Pot cover and pot
The drive assembly, consisting of a pusher and a rotating part, simplifies the state switching of the pressure cooker clamp assembly, solves the problem of complex knob control, and improves safety and reliability of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUHAN SUPOR COOKWARE
- Filing Date
- 2025-04-25
- Publication Date
- 2026-05-12
AI Technical Summary
The clamping assembly of existing pressure cookers is complicated to operate by controlling the clamping and opening states with a knob. It is easy for the clamping to be not fully engaged, resulting in air leakage and affecting the safety of use.
The drive assembly, consisting of a pushing part and a rotating part, drives the rotating part to rotate by moving the pushing part in a first direction, thereby switching the clamping or opening state of the clamp assembly, simplifying the operation steps and improving the connection reliability.
The operation steps for switching the clamp assembly status have been simplified, reducing instances of non-alignment and improving safety and connection reliability.
Smart Images

Figure CN224219902U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of kitchen utensils technology, specifically to a pot lid and a pot. Background Technology
[0002] Pressure cookers are common kitchen appliances used in daily life. They create a high-temperature, high-pressure environment inside to quickly cook food. A pressure cooker consists of a lid and a pot body. During use, it's crucial to ensure the lid and pot body are properly connected to prevent leaks. Current clamp-type pressure cookers typically use a knob to control the opening and closing of the two clamps. However, in practice, switching between the clamped and open positions is cumbersome, resulting in a poor user experience. Utility Model Content
[0003] This application provides a pot lid and cookware that facilitates the switching of the clamping assembly between a clamping state and an open state, thereby improving the user experience.
[0004] In a first aspect, embodiments of this application provide a pot lid, the pot lid comprising: a lid body; a clamping assembly including at least two clamps movably connected to the lid body; and a driving assembly movably connected to the clamping assembly; wherein the driving assembly includes a pushing part and a rotating part, the pushing part being connected to the rotating part, and the rotating part being connected to at least two of the clamps, wherein the pushing part, during movement relative to the lid body in a first direction, can drive the rotating part to rotate, thereby driving at least two of the clamps to move closer to or further away from each other, so that the clamping assembly is in a clamping state or an open state.
[0005] In this embodiment, the pushing part in the drive assembly can drive the rotating part connected to it to rotate during its movement along the first direction. This allows the rotating part to drive at least two clamps connected to it to move closer or further apart, thus placing the clamp assembly in a clamping or open state. Therefore, by providing a drive assembly with a pushing part and a rotating part, the movement of the pushing part along the first direction can be converted into a driving force that drives the two clamps closer or further apart, thereby enabling the switching of the clamp assembly's state by pushing the pushing part in the drive assembly. Compared to related technologies that control the clamp assembly's state with a knob, the pot lid provided in this embodiment switches the clamp assembly's state by pushing the pushing part, simplifying the operation and offering the advantage of ease of use. It allows users to easily switch the clamp assembly between the clamping and open states, while also reducing the possibility of incomplete state switching due to insufficient rotation, thus improving overall safety.
[0006] In one specific embodiment, the pushing part has a first sliding hole, and the rotating part has a first sliding part, with the first sliding hole and the first sliding part slidingly engaged; when the pushing part moves along the first direction, the first sliding part can slide within the first sliding hole to drive the rotating part to rotate.
[0007] In this embodiment, when the pushing part moves along the first direction, the first sliding part can slide within the first sliding hole to drive the rotating part to rotate. That is, by providing a slidingly fitted first sliding hole and first sliding part, the movement of the pushing part along the first direction can be converted into rotation of the rotating part, allowing the rotating part to drive at least two clamps connected to it to move closer or further apart. This achieves state switching of the clamping assembly through the movement of the pushing part. Furthermore, by connecting the pushing part and the rotating part through the first sliding hole and first sliding part, while converting the movement of the pushing part along the first direction into rotation of the rotating part, the connection reliability between the pushing part and the rotating part and the movement stability when the pushing part and the rotating part move relative to each other are improved, ensuring the normal use of the cookware.
[0008] In one specific embodiment, the first sliding hole is arc-shaped, or the extension direction of the first sliding hole is inclined relative to the first direction.
[0009] In this embodiment, the first sliding hole can be arc-shaped. When the pushing part drives the first sliding hole to move along the first direction, the first sliding part located in the first sliding hole can move along the arc-shaped trajectory, thereby driving the rotating part to rotate and thus switching the state of the clamp assembly.
[0010] In addition, in a plane perpendicular to the vertical direction, the extension direction of the first sliding hole can also be inclined relative to the movement direction of the pushing part. Thus, when the pushing part moves along the first direction to drive the first sliding hole to move, the first sliding part located in the first sliding hole moves both along the movement direction of the pushing part and along a direction perpendicular to the above-mentioned direction. This enables the rotating part to be driven to rotate, thereby enabling the switching of the clamp assembly state.
[0011] In one specific embodiment, the rotating part further has at least two second sliding parts, and the clamp assembly has at least two second sliding holes; during the rotation of the rotating part, it can drive the second sliding parts to slide along the second sliding holes, so as to drive at least two of the clamps to move closer to each other or further away from each other.
[0012] In this embodiment, when the rotating part rotates, the second sliding part can slide within the second sliding hole to drive the two clamps closer to or further apart. That is, by providing the slidingly engaging second sliding part and second sliding hole, the rotation of the rotating part can be converted into movement of the two clamps along a second direction, thereby achieving state switching of the clamp assembly. Furthermore, the rotating part and the clamp assembly are connected through the second sliding part and the second sliding hole. While converting the rotation of the rotating part into movement of the clamps along the second direction, this also improves the connection reliability between the rotating part and the clamp assembly and the movement stability when the rotating part and the clamp assembly move relative to each other, ensuring the normal use of the cookware.
[0013] In one specific embodiment, the angle between the extending direction of the second sliding hole and the second direction of the clamp movement is 85°-95°.
[0014] In this embodiment, in a plane perpendicular to the vertical direction, the angle between the extension direction of the second sliding hole and the movement direction of the clamp is 85°-95°. This allows the second sliding part to drive the clamp assembly to move along the second direction when sliding within the second sliding hole, thereby driving at least two clamps to move closer or further apart, thus switching the state of the clamp assembly. Simultaneously, setting the angle to 85°-95° ensures sufficient movement distance when the two clamps move closer or further apart, allowing the clamps to fully grip the lid and pot body or completely release their grip, ensuring the normal use of the cookware.
[0015] In one specific embodiment, the rotating part is further provided with a balancing part, and the balancing part and the second sliding part are evenly spaced apart along the circumference of the rotating part.
[0016] In this embodiment, when the pushing part is pushed, it drives the rotating part to rotate, thereby causing the second sliding part on the rotating part to rotate. This, in turn, drives at least two clamps to move closer or further apart. Therefore, by providing a balancing part on the rotating part and distributing the balancing part and the second sliding part evenly along the circumference of the rotating part, the stability of the rotating part during rotation can be improved, ensuring the normal use of the cookware. The structure of the balancing part can be identical to the structure of the second sliding part, thereby balancing the weight distribution of the rotating part and further improving the stability of the rotating part during rotation.
[0017] In one specific embodiment, the drive assembly further includes a mounting portion fixedly connected to the cover, the mounting portion having an inner cavity and two through holes communicating with the inner cavity, the push portion being movably mounted on the mounting portion, and the two ends of the push portion along a first direction being able to extend through the two through holes respectively.
[0018] In this embodiment, the drive assembly may further include a mounting portion fixedly connected to the cover for mounting the pusher, thereby providing a load-bearing function for the pusher. The mounting portion may also have an inner cavity and two through holes communicating with the inner cavity, allowing both ends of the pusher to extend through the two through holes along its direction of movement. This not only provides a clearance effect for the pusher's movement but also guides its movement, facilitating user operation and preventing the pusher from being pushed in the wrong direction, thus avoiding interference with the normal state switching process of the clamp assembly.
[0019] In one specific embodiment, the pushing part is further provided with a first limiting part and a second limiting part, and the inner sidewall of the mounting part is provided with a first limiting engagement part and a second limiting engagement part; in the clamping state, the first limiting part abuts against the first limiting engagement part, and in the opening state, the second limiting part abuts against the second limiting engagement part.
[0020] In this embodiment, by setting a first limiting part and a first limiting engagement part, when it is necessary to switch the clamp assembly to the clamping state, the pushing part is pushed along a preset direction until it abuts against the first limiting part and the first limiting engagement part. The movement of the pushing part along the first direction can indirectly drive the clamps to move closer to each other, so as to switch the clamp assembly to the clamping state. At this time, it is impossible to continue pushing the pushing part along the preset direction. The clamp assembly is completely switched to the clamping state, and it is easy for the user to know that the pushing part has been pushed in place, thus improving the user experience.
[0021] Meanwhile, when it is necessary to switch the clamp assembly to the open state, by pushing the pushing part in the opposite direction to the above-mentioned preset direction until the second limiting part and the second limiting mating part abut against each other, the movement of the pushing part in the first direction can indirectly drive the clamps to move away from each other, so as to switch the clamp assembly to the open state. At this time, it is not possible to continue pushing the pushing part in the opposite direction to the above-mentioned preset direction. The clamp assembly is fully switched to the open state, and it is easy for the user to know that the pushing part has been pushed in place, thus improving the user experience.
[0022] In one specific embodiment, the first limiting portion and the second limiting portion protrude relative to the pushing portion, and the first limiting mating portion and the second limiting mating portion protrude relative to the inner wall of the mounting portion in the direction of the inner cavity.
[0023] In this embodiment, the first limiting part and the second limiting part protrude relative to the pushing part along a direction perpendicular to the movement direction of the pushing part. The first limiting mating part and the second limiting mating part are disposed on the outer periphery of the through hole and protrude towards the inner cavity relative to the inner wall of the mounting part. When the clamping assembly is in the clamping state or the open state, it facilitates the abutment of the first limiting part and the first limiting mating part, or the abutment of the second limiting part and the second limiting mating part. Furthermore, the fact that the first limiting part, the first limiting mating part, the second limiting part, and the second limiting mating part are all protruding structures improves the reliability of mutual abutment and also has the advantages of simple structure and ease of implementation.
[0024] In one specific embodiment, the clamp assembly further includes an outer cover, at least two fixing members, and at least two connecting members. The connecting members connect the clamp and the rotating part. The outer cover is connected to the fixing members by fasteners and clamps the connecting members between the outer cover and the fixing members. The outer cover is installed on the cover body. The connecting members are provided with clearance holes for avoiding the fasteners.
[0025] In this embodiment, the clamp assembly may further include an outer cover, which not only protects the clamp assembly but also enhances the overall aesthetics of the pot lid. The clamp assembly may also have at least two fixing members and at least two connecting members. The connecting members connect the clamps and the rotating part. The outer cover is connected to the fixing members by fasteners, and the connecting members are clamped between the outer cover and the fixing members. By providing fixing members, the clamps, connecting members, and outer cover can be connected as a whole, improving the consistency of the clamp assembly, facilitating subsequent assembly, and reducing assembly difficulty.
[0026] Secondly, this application also provides a cookware, the cookware including: a lid; a pot body, the lid covering the pot body; wherein, when the clamping assembly is in a clamping state, the clamps clamp the lid and the pot body, and when the clamping assembly is in an open state, the clamps release the clamping action on the lid and the pot body.
[0027] In this embodiment, when the pushing part is pushed in a preset direction, the clamping assembly is in a clamping state, and the clamps can clamp the lid and the pot body, preventing air leakage between the lid and the pot body during use and improving the safety of the cookware. When the pushing part is pushed in the opposite direction to the preset direction, the clamping assembly is in an open state, and the clamps release their clamping effect on the lid and the pot body, allowing the lid to be removed from the pot body. Attached Figure Description
[0028] 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.
[0029] Figure 1 This is a schematic diagram of the cookware provided in this application in a specific embodiment;
[0030] Figure 2 for Figure 1 A schematic diagram of the structure of the middle cover, drive assembly, and clamping assembly;
[0031] Figure 3 for Figure 2 Schematic diagram of the structure of the drive component and the clamping component;
[0032] Figure 4 for Figure 2 Schematic diagram of the rotating part and clamping assembly;
[0033] Figure 5 for Figure 2 A top view of the clamping components in the clamping state;
[0034] Figure 6 for Figure 5 A magnified view of part I in the middle;
[0035] Figure 7 for Figure 2 Top view of the clamping components in the open state;
[0036] Figure 8 for Figure 7 A magnified view of a section II;
[0037] Figure 9 for Figure 2 A schematic diagram of the structure of the drive component;
[0038] Figure 10 for Figure 1 Structural diagram of the central propulsion unit and the mounting unit;
[0039] Figure 11 for Figure 10 Schematic diagram of the middle mounting section;
[0040] Figure 12 for Figure 1 A schematic diagram of the structure of the middle pot lid.
[0041] Figure label:
[0042] 1-Cookware;
[0043] 11-Pot body;
[0044] 12-Pot lid;
[0045] 121-Cap;
[0046] 122 - Clamp assembly;
[0047] 122a - Second sliding hole;
[0048] 122b-clamps;
[0049] 122c - Connector;
[0050] 122d - Fastener;
[0051] 122e - Clearance Hole;
[0052] 123 - Driver components;
[0053] 123a - Propulsion Department;
[0054] 123b - Rotating part;
[0055] 123c - First sliding hole;
[0056] 123d - First sliding part;
[0057] 123e - Second sliding part;
[0058] 123f - Balance section;
[0059] 123g - First limiting part;
[0060] 123h - Second limiting part;
[0061] 123j - Connecting post;
[0062] 124 - Outer Cover;
[0063] 124a - Installation Section;
[0064] 124b - Through hole;
[0065] 124c - Inner cavity;
[0066] 124d - First limiting mating part;
[0067] 124e - Second limit fitting part. Detailed Implementation
[0068] 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.
[0069] 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.
[0070] 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.
[0071] 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.
[0072] Cookware is a common kitchen utensil used in daily life, enabling food to be cooked quickly. Clamping cookware typically uses a knob to control the two clamps, moving them closer or further apart to switch their position. However, in actual use, when attaching the lid to the pot, the user may not turn the knob fully, resulting in the lid and pot not being completely connected. This can easily lead to steam leakage, affecting the safety of the cookware.
[0073] To solve the above technical problems, such as Figure 1 and Figure 2 As shown, this application provides a pot lid 12 and a cookware 1 including the pot lid 12. The cookware 1 can be a rice cooker, a multi-functional cooker, a pressure cooker, etc. This application does not limit the specific type of cookware 1.
[0074] The following description uses a pressure cooker as an example.
[0075] The cookware 1 includes a lid 12 and a pot body 11, with the lid 12 capable of covering the pot body 11. The lid 12 may include a lid body 121, a clamping assembly 122, and a driving assembly 123. The clamping assembly 122 includes at least two clamps 122b movably connected to the lid body 121, and the driving assembly 123 is movably connected to the clamping assembly 122. The driving assembly 123 may include a pushing part 123a and a rotating part 123b. The pushing part 123a is connected to the rotating part 123b, and the rotating part 123b is connected to at least two clamps 122b. During movement of the pushing part 123a relative to the lid body 121 in a first direction, the rotating part 123b can be driven to rotate, thereby driving the two clamps 122b to move closer or further apart, thus placing the clamping assembly 122 in a clamping or open state.
[0076] In this embodiment, the pushing part 123a in the drive assembly 123 can drive the rotating part 123b connected to it to rotate during its movement along the first direction. This allows the rotating part 123b to drive at least two clamps 122b connected to it to move closer or further apart during its rotation, thereby placing the clamp assembly 122 in a clamping state or an open state. Therefore, by providing a drive assembly with a pushing part 123a and a rotating part 123b, the movement of the pushing part 123a along the first direction can be converted into a driving force that drives the two clamps 122b to move closer or further apart, thereby enabling the state of the clamp assembly 122 to be switched by pushing the pushing part 123a in the drive assembly 123. Compared to related technologies that control the state of the clamping assembly via a knob, the pot lid 12 provided in this embodiment switches the state of the clamping assembly 122 by pushing the push part 123a, which simplifies the operation steps and has the advantage of being easy to operate. It makes it easy for users to switch the clamping assembly between the clamping state and the open state, and at the same time, it can reduce the phenomenon that the clamping assembly 122 does not switch the state properly due to insufficient rotation, thus improving the overall safety of use.
[0077] In this embodiment, the first direction can be any direction within a plane perpendicular to the vertical direction.
[0078] like Figure 1 and Figure 2As shown, when the lid 12 is installed on the pot body 11, pushing the pushing part 123a in a preset direction can drive the rotating part 123b to rotate, thereby driving at least two clamps 122b to move closer to each other, so that the clamp assembly 122 is in a clamping state, which can clamp the lid 12 and the pot body 11, so that the lid 12 and the pot body 11 are in a connected state, that is, the lid 12 is installed on the pot body 11. When it is necessary to remove the lid 12 from the pot body 11, pushing the pushing part 123a in the opposite direction to the preset direction can drive the rotating part 123b to rotate in the opposite direction, thereby driving at least two clamps 122b to move away from each other, so that the clamp assembly 122 is in an open state, which can release the clamp on the lid 12 and the pot body 11, so that the lid 12 and the pot body 11 are in a separated state, that is, the lid 12 can be removed from the pot body 11.
[0079] In the above embodiments, when the pushing part 123a is pushed in a preset direction, the clamping assembly 122b can clamp the lid 12 and the pot body 11 when the clamping assembly 122 is in a clamping state, thus preventing air leakage between the lid 12 and the pot body 11 during use and improving the safety of the cookware 1. When the pushing part 123a is pushed in the opposite direction to the preset direction, the clamping assembly 122b can release the clamping of the lid 12 and the pot body 11 when the clamping assembly 122 is in an open state, allowing the lid 12 to be removed from the pot body 11.
[0080] In one specific embodiment, such as Figures 2 to 4 As shown, the pushing part 123a may have a first sliding hole 123c, and the rotating part 123b may have a first sliding part 123d. The first sliding hole 123c and the first sliding part 123d are slidably engaged. When the pushing part 123a moves in the first direction, the first sliding part 123d can slide within the first sliding hole 123c to drive the rotating part 123b to rotate.
[0081] In this embodiment, when the pushing part 123a moves along the first direction, the first sliding part 123d can slide within the first sliding hole 123c to drive the rotating part 123b to rotate. That is, by providing the slidingly fitted first sliding hole 123c and first sliding part 123d, the movement of the pushing part 123a along the first direction can be converted into the rotation of the rotating part 123b, allowing the rotating part 123b to drive at least two clamps 122b connected to it to move closer or further apart. This achieves state switching of the clamping assembly 122 through the movement of the pushing part 123a. Furthermore, by connecting the pushing part 123a and the rotating part 123b through the first sliding hole 123c and first sliding part 123d, while converting the movement of the pushing part 123a along the first direction into the rotation of the rotating part 123b, the connection reliability of the pushing part 123a and the rotating part 123b and the movement stability when the pushing part 123a and the rotating part 123b move relative to each other are improved, ensuring the normal use of the cookware.
[0082] In the above embodiments, such as Figures 2 to 4 As shown, the extension direction of the first sliding hole 123c can be inclined relative to the movement direction of the pushing part 123a.
[0083] In this embodiment, in a plane perpendicular to the vertical direction, the extension direction of the first sliding hole 123c can be tilted relative to the movement direction (i.e., the first direction) of the pushing part 123a. So when the pushing part 123a moves along the first direction to drive the first sliding hole 123c to move, the first sliding part 123d located in the first sliding hole 123c moves both along the movement direction of the pushing part 123a and along a direction perpendicular to the above direction. This enables the rotating part 123b to rotate, thereby switching the state of the clamp assembly 122.
[0084] In another embodiment, the first sliding hole can also be arc-shaped (not shown in the figure). When the pushing part drives the first sliding hole to move in the first direction, the first sliding part located in the first sliding hole can move along the arc-shaped trajectory, thereby enabling the rotating part to rotate and thus switching the state of the clamp assembly.
[0085] In this embodiment, the specific structure of the first sliding hole 123c is not limited and can be adjusted according to the actual use.
[0086] In the above embodiments, when the clamp assembly 122 is in the clamping state, the relative positional relationship between the first sliding hole 123c and the first sliding part 123d is as follows: Figure 2 , Figure 5 and Figure 6 As shown. When the clamp assembly 122 is in the disengaged state, the relative positional relationship between the first sliding hole 123c and the first sliding part 123d is as follows. Figure 2 , Figure 7 and Figure 8 As shown.
[0087] In one specific embodiment, such as Figure 2 and Figure 4 As shown, the rotating part 123b may also have at least two second sliding parts 123e, and the clamp assembly 122 may have at least two sliding holes 122a. During the rotation of the rotating part 123b, the second sliding parts 123e can be driven to slide along the second sliding holes 122a, so as to drive at least two clamps 122b to move closer to or further away from each other.
[0088] In this embodiment, when the rotating part 123b rotates, the second sliding part 123e can slide within the second sliding hole 122a to drive the two clamps 122b to move closer or further apart. That is, by providing the slidingly engaging second sliding part 123e and second sliding hole 122a, the rotation of the rotating part 123b can be converted into the movement of the two clamps 122b along a second direction, thereby achieving state switching of the clamp assembly 122. Furthermore, by connecting the rotating part 123b and the clamp assembly 122 through the second sliding part 123e and second sliding hole 122a, while converting the rotation of the rotating part 123b into the movement of the clamps 122b along the second direction, the connection reliability between the rotating part 123b and the clamp assembly 122 and the movement stability of the rotating part 123b relative to the clamp assembly 122 can be improved, ensuring the normal use of the cookware.
[0089] In the above embodiments, such as Figure 2 and Figure 4 As shown, the angle between the extending direction of the second sliding hole 122a and the second direction of movement of the clamp 122b is 85°-95°.
[0090] In this embodiment, in a plane perpendicular to the vertical direction, the angle between the extension direction of the second sliding hole 122a and the second direction of movement of the clamp 122b is 85°-95°. This allows the second sliding part 123e to slide within the second sliding hole 122a, driving the clamp assembly 122 to move along the second direction. This enables at least two clamps 122b to move closer or further apart, thus switching the state of the clamp assembly 122. Simultaneously, the 85°-95° angle ensures sufficient movement distance for the two clamps 122b to move closer or further apart, allowing the clamps 122b to fully grip the lid and pot body or completely release their grip, ensuring normal use of the cookware.
[0091] In other embodiments, the included angle α can also be other values. In this application embodiment, the specific value of the included angle α is not limited and can be adjusted according to the actual situation.
[0092] The second direction of the clamp 122b's movement and the first direction of the pusher 123a's movement lie in a plane perpendicular to the vertical direction, and the first and second directions can be parallel. The first and second directions can also have an angle, for example, the first and second directions can be perpendicular.
[0093] In one specific embodiment, such as Figure 2 and Figure 9 As shown, the rotating part 123b may also be provided with a balancing part 123f, and the balancing part 123f and the second sliding part 123e are evenly distributed at intervals along the circumference of the rotating part 123b.
[0094] In this embodiment, when the pushing part 123a is pushed, the pushing part 123a can drive the rotating part 123b to rotate, thereby driving the second sliding part 123e on the rotating part 123b to rotate, and further driving at least two clamps 122b to move closer or further apart. Therefore, by providing a balancing part 123f on the rotating part 123b and distributing the balancing part 123f and the second sliding part 123e evenly spaced along the circumference of the rotating part 123b, the stability of the rotating part 123b during rotation can be improved, ensuring the normal use of the cookware. The structure of the balancing part 123f can be the same as the structure of the second sliding part 123e, thereby balancing the weight distribution of the rotating part 123b and further improving the stability of the rotating part 123b during rotation.
[0095] The rotating part 123b may also be provided with a connecting post 123j. The two ends of the connecting post 123j along the thickness direction of the pot lid are respectively connected to the first sliding part 123d and the second sliding part 123e, so that the movement of the pushing part 123a along the first direction can be converted into the rotation of the second sliding part 123e through the first sliding part 123d, thereby driving the clamp 122b to move, so as to realize the switching of the state of the clamp assembly 122.
[0096] In one specific embodiment, such as Figure 2 , Figure 10 and Figure 11 As shown, the drive assembly 123 may further include a mounting portion 124a fixedly connected to the cover 121. The mounting portion 124a may have an inner cavity 124c and two through holes 124b communicating with the inner cavity 124c. The push portion 123a is movably mounted on the mounting portion 124a, and both ends of the push portion 123a along its direction of movement can extend through the two through holes 124b respectively.
[0097] In this embodiment, the drive assembly 123 may further include a mounting portion 124a fixedly connected to the cover 121 for mounting the push portion 123a, thereby providing a load-bearing function for the push portion 123a. The mounting portion 124a may also have an inner cavity 124c and two through holes 124b communicating with the inner cavity 124c, allowing both ends of the push portion 123a to extend through the two through holes 124b along its direction of movement. This not only provides a buffering effect for the movement of the push portion 123a but also guides its movement, facilitating user operation and preventing the push portion 123a from being pushed in the wrong direction by the user, thus avoiding interference with the normal state switching process of the clamp assembly 122.
[0098] In one specific embodiment, such as Figure 2 , Figure 10 and Figure 11 As shown, the pushing part 123a may also be provided with a first limiting part 123g and a second limiting part 123h, and the inner sidewall of the mounting part 124a is provided with a first limiting mating part 124d and a second limiting mating part 124e. In the clamping state, the first limiting part 123g abuts against the first limiting mating part 124d, and in the open state, the second limiting part 123h abuts against the second limiting mating part 124e.
[0099] In this embodiment, by setting a first limiting part 123g and a first limiting engagement part 124d, when it is necessary to switch the clamp assembly 122 to the clamping state, the pushing part 123a is pushed along a preset direction until the first limiting part 123g and the first limiting engagement part 124d abut. The movement of the pushing part 123a along the first direction can indirectly drive the clamps 122b to move closer to each other, so as to switch the clamp assembly 122 to the clamping state. At this time, it is impossible to continue pushing the pushing part 123a along the preset direction. The clamp assembly 122 is completely switched to the clamping state, and it is convenient for the user to know that the pushing part 123a has been pushed in place, thus improving the user's experience.
[0100] Meanwhile, when it is necessary to switch the clamp assembly 122 to the open state, by pushing the pushing part 123a in a direction opposite to the preset direction until the second limiting part 123h abuts against the second limiting engagement part 124e, the movement of the pushing part 123a in the first direction can indirectly drive the clamps 122b to move away from each other, so as to switch the clamp assembly 122 to the open state. At this time, it is not possible to continue pushing the pushing part 123a in a direction opposite to the preset direction. The clamp assembly 122 is fully switched to the open state, and it is easy for the user to know that the pushing part 123a has been pushed in place, thus improving the user experience.
[0101] In the above embodiments, such as Figure 2 , Figure 10 and Figure 11 As shown, the first limiting part 123g and the second limiting part 123h protrude relative to the pushing part 123a in a direction perpendicular to the movement direction of the pushing part 123a. The first limiting mating part 124d and the second limiting mating part 124e are disposed on the outer periphery of the through hole 124b and protrude relative to the inner wall of the mounting part 124a in the direction of the inner cavity 124c.
[0102] In this embodiment, the first limiting part 123g and the second limiting part 123h protrude relative to the pushing part 123a in a direction perpendicular to the movement direction of the pushing part 123a. The first limiting mating part 124d and the second limiting mating part 124e are disposed on the outer periphery of the through hole 124b and protrude relative to the inner wall of the mounting part 124a towards the inner cavity 124c. When the clamp assembly 122 is in the clamping or open state, it facilitates the contact between the first limiting part 123g and the first limiting mating part 124d, or between the second limiting part 123h and the second limiting mating part 124e. Furthermore, the fact that the first limiting part 123g, the first limiting mating part 124d, the second limiting part 123h, and the second limiting mating part 124e are all protruding structures improves the reliability of their contact and also has the advantages of simple structure and ease of implementation.
[0103] In the above embodiments, such as Figure 2 , Figure 3 and Figure 12 As shown, the clamp assembly 122 may further include an outer cover 124, at least two fixing members 122d, and at least two connecting members 122c. The connecting members 122c connect the clamp 122b and the rotating part 123b. The outer cover 124 is connected to the fixing members 122d by fasteners, and clamps the connecting members 122c between the outer cover 124 and the fixing members 122d. The outer cover 124 is mounted on the cover body 121. The connecting members 122c are provided with clearance holes 122e for avoiding fasteners.
[0104] In this embodiment, the clamp assembly 122 may further include an outer cover 124, which not only protects the clamp assembly 122 but also enhances the overall aesthetics of the pot lid. Furthermore, the clamp assembly 122 may have at least two fixing members 122d and at least two connecting members 122c. The connecting members 122c connect the clamp 122b and the rotating part 123b. The outer cover 124 is connected to the fixing members 122d via fasteners, and the connecting members 122c are clamped between the outer cover 124 and the fixing members 122d. By providing the fixing members 122d, the clamp 122b, connecting members 122c, and outer cover 124 can be connected as a whole, improving the consistency of the clamp assembly 122, facilitating subsequent assembly, and reducing assembly difficulty.
[0105] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A pot lid, characterized in that, The pot lid (12) includes: Cover (121); A clamp assembly (122) comprising at least two clamps (122b) movably connected to the cover (121); A drive assembly (123) is movably connected to the clamp assembly (122); The drive assembly (123) includes a pushing part (123a) and a rotating part (123b). The pushing part (123a) is connected to the rotating part (123b), and the rotating part (123b) is connected to at least two clamps (122b). During the movement of the pushing part (123a) relative to the cover (121) in a first direction, it can drive the rotating part (123b) to rotate, thereby driving at least two clamps (122b) to move closer to or further away from each other, so that the clamp assembly (122) is in a clamping state or an open state.
2. The pot lid according to claim 1, characterized in that, The pushing part (123a) has a first sliding hole (123c), and the rotating part (123b) has a first sliding part (123d). The first sliding hole (123c) and the first sliding part (123d) are slidably engaged. When the pushing part (123a) moves along the first direction, the first sliding part (123d) can slide within the first sliding hole (123c) to drive the rotating part (123b) to rotate.
3. The pot lid according to claim 2, characterized in that, The first sliding hole (123c) is arc-shaped, or the extension direction of the first sliding hole (123c) is inclined relative to the first direction.
4. The pot lid according to claim 2, characterized in that, The rotating part (123b) also has at least two second sliding parts (123e), and the clamp assembly (122) has at least two second sliding holes (122a); During the rotation of the rotating part (123b), the second sliding part (123e) can be driven to slide along the second sliding hole (122a) to drive at least two clamps (122b) to move closer to or further away from each other.
5. The pot lid according to claim 4, characterized in that, The angle between the extending direction of the second sliding hole (122a) and the second direction of movement of the clamp (122b) is 85°-95°.
6. The pot lid according to claim 4, characterized in that, The rotating part (123b) is also provided with a balancing part (123f), and the balancing part (123f) and the second sliding part (123e) are evenly spaced along the circumference of the rotating part (123b).
7. The pot lid according to any one of claims 1-6, characterized in that, The drive assembly (123) further includes a mounting portion (124a) fixedly connected to the cover (121). The mounting portion (124a) has an inner cavity (124c) and two through holes (124b) communicating with the inner cavity (124c). The pushing portion (123a) is movably mounted on the mounting portion (124a), and the two ends of the pushing portion (123a) along the first direction can extend through the two through holes (124b) respectively.
8. The pot lid according to claim 7, characterized in that, The pushing part (123a) is also provided with a first limiting part (123g) and a second limiting part (123h), and the inner sidewall of the mounting part (124a) is provided with a first limiting mating part (124d) and a second limiting mating part (124e). In the clamping state, the first limiting part (123g) abuts against the first limiting mating part (124d), and in the opening state, the second limiting part (123h) abuts against the second limiting mating part (124e).
9. The pot lid according to claim 8, characterized in that, The first limiting part (123g) and the second limiting part (123h) protrude relative to the pushing part (123a), and the first limiting mating part (124d) and the second limiting mating part (124e) protrude relative to the inner wall of the mounting part (124a) toward the inner cavity (124c).
10. The pot lid according to any one of claims 1-6, characterized in that, The clamp assembly (122) further includes an outer cover (124), at least two fixing members (122d) and at least two connecting members (122c), the connecting members (122c) connecting the clamp (122b) and the rotating part (123b), the outer cover (124) being connected to the fixing members (122d) by fasteners, and clamping the connecting members (122c) between the outer cover (124) and the fixing members (122d), the outer cover (124) being mounted on the cover (121); The connector (122c) is provided with a clearance hole (122e) for avoiding the fastener.
11. A cookware, characterized in that, The cookware (1) includes: The pot lid (12) is the pot lid (12) according to any one of claims 1-10; The pot body (11) is covered by the pot lid (12); When the clamp assembly (122) is in the clamping state, the clamp (122b) clamps the lid (121) and the pot (11). When the clamp assembly (122) is in the open state, the clamp (122b) releases the clamping action on the lid and the pot (11).