Handle structure and cooking pot provided with same

By integrating the trigger and locking parts into the handle structure of the cooking pot, the force is directly transmitted. By utilizing the cooperation of the limiting protrusion and the slot, the problems of space occupation and complex locking of the handle structure are solved, thus achieving the effect of simplifying operation and increasing the flexibility of use.

CN223817454UActive Publication Date: 2026-01-23ZHEJIANG SUPOR ELECTRICAL APPLIANCES MFG CO LTD
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Patent Information

Application Number
CN202423256540.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-28
Publication Date
2026-01-23
Estimated Expiration
2034-12-28

AI Technical Summary

Technical Problem

The handle structure of existing cooking pots takes up a lot of space when placed or stored, and the locking and unlocking process is complicated, affecting the smoothness of operation.

Method used

The handle structure integrates the trigger and locking parts into the rotating part, directly transmitting force and simplifying the structure. Locking and unlocking are achieved through the cooperation of the limiting protrusion and the limiting groove. The handle seat is connected to the pot body in a separate configuration, increasing the flexibility of use.

Benefits of technology

It simplifies the locking and unlocking process, improves operational stability and reliability, reduces the possibility of incorrect assembly, and increases usability and structural strength.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of kitchen household appliances, and provides a handle structure and a cooking pot provided with the same. The handle structure comprises a handle seat, a handle and a lock catch assembly, wherein the handle seat is provided with a containing cavity; the handle comprises a handle body and a plug connector arranged on the handle body, and the plug connector can be inserted into the containing cavity; the lock catch assembly is at least partially contained in the containing cavity and comprises a rotating piece, the rotating piece is provided with a rotating part, a triggering part and a locking part, the triggering part and the locking part are both connected to the rotating part, and the rotating part is rotationally connected with the handle base. And the triggering part is configured to respond to external force driving to drive the locking part to swing through the rotating part so as to be locked with the plug connector in a clamping manner or unlocked from the plug connector. The handle structure is simple in structure, convenient to operate and suitable for various use scenes, and use flexibility is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of kitchen appliances, in particular to a handle structure and a cooking utensil provided with the same. BACKGROUND

[0002] In cooking utensils, such as cooking pots, electric heating pots, and small boiling pots, a handle is provided for users to hold and move the cooking utensil. However, the handle also occupies a large space when the cooking utensil is placed or stored.

[0003] In related technologies, the handle is usually detachable from the pot body to meet different use requirements. For example, the handle is connected to the pot body when the pot is needed to be moved, and the handle is detached from the pot body when the pot is needed to be placed or stored. However, the structure for locking and unlocking the handle is relatively complex, and the multiple forces affect each other during the locking and unlocking process, which affects the smoothness of the locking and unlocking. SUMMARY

[0004] Therefore, it is necessary to provide a handle structure, which integrates the trigger part and the locking part on the rotating part, so that the force is directly transmitted, and the intermediate force transmission process and structure are omitted, and the structure is simplified.

[0005] A handle structure includes a handle seat, a handle, and a lock assembly. The handle seat is provided with a receiving cavity. The handle includes a handle body and a plug-in part provided on the handle body, and the plug-in part can be inserted into the receiving cavity. The lock assembly is at least partially accommodated in the receiving cavity and includes a rotating part. The rotating part has a rotating part, a trigger part, and a locking part. The trigger part and the locking part are connected to the rotating part. The rotating part is rotatably connected to the handle seat. The trigger part is configured to be driven by an external force to swing the locking part through the rotating part to lock or unlock the plug-in part.

[0006] That is, the plug-in part and the locking part on the rotating part are locked to connect the handle to the handle seat. When the plug-in part and the locking part are unlocked, the handle can be detached from the handle seat. In this process, the trigger part and the locking part are integrated on the rotating part, which can be rotated. When the rotating part is rotated based on the trigger part being forced, the force can be directly transmitted to the locking part, the intermediate force transmission process and structure are omitted, and the structure is simplified. Moreover, the handle seat and the handle are separately provided, the handle seat can be connected to the pot body, and the handle seat can be used as a force applying part to move the pot body when the handle is detached. The movement of the pot body can not completely depend on the presence of the handle, which is suitable for different use scenarios and increases the flexibility of use.

[0007] In some embodiments, the trigger portion and the locking portion are located on opposite sides of the rotating portion.

[0008] This design maintains the force balance of the rotating parts, improving operational stability. On the other hand, it reduces interference between the triggering and locking parts, minimizing damage caused by improper operation and improving reliability.

[0009] In some embodiments, the locking part has a limiting protrusion at the end opposite to the rotating part, the plug has a limiting groove, the limiting groove has a guide slope, and the limiting protrusion can slide into the limiting groove along the guide slope to engage and lock or slide out of the limiting groove to release the lock.

[0010] In other words, the locking mechanism between the limiting protrusion and the limiting slot is achieved through the engaging and locking action of the locking part and the connector. Furthermore, the guide ramp facilitates the movement of the limiting protrusion along a predetermined direction and path, reducing the possibility of incorrect assembly and improving assembly accuracy. In addition, the guide ramp also makes the sliding of the limiting protrusion into and out of the limiting slot smoother.

[0011] In some embodiments, when the locking mechanism is engaged, the limiting protrusion presses against and makes surface contact with the guide slope. This improves the reliability of the engagement between the limiting protrusion and the limiting groove.

[0012] In some embodiments, the locking assembly further includes an elastic element connected to the rotating member and the handle seat, the rotating member having a tendency to rotate in the locking direction under the action of the elastic element.

[0013] This design reinforces the locking mechanism and the connector, improving connection reliability; it also facilitates the reset of the trigger unit, making it easy to reuse.

[0014] In some embodiments, the locking assembly further includes a fitting disposed in the receiving cavity and fixed to the handle seat, the rotating member being rotatably connected to the fitting, and the elastic member being pre-pressed between the rotating member and the fitting.

[0015] In other words, by using the assembly components, it is easy to connect the rotating parts and the elastic parts into a whole structure, and then install them as a whole in the handle base, which facilitates the overall assembly and disassembly; moreover, this design can improve the assembly reliability of the rotating parts.

[0016] In some embodiments, the assembly has a guide channel and a clearance opening communicating with the guide channel, the connector can be inserted into the guide channel, and the locking part can swing within the clearance opening to cooperate with the connector.

[0017] In other words, the guide channel guides the insertion of the connector and works with the connector to improve the reliability of the connection; in addition, the clearance can avoid the swing of the locking part and reduce the length of the connector, thereby improving the structural strength.

[0018] In some embodiments, the assembly has a first connecting ear protruding along a first direction, and the first connecting ear is fixedly connected to the handle seat; the assembly has a second connecting ear protruding along a second direction, and the rotating member is rotatably connected to the second connecting ear; the first direction, the second direction, and the length direction of the handle are arranged at angles to each other.

[0019] In other words, by using the first connecting ear and the second connecting ear, the assembly of the assembly parts and the handle seat, and the assembly parts and the rotating parts can be satisfied; moreover, the protrusion of the first connecting ear and the second connecting ear in different directions reduces assembly interference while making full use of the assembly space.

[0020] In some embodiments, the handle base is provided with a mounting hole communicating with the receiving cavity; the latch assembly further includes a trigger button, which passes through the mounting hole and is connected to the trigger portion.

[0021] In other words, by using the trigger button, the triggering part can be triggered, thereby driving the rotating part to rotate so as to achieve the locking and unlocking of the locking part and the plug-in part.

[0022] In some embodiments, the handle body is provided with a fixing hole, and one end of the connector is inserted into the fixing hole and detachably connected to the handle body.

[0023] This design ensures sufficient contact area between the connector and the handle body, improving connection reliability. Furthermore, it facilitates timely replacement of the connector when it is damaged or worn, reducing costs.

[0024] This application also provides a cooking pot, including a pot body and the aforementioned handle structure, wherein the handle seat in the handle structure is connected to the pot body.

[0025] This makes it easy to adjust the connection and disconnection of the handle relative to the handle base according to different usage needs, and it is convenient to operate and more flexible to use.

[0026] In some embodiments, the pot body includes a pot body and a base surrounding the outer periphery of the pot body, with the handle seat integrally formed with the base. Even after the handle is detached, the handle seat still allows the pot body to move; furthermore, this arrangement improves the reliability of the connection between the handle seat and the pot body. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this application or the conventional technology, the drawings used in the description of the embodiments or the conventional technology 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.

[0028] Figure 1 An exploded view of a handle structure provided in one embodiment of this application;

[0029] Figure 2 A cross-sectional view showing the locking of the connector and the locking part in a handle structure provided in an embodiment of this application;

[0030] Figure 3 A cross-sectional view showing the unlocking of the connector and locking part in a handle structure provided in an embodiment of this application;

[0031] Figure 4 A cross-sectional view of the insert being removed from the receiving cavity in a handle structure provided in an embodiment of this application;

[0032] Figure 5 This is a partial schematic diagram of the locking assembly in a handle structure provided in an embodiment of this application;

[0033] Figure 6 A schematic diagram illustrating the connection between the handle and the base in a cooking pot according to an embodiment of this application;

[0034] Figure 7 This is a partial schematic diagram of the handle of a cooking pot provided in an embodiment of this application after disassembly;

[0035] Figure 8 This is a cross-sectional view of the handle connection in a cooking pot provided in an embodiment of this application;

[0036] Figure 9 This is a schematic diagram of the handle connection in a cooking pot provided in an embodiment of this application;

[0037] Figure 10 This is a schematic diagram illustrating the disassembly of the handle in a cooking pot provided in one embodiment of this application.

[0038] Reference numerals: 100, handle structure; 110, handle base; 120, handle; 121, handle body; 122, connector; 123, locking element; 130, locking assembly; 131, rotating element; 132, elastic element; 133, assembly; 134, pivot; 135, trigger button; 136, fastener; 141, limit latch protrusion; 142, limit latch groove; 143, guide slope; 200, pot body; 210, base; 220, pot body; 230, heating element; 2 40. Power socket; 250. Holding protrusion; 1101. Receiving cavity; 1102. Assembly hole; 1103. Insertion interface; 1211. Fixing hole; 1212. Fastening hole; 1221. Insertion end; 1222. Assembly end; 1311. Rotating part; 1312. Triggering part; 1313. Locking part; 1314. Clearance groove; 1331. Guide channel; 1332. Clearance opening; 1333. First connecting ear; 1334. Second connecting ear; 1351. Limiting protrusion. Detailed Implementation

[0039] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0040] It should be noted that when a component is referred to as being "fixed to" or "attached to" another component, it can be directly on the other component or there may be an intermediate component. When a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intermediate component present. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application's specification are for illustrative purposes only and do not represent the only possible implementation.

[0041] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0042] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature and the second feature are in indirect contact through an intermediate medium. Furthermore, "above," "over," and "on top" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0043] Unless otherwise defined, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in this application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. The term "and / or" as used in this application includes any and all combinations of one or more of the associated listed items.

[0044] Please see Figures 1 to 4 One embodiment of this application provides a handle structure 100 including a handle base 110, a handle 120, and a locking assembly 130. The handle base 110 has a receiving cavity 1101. The handle 120 includes a handle body 121 and a connector 122 disposed in the handle body 121. The connector 122 can be inserted into the receiving cavity 1101. The locking assembly 130 is at least partially received in the receiving cavity 1101 and includes a rotating member 131. The rotating member 131 has a rotating part 1311, a trigger part 1312, and a locking part 1313. The trigger part 1312 and the locking part 1313 are both connected to the rotating part 1311. The rotating part 1311 is rotatably connected to the handle base 110. The trigger part 1312 is configured to drive the locking part 1313 to swing in response to an external force, thereby engaging with the connector 122 to lock or unlock.

[0045] The handle structure 100 provided in this embodiment utilizes the snap-fit ​​locking of the connector 122 and the locking part 1313 on the rotating member 131 to connect the handle 120 to the handle base 110; and, when the connector 122 and the locking part 1313 are unlocked, the handle 120 can be detached from the handle base 110. The handle base 110 can be used to connect to the pot body, therefore, through the detachable connection of the handle 120 to the handle base 110, the handle 120 can be detachably connected to the pot body, thereby reducing the space occupied during storage or placement.

[0046] In this process, because the trigger part 1312 and the locking part 1313 are integrated into the rotatable rotating part 131, when the rotating part 131 is rotated based on the force applied to the trigger part 1312, the force can be directly transmitted to the locking part 1313, which is conducive to driving the locking part 1313 to cooperate with the plug-in part 122 (i.e., locking or unlocking). Therefore, this setting omits the intermediate force transmission process and intermediate force transmission structure between the trigger part 1312 and the locking part 1313, which not only simplifies the structure but also makes the operation safer, smoother, and more efficient. Moreover, because of the separate setting of the handle base 110 and the handle 120, the handle base 110 can be connected to the pot body. When the handle 120 is detached, the handle base 110 can also be used as a force-applying part for the user to hold and move the pot body, so that the movement of the pot body does not completely depend on the existence of the handle 120, which is suitable for different usage scenarios and increases the flexibility of use.

[0047] Please continue reading. Figures 1 to 4 In some embodiments, the trigger portion 1312 and the locking portion 1313 are disposed on opposite sides of the rotating portion 1311. Figure 2 For example, the trigger part 1312 is located on the left side of the rotating part 1311, and the locking part 1313 is located on the right side of the rotating part 1311, meaning the trigger part 1312 and the locking part 1313 are on opposite sides. Thus, by rotating the rotating member 131, the trigger part 1312 and the locking part 1313 can be made to swing in opposite directions in the vertical direction (i.e., the Z-axis direction). For example, when the rotating member 131 rotates and causes the trigger part 1312 to swing downwards, the locking part 1313 swings upwards; conversely, when the trigger part 1312 swings upwards in the vertical direction, the locking part 1313 swings downwards. It is understandable that the opposite-side arrangement of the locking part 1313 and the trigger part 1312 maintains a force balance between them, improving operational stability; furthermore, this arrangement prevents the trigger part 1312 and the locking part 1313 from interfering with each other, reducing damage caused by improper operation, improving the overall performance and reliability of the handle structure 100, and extending its service life.

[0048] In some specific embodiments, under the action of external force, the trigger part 1312 drives the locking part 1313 to swing downward through the rotating part 1311, so as to engage and lock with the plug-in 122, thereby connecting the handle 120 to the handle seat 110. Conversely, under the action of external force, the trigger part 1312 drives the locking part 1313 to swing upward through the rotating part 1311, so as to release the lock from the plug-in 122, and the plug-in 122 exits the receiving cavity 1101, thereby satisfying the disassembly of the handle 120 and the handle seat 110.

[0049] Furthermore, the receiving cavity 1101 has a plug-in interface 1103 for the insertion and mating of the plug-in 122. The trigger part 1312 is located close to the plug-in interface 1103, so the locking part 1313 is located at a deeper position in the receiving cavity 1101. This can ensure that the plug-in 122 has a larger insertion space relative to the receiving cavity 1101, that is, increase the depth of insertion of the plug-in 122 into the receiving cavity 1101 and improve the connection reliability.

[0050] Furthermore, the handle body 121 has a first limiting end face facing the handle base 110, and the handle base 110 has a second limiting end face at the insertion interface 1103. When locked in place, the first and second limiting end faces abut against each other. That is, when the insertion part 122 is locked in place with the locking part 1313, the handle body 121 is in contact with the handle base 110. This design, on the one hand, ensures a tight fit between the handle 120 and the handle base 110, improving the stability and durability of the overall structure; on the other hand, it limits the insertion depth of the insertion part 122, facilitating quick insertion and disassembly, and improving ease of use.

[0051] Please continue reading. Figures 1 to 4 Furthermore, the locking part 1313 has a limiting protrusion 141 at its end opposite to the rotating part 1311, and the connector 122 has a limiting groove 142. Locking is achieved by engaging the limiting protrusion 141 with the limiting groove 142. Moreover, the limiting protrusion 141 can be located at the end of the locking part 1313 to increase the lever arm and reduce the effort required. The limiting groove 142 has a guide slope 143, and the limiting protrusion 141 can slide into the limiting groove 142 along the guide slope 143 to engage and lock, or slide out of the limiting groove 142 to release the lock.

[0052] In other words, by using the guide slope 143, the sliding of the limit card protrusion 141 into and out of the limit card slot 142 is smoother, reducing the resistance when releasing the locking and improving the user's operating experience; moreover, the guide slope 143 can ensure that the limit card protrusion 141 moves in the predetermined direction and path, reducing the possibility of incorrect assembly and improving assembly accuracy.

[0053] Furthermore, during locking, the limiting protrusion 141 presses against the guide slope 143 and contacts the guide slope 143. That is, the side of the limiting protrusion 141 facing the guide slope 143 is also sloped. In addition to ensuring smooth sliding in and out, it also provides a pressing fit to limit the movement of the connector 122 away from the handle seat 110; moreover, the surface-to-surface fit increases the contact area and improves stability. Anti-slip textures can be provided on both the guide slope 143 and the slope of the limiting protrusion 141 to further improve the reliability of the limiting action; alternatively, anti-slip pads, such as rubber pads, can be provided.

[0054] In other embodiments, the trigger part 1312 and the locking part 1313 may also be arranged on the same side, with the limiting protrusion 141 on the locking part 1313 and the limiting groove 142 on the connector 122 engaging through an arc surface. The connector 122 may also have a notch to allow the locking part 1313 to swing. Simultaneously, the trigger part 1312 may swing upwards to release the locking part 1313 from the connector 122, or swing downwards to engage the locking part 1313 with the connector 122. This is merely an example.

[0055] Please continue reading. Figures 1 to 4 In actual use, the locking assembly 130 also includes an elastic element 132, which is connected between the rotating member 131 and the handle seat 110. It is used to apply a force to the rotating member 131 to rotate in the direction of locking, so that the rotating member 131 has a tendency to rotate in the direction of locking under the action of the elastic element 132.

[0056] The elastic element 132 is a torsion spring, sleeved on the rotating part 1311, and can be pressed between the trigger part 1312 and the handle seat 110. For example, the upward swing of the trigger part 1312 can cause the locking part 1313 to swing downward to engage and lock with the plug 122. Therefore, the elastic element 132 applies an upward swinging force to the trigger part 1312, causing the trigger part 1312 to always have an upward swinging tendency. Two elastic elements 132 can be provided, respectively located at both ends of the axial direction of the rotating part 1311, which can further improve the connection reliability while ensuring uniform force distribution.

[0057] Furthermore, both the trigger part 1312 and the locking part 1313 near the rotating part 1311 are provided with clearance grooves 1314, which do not occupy the assembly space at both ends of the rotating part 1311 and facilitate the assembly of the elastic element 132. The dimension of the locking part 1313 along the axial direction of the rotating part 1311 is smaller than the axial length of the rotating part 1311, and the dimension of the locking part 1313 along the axial direction of the rotating part 1311 can be smaller than the dimension of the trigger part 1312 along the axial direction of the rotating part 1311. In this case, only the side of the trigger part 1312 near the rotating part 1311 is provided with the clearance groove 1314. The axial direction of the rotating part 1311 is the Y-axis direction, and the length direction of the handle 120 is the X-axis direction.

[0058] Please see Figures 1 to 5For example, the locking assembly 130 also includes a fitting 133, which is housed within the receiving cavity 1101 and fixedly connected to the handle seat 110. A rotating member 131 is rotatably connected to the fitting 133, and an elastic member 132 is pre-pressed between the rotating member 131 and the fitting 133. In other words, the fitting 133 facilitates the rotatable assembly of the rotating member 131 relative to the handle seat 110. Both the rotating member 131 and the elastic member 132 can be connected relative to the fitting 133 to form an integral structure, which is then integrally installed within the handle seat 110, facilitating assembly. Simultaneously, this arrangement eliminates the need for additional structures on the handle seat 110 for the adaptation of the rotating member 131 and the elastic member 132, increasing the overall structural strength. The fitting 133 can be fixed to the handle seat 110 by screws or adhesive.

[0059] Furthermore, the assembly 133 is provided with a guide channel 1331 and a clearance opening 1332 communicating with the guide channel 1331. The connector 122 can pass through the guide channel 1331, and the locking part 1313 of the rotating part 131 passes through the clearance opening 1332 and engages with the connector 122. It can be understood that the guide channel 1331 is used to guide the movement of the connector 122 relative to the handle seat 110, reducing the offset of the connector 122 and thus improving the fitting accuracy with the locking part 1313. Moreover, the assembly 133 can limit the position of the connector 122, specifically, it can limit the position along the Z-axis and Y-axis directions, further improving the connection reliability. The clearance opening 1332 can provide clearance for the locking part 1313 and reduce the mating length between the connector 122 and the locking part 1313, thereby reducing the length of the connector 122, improving structural strength, and ultimately enhancing connection reliability. Furthermore, the clearance opening 1332 can guide the movement of the locking part 1313, reducing its offset during rotation. The guide channel 1331 is correspondingly provided with the connector 1103 on the handle base 110.

[0060] Furthermore, the assembly 133 is located below the rotating member 131, and the rotating member 131 is rotatably connected to the assembly 133 via a rotating shaft 134. Specifically, the upper surface of the assembly 133 has two second connecting ears 1334 protruding upwards in the vertical direction (i.e., the second direction), and the two second connecting ears 1334 are arranged opposite to each other and spaced apart in the first direction (i.e., the Y-axis direction). Each second connecting ear 1334 has a first rotating hole for the rotating shaft 134 to pass through, and the rotating part 1311 of the rotating member 131 has a through second rotating hole. The rotating shaft 134 passes through the first rotating hole and the second rotating hole to satisfy the rotatable connection between the rotating member 131 and the assembly 133. At the same time, the assembly 133 has first connecting ears 1333 protruding on both sides along the Y-axis direction, and the two first connecting ears 1333 extend in opposite directions along the Y-axis direction. The handle base 110 has two mounting posts protruding from the receiving cavity 1101, spaced apart along the Y-axis. The two first connecting ears 1333 can be pressed onto one of the mounting posts respectively, and then fastened using fasteners 136. The fasteners 136 are screws.

[0061] In other words, by using the first connecting ear 1333 and the second connecting ear 1334, the assembly of the part 133 and the handle seat 110, and the assembly of the part 133 and the rotating part 131 can be satisfied; and the first connecting ear 1333 and the second connecting ear 1334 are protruding in different directions, which reduces assembly interference and makes full use of the assembly space.

[0062] Please continue reading. Figures 1 to 4 Optionally, the handle base 110 is provided with a mounting hole 1102 communicating with the receiving cavity 1101. The locking assembly 130 also includes a trigger button 135, which passes through the mounting hole 1102 and is connected to the trigger part 1312. The trigger button 135 can move under the action of external force to drive the trigger part 1312 to swing. That is, the trigger button 135 can be used to trigger the trigger part 1312, thereby driving the rotating part 131 to rotate to achieve the locking and unlocking of the locking part 1313 and the plug-in part 122. Specifically, when the trigger button 135 is pressed downward along the axial direction of the mounting hole 1102, the trigger part 1312 is caused to swing downward, thereby driving the locking part 1313 to swing upward through the rotating part 1311, so that the limiting protrusion 141 of the locking part 1313 slides out of the limiting groove 142 on the plug-in part 122, thereby unlocking. When unlocked, the rotating part 131 rotates in the opposite direction under the action of the elastic part 132, causing the trigger part 1312 to swing upward to push the trigger button 135 to reset, and the locking part 1313 swings downward to reset, for secondary locking.

[0063] The trigger button 135, which passes through the mounting hole 1102 into the receiving cavity 1101, has a limiting protrusion 1351. This limiting protrusion 1351 abuts against one edge of the mounting hole 1102 located in the receiving cavity 1101, thus limiting the upward movement of the trigger button 135 and preventing it from disengaging from the handle seat 110. Multiple limiting protrusions 1351 are provided and spaced apart circumferentially around the trigger button 135. Alternatively, the limiting protrusions 1351 may be arranged in a ring extending circumferentially around the trigger button 135.

[0064] Please continue reading. Figures 1 to 4 Optionally, the handle body 121 is provided with a fixing hole 1211. One end of the connector 122 is inserted into the fixing hole 1211 and confined within it. The other end of the connector 122 is engaged and locked with the locking part 1313. Specifically, the connector 122 includes a plug-in end 1221 and an assembly end 1222 connected to the plug-in end 1221. The plug-in end 1221 is provided with a limiting groove 142 at a position away from the assembly end 1222. Furthermore, the end of the plug-in end 1221 is tapered to facilitate insertion from the plug-in interface 1103. The assembly end 1222 is inserted into the fixing hole 1211 to ensure that the connector 122 and the handle body 121 have sufficient connection area, thereby improving connection reliability.

[0065] The connector 122 is detachably connected to the handle body 121, which facilitates timely replacement when the connector 122 is damaged or worn. This not only maintains the overall connection reliability of the handle structure 100 and extends its service life, but also reduces costs.

[0066] Furthermore, the handle body 121 is provided with a fastening hole 1212 communicating with the fixing hole 1211. The locking member 123 passes through the fastening hole 1212 to be threadedly connected to the plug member 122. Moreover, the end of the locking member 123 is accommodated within the fastening hole 1212, that is, it does not protrude from the handle body 121, maintaining the aesthetics of the handle 120. The fastening hole 1212 is located at the bottom of the handle body 121 to facilitate drainage.

[0067] Please see Figures 6 to 10 Another embodiment of this application provides a cooking pot, including a pot body 200 and the aforementioned handle structure 100, wherein the handle seat 110 in the handle structure 100 is connected to the pot body 200. Specifically, the pot body 200 includes a pot body 220 and a base 210 surrounding the outer periphery of the pot body 220, and the handle seat 110 is connected to the base 210 as an integral structure. For example, the handle seat 110 and the base 210 are integrally formed. The pot body 220 can be fixed to the base 210 after the locking assembly 130 is assembled relative to the handle seat 110. Of course, the handle seat 110 and the base 210 can also be fastened together with screws.

[0068] In some embodiments, the pot body 200 is further provided with a gripping protrusion 250 on the side opposite to the handle seat 110. When the handle 120 is detached from the handle seat 110, the user can hold the handle seat 110 and the gripping protrusion 250 to move the pot body 200, making the operation more convenient and increasing its applicability.

[0069] In related technologies, some handles typically include a grip, a clamping part, and a locking part. The clamping part and the grip are locked or unlocked by the locking part. When the clamping part is locked relative to the handle, it is clamped to the edge of the pot body, allowing the handle to be installed on the pot. Conversely, when the clamping part is unlocked relative to the handle, the handle can be removed from the pot. However, precisely because it is fixed to the pot body by clamping, over time, wear and tear may weaken the clamping effect between the clamping part and the handle, thus affecting the reliability of the connection with the pot body.

[0070] Therefore, in the cooking pot provided in this embodiment, the handle base 110 and the handle 120 in the handle structure 100 are separately provided. The handle base 110 is directly integrally formed with the base 210 of the pot body 200, and a holding protrusion 250 is provided on the side of the pot body 200 away from the handle base 110. When the connection between the connector 122 and the locking part 1313 becomes loose due to wear, the pot body 200 can still be moved by the cooperation of the handle base 110 and the holding protrusion 250. Moreover, with this setting, it is not necessary to replace the entire handle structure 100; only the handle 120 needs to be replaced. Furthermore, since the connector 122 is detachably connected to the handle body 121, the stable connection between the handle 120 and the handle base 110 can be maintained by replacing the connector 122, thus reducing costs.

[0071] The structure of the grip protrusion 250 can be basically similar to that of the handle base 110. In this case, a set of locking components 130 can also be installed inside the grip protrusion 250, which can be used for detachable connection with the handle 120. The grip protrusion 250 and the base 210 are integrally formed.

[0072] In actual use, the bottom of the pot body 220 is equipped with a heating element 230, and the base 210 is equipped with a power socket 240, which facilitates connecting the power cord for heating and cooking.

[0073] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0074] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the scope of protection of this application. Therefore, the patent protection scope of this application should be determined by the appended claims.

Claims

1. A handle structure, characterized in that, include: The handle base (110) is provided with a receiving cavity (1101); The handle (120) includes a handle body (121) and a connector (122) disposed on the handle body (121), the connector (122) being able to be inserted into the receiving cavity (1101); The locking assembly (130) is at least partially housed in the receiving cavity (1101) and includes a rotating member (131). The rotating member (131) has a rotating portion (1311), a trigger portion (1312), and a locking portion (1313). The trigger portion (1312) and the locking portion (1313) are both connected to the rotating portion (1311). The rotating portion (1311) is rotatably connected to the handle seat (110). The trigger portion (1312) is configured to drive the locking portion (1313) to swing via the rotating portion (1311) in response to an external force to engage with the connector (122) for locking or unlocking.

2. The handle structure according to claim 1, characterized in that, The triggering part (1312) and the locking part (1313) are located on opposite sides of the rotating part (1311).

3. The handle structure according to claim 2, characterized in that, The locking part (1313) has a limiting protrusion (141) at the end opposite to the rotating part (1311), the plug-in part (122) has a limiting groove (142), the limiting groove (142) has a guide slope (143), the limiting protrusion (141) can slide into the limiting groove (142) along the guide slope (143) to lock or slide out of the limiting groove (142) to release the lock.

4. The handle structure according to claim 3, characterized in that, When the locking mechanism is engaged, the limiting protrusion (141) presses against the guide slope (143) and makes surface contact.

5. The handle structure according to claim 1, characterized in that, The locking assembly (130) further includes an elastic element (132), which is connected to the rotating element (131) and the handle seat (110). The rotating element (131) has a tendency to rotate in the locking direction under the action of the elastic element (132).

6. The handle structure according to claim 5, characterized in that, The locking assembly (130) further includes a fitting (133), which is disposed in the receiving cavity (1101) and fixed to the handle seat (110). The rotating member (131) is rotatably connected to the fitting (133), and the elastic member (132) is pre-pressed between the rotating member (131) and the fitting (133).

7. The handle structure according to claim 6, characterized in that, The fitting (133) is provided with a guide channel (1331) and a clearance opening (1332) communicating with the guide channel (1331). The plug (122) can be inserted into the guide channel (1331), and the locking part (1313) can swing within the clearance opening (1332) to cooperate with the plug (122).

8. The handle structure according to claim 6, characterized in that, The assembly (133) has a first connecting ear (1333) protruding along a first direction, and the first connecting ear (1333) is fixedly connected to the handle seat (110); the assembly (133) has a second connecting ear (1334) protruding along a second direction, and the rotating member (131) is rotatably connected to the second connecting ear (1334); The first direction, the second direction, and the length direction of the handle (120) are set at angles to each other.

9. The handle structure according to claim 1 or 5, characterized in that, The handle base (110) is provided with an assembly hole (1102) communicating with the accommodating cavity (1101); The latch assembly (130) also includes a trigger button (135), which passes through the mounting hole (1102) and is connected to the trigger part (1312).

10. The handle structure according to claim 1, characterized in that, The handle body (121) is provided with a fixing hole (1211), and one end of the plug (122) is inserted into the fixing hole (1211) and detachably connected to the handle body (121).

11. A cooking pot, characterized in that, The invention includes a pot body (200) and a handle structure according to any one of claims 1 to 10, wherein a handle seat (110) in the handle structure (100) is connected to the pot body (200).

12. The cooking pot according to claim 11, characterized in that, The pot body (200) includes a pot body (220) and a base (210) surrounding the outer periphery of the pot body (220), and the handle seat (110) is integrally formed with the base (210).