Kettle
By setting clearance holes on the bottom of the pot and the bottom cover, the spout is connected to the bottom of the pot and passes through the clearance hole on the bottom cover, which solves the problem of connecting the spout to the pot body, simplifies the assembly, and improves the ease of operation and the smoothness of liquid flow.
Patent Information
- Application Number
- CN202422698860.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-11-06
AI Technical Summary
In existing technologies, it is difficult to directly connect the spout to the body of the kettle, especially for kettles made of fragile materials, which makes assembly difficult.
By setting clearance holes on the bottom of the pot and the bottom cover, the spout is connected to the bottom of the pot and passes through the clearance hole of the bottom cover, which simplifies the connection between the spout and the pot body. The spout is located at the bottom of the bottom cover to facilitate the flow of liquid.
The assembly process of the kettle has been simplified, making it easier to operate and allowing for smoother liquid flow.
Smart Images

Figure CN223541763U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kettle technology, and in particular to a kettle for boiling water. Background Technology
[0002] Currently, kettles can be used to hold tap water so that users can heat the water in the kettle using a heating device; or kettles can be used to hold drinking water.
[0003] In related technologies, a kettle includes a body and a spout. The body can be made of materials such as glass or ceramic. The kettle is used to hold hot water, and the spout is relatively thin, so the spout is generally made of heat-resistant metal.
[0004] However, materials such as glass and ceramics are fragile, and metal materials are difficult to weld directly onto the body of a teapot made of fragile materials, making it difficult to directly connect the spout to the body of the teapot. Utility Model Content
[0005] The present invention aims to provide a kettle to solve the technical problem that the spout is difficult to connect to the kettle body in the prior art.
[0006] The technical problem solved by this utility model embodiment is addressed by the following technical solution:
[0007] A kettle is provided, comprising:
[0008] The body of the pot has a receiving cavity;
[0009] The bottom of the pot is connected to the bottom of the pot body and covers the bottom end of the receiving cavity. The bottom of the pot is provided with a first clearance hole.
[0010] A bottom cover, which is fitted onto the outside of the bottom of the pot, and the bottom cover has a second clearance hole;
[0011] The spout is connected to the bottom of the pot and has a liquid flow channel. The liquid flow channel is connected to the receiving cavity through the first relief hole and the spout passes through the second relief hole.
[0012] In some embodiments, the kettle further includes a heating element mounted on the bottom of the kettle, the heating element being located on the side of the bottom of the kettle opposite to the receiving cavity.
[0013] In some embodiments, the heating element is made of a metal material, the heating element is arranged in a ring, and the spout is located on one side of the heating element.
[0014] In some embodiments, the kettle bottom includes a body and a mounting boss, the first clearance hole is formed in the body, the mounting boss is connected to the side of the body opposite to the receiving cavity, and the heating element is connected to the side of the mounting boss opposite to the body.
[0015] In some embodiments, the mounting boss has a first notch, and the spout passes through the first notch and the second clearance hole in sequence.
[0016] In some embodiments, the bottom of the pot further includes a heat-conducting protrusion connected to the body and placed inside the accommodating cavity. The heat-conducting protrusion has a second notch, and the liquid flow channel communicates with the accommodating cavity through the first clearance hole and the second notch in sequence.
[0017] In some embodiments, the heating element includes a metal heating ring and a collar, the collar being connected to the side of the mounting boss away from the body, and the metal heating ring passing through the collar.
[0018] In some embodiments, the collar includes a limiting side facing the spout; the bottom cover includes an abutting portion abutting against the limiting side, the abutting portion being located between the limiting side and the second clearance hole.
[0019] In some embodiments, the second clearance hole is located on one side of the bottom cover, the spout includes two arc-shaped segments with opposite protrusion directions, and the height of the spout opening is greater than the height of the kettle body.
[0020] In some embodiments, the body of the kettle is made of glass, the bottom cover is made of plastic, and the spout is made of metal.
[0021] Compared with existing technologies, the kettle bottom is connected to the kettle body, the spout is connected to the kettle bottom, and the spout passes through the second clearance hole into the bottom cover. The spout does not need to be directly connected to the kettle body, thus simplifying the assembly process of the entire kettle.
[0022] In addition, the spout is connected to the bottom cover, which is located at the bottom of the container cavity. When the user uses the kettle, they only need to tilt the kettle at a smaller angle to allow the liquid in the container cavity to flow out through the liquid channel, making the kettle easier to operate. Attached Figure Description
[0023] One or more embodiments are illustrated by way of example with reference numerals in the accompanying drawings. These illustrations do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are denoted as similar elements. Unless otherwise stated, the figures in the drawings do not constitute a limitation on scale.
[0024] Figure 1 This is a perspective view of a kettle in one embodiment of the present invention;
[0025] Figure 2 yes Figure 1 The 3D model of the kettle in the image is omitted;
[0026] Figure 3 yes Figure 1 A bottom view of the kettle in the image, showing the bottom and spout being assembled together.
[0027] Figure 4 yes Figure 1 A 3D view of the bottom lid of a kettle.
[0028] Figure label:
[0029] 100. Kettle; 10. Kettle body; 102. Receiving cavity; 20. Kettle bottom; 22. Main body; 2202. First clearance hole; 24. Mounting boss; 2402. First notch; 26. Heat-conducting protrusion; 2602. Second notch; 30. Bottom cover; 32. Abutment part; 34. Flexible washer; 302. Second clearance hole; 40. Spout; 42. Arc-shaped section; 402. Liquid flow channel; 50. Heating element; 52. Metal heating ring; 54. Collar; 542. Limiting side. Detailed Implementation
[0030] To facilitate understanding of this utility model, a more detailed description is provided below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as "connected" to another element, it can be directly on the other element, or one or more intermediate elements can exist between them. The terms "upper," "lower," "left," "right," "upper end," "lower end," "top," and "bottom," etc., used in this specification indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0031] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the invention.
[0032] The following detailed description of a kettle 100 provided in this application, with reference to all the accompanying drawings, and through specific embodiments, will be provided in detail.
[0033] Please refer to Figure 1 , Figure 2 and Figure 3 One embodiment of this utility model discloses a kettle 100, including a kettle body 10, a kettle bottom 20, a bottom cover 30, and a spout 40; the kettle body 10 has a receiving cavity 102; the kettle bottom 20 is connected to the bottom of the kettle body 10 and covers the bottom end of the receiving cavity 102, and the kettle bottom 20 has a first clearance hole 2202; the bottom cover 30 is sleeved on the outside of the kettle bottom 20 and has a second clearance hole 302; the spout 40 is connected to the kettle bottom 20 and has a liquid flow channel 402, which is connected to the receiving cavity 102 through the first clearance hole 2202, and the spout 40 passes through the second clearance hole 302.
[0034] Generally, the kettle body 10 is made of materials such as glass or ceramic, while the spout 40 is made of metal. Glass and ceramic are fragile materials, and metal is difficult to directly attach to the kettle body 10, which is made of fragile materials. With the above structure, the kettle bottom 20 is connected to the kettle body 10, and the spout 40 is connected to the kettle bottom 20. The spout 40 passes through the second clearance hole 302 and is inserted into the bottom cover 30. The spout 40 does not need to be directly connected to the kettle body 10, thus simplifying the assembly process of the entire kettle 100.
[0035] In addition, the spout 40 is connected to the bottom cover 30, which is located at the bottom of the accommodating cavity 102. When the user uses the kettle 100, the user only needs to tilt the kettle 100 to a smaller arc so that the liquid in the accommodating cavity 102 can flow out through the liquid flow channel 402, making the kettle 100 easier to operate.
[0036] Specifically, in this embodiment, the body 10 can be made of glass. From a top-down perspective, the cross-section of the accommodating cavity 102 is circular. From top to bottom, the cross-sectional area of the accommodating cavity 102 first decreases and then increases, so that the accommodating cavity 102 can hold a larger volume of liquid. Moreover, the center of gravity of the body 10 after being filled with liquid is lower, making the kettle 100 more stable when placed on the table.
[0037] The kettle bottom 20 can be made of metal or other hard materials. The kettle bottom 20 can be a block structure similar to a circle. The kettle body 10 and the kettle bottom 20 can be fixed to each other by adhesive. The kettle body 10 is located above the kettle bottom 20. The kettle spout 40 is made of metal and has an arc-shaped structure. One end of the kettle spout 40 is welded to the lower surface of the kettle bottom 20. The kettle spout 40 extends from one side of the bottom cover 30, and the other end of the kettle spout 40 extends upward, so that the height of the end of the kettle spout 40 away from the kettle bottom 20 is greater than the height of the opening of the receiving cavity 102. When the kettle 100 is placed on the table, the liquid in the kettle 100 will not flow out through the liquid flow channel 402.
[0038] The bottom cover 30 can be made of plastic and has a flat, bowl-like structure. The bottom cover 30 can be connected to the bottom of the kettle 20 by screws. The bottom cover 30 is located below the bottom of the kettle 20, and there is a gap between the bottom surface of the bottom cover 30 and the bottom of the kettle 20. The gap between the bottom surface of the bottom cover 30 and the bottom of the kettle 20 is used for the spout 40 to pass through. A flexible washer 34 can be provided at the second clearance hole 302. The flexible washer 34 can be made of silicone, plastic or other flexible materials. The flexible washer 34 is provided between the spout 40 and the hole wall of the second clearance hole 302 to prevent the hole wall of the second clearance hole 302 from directly abutting against the spout 40.
[0039] In other embodiments, the body 10 may also be made of other materials, such as ceramic or other hard materials; the accommodating cavity 102 may also be of other shapes, such as a cylinder; the bottom 20 may also be connected to the body 10 in other ways, such as by applying adhesive; the spout 40 may also be connected to other positions on the bottom 20, such as by connecting the spout 40 to one side of the bottom 20; the spout 40 may also have other structures, such as a straight line; the bottom cover 30 may also be connected to the bottom 20 in other ways, such as by welding.
[0040] In some embodiments, the kettle 100 further includes a heating element 50, which is mounted on the bottom 20 of the kettle and located on the side of the bottom 20 away from the receiving cavity 102.
[0041] With the above structure, the heating element 50 can heat the liquid in the accommodating cavity 102. Users can use the kettle 100 to hold beverages and boil the tap water in the accommodating cavity 102. Thus, users do not need to pour the boiled tap water into the kettle 100, making the kettle 100 more versatile.
[0042] Specifically, in this embodiment, the heating element 50 is a metal ring, and the lower side of the kettle bottom 20 has a protrusion. The heating element 50 is embedded in the protrusion on the lower side of the kettle bottom 20. When the kettle 100 is placed on the electromagnetic heating base, the electromagnetic heating base can generate current in the metal ring when it is turned on, thereby generating heat in the metal ring so that the metal ring can heat the liquid in the accommodating cavity 102.
[0043] In other embodiments, the heating element 50 may also be made of other conductive materials; the heating element 50 may also have other structures, such as the heating element 50 including an electric plug that extends out of the bottom cover 30, the electric plug being used to electrically connect with an electric socket, and after the electric plug is electrically connected to the electric socket, a current is generated in the heating element 50 and heat is generated.
[0044] In some embodiments, the heating element 50 is made of metal material, the heating element 50 is arranged in a ring, and the spout 40 is located on one side of the heating element 50.
[0045] With the above structure, the heating element 50 is arranged in a ring, so that the heat from the heating element 50 can be evenly transferred to the liquid in the accommodating cavity 102, avoiding excessive local temperature of the heating element 50. In addition, the spout 40 is located on one side of the heating element 50, so that the portion of the spout 40 between the bottom cover 30 and the bottom 20 is at the same height as the heating element 50, thereby allowing the bottom 20 and bottom cover 30 to be lower, making the overall structure of the kettle 100 more compact.
[0046] Meanwhile, the heat generated by the heating element 50 can be partially transferred to the liquid flow channel 402, so that after the heating element 50 has finished heating, the liquid temperature in the liquid flow channel 402 can be kept consistent with the liquid temperature in the accommodating cavity 102.
[0047] Specifically, the heating element 50 is a strip of metal wire, which is arranged in a ring-like structure, and there is a gap between the two ends of the heating element 50.
[0048] In some embodiments, the bottom of the kettle 20 includes a body 22 and a mounting boss 24. A first clearance hole 2202 is formed in the body 22. The mounting boss 24 is connected to the side of the body 22 away from the receiving cavity 102. The heating element 50 is connected to the side of the mounting boss 24 away from the body 22.
[0049] With the above structure, the mounting boss 24 creates a certain distance between the heating element 50 and the body 22. When the heating element 50 generates heat, the heat diffuses from the heating element 50 to the surroundings. In this embodiment, the heat in the heating element 50 can be transferred to the body 22 through the mounting boss 24, so that the heat distribution at the body 22 is more uniform, and the heat in the body 22 can be transferred to the accommodating cavity 102 more uniformly. As a result, when the heating element 50 heats the liquid in the accommodating cavity 102, the liquid in the accommodating cavity 102 is heated more uniformly.
[0050] Specifically, in this embodiment, the mounting boss 24 has a block-like structure similar to a circle. The central axis of the mounting boss 24 is collinear with the central axis of the body 22. The mounting boss 24 is located between the body 22 and the bottom cover 30, and the spout 40 is located on one side of the mounting boss 24.
[0051] In other embodiments, the mounting boss 24 may also be other structures, such as a rectangular block structure.
[0052] In some embodiments, the mounting boss 24 has a first notch 2402, and the spout 40 passes through the first notch 2402 and the second clearance hole 302 in sequence.
[0053] With the above structure, the spout 40 passes through the first notch 2402 so that the mounting boss 24 can surround the spout 40, thereby making the structure of the pot bottom 20 and the spout 40 more compact; at the same time, the spout 40 is partially located in the first notch 2402, so the heat in the mounting boss 24 can be transferred to the spout 40 to a greater extent, thereby making the heating effect of the heating element 50 on the liquid in the liquid flow channel 402 better.
[0054] Specifically, in this embodiment, the first notch 2402 has a structure similar to a circle; in other embodiments, the first notch 2402 may also have other structures, such as a rectangle.
[0055] In some embodiments, the bottom of the pot 20 further includes a heat-conducting protrusion 26, which is connected to the body 22 and placed in the accommodating cavity 102. The heat-conducting protrusion 26 has a second notch 2602, and the liquid flow channel 402 is connected to the accommodating cavity 102 in sequence through the first clearance hole 2202 and the second notch 2602.
[0056] With the above structure, the heat-conducting protrusion 26 protrudes into the accommodating cavity 102, so that the heat-conducting protrusion 26 can have a larger contact area with the liquid in the accommodating cavity 102, and thus the heat of the heating element 50 can be transferred to the liquid in the accommodating cavity 102 more quickly through the heat-conducting protrusion 26, thereby improving the heating rate of the liquid in the accommodating cavity 102 by the heating element 50.
[0057] Specifically, in this embodiment, the heat-conducting protrusion 26 has a block-like structure similar to a circle, and the central axis of the heat-conducting protrusion 26 is collinear with the central axis of the accommodating cavity 102; the second notch 2602 is located on one side of the heat-conducting protrusion 26, and the second notch 2602 is similar to a semi-circle.
[0058] In other embodiments, the heat-conducting protrusion 26 may also be other structures, such as a flat cuboid; the second notch 2602 may also be other structures, such as a circle; the second notch 2602 may also be located in the middle of the heat-conducting protrusion 26.
[0059] In some embodiments, the heating element 50 includes a metal heating ring 52 and a collar 54, the collar 54 being connected to the side of the mounting boss 24 away from the body 22, and the metal heating ring 52 passing through the collar 54.
[0060] With the above structure, the collar 54 is used to fix the metal heating ring 52 so that the metal heating ring 52 is stably installed on the mounting boss 24; so as to prevent the metal heating ring 52 from falling off the mounting boss 24 when the kettle 100 is shaken by external force.
[0061] Specifically, in this embodiment, the collar 54 and the mounting boss 24 are made of the same material, and the collar 54 and the mounting boss 24 are integrally formed; the collar 54 has a structure similar to a circle, one side of the collar 54 is straight, the first notch 2402 is located on the straight side of the collar 54, and the first notch 2402 is located outside the shape enclosed by the collar 54.
[0062] In other embodiments, the collar 54 may also be made of other materials, such as plastic; the collar 54 may also be connected to the mounting boss 24 in other ways, such as snap-fit or welding; the collar 54 may also be in other shapes, such as rectangular.
[0063] Please refer to Figure 3 and Figure 4 In some embodiments, the collar 54 includes a limiting side 542 facing the spout 40; the bottom cover 30 includes an abutting portion 32 abutting against the limiting side 542 and the abutting portion 32 being located between the limiting side 542 and the second clearance hole 302.
[0064] With the above structure, during the assembly process of the bottom cover 30 and the bottom of the pot 20, the abutting part 32 is first abutted against the limiting side 542 so that the bottom cover 30 and the bottom of the pot 20 are positioned relative to each other, and thus the bottom cover 30 and the bottom of the pot 20 are easier to assemble.
[0065] In addition, the abutment 32 can be located between the spout 40 and the limiting side 542, so that the spout 40 and the limiting side 542 can clamp the abutment 32, thereby making the connection between the bottom cover 30 and the bottom 20 of the pot more stable.
[0066] Specifically, in this embodiment, the limiting side 542 is located on the side where the collar 54 is straight, and the abutment part 32 has a block structure similar to a trapezoid, and the abutment part 32 protrudes from the bottom cover 30 on the side facing the pot body 10.
[0067] In other embodiments, the limiting side 542 may also be other structures, such as a cuboid or a cylinder.
[0068] Please refer to the following: Figure 1 In some embodiments, the second clearance hole 302 is located on one side of the bottom cover 30, the spout 40 includes two arc-shaped segments 42 with opposite protrusion directions, and the height of the opening of the spout 40 is greater than the height of the body 10.
[0069] With the above structure, during the assembly of the pot bottom 20, the bottom cover 30, and the spout 40, the spout 40 is first installed on the pot bottom 20. Then, the end of the spout 40 facing away from the pot bottom 20 is inserted into the second clearance hole 302. Then, the bottom cover 30 is moved along the spout 40 to the pot bottom 20, and then the bottom cover 30 is connected to the pot bottom 20. In the above process, the second clearance hole 302 is located on one side of the bottom cover 30, so that the bottom cover 30 can be moved more easily along the spout 40, so as to facilitate the connection between the pot bottom 20 and the bottom cover 30.
[0070] Specifically, in this embodiment, the second clearance hole 302 is a rectangular through hole; the spout 40 is a smooth arc shape.
[0071] In other embodiments, the second clearance hole 302 may also be of other shapes, such as circular, elliptical or "n" shaped; the spout 40 may also include only an arc segment 42.
[0072] In some embodiments, the body 10 is made of glass, the bottom cover 30 is made of plastic, and the spout 40 is made of metal.
[0073] With the above structure, the kettle body 10 is made of glass to make the kettle body 10 more transparent so that the user can see the contents of the receiving cavity 102 through the kettle body 10; the spout 40 is made of metal to make the spout 40 more durable and to improve the life of the kettle 100.
[0074] Specifically, in this embodiment, the spout 40 can be made of steel. In other embodiments, the spout 40 can also be made of other materials, such as copper, and the inner surface of the liquid flow channel 402 can be coated with insulating varnish.
[0075] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it; under the concept of this utility model, the technical features of the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations of different aspects of this utility model as described above. For the sake of brevity, they are not provided in detail; although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. A kettle, characterized in that, include: The body of the pot has a receiving cavity; The bottom of the pot is connected to the bottom of the pot body and covers the bottom end of the receiving cavity. The bottom of the pot is provided with a first clearance hole. A bottom cover, which is fitted onto the outside of the bottom of the pot, and the bottom cover has a second clearance hole; The spout is connected to the bottom of the pot and has a liquid flow channel. The liquid flow channel is connected to the receiving cavity through the first relief hole and the spout passes through the second relief hole.
2. The kettle according to claim 1, characterized in that, It also includes a heating element, which is installed on the bottom of the kettle and located on the side of the bottom of the kettle away from the receiving cavity.
3. The kettle according to claim 2, characterized in that, The heating element is made of metal and is arranged in a ring shape. The spout is located on one side of the heating element.
4. The kettle according to claim 3, characterized in that, The bottom of the kettle includes a body and a mounting boss. The first clearance hole is formed in the body. The mounting boss is connected to the side of the body away from the receiving cavity. The heating element is connected to the side of the mounting boss away from the body.
5. The kettle according to claim 4, characterized in that, The mounting boss has a first notch, and the spout passes through the first notch and the second clearance hole in sequence.
6. The kettle according to claim 4, characterized in that, The bottom of the pot also includes a heat-conducting protrusion, which is connected to the body and placed inside the accommodating cavity. The heat-conducting protrusion has a second notch, and the liquid flow channel is connected to the accommodating cavity through the first clearance hole and the second notch in sequence.
7. The kettle according to claim 4, characterized in that, The heating element includes a metal heating ring and a collar. The collar is connected to the side of the mounting boss away from the main body, and the metal heating ring passes through the collar.
8. The kettle according to claim 7, characterized in that, The collar includes a limiting side facing the spout; the bottom cover includes an abutting portion abutting against the limiting side, and the abutting portion is located between the limiting side and the second clearance hole.
9. The kettle according to claim 1, characterized in that, The second clearance hole is located on one side of the bottom cover, the spout includes two arc-shaped segments with opposite protrusion directions, and the height of the spout opening is greater than the height of the kettle body.
10. The kettle according to claim 1, characterized in that, The body of the kettle is made of glass, the bottom cover is made of plastic, and the spout is made of metal.