Kettle cover of oil can
By designing the oil pot lid with multi-state handle and transmission assembly, the problem of inconvenient operation of the oil pot is solved, and convenient switching between oil injection and oil pouring is achieved, and operating efficiency and safety are improved.
Patent Information
- Application Number
- CN202422180941.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The existing oil pots are inconvenient to operate when pouring oil, making it difficult to achieve precise oil injection and oil pouring functions at the same time. The traditional oil pot lid design leads to oil waste and safety risks.
An oil pot lid is designed, including a pump head, oil pouring nozzle, lid body and multi-state handle. The oil injection and oil pouring functions are achieved through the swing and translation operation of the handle, and the elastic parts and transmission components are combined to ensure the convenience and accuracy of operation.
It realizes convenient switching of oil pots in different operating modes, prevents oil leakage, improves operating efficiency and safety, and meets various cooking needs.
Smart Images

Figure CN223126369U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of oil pot accessories, and particularly relates to an oil pot lid. Background Art
[0002] Generally, the volume of edible oil bought in the market is relatively large. If it is directly poured into the pot, it is not only very troublesome, but also difficult to control the amount used. In addition, for a healthy life, it is advocated to control the amount of oil used. The traditional method is that people pour the large bucket of oil into an oil pot or an oil bottle. However, the oil pot and the oil bottle cannot well control the amount of oil when pouring, and the oil output is not uniform, especially inconvenient when grilling. For this reason, oil spray bottles have emerged. Compared with the traditional way of adding oil by pouring oil, the oil spray bottle can distribute the oil more evenly by using the oil sprayed from the nozzle. The sprayed oil is in a mist or liquid state, which is convenient to control the amount of oil sprayed and avoids waste of oil. However, most of the existing oil spray bottles can only spray oil and cannot achieve the function of pouring oil. There are also those that can have both the functions of spraying and pouring oil. Such an oil pot with the functions of spraying and pouring oil usually includes a cover body that blocks the oil pouring nozzle, and the handle installed on the oil pot can only play the role of pressing the pump head to achieve the function of spraying oil, and cannot open the cover body through the handle operation. It is very inconvenient to operate the oil pot when pouring oil. Summary of the Utility Model
[0003] The utility model provides an oil pot lid, aiming to solve the problem of inconvenient operation when pouring oil in the prior art.
[0004] In order to solve the above technical problems, the technical solution adopted by the utility model is as follows:
[0005] An oil pot lid includes a cover plate, and a pump head for realizing oil spraying and an oil pouring nozzle for pouring oil are arranged on the cover plate;
[0006] A cover body for blocking the oil pouring nozzle is further arranged on the cover plate, and the cover body is rotatably connected to the cover plate;
[0007] A handle is arranged on the cover plate, and the handle includes an idle state without force, a swinging state when swinging under force, and a translational state when translating under force;
[0008] When the handle is in the idle state, the cover body blocks the oil pouring nozzle;
[0009] When the handle is in the swinging state, the handle presses the pump head to realize oil spraying;
[0010] When the handle is in the translational state, the handle drives the cover body to open through a transmission component.
[0011] Further improved scheme: A first elastic member for pushing the cover body to open is arranged between the cover body and the cover plate.
[0012] Based on the above technical solution: A first elastic member is provided between the cover body and the cover plate. When the user needs to pour oil, the first elastic member can push the cover body to automatically open at a certain angle, eliminating the need to manually fully uncover the oil kettle cover, thus improving the convenience of operation.
[0013] Further improved solution: A rotating shaft is provided on the cover plate, and the handle is rotatably connected to the cover plate through the rotating shaft. The handle is slidably connected to the rotating shaft along the length direction of the rotating shaft. When the handle swings around the rotating shaft, the swinging state is formed.
[0014] Based on the above technical solution: The handle can not only swing around the rotating shaft but also slide along the length direction of the rotating shaft. This design with multiple degrees of freedom enables the user to press the pump head or open the cover body according to actual needs. The user can simply operate the handle to open and close the oil kettle, greatly simplifying the operation process.
[0015] Further improved solution: The transmission assembly includes a rotating block rotatably connected to the cover plate. A limiting groove for restricting the rotation angle of the cover body is provided on the rotating block. A limiting block cooperating with the limiting groove is provided on the cover body. A second elastic member for keeping the limiting block and the limiting groove in a cooperating state is provided between the rotating block and the cover plate.
[0016] Based on the above technical solution: This design enables the user to determine the opening or closing state of the oil kettle without relying on feeling or repeated attempts, thereby improving the accuracy and efficiency of operation. The setting of the second elastic member can ensure that the limiting block always maintains a tight fit with the limiting groove, and the stability of the transmission assembly can be maintained even during long-term use or under external force impact.
[0017] Further improved solution: A guiding surface for facilitating the entry of the limiting block into the limiting groove is further provided on the rotating block, and the guiding surface is inclined.
[0018] When the cover body is converted from the open state to the closed state, the cover body is pressed, and the limiting block contacts the guiding surface and enters the limiting groove under the guidance of the guiding surface.
[0019] Based on the above technical solution: The guiding surface is inclined, providing a natural sliding path for the limiting block. When the cover body is converted from the open state to the closed state, the user only needs to gently press the cover body, and the limiting block can automatically slide into the limiting groove under the guidance of the guiding surface without the need for the user to perform additional alignment or adjustment operations.
[0020] Further improved solution: A push block is provided on the handle. When the handle slides along the rotating shaft, it forms a translation state. The handle drives the cover to open through the transmission assembly. When the handle is in the translation state, the push block pushes the rotating block to rotate, so that the limiting groove is disengaged from the limiting block.
[0021] Based on the above technical solution: By simply converting the handle into a translation state and using the push block to push the rotating block to rotate, the automatic opening of the cover can be achieved. This design greatly simplifies the opening process and improves the convenience of operation. The direct contact between the push block and the rotating block ensures the accuracy of transmission. When the handle slides, the push block can accurately push the rotating block to rotate to a predetermined position, so that the limiting groove is smoothly disengaged from the limiting block, realizing the opening of the cover.
[0022] Further improved solution: A limiting edge for restricting the rotation angle of the rotating block is provided on the rotating block. A limiting groove cooperating with the limiting edge is provided on the cover plate. Baffles interfering with the limiting edge are provided at both ends of the limiting groove.
[0023] Based on the above technical solution: The close cooperation between the limiting edge and the limiting groove ensures that the rotating block can only reach a predetermined angle range during rotation. This design effectively prevents the problem of excessive rotation of the rotating block, thus ensuring the accuracy of opening or closing the oil kettle cover. The interaction between the limiting edge and the limiting groove increases the stability of the rotating block during rotation, reducing the loosening or displacement caused by vibration or external force. At the same time, the baffles at both ends further limit the movement range of the limiting edge, improving the stability of the whole structure.
[0024] Further improved solution: The limiting edge is arc-shaped, and the axis of the limiting edge is coaxially arranged with the rotation axis of the rotating block. The limiting edge and the rotating block are of an integral structure.
[0025] Based on the above technical solution: The arc-shaped design of the limiting edge enables the rotating block to smoothly transition during rotation, reducing the jamming or resistance that may be caused by right angles or sharp edges. This design ensures the smoothness of the rotation action and improves the user experience. The axis of the limiting edge is coaxially arranged with the rotation axis of the rotating block, which means that the limiting edge always remains parallel to the rotation axis during rotation, further ensuring the stability and smoothness of the rotation action.
[0026] Further improved solution: An installation plate for installing the rotating shaft is provided on the cover plate. An installation groove is provided on the handle. A part of the installation plate is located in the installation groove. The width of the installation groove is greater than the thickness of the installation plate. Shaft holes cooperating with the rotating shaft are provided on both the installation plate and the handle.
[0027] Based on the above technical solution: The width of the installation groove is greater than the thickness of the installation plate, providing a certain translation space for the installation plate. This design enables users to conveniently switch the swinging state or translation state of the handle to adapt to different usage scenarios.
[0028] Further improved solution: A cover body is further provided on the cover plate. A notch is provided on the cover body and is matched with the cover. A guiding groove for guiding the handle is also provided on the cover. The handle extends out of the cover body through the guiding groove. The guiding groove includes a first groove body for guiding the handle when the handle swings and a second groove body for guiding the handle when the handle translates. The first groove body communicates with the second groove body.
[0029] Based on the above technical solution: The guiding groove includes a first groove body and a second groove body, corresponding to the swinging and translation actions of the handle respectively. This design ensures that the handle can move along a predetermined trajectory, improving the stability and accuracy of operation. The design of the guiding groove also reduces the direct contact and friction between the handle and other components during movement, thereby reducing the degree of wear and extending the service life of the product.
[0030] The beneficial effects of the present utility model are as follows:
[0031] The present utility model provides multiple states of the handle, including an idle state, a swinging state, and a translation state. Users can easily switch the operation mode according to actual needs. In the idle state, the cover naturally blocks the oil pouring nozzle to prevent accidental oil spillage; in the swinging state, users can simply swing the handle to press the pump head to achieve precise oil spraying; in the translation state, users can translate the handle to drive the cover to open, facilitating oil pouring operations. This design greatly simplifies the operation steps and improves the operation convenience. The opening device integrates two functions of oil spraying and oil pouring. The pump head is used to achieve precise oil spraying to meet the small amount addition requirements in cooking; the oil pouring nozzle is suitable for large amount of oil pouring scenarios, such as frying food, etc. This multi-functional design enables the same oil pot to meet various cooking needs and improves the use efficiency. The design of the cover effectively prevents accidental leakage of oil when not in use, reducing potential safety hazards. At the same time, the use of the pump head and the oil pouring nozzle also avoids the phenomenon of oil splashing that may occur when pouring oil from a traditional oil pot, further ensuring user safety. Moreover, the handle can conveniently achieve oil spraying or control the opening of the cover, making the oil pouring or oil spraying operation very convenient. Description of the Drawings
[0032] To more clearly illustrate the technical solutions of the embodiments of the present utility model, the accompanying drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present utility model and should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative work, other related drawings can also be obtained based on these drawings.
[0033] Figure 1 is a schematic diagram of a lid of an oil pot of the present utility model.
[0034] Figure 2 is a schematic diagram of the internal structure of a lid of an oil pot of the present utility model.
[0035] Figure 3 is Figure 2 an enlarged view of part A in
[0036] Figure 4 is a schematic diagram of a cover plate of a lid of an oil pot of the present utility model.
[0037] Figure 5 is a schematic diagram of a rotating block of a lid of an oil pot of the present utility model.
[0038] Explanation of the reference numerals in the figure:
[0039] 1 - cover plate; 11 - pump head; 12 - limit groove; 13 - oil - pouring nozzle; 14 - mounting plate; 15 - cover body; 16 - first groove; 17 - second groove; 2 - lid body; 3 - handle; 31 - limit block; 32 - push block; 4 - rotating shaft; 5 - rotating block; 51 - limit groove; 52 - guiding surface; 53 - limit edge. Specific embodiments
[0040] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present utility model.
[0041] Refer to Figures 1 to 5 , an oil pot lid includes a cover plate 1, and a pump head 11 for realizing oil spraying and an oil - pouring nozzle 13 for pouring oil are arranged on the cover plate 1;
[0042] A lid body 2 for covering the oil - pouring nozzle 13 is further arranged on the cover plate 1, and the lid body 2 is rotatably connected to the cover plate 1;
[0043] A handle 3 is provided on the cover plate 1. The handle 3 includes an idle state without force, a swinging state when stressed and swinging, and a translating state when stressed and translating.
[0044] When the handle 3 is in the idle state, the cover body 2 shields the oil pouring nozzle 13.
[0045] When the handle 3 is in the swinging state, the handle 3 presses the pump head 11 to achieve oil spraying.
[0046] When the handle 3 is in the translating state, the handle 3 drives the cover body 2 to open through a transmission assembly.
[0047] Specifically: A first elastic member for pushing the cover body 2 to open is provided between the cover body 2 and the cover plate 1. The first elastic member can be a torsion spring.
[0048] The cover body 2 can be rotatably connected to the cover plate 1 through a shaft body. A support body can also be provided on the cover body 2 for supporting the shaft body. The torsion spring can be sleeved on the shaft body.
[0049] Among them: A rotating shaft 4 is provided on the cover plate 1. The handle 3 is rotatably connected to the cover plate 1 through the rotating shaft 4. The handle 3 is slidably connected to the rotating shaft 4 along the length direction of the rotating shaft 4. When the handle 3 swings around the rotating shaft 4, the swinging state is formed.
[0050] Specifically: The transmission assembly includes a rotating block 5 rotatably connected to the cover plate 1. A limiting groove 12 for restricting the rotation angle of the cover body 2 is provided on the rotating block 5. A limiting block 31 cooperating with the limiting groove 12 is provided on the cover body 2. A second elastic member for keeping the limiting block 31 and the limiting groove 12 in a cooperating state is provided between the rotating block 5 and the cover plate 1. The second elastic member can be a torsion spring. The rotating block 5 can be rotatably connected to the cover plate 1 through a mounting shaft, and the torsion spring can be sleeved on the mounting shaft.
[0051] Among them: A guiding surface 52 for facilitating the entry of the limiting block 31 into the limiting groove 12 is further provided on the rotating block 5. The guiding surface 52 is inclined.
[0052] When the cover body 2 is converted from the open state to the closed state, the cover body 2 is pressed, and the limiting block 31 contacts the guiding surface 52 and enters the limiting groove 12 under the guidance of the guiding surface 52. The guiding surface 52 is located below the limiting groove 12.
[0053] Specifically, a push block 32 is provided on the handle 3. When the handle 3 slides along the rotating shaft 4, it forms a translation state. The handle 3 drives the cover 2 to open through the transmission assembly. When the handle 3 is in the translation state, the rotating block 5 is pushed by the push block 32 to rotate, so that the limiting groove 12 is disengaged from the limiting block 31. A rib plate can be provided between the push block 32 and the handle 3.
[0054] Specifically, a limiting rib 53 for restricting the rotation angle of the rotating block 5 is provided on the rotating block 5. A limiting groove 12 cooperating with the limiting rib 53 is provided on the cover plate 1. Baffles interfering with the limiting rib 53 are provided at both ends of the limiting groove 12.
[0055] The limiting rib 53 is arc-shaped, and the axis of the limiting rib 53 is coaxially arranged with the rotating shaft 4 of the rotating block 5. The limiting rib 53 and the rotating block 5 are of an integral structure.
[0056] Wherein: an installation plate 14 for installing the rotating shaft 4 is provided on the cover plate 1. An installation groove is provided on the handle 3. A part of the installation plate 14 is located in the installation groove. The width of the installation groove is greater than the thickness of the installation plate 14. Shaft holes cooperating with the rotating shaft 4 are provided on both the installation plate 14 and the handle 3.
[0057] Specifically, a cover body 15 is further provided on the cover plate 1. A notch cooperating with the cover 2 is provided on the cover body 15. A guiding groove for guiding the handle 3 is further provided on the cover 2. The handle 3 extends out of the cover body 15 through the guiding groove. The guiding groove includes a first groove body 16 for guiding the handle 3 when the handle 3 swings and a second groove body 17 for guiding the handle 3 when the handle 3 translates. The first groove body 16 communicates with the second groove body 17.
[0058] An oil injection port is further provided on the cover body 15, so that the oil liquid sprayed by the pump head 11 can be correctly sprayed out from the oil injection port.
[0059] The cover body 15 can be snap-fitted onto the cover plate 1.
[0060] Working principle of this embodiment:
[0061] The handle 3 is in an unloaded state, and the cover 2 naturally blocks the oil pouring nozzle 13 to prevent oil leakage.
[0062] When oil injection is required, the user switches the handle 3 from the idle state to the swinging state, and presses the pump head 11 by swinging the handle 3 to achieve precise oil injection.
[0063] When oil needs to be poured, the user switches the handle 3 from the idle state to the translation state. At this time, the handle 3 slides along the rotating shaft 4 and drives the rotating block 5 to rotate through the push block 32, so that the limiting groove 12 is disengaged from the limiting block 31. At the same time, the first elastic member releases energy and pushes the cover body 2 to open, exposing the oil pouring nozzle 13 to achieve oil pouring.
[0064] After the oil pouring is completed, the user can gently press the cover body 2, so that the limiting block 31 re-enters the limiting groove 12 under the guidance of the guiding surface 52 to achieve the automatic closing of the cover body 2. At the same time, the second elastic member maintains the tight fit state of the limiting block 31 and the limiting groove 12.
[0065] The cover body 15 is provided with a notch that cooperates with the cover body 2 to guide the opening and closing paths of the cover body 2. The cover body 15 is also provided with an oil spraying port to ensure that the oil sprayed by the pump head 11 can be correctly sprayed.
[0066] The utility model is not limited to the above optional embodiments. On the premise of not conflicting with each other, the various solutions can be arbitrarily combined; anyone can obtain other various forms of products under the inspiration of the utility model. However, no matter what changes are made in its shape or structure, as long as the technical solutions fall within the scope defined by the claims of the utility model, they all fall within the protection scope of the utility model.
Claims
1. An oil pot lid, characterized in that: It includes a cover plate, on which a pump head for oil injection and an oil pouring nozzle for pouring oil are provided; A cover body for blocking the oil pouring nozzle is further provided on the cover plate, and the cover body is rotatably connected to the cover plate; A handle is provided on the cover plate, and the handle includes an idle state without force, a swinging state when stressed and swinging, and a translating state when stressed and translating; When the handle is in the idle state, the cover body blocks the oil pouring nozzle; When the handle is in the swinging state, the handle presses the pump head to realize oil injection; When the handle is in the translating state, the handle drives the cover body to open through a transmission component.
2. The oil kettle lid according to claim 1, characterized in that: A first elastic member for pushing the cover body to open is provided between the cover body and the cover plate.
3. The oil pot lid according to claim 2, characterized in that: A rotating shaft is provided on the cover plate, and the handle is rotatably connected to the cover plate through the rotating shaft. The handle is slidably connected to the rotating shaft along the length direction of the rotating shaft, and the handle forms the swinging state when swinging around the rotating shaft.
4. The oil pot lid according to claim 3, characterized in that: The transmission component includes a rotating block rotatably connected to the cover plate. A limiting groove for limiting the rotation angle of the cover body is provided on the rotating block. A limiting block cooperating with the limiting groove is provided on the cover body. A second elastic member for keeping the limiting block and the limiting groove in a cooperating state is provided between the rotating block and the cover plate.
5. The oil pot lid according to claim 4, characterized in that: A guiding surface for facilitating the limiting block to enter the limiting groove is further provided on the rotating block, and the guiding surface is inclined; When the cover body is converted from the open state to the closed state, the cover body is pressed, the limiting block contacts the guiding surface and enters the limiting groove under the guidance of the guiding surface.
6. The oil pot lid according to claim 4, characterized in that: A pushing block is provided on the handle. When the handle slides along the rotating shaft to form the translating state, the handle drives the cover body to open through the transmission component. When the handle is in the translating state, the rotating block is pushed to rotate through the pushing block so that the limiting groove is disengaged from the limiting block.
7. The oil pot lid according to claim 6, characterized in that: A limiting edge for limiting the rotation angle of the rotating block is provided on the rotating block. A limiting groove cooperating with the limiting edge is provided on the cover plate. Baffles interfering with the limiting edge are provided at both ends of the limiting groove.
8. The oil pot lid according to claim 7, characterized in that: The limiting edge is arc-shaped, and the axis of the limiting edge is coaxially arranged with the rotation axis of the rotating block. The limiting edge and the rotating block are of an integral structure.
9. The oil pot lid according to claim 8, characterized in that: An installation plate for installing the rotating shaft is provided on the cover plate. An installation groove is provided on the handle. A part of the installation plate is located in the installation groove. The width of the installation groove is greater than the thickness of the installation plate. Axial holes cooperating with the rotating shaft are provided on both the installation plate and the handle.
10. A kettle lid according to claim 1, characterized in that: A cover body is further provided on the cover plate. A notch cooperating with the cover body is provided on the cover body. A guiding groove for guiding the handle is further provided on the cover body. The handle extends out of the cover body through the guiding groove. The guiding groove includes a first groove body for guiding the handle when the handle swings and a second groove body for guiding the handle when the handle translates. The first groove body communicates with the second groove body.