A container lid and a cooking container

By designing the spray component and one-way valve structure of the container lid, convenient oil addition and effective spraying are achieved, solving the problem of oil cans occupying countertop space and improving cooking convenience and the oil storage environment.

CN224441073UActive Publication Date: 2026-07-03WUHAN SUPOR COOKWARE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN SUPOR COOKWARE
Filing Date
2025-07-14
Publication Date
2026-07-03

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Abstract

This application relates to a container lid and a cooking container. The container lid includes a lid body, a lid head, and a handle. The lid head is mounted on the lid body, and the handle is detachably mounted on the side of the lid head away from the lid body. The handle includes a receiving cavity into which oil, such as cooking oil, can be placed. The lid body has a through hole, and the lid head contains a spraying component. One end of the spraying component communicates with the receiving cavity, and the other end communicates with the through hole, enabling the oil in the receiving cavity to be sprayed into the cooking container through the through hole. This improves the convenience of adding oil to the cooking container and also solves the problem of traditional oil dispensers occupying countertop space.
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Description

Technical Field

[0001] This application relates to the field of kitchenware technology, and more particularly to a container lid and a cooking container. Background Technology

[0002] Adding cooking oil to food during cooking enhances its flavor and reduces the likelihood of food sticking to the pan. Currently, cooking oil is stored in an oil dispenser, which is then poured into the cooking container. This oil dispenser needs to be placed separately on the countertop, taking up considerable counter space. Utility Model Content

[0003] In view of this, this application provides a container lid and a cooking container to solve the problem of oil bottles taking up too much countertop space.

[0004] This application embodiment provides a container lid, the container lid comprising:

[0005] A cover body, the cover body including a through hole;

[0006] A cover, which is mounted on the cover body;

[0007] A handle, which is detachably mounted on the side of the cover head away from the cover body;

[0008] The handle includes a receiving cavity, and the cap includes a spraying assembly, one end of which is connected to the receiving cavity and the other end of which is connected to the through hole.

[0009] Oils such as cooking oil that need to be added to the cooking container can be placed in the containment cavity. During the cooking process, the oil can be added to the cooking container through the spray component, which improves the convenience of adding oil to the cooking container and also solves the problem of traditional oil dispensers taking up countertop space.

[0010] In one possible embodiment, the spraying assembly includes a connecting pipe, a first one-way valve, and a second one-way valve. The first one-way valve and the second one-way valve are respectively installed at both ends of the connecting pipe. The end of the connecting pipe with the first one-way valve is connected to the receiving cavity, and the substance in the receiving cavity can flow into the connecting pipe through the first one-way valve. The end of the connecting pipe with the second one-way valve is connected to the through hole, and the substance in the connecting pipe can flow out through the second one-way valve.

[0011] The first and second one-way valves work together to ensure that the substances in the connecting pipe can only flow in the direction from the first one-way valve to the second one-way valve. This allows the oil in the container to flow from the connecting pipe to the through hole on the cover and then be sprayed into the cooking container. It also reduces the possibility of oil fumes, steam, and other substances in the cooking container flowing back into the connecting pipe and the container through the through hole, thus reducing the possibility of contamination of the substances in the container.

[0012] In one possible embodiment, the spraying assembly includes a pressure regulator that communicates with the connecting pipe and is located between the first check valve and the second check valve.

[0013] The pressure regulating component can adjust the pressure between the first check valve and the second check valve, thereby controlling the opening and closing of the first check valve and the second check valve. When the pressure in the connecting pipe decreases, the first check valve opens, allowing the oil in the receiving cavity to enter the connecting pipe; when the pressure in the connecting pipe increases, the second check valve opens, allowing the oil in the connecting pipe to be sprayed into the cooking container.

[0014] In one possible embodiment, the pressure regulating component includes a sleeve, a piston, and a push rod. One end of the sleeve is connected to the connecting pipe, the piston is movably mounted inside the sleeve, and the push rod is mounted on the side of the piston away from the connecting pipe.

[0015] When the piston moves towards the connecting pipe, the space between the sleeve and the connecting pipe is compressed, increasing the pressure inside the connecting pipe. The second check valve opens, allowing the oil inside the connecting pipe to be sprayed into the cooking container. When the piston moves away from the connecting pipe, the space between the sleeve and the connecting pipe increases, decreasing the pressure inside the connecting pipe. The first check valve opens, allowing the oil in the receiving cavity to be drawn into the connecting pipe.

[0016] In one possible embodiment, the pressure regulating member includes an elastic element, one end of which abuts against the piston and the other end of which abuts against the inner wall of the sleeve.

[0017] When the push rod is pushed, the piston moves toward the connecting tube, and the elastic element is compressed. When the external force applied to the push rod is removed, the elastic element pushes the piston away from the connecting tube.

[0018] In one possible embodiment, the cap includes a cavity, the spraying assembly is mounted in the cavity, and the push rod protrudes from one end of the cap out of the cavity.

[0019] This allows users to control the movement of the piston via a push rod, thereby controlling the opening and closing of the first and second check valves, so that the oil is sprayed into the cooking container.

[0020] In one possible embodiment, the handle includes a mounting portion and a grip portion, the mounting portion being detachably mounted to the cover, and the distance between the grip portion and the cover gradually increasing in a direction away from the mounting portion.

[0021] The distance between the grip and the lid gradually increases, causing the grip to be tilted to facilitate the flow of oil from the receiving cavity to the mounting part. The mounting part is installed on the lid, allowing the oil to flow from the mounting part to the spraying component inside the lid, and then be sprayed into the cooking container.

[0022] In one possible embodiment, the gripping portion includes an injection hole located at one end of the gripping portion away from the mounting portion.

[0023] The end of the grip that is away from the mounting part is higher, and the injection hole is located at the end of the grip that is away from the mounting part, so that the oil can fill the receiving cavity.

[0024] In one possible embodiment, the cap includes a mounting slot into which the handle is detachably mounted.

[0025] When food in a cooking container needs to be steamed or boiled for a long time, the lid will be at a high temperature for an extended period. As time goes on, the heat can be conducted to the handle through the lid. At this point, the handle can be removed from the lid, which reduces the possibility of the high temperature of the handle affecting the oil in the container cavity and helps to improve the preservation environment of the oil.

[0026] This application embodiment also provides a cooking container, which includes a container body and a container lid, the container lid being fastened to the container body, and the container lid being any of the container lids described above.

[0027] The technical effect of the cooking container is the same as that of the container lid described in any of the above items, and will not be repeated here.

[0028] This application relates to a container lid and a cooking container. The container lid includes a lid body, a lid head, and a handle. The lid head is mounted on the lid body, and the handle is detachably mounted on the side of the lid head away from the lid body. The handle includes a receiving cavity into which oil, such as cooking oil, can be placed. The lid body has a through hole, and the lid head contains a spraying component. One end of the spraying component communicates with the receiving cavity, and the other end communicates with the through hole, enabling the oil in the receiving cavity to be sprayed into the cooking container through the through hole. This improves the convenience of adding oil to the cooking container and also solves the problem of traditional oil dispensers occupying countertop space. Attached Figure Description

[0029] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0030] Figure 1A cross-sectional view of a cooking container provided in an embodiment of this application;

[0031] Figure 2 A cross-sectional view of the cover provided in an embodiment of this application;

[0032] Figure 3 for Figure 2 A magnified view of the area at position I in the middle;

[0033] Figure 4 A cross-sectional view of the cap and handle provided in an embodiment of this application;

[0034] Figure 5 This is a schematic diagram of the handle provided in an embodiment of this application;

[0035] Figure 6 This is a structural schematic diagram of the handle at another angle provided in an embodiment of this application;

[0036] Figure 7 A cross-sectional view of the cap provided in an embodiment of this application;

[0037] Figure 8 A cross-sectional view of the spraying assembly provided in an embodiment of this application;

[0038] Figures 9 to 11 This is a schematic diagram of the spraying steps of the spraying component provided in the embodiments of this application.

[0039] Figure label:

[0040] 100 - Container lid;

[0041] 200 - Container body;

[0042] 1-Lid;

[0043] 11-Through hole;

[0044] 12-Seals;

[0045] 2-Cover;

[0046] 21-Spraying assembly;

[0047] 211-Connecting pipe;

[0048] 212 - First check valve;

[0049] 212a - First baffle;

[0050] 212b - First stop;

[0051] 213 - Second check valve;

[0052] 213a - Second baffle;

[0053] 213b - Second stop;

[0054] 214 - Pressure regulating component;

[0055] 214a-sleeve;

[0056] 214b - Piston;

[0057] 214c - Pulley;

[0058] 214d - Elastic component;

[0059] 22-Cavity;

[0060] 23-Mounting slot;

[0061] 24-First Main Body Section;

[0062] 241 - First connecting hole;

[0063] 25-Second main body section;

[0064] 251 - Second connecting hole;

[0065] 252 - Connecting part;

[0066] 3-Handle;

[0067] 31 - Receiving cavity;

[0068] 32-Installation section;

[0069] 321 - Output port;

[0070] 33-Holding part;

[0071] 331 - Injection Hole. Detailed Implementation

[0072] To better understand the technical solution of this application, the embodiments of this application will be described in detail below with reference to the accompanying drawings.

[0073] like Figure 1 As shown, this application provides a cooking container, which includes a container body 200 and a container lid 100, with the container lid 100 fastened to the container body 200.

[0074] like Figure 2 , Figure 3 and Figure 4As shown, the container lid 100 includes a lid body 1, a lid head 2, and a handle 3. The lid body 1 is fastened to the container body 200, the lid head 2 is installed on the lid body 1, and the handle 3 is detachably installed on the side of the lid head 2 away from the lid body 1. The handle 3 includes a receiving cavity 31, in which cooking oil or other liquids that need to be added to the cooking container can be placed. The lid body 1 is provided with a through hole 11, and the lid head 2 is provided with a spraying component 21. One end of the spraying component 21 is connected to the receiving cavity 31, and the other end is connected to the through hole 11, enabling the oil in the receiving cavity 31 to be sprayed into the cooking container through the through hole 11.

[0075] During cooking, oil can be added to the cooking container through the container lid 100, which improves the convenience of adding oil to the cooking container and also solves the problem of traditional oil dispensers taking up counter space.

[0076] The handle 3 and the lid 1 are respectively installed on both sides of the lid 2, allowing the lid 2 to increase the distance between the handle 3 and the lid 1. During cooking, the lid 1 is at a high temperature, and the lid 2 can prevent heat from being conducted from the lid 1 to the handle 3, thereby reducing the temperature of the oil in the receiving cavity 31 of the handle 3 and improving the oil storage environment.

[0077] like Figure 3 As shown, in one possible embodiment, a seal 12 is provided inside the through hole 11. The seal 12 can be made of an elastic material such as silicone. When the cap 2 is installed on the cap body 1, the cap 2 will press against the seal 12, which can reduce the possibility of oil leakage between the cap 2 and the cap body 1. The seal 12 can be a tubular structure, allowing the oil in the spraying assembly 21 to pass through the seal 12 and be sprayed out from the through hole 11.

[0078] like Figure 1 , Figure 4 and Figure 5 As shown, in one possible embodiment, the handle 3 includes a mounting portion 32 and a grip portion 33, which form an angle, and the receiving cavities 31 within the mounting portion 32 and the grip portion 33 are in communication. The mounting portion 32 is detachably mounted to the cover 2, and the distance between the grip portion 33 and the cover 1 gradually increases in the direction away from the mounting portion 32.

[0079] When the container cap 100 is fastened to the container body 200 and the handle 3 is installed on the cap 2, the end of the grip 33 away from the mounting part 32 is higher, and the end of the grip 33 connected to the mounting part 32 is lower, so that the grip 33 is tilted to facilitate the flow of oil in the receiving cavity 31 to the mounting part 32. The mounting part 32 is installed on the cap 2 so that the oil can flow from the mounting part 32 to the spraying assembly 21 in the cap 2, and then be sprayed into the container body 200.

[0080] like Figure 4and Figure 5 As shown, in one possible embodiment, the mounting part 32 is provided with an output hole 321. When the handle 3 is mounted on the cover 2, the output hole 321 communicates with the spraying assembly 21 so that the oil in the receiving cavity 31 flows into the spraying assembly 21 through the output hole 321.

[0081] In one possible embodiment, a silicone element is provided inside the output hole 321. When the mounting part 32 is installed on the cover 2, the silicone element abuts against the cover 2, which can improve the sealing of the output hole 321 and reduce the possibility of oil leakage from the output hole 321.

[0082] In one possible embodiment, a hose is provided inside the receiving cavity 31, and the end of the hose is connected to the spraying assembly 21, so that the oil in the receiving cavity 31 can be drawn into the spraying assembly 21 through the hose.

[0083] like Figure 6 As shown, in one possible embodiment, the end of the gripping part 33 away from the mounting part 32 has an injection hole 331, through which oil is injected into the receiving cavity 31.

[0084] The end of the gripping part 33 that is away from the mounting part 32 is higher, and the injection hole 331 is located at the end of the gripping part 33 that is away from the mounting part 32, so that the oil can fill the receiving cavity 31.

[0085] like Figure 6 As shown, in one possible embodiment, the cross-sectional area of ​​the gripping portion 33 gradually increases along the direction away from the mounting portion 32, making the gripping portion 33 trapezoidal or Y-shaped.

[0086] The grip portion 33 extends radially along the container lid 100, allowing the container lid 100 to stand upright on the table when the handle 3 is installed on the lid head 2. The end of the grip portion 33 furthest from the mounting portion 32 has a larger cross-sectional area, which improves the stability of the container lid 100 when it is placed upright on the table.

[0087] like Figure 7 As shown, in one possible embodiment, the cover 2 includes a first main body 24 and a second main body 25. The first main body 24 is integrally stretched or injection molded from a metal sheet, forming a cavity 22 within the first main body 24. The second main body 25 is fixed to the first main body 24 by welding or other means, thereby sealing the cavity 22. A connecting portion 252 is provided on the second main body 25, allowing the cover 2 to be fixedly connected to the cover body 1.

[0088] The cover 2 has a cavity 22, which can improve the heat insulation effect of the cover 2, reduce the heat conduction efficiency between the cover 1 and the handle 3, make the temperature of the handle 3 less affected by the temperature of the cover 1, and reduce the possibility of high oil temperature in the handle 3.

[0089] The spraying assembly 21 is installed inside the cavity 22. The first main body 24 is provided with a first connecting hole 241, so that the spraying assembly 21 can communicate with the output hole 321 on the handle 3 through the first connecting hole 241. The second main body 25 is provided with a second connecting hole 251, so that the spraying assembly 21 can communicate with the through hole 11 on the cover 1 through the second connecting hole 251, thereby spraying the oil in the receiving cavity 31 into the cooking container.

[0090] like Figure 4 and Figure 7 As shown, in one possible embodiment, the first main body 24 includes a mounting groove 23, and the inner wall of the mounting groove 23 and the outer wall of the mounting part 32 are provided with corresponding threads or snap-fit ​​structures, so that the mounting part 32 can be detachably mounted in the mounting groove 23.

[0091] When food in the cooking container needs to be steamed or boiled for a long time, the lid 1 will be at a high temperature for an extended period. As time goes on, the heat can be conducted to the handle 3 through the lid head 2. At this time, the handle 3 can be removed from the lid head 2, which reduces the possibility of the high temperature of the handle 3 affecting the oil in the container cavity 31, thus improving the preservation environment of the oil. When removing the handle 3, the user can hold the lid head 2 to fasten the container lid 100 to the container body 200, or remove it from the container body 200.

[0092] like Figure 4 and Figure 8 As shown, in one possible embodiment, the spraying assembly 21 includes a connecting pipe 211, one end of which communicates with the receiving cavity 31, and the other end of which communicates with the through hole 11. A first one-way valve 212 and a second one-way valve 213 are disposed inside the connecting pipe 211, the first one-way valve 212 being located near the receiving cavity 31, and the second one-way valve 213 being located near the through hole 11.

[0093] The first one-way valve 212 includes a first baffle 212a and a first stop 212b. The first baffle 212a is rotatably mounted on the inner wall of the connecting pipe 211, and the first stop 212b is located on the side of the first baffle 212a near the receiving cavity 31, so that the first baffle 212a can rotate to the side away from the receiving cavity 31. Oil can flow from the receiving cavity 31 to the connecting pipe 211 through the first one-way valve 212. At the same time, it can reduce the backflow of oil in the connecting pipe 211 into the receiving cavity 31, thereby reducing the possibility of oil in the receiving cavity 31 being contaminated.

[0094] The second one-way valve 213 includes a second baffle 213a and a second stop 213b. The second baffle 213a is rotatably mounted on the inner wall of the connecting pipe 211, and the second stop 213b is located on the side of the second baffle 213a away from the through hole 11, so that the second baffle 213a can rotate towards the side closer to the through hole 11. The oil in the connecting pipe 211 can flow through the second one-way valve 213 to the through hole 11. At the same time, it can reduce the possibility of oil fumes, steam and other substances in the cooking container entering the connecting pipe 211, which is beneficial to improving the cleanliness of the connecting pipe 211.

[0095] The first one-way valve 212 and the second one-way valve 213 work together to ensure that the substance in the connecting pipe 211 can only flow in the direction from the first one-way valve 212 to the second one-way valve 213. This allows the oil in the receiving cavity 31 to flow from the connecting pipe 211 to the through hole 11 on the cover 1 and then be sprayed into the cooking container. It also reduces the backflow of oil fumes, steam and other substances in the cooking container into the connecting pipe 211 and the receiving cavity 31 through the through hole 11, thus reducing the possibility of oil contamination.

[0096] like Figure 8 As shown, in one possible embodiment, the spraying assembly 21 includes a pressure regulating member 214, which is connected to the connecting pipe 211, thereby enabling the adjustment of the pressure within the connecting pipe 211. The pressure regulating member 214 is located between the first one-way valve 212 and the second one-way valve 213, allowing it to adjust the pressure between the first one-way valve 212 and the second one-way valve 213, thereby controlling the opening and closing of the first one-way valve 212 and the second one-way valve 213.

[0097] When the pressure inside the connecting pipe 211 decreases, the first one-way valve 212 opens, allowing the oil in the receiving cavity 31 to enter the connecting pipe 211; when the pressure inside the connecting pipe 211 increases, the second one-way valve 213 opens, allowing the oil in the connecting pipe 211 to be sprayed into the cooking container.

[0098] like Figure 8 As shown, in one possible embodiment, the pressure regulating component 214 includes a sleeve 214a, a piston 214b, and a push rod 214c. One end of the sleeve 214a is connected to the connecting pipe 211, and the other end is equipped with the piston 214b and the push rod 214c. The piston 214b is movably mounted on the sleeve 214a and abuts against the inner wall of the sleeve 214a. When the piston 214b moves inside the sleeve 214a, it can control the air pressure inside the sleeve 214a and the connecting pipe 211. The push rod 214c is mounted on the end of the piston 214b away from the connecting pipe 211, and the user can drive the piston 214b to move inside the sleeve 214a through the push rod 214c.

[0099] When piston 214b moves closer to connecting pipe 211, the space between sleeve 214a and connecting pipe 211 is compressed, increasing the pressure inside connecting pipe 211. The second one-way valve 213 opens, allowing the oil inside connecting pipe 211 to be sprayed into the cooking container. When piston 214b moves away from connecting pipe 211, the space between sleeve 214a and connecting pipe 211 increases, decreasing the pressure inside connecting pipe 211. The first one-way valve 212 opens, allowing the oil in receiving cavity 31 to be drawn into connecting pipe 211.

[0100] like Figure 4 and Figure 8 As shown, in one possible embodiment, the spraying assembly 21 is installed in the cavity 22, and a clearance hole is provided on one side of the cover 2. The end of the push rod 214c away from the piston 214b protrudes from the cover 2 through the clearance hole.

[0101] The push rod 214c protrudes from the cap 2, allowing the user to control the movement of the piston 214b via the push rod 214c, thereby controlling the opening and closing of the first one-way valve 212 and the second one-way valve 213, so that the oil is sprayed into the cooking container.

[0102] like Figure 8 As shown, in one possible embodiment, the pressure regulating member 214 includes an elastic member 214d located within the sleeve 214a, with one end of the elastic member 214d abutting against the piston 214b and the other end abutting against the inner wall of the sleeve 214a. When the push rod 214c is pushed, the piston 214b moves towards the connecting pipe 211, compressing the elastic member 214d. When the external force applied to the push rod 214c is removed, the elastic member 214d pushes the piston 214b away from the connecting pipe 211.

[0103] The elastic element 214d can be a spring or a hollow structure. When the piston 214b moves toward or away from the connecting pipe 211, it can change the volume of the side of the sleeve 214a connected to the connecting pipe 211, thereby adjusting the pressure inside the connecting pipe 211.

[0104] When the spraying assembly 21 is in its initial state, the oil is located in the receiving cavity 31, such as... Figure 9 As shown, pushing the push rod 214c causes the piston 214b to move closer to the connecting pipe 211, increasing the pressure inside the connecting pipe 211 and pushing the second one-way valve 213 to open, allowing air inside the connecting pipe 211 to be ejected through the second one-way valve 213; as Figure 10As shown, when the external force applied to the push rod 214c is removed, under the action of the elastic element 214d, the piston 214b moves away from the connecting pipe 211, reducing the pressure inside the connecting pipe 211. The second check valve 213 closes, while the first check valve 212 opens, allowing the oil in the receiving cavity 31 to be drawn into the connecting pipe 211. Figure 11 As shown, push the push rod 214c again, causing the piston 214b to move closer to the connecting pipe 211. The pressure inside the connecting pipe 211 increases, pushing the second one-way valve 213 to open, causing the oil inside the connecting pipe 211 to be sprayed out through the second one-way valve 213 and into the cooking container.

[0105] It should be understood that the described embodiments are merely some, not all, of the embodiments in this application. All other embodiments obtained by those skilled in the art based on the embodiments in this application without inventive effort are within the scope of protection of this application.

[0106] The terminology used in the embodiments of this application is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The singular forms “a,” “the,” and “the” used in the embodiments of this application and the appended claims are also intended to include the plural forms unless the context clearly indicates otherwise.

[0107] It should be understood that the term "and / or" used in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, the character " / " in this article generally indicates that the preceding and following related objects have an "or" relationship.

Claims

1. A container closure characterised in that, The container lid (100) includes: A cover (1), the cover (1) including a through hole (11); A cover (2) is mounted on the cover body (1); A handle (3) is detachably mounted on the side of the cover (2) away from the cover body (1); The handle (3) includes a receiving cavity (31), and the cap (2) includes a spraying assembly (21). One end of the spraying assembly (21) is connected to the receiving cavity (31), and the other end is connected to the through hole (11).

2. The container lid of claim 1, wherein The spraying assembly (21) includes a connecting pipe (211), a first one-way valve (212), and a second one-way valve (213). The first one-way valve (212) and the second one-way valve (213) are respectively installed at both ends of the connecting pipe (211). The end of the connecting pipe (211) with the first one-way valve (212) is connected to the receiving cavity (31), and the substance in the receiving cavity (31) can flow into the connecting pipe (211) through the first one-way valve (212). The end of the connecting pipe (211) with the second one-way valve (213) is connected to the through hole (11), and the substance in the connecting pipe (211) can flow out through the second one-way valve (213).

3. The container lid of claim 2, wherein, The spraying assembly (21) includes a pressure regulating component (214), which is connected to the connecting pipe (211) and is located between the first check valve (212) and the second check valve (213).

4. The container lid of claim 3, wherein The pressure regulating component (214) includes a sleeve (214a), a piston (214b), and a push rod (214c). One end of the sleeve (214a) is connected to the connecting pipe (211). The piston (214b) is movably installed inside the sleeve (214a). The push rod (214c) is installed on the side of the piston (214b) away from the connecting pipe (211).

5. The container lid of claim 4, wherein, The pressure regulating component (214) includes an elastic element (214d), one end of which abuts against the piston (214b) and the other end of which abuts against the inner wall of the sleeve (214a).

6. The container lid of claim 4, wherein The cap (2) includes a cavity (22), the spraying assembly (21) is installed in the cavity (22), and the push rod (214c) protrudes from one end of the cap (2) out of the cavity (22).

7. The container lid of claim 1, wherein The handle (3) includes a mounting part (32) and a gripping part (33). The mounting part (32) is detachably mounted on the cover (2). The distance between the gripping part (33) and the cover (1) gradually increases in the direction away from the mounting part (32).

8. The container lid of claim 7, wherein, The grip (33) includes an injection hole (331) located at one end of the grip (33) away from the mounting part (32).

9. The container lid of any one of claims 1 to 8, wherein, The cover (2) includes a mounting groove (23), and the handle (3) is detachably mounted in the mounting groove (23).

10. A cooking vessel characterized by, The cooking vessel comprises a vessel body (200) and a vessel lid (100) that is clipped to the vessel body (200), the vessel lid (100) being a vessel lid (100) according to any one of claims 1 to 9.