Liquid heating vessel
Patent Information
- Application Number
- CN202521585266.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-07-28
AI Technical Summary
致使壶盖打开时,壶盖内部的水流从壶盖的尾端流出,流到壶柄区域,引起用户的使用不适,尤其开水倒完后开盖,还可能造成烫伤
[0015]本实用新型的技术方案通过于壶身设置容纳腔,且壶身的一侧具有壶柄;壶盖组件可转动连接于壶柄,以打开或关闭容纳腔;用户通过握持壶柄,以倾倒壶身,使得容纳腔内的液体由流出。如此也导致在倒水的过程中,水会接触壶盖组件,因此水流可能沿着壶盖组件的拼接间隙渗入壶盖组件的内部,或者水在加热过程中以水蒸汽的形式沿着壶盖组件的拼接间隙渗入壶盖组件的内部。当壶盖组件打开容纳腔时,壶盖组件向上翻转,致使壶盖组件内的水流向靠近壶柄的一侧流动,进而流到壶柄区域,浇湿用户手部,尤其在水刚烧开时,水的温度较高,甚至可能烫伤用户。因此,壶盖组件靠近壶柄的一侧设有挡水结构,且该挡水结构设于壶盖组件靠近壶柄的一侧,该挡水结构能够阻挡壶盖组件的水流流向壶柄,从而阻断壶盖组件内部水流的流动方向,从而减少壶盖组件的水流直接流向壶柄的可能;也能避免采用密封圈密封壶盖的方式,来减少水流流入壶盖组件的可能,进而减少壶盖组件的水流直接流向壶柄的可能,本方案无需增加生产材料,也有助于降低装配成本,同时不会在使用过程中产生异味,从而提升用户的使用体验。
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Figure CN224792102U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliance technology, and in particular to a liquid heating container. Background Technology
[0002] In some existing electric kettles, the lid rotates to connect to the kettle body. During use (boiling, pouring, etc.), steam or water may directly enter the inside of the lid. This causes water to flow out from the end of the lid when the lid is opened, reaching the handle area and causing discomfort to the user, especially after pouring out boiling water, potentially leading to scalding. To overcome this defect, the industry currently typically adds a sealing ring around the lid to reduce the possibility of water entering. However, this method adds unnecessary production material and assembly costs, and the sealing ring is usually made of silicone or plastic, which can easily produce odors during use, affecting the user experience. Utility Model Content
[0003] The main purpose of this invention is to provide a liquid heating container that reduces the possibility of water flowing from the lid to the handle and improves the user experience.
[0004] To achieve the above objectives, the present invention provides a liquid heating container comprising: The body of the pot has a receiving cavity, and a handle is provided on one side of the body of the pot; The lid assembly is rotatably connected to the handle to open or close the receiving cavity; the lid assembly has a water-blocking structure on the side near the handle, which can prevent water from flowing from the lid assembly to the handle.
[0005] In one embodiment, the lid assembly includes a first lid body and a second lid body spliced to the side of the first lid body facing the receiving cavity. The side of the first lid body facing the second lid body is provided with a rotating connection portion, which is rotatably connected to the handle. The water-blocking structure is provided on the first lid body, and the water-blocking structure at least partially covers the side of the rotating connection portion facing the second lid body to prevent water flow between the first lid body and the second lid body from flowing along the rotating connection portion to the handle.
[0006] In one embodiment, the rotating connection includes a connecting section connected to the first lid and a rotating section connected to the connecting section, wherein the rotating section extends at least partially from the periphery of the first lid and is rotatably connected to the handle. The water-blocking structure includes a water-blocking part, which and the first cover together surround at least a portion of the periphery of the connecting segment to block the gap between the connecting segment and the first cover.
[0007] In one embodiment, the water-blocking portion includes two first segments connected to the first cover and a second segment bent and connected to the two first segments. The two first segments are respectively disposed on opposite sides of the connecting segment, and the second segment is disposed on the side of the connecting segment away from the first cover.
[0008] In one embodiment, the length of the water-blocking portion along the radial direction of the first cover is greater than or equal to 1 / 3 of the radius of the first cover.
[0009] In one embodiment, the water-blocking portion is integrally formed into the first cover; and / or, The connecting section has a snap-fit part at one end away from the rotating section, and the first cover has a snap-fit hole. The snap-fit part is inserted into the snap-fit hole and snapped onto the edge of the snap-fit part.
[0010] In one embodiment, the second lid has a drain hole on the side near the handle of the kettle, the drain hole being used to drain water between the first lid and the second lid.
[0011] In one embodiment, the water-blocking structure further includes a water-guiding rib, which is disposed on the side of the drain hole facing the handle and extends into the receiving cavity.
[0012] In one embodiment, the water guide rib is connected to the water blocking part, and the edge of the second cover facing the handle is provided with an avoidance notch. The water guide rib is inserted into the avoidance notch, and the drain hole is opened at the edge of the avoidance notch.
[0013] In one embodiment, the water-guiding rib is integrally formed on the water-blocking portion; and / or, The water guide rib is configured as an arc-shaped rib protruding away from the drain hole.
[0014] In one embodiment, the second lid is recessed relative to the first lid at least in a portion near the handle of the kettle to form a water collection groove.
[0015] The technical solution of this utility model involves setting a receiving cavity in the body of the kettle, and having a handle on one side of the body. The lid assembly is rotatably connected to the handle to open or close the receiving cavity. The user holds the handle to pour the kettle, causing the liquid in the receiving cavity to flow out. However, this also means that during the pouring process, water will come into contact with the lid assembly, and the water flow may seep into the interior of the lid assembly along the joint gaps, or the water may seep into the interior of the lid assembly as steam during heating. When the lid assembly opens the receiving cavity, the lid assembly flips upward, causing the water inside the lid assembly to flow towards the side closer to the handle, and then flow into the handle area, wetting the user's hands. Especially when the water has just boiled, the temperature is high, and it may even scald the user. Therefore, a water-blocking structure is provided on the side of the lid assembly near the handle. This water-blocking structure can prevent water from flowing from the lid assembly to the handle, thereby blocking the flow direction of water inside the lid assembly and reducing the possibility of water flowing directly from the lid assembly to the handle. It also avoids the need to use a sealing ring to seal the lid, thus reducing the possibility of water flowing into the lid assembly and further reducing the possibility of water flowing directly from the lid assembly to the handle. This solution does not require additional production materials, helps to reduce assembly costs, and does not produce odors during use, thereby improving the user experience. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0017] Figure 1 A schematic diagram of the structure of an embodiment of the liquid heating container provided by this utility model; Figure 2 for Figure 1 Schematic diagram of the installation structure of the central water-retaining structure; Figure 3 for Figure 1 Exploded view of the kettle lid assembly; Figure 4 for Figure 3 A magnified view of a section at point A in the middle; Figure 5 for Figure 1 Cross-sectional view of a liquid heating container; Figure 6 for Figure 5 A magnified view of a section at point B in the middle; Figure 7 for Figure 1Diagram showing the position of the water flow inside the kettle when the lid assembly is closed; Figure 8 for Figure 1 Diagram showing the position of the internal water flow when the kettle lid assembly is in the open position; Figure 9 for Figure 8 A magnified view of a section at point C.
[0018] Explanation of icon numbers: 1. Liquid heating container; 11. Kettle body; 111. Receiving cavity; 112. Kettle handle; 113. Water outlet; 12. Kettle lid assembly; 121. First lid; 122. Second lid; 123. Rotating connection; 124. Connecting section; 1241. Snap-fit part; 125. Rotating section; 126. Snap hole; 1261. Protrusion; 127. Drain hole; 128. Clearance notch; 129. Water collection trough; 13. Water blocking structure; 131. Water blocking part; 132. First section; 133. Second section; 134. Water guide rib; 14. Fastener.
[0019] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0021] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0022] Furthermore, if the embodiments of this utility model 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 use of "and / or" or "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 by this utility model.
[0023] This utility model proposes a liquid heating container 1, which can be an electric kettle, a health pot, etc.
[0024] Please see Figures 1 to 9 In one embodiment of this utility model, the liquid heating container 1 includes: The body of the pot 11 has a receiving cavity 111, and a handle 112 is provided on one side of the body of the pot 11; The lid assembly 12 is rotatably connected to the handle 112 to open or close the receiving cavity 111; the lid assembly 12 is provided with a water-blocking structure 13 on the side near the handle 112, which can prevent water from flowing from the lid assembly 12 to the handle 112.
[0025] Specifically, the kettle body 11 has a receiving cavity 111 for storing liquids such as water, and a heating element is provided at the bottom of the receiving cavity 111 for heating the water inside. A handle 112 is located on one side of the kettle body 11, and a spout communicating with the receiving cavity 111 is located on the side of the kettle body 11 away from the handle 112. This spout is typically located near the opening (top) of the receiving cavity 111. The user holds the handle 112 to pour water from the kettle body 11, causing the liquid in the receiving cavity 111 to flow out. This also means that during the pouring process, water will come into contact with the lid assembly 12. Therefore, water may seep into the interior of the lid assembly 12 along the joint gap, or water may seep into the interior of the lid assembly 12 in the form of steam during heating. When the lid assembly 12 opens the receiving cavity 111, the lid assembly 12 flips upward, causing the water inside the lid assembly 12 to flow towards the side closer to the handle 112, and then flow to the handle 112 area, wetting the user's hands. Especially when the water has just boiled, the water temperature is high, and it may even scald the user.
[0026] In the prior art, sealing rings and other structures are usually set to seal the splicing gap of the lid assembly 12, thereby preventing water and other substances from entering the interior of the lid assembly 12. However, the presence of sealing rings will undoubtedly increase the production material and assembly cost of the lid assembly 12. Moreover, sealing rings are usually made of flexible materials such as silicone, which are prone to producing odors, affecting the user experience. In addition, the presence of sealing rings will also increase the cleaning dead corners of the lid assembly 12, making it easy for dirt and grime to accumulate, which is not conducive to cleaning the liquid heating container 1.
[0027] To address this issue, the lid assembly 12 in this solution is equipped with a water-blocking structure 13, which is located on the side of the lid assembly 12 near the handle 112. This water-blocking structure 13 can prevent water from flowing from the lid assembly 12 to the handle 112, thereby blocking the flow direction of water inside the lid assembly 12 and reducing the possibility of water flowing directly from the lid assembly 12 to the handle 112. It also avoids the need to use a sealing ring to seal the lid, thus reducing the possibility of water flowing into the lid assembly and further reducing the possibility of water flowing directly from the lid assembly to the handle. This solution does not require additional production materials, helps reduce assembly costs, and does not produce any odor during use, thereby improving the user experience.
[0028] In order to ensure that the lid assembly 12 tightly covers the body 11 and reduce the possibility of the lid assembly 12 accidentally opening when pouring water, a snap-fit structure (not shown in the figure) can be provided at the joint between the lid assembly 12 and the body 11, so as to ensure that the lid assembly 12 can improve the body 11. This is the prior art and will not be described in detail here.
[0029] In an embodiment of this utility model, the lid assembly 12 includes a first lid body 121 and a second lid body 122 spliced to the side of the first lid body 121 facing the receiving cavity 111. The side of the first lid body 121 facing the second lid body 122 is provided with a rotating connection portion 123, which is rotatably connected to the handle 112. A water-blocking structure 13 is provided on the first lid body 121, and the water-blocking structure 13 at least partially covers the side of the rotating connection portion 123 facing the second lid body 122 to prevent water flow between the first lid body 121 and the second lid body 122 from flowing along the rotating connection portion 123 to the handle 112.
[0030] Specifically, the first cover 121 and the second cover 122 are joined together in the vertical direction (the height direction of the liquid heating container 1), with the second cover 122 located on the side of the first cover 121 facing the receiving cavity 111. The first cover 121 is typically made of plastic to insulate against heat and prevent burns when the user directly touches the lid assembly 12. The second cover 122 is typically made of stainless steel, making it less prone to deformation when in direct contact with hot water or steam. Stainless steel also offers better corrosion resistance and is easier to clean. Therefore, the second cover 122 can also be configured as a decorative lower cover.
[0031] Furthermore, the first lid 121 has a rotating connection portion 123 on the side facing the second lid 122. The rotating connection portion 123 is rotatably connected to the handle 112, that is, the rotating connection portion 123 is at least partially located between the first lid 121 and the second lid 122. When the lid assembly 12 is closed in the receiving cavity 111, see [reference needed]. Figure 7 The water flow is distributed evenly on the second lid 122 due to its own weight, and is spaced apart from the first lid 121 and the rotating connection 123. When the lid is flipped upward, the water flow converges towards the side closer to the handle 112, thereby contacting the rotating connection 123 and the first lid 121, causing the water flow to flow towards the handle 112 along the first lid 121, the rotating connection 123, and the gap between them. Therefore, the water-blocking structure 13 is provided on the first lid 121, and the water-blocking structure 13 at least partially covers the side of the rotating connection 123 facing the second lid 122, thereby blocking the water flow towards the first lid 121, the rotating connection 123, and the gap between them, and thus blocking the possibility of the water flow towards the handle 112 along the first lid 121, the rotating connection 123, and the gap between them. Furthermore, the water-blocking structure 13 at least partially covers the side of the rotating connection 123 facing the second cover 122, that is, the water-blocking structure 13 is at least partially located between the rotating connection 123 and the second cover 122, thereby helping the water-blocking structure 13 and the second cover 122 to form a sealed space, thereby preventing water from flowing to the handle 112.
[0032] The rotating connecting part 123 can be detachably connected to the first cover 121, such as by snapping or by fastener 14; or it can be non-detachably connected to the first cover 121, such as by bonding or integrally forming it into the first cover 121. Furthermore, in the prior art, sealing rings and other structures are usually located between the first cover 121 and the second cover 122, but in this design, no sealing rings or other structures are provided. Therefore, water in the receiving cavity 111 often enters through the gap between the first cover 121 and the second cover 122.
[0033] For further details, please refer to Figures 2 to 6 The rotating connection 123 includes a connecting section 124 connected to the first cover 121 and a rotating section 125 connected to the connecting section 124. The rotating section 125 extends at least partially from the periphery of the first cover 121 and is rotatably connected to the handle 112. The water-blocking structure 13 includes a water-blocking part 131. The water-blocking part 131 and the first cover 121 together surround at least part of the periphery of the connecting section 124 to block the gap between the connecting section 124 and the first cover 121.
[0034] Specifically, the connecting segment 124 is configured as a long, strip-shaped plate structure that extends radially along the first cover 121 and connects to it. That is, the connecting segment 124 is located between the first cover 121 and the second cover 122, and is installed on the first cover 121. Compared to a circular plate structure where the connecting segment 124 is sandwiched between the first cover 121 and the second cover 122, this design makes it easier to control the water inlet position of the lid assembly 12, reducing the possibility of water entering between the connecting segment 124 and the first cover 121, thus facilitating the installation of the water-blocking structure 13. Furthermore, the use of the gap between the first cover 121 and the second cover 122 in this design also helps control the overall thickness of the lid assembly 12. A rotating segment 125 is connected to the end of the connecting segment 124 facing the handle 112 for rotatable connection. Optionally, the rotating section 125 and the connecting section 124 are integrally formed, thereby ensuring the stable installation of the lid assembly 12 and the handle 112 and facilitating the assembly of the lid assembly 12. Of course, in other embodiments, the rotating section 125 and the connecting section 124 can also be glued or snap-fitted together.
[0035] The water-blocking part 131 and the first cover 121 together enclose the periphery of a portion of the connecting section 124, forming a channel. The connecting section 124 passes through this channel and connects to the first cover 121. This allows the water-blocking part 131 to both seal the gap between the first cover 121 and the connecting section 124 and to prevent water from flowing along the connecting section 124 and the first cover 121, thus preventing water from flowing towards the handle 112. Furthermore, because the water-blocking part 131 and the first cover 121 form a channel, the gap between the inner wall of the channel and the connecting section 124 is very small, and the channel has a certain length. Therefore, even if water accidentally flows into the channel, it is difficult for it to flow out due to surface tension and resistance, and thus not towards the handle 112. Of course, in other embodiments, a sealing ring or other structure can also be provided between the channel and the connecting part to prevent water from flowing out of the channel.
[0036] It should be noted that the fact that the water-blocking part 131 and the first cover 121 jointly enclose the periphery of a portion of the connecting section 124 can be understood as: the water-blocking part 131 and the first cover 121 can jointly enclose a portion of the connecting section 124, or they can jointly enclose the entire connecting section 124.
[0037] Preferably, the water-blocking part 131 is integrally formed on the first cover body 121; this ensures the stable installation of the water-blocking part 131 and reduces the possibility of water seepage along the joint gap between the water-blocking part 131 and the first cover body 121. Furthermore, it eliminates the need for additional assembly of the water-blocking structure 13, thereby reducing the assembly steps of the lid assembly 12. In other embodiments, the water-blocking part 131 can also be glued or snapped onto the first cover body 121.
[0038] In other embodiments, the water-blocking part 131 may also be configured as an arc-shaped water-blocking plate, which abuts against the side of the connecting part facing the second cover 122, and the arc-shaped water-blocking plate is sealed and sandwiched between the first cover 121 and the second cover 122.
[0039] Furthermore, when the water-blocking portion 131 and the first cover 121 together surround the periphery of the connecting section 124, in one embodiment, the water-blocking portion 131 includes two first segments 132 connected to the first cover 121 and a second segment 133 bent and connected to the two first segments 132. The two first segments 132 are respectively disposed on opposite sides of the connecting section 124, and the second segment 133 is disposed on the side of the connecting section 124 away from the first cover 121. Specifically, the two first segments 132 are respectively disposed on opposite sides of the connecting section 124, and the second segment 133 is connected to the two first segments 132 and disposed on the side of the connecting section 124 away from the first cover 121. That is, the water-blocking portion 131 is generally U-shaped, thereby surrounding the periphery of the connecting section 124 together with the first cover 121.
[0040] The first segment 132 and the second segment 133 can be integrally molded. This ensures the structural stability of the water-blocking part 131, reduces the possibility of water seepage along the joint between the first segment 132 and the second segment 133, and eliminates the need for additional assembly of the water-blocking structure 13, thereby reducing the assembly steps of the lid assembly 12. In other embodiments, the first segment 132 and the second segment 133 can also be glued or snap-fitted together.
[0041] In one implementation, please refer to Figure 6 , Figure 8 and Figure 9The length of the water-blocking part 131 along the radial direction of the first cover 121 is greater than or equal to 1 / 3 of the radius of the first cover 121. That is, the length of the water-blocking part 131 is at least 1 / 3 of the radius of the first cover 121. If the length of the water-blocking part 131 is less than 1 / 3 of the radius of the first cover 121, when the water flow between the first cover 121 and the second cover 122 is large, it may submerge the end of the water-blocking part 131 away from the handle 112, causing the water-blocking part 131 to fail. Therefore, setting the length of the water-blocking part 131 along the radial direction of the first cover 121 to be greater than or equal to 1 / 3 of the radius of the first cover 121 can effectively reduce the possibility of the water-blocking part 131 failing. In this case, if the water flow between the first cover 121 and the second cover 122 submerges the end of the water-blocking part 131 away from the handle 112, the user can remove the second cover 122 to pour out the water from the entire lid assembly 12. Understandably, in actual use, since there is usually only a small amount of water entering between the first cover 121 and the second cover 122, the frequency of needing to remove the second cover 122 as a whole is very low.
[0042] To facilitate the installation of the first cover 121 on the rotating connecting part 123, in one embodiment, the end of the connecting section 124 away from the rotating section 125 is provided with a snap-fit part 1241, and the first cover 121 is provided with a snap-fit hole 126. The snap-fit part 1241 is inserted into the snap-fit hole 126 and snapped onto the edge of the snap-fit part 1241. Specifically, the snap-fit part 1241 is provided at the end of the connecting section 124 away from the rotating section 125. The first cover 121 is provided with a protrusion 1261 protruding toward the second cover 122. The snap-fit hole 126 passes through the protrusion 1261, thereby allowing the snap-fit part 1241 to be inserted into the snap-fit hole 126 and snapped onto the edge of the snap-fit part 1241. A fastener 14 is also provided, which passes through the second cover 122 and is fastened to the protrusion 1261, thereby pressing the second cover 122 to the first cover 121, thus ensuring a stable connection between the first cover 121 and the second cover 122.
[0043] To facilitate the drainage of moisture between the first cover 121 and the second cover 122, please refer to the embodiments of this utility model. Figure 3 , Figure 4 , Figure 8 and Figure 9 The second lid 122 has a drain hole 127 on the side near the handle 112. The drain hole 127 is used to drain the water between the first lid 121 and the second lid 122. Specifically, the drain hole 127 is located near the handle 112, so that when the lid assembly 12 is flipped upward, the water between the first lid 121 and the second lid 122 can be recovered into the receiving cavity 111 through the drain hole 127, thereby timely draining the water between the first lid 121 and the second lid 122.
[0044] Furthermore, the water-blocking structure 13 also includes a water-guiding rib 134, which is located on the side of the drain hole 127 facing the handle 112 and extends toward the receiving cavity 111. Specifically, the water-guiding rib 134 is located on the side of the drain hole 127 facing the handle 112 and extends toward the receiving cavity 111. On the one hand, it can prevent water from flowing further along the lid assembly 12 toward the handle 112, and on the other hand, it can guide the water flow to the receiving cavity 111.
[0045] Optionally, the water guide rib 134 is integrally formed on the water-blocking part 131, thereby ensuring the stable installation of the water guide rib 134 and eliminating the need for additional assembly of the water-blocking structure 13, thus reducing the assembly process of the lid assembly 12. In other embodiments, the water guide rib 134 can also be glued or snapped onto the water-blocking part 131.
[0046] In one embodiment, the water guide rib 134 is connected to the water-blocking part 131. The edge of the second cover 122 facing the handle 112 is provided with a clearance notch 128. The water guide rib 134 is inserted into the clearance notch 128, and the drain hole 127 is opened at the edge of the clearance notch 128. Specifically, the clearance notch 128 on the edge of the second cover 122 facilitates the extension of the water guide rib 134 into the receiving cavity 111, thereby reducing the possibility of interference between the water guide rib 134 and the second cover 122. Furthermore, the drain hole 127 is opened at the edge of the clearance notch 128 and communicates with the clearance notch 128, which facilitates the processing of the drain hole 127 and minimizes the distance between the drain hole 127 and the water guide rib 134. This allows the water flowing out of the drain hole 127 to extend through the water guide rib 134 and flow into the receiving cavity 111, thereby reducing water turbulence.
[0047] In one embodiment, the water guide rib 134 is configured as an arc-shaped rib protruding away from the drain hole 127, that is, the water guide rib 134 is concave relative to the drain hole 127, thereby creating a water-gathering effect between the opposite sides of the water guide rib 134 and the drain hole 127, thus reducing the possibility of water in the drain hole 127 bypassing the water guide rib 134 and flowing towards the handle 112. In other embodiments, the water guide rib 134 may also be configured as a straight section.
[0048] Furthermore, the width of the water guide rib 134 along the circumference of the first cover 121 is greater than or equal to the width of the rotating section 125, thereby effectively reducing the possibility of water flowing around the water guide rib 134 to the handle 112.
[0049] In the embodiments of this utility model, please refer to Figure 7The second lid 122 is recessed relative to the first lid 121 at least near the handle 112 to form a water collection groove 129. Specifically, the recess of the second lid 122 relative to the first lid 121 to form the water collection groove 129 increases the water storage capacity of the second lid 122 and increases the distance between the first lid 121 and the water flow, thereby reducing the possibility of water flowing from the first lid 121 to the handle 112. Furthermore, the water collection groove 129 is positioned near the side of the second lid 122 facing the handle 112, further increasing the water storage capacity of the side of the second lid 122 near the handle 112. This helps reduce the water level height when the lid assembly 12 is flipped upwards, thereby reducing the possibility of the water-blocking part 131 failing.
[0050] The above are merely exemplary embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural transformations made based on the technical concept of this utility model and the contents of the specification and drawings of this utility model, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this utility model.
Claims
1. A liquid heating container, characterized in that, include: The body of the pot has a receiving cavity, and a handle is provided on one side of the body of the pot; The lid assembly is rotatably connected to the handle to open or close the receiving cavity; the lid assembly has a water-blocking structure on the side near the handle, which can prevent water from flowing from the lid assembly to the handle.
2. The liquid heating container as described in claim 1, characterized in that, The kettle lid assembly includes a first lid body and a second lid body spliced to the side of the first lid body facing the receiving cavity. The side of the first lid body facing the second lid body is provided with a rotating connection portion, which is rotatably connected to the kettle handle. The water-blocking structure is provided on the first lid body, and the water-blocking structure at least partially covers the side of the rotating connection portion facing the second lid body to prevent water flow between the first lid body and the second lid body from flowing along the rotating connection portion to the kettle handle.
3. The liquid heating container as described in claim 2, characterized in that, The rotating connection includes a connecting section connected to the first lid and a rotating section connected to the connecting section. The rotating section extends at least partially from the periphery of the first lid and is rotatably connected to the handle. The water-blocking structure includes a water-blocking part, which and the first cover together surround at least a portion of the periphery of the connecting segment to block the gap between the connecting segment and the first cover.
4. The liquid heating container as described in claim 3, characterized in that, The water-blocking part includes two first sections connected to the first cover and a second section bent and connected to the two first sections. The two first sections are respectively located on opposite sides of the connecting section, and the second section is located on the side of the connecting section away from the first cover.
5. The liquid heating container as described in claim 3, characterized in that, The length of the water-blocking part along the radial direction of the first cover is greater than or equal to 1 / 3 of the radius of the first cover.
6. The liquid heating container as described in claim 3, characterized in that, The water-retaining part is integrally formed into the first cover body; and / or, The connecting section has a snap-fit part at one end away from the rotating section, and the first cover has a snap-fit hole. The snap-fit part is inserted into the snap-fit hole and snapped onto the edge of the snap-fit part.
7. The liquid heating container as described in claim 3, characterized in that, The second lid has a drain hole on the side near the handle of the kettle, which is used to drain the water between the first lid and the second lid.
8. The liquid heating container as described in claim 7, characterized in that, The water-blocking structure also includes a water-guiding rib, which is located on the side of the drain hole facing the handle and extends into the receiving cavity.
9. The liquid heating container as described in claim 8, characterized in that, The water guide rib is connected to the water blocking part. The edge of the second cover facing the handle is provided with an avoidance notch. The water guide rib is inserted into the avoidance notch. The drain hole is opened at the edge of the avoidance notch.
10. The liquid heating container as described in claim 8, characterized in that, The water-guiding rib is integrally formed on the water-blocking part; and / or The water guide rib is configured as an arc-shaped rib protruding away from the drain hole.
11. The liquid heating container as described in claim 2, characterized in that, The second lid is recessed relative to the first lid at least in the area near the handle to form a water collection groove.