The water tank structure according to claim 2, characterized by The blocking piece (320) is a silica gel sheet.
8. The water tank structure according to claim 4, wherein The second pipeline (330) comprises a first pipe segment (331), a second pipe segment (332) and a third pipe segment (333) communicated in sequence, the water tank box (100) is provided with a communication hole (130), the diameter of the second pipe segment (332) is greater than the diameter of the communication hole (130), the first pipe segment (331) is communicated with the inner cavity of the water tank box (100) through the communication hole (130), the second pipe segment (332) abuts against the outer wall of the water tank box (100), and the third pipe segment (333) passes through the cutout (321) to be communicated with the first pipeline (310).
9. The water tank structure according to any one of claims 1 to 8, characterized by, Further comprising a support plate (500) and at least one extension pipe (600), the support plate (500) is arranged in the inner cavity of the water tank box (100), each of the extension pipes (600) is arranged on the support plate (500), one end of each of the extension pipes (600) is close to the bottom of the inner cavity of the water tank box (100), and the other end of each of the extension pipes (600) is communicated with one end of the second pipeline (330) away from the first pipeline (310) in a one-to-one correspondence.
10. An integrated kitchen comprising a water circuit system (10), characterized in that, Further comprising the water tank structure according to any one of claims 1 to 9, and the waterway system (10) is connected with the water tank structure.