A power cord socket structure for an electromagnetic cooker
Patent Information
- Application Number
- CN202522044135.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-23
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-09-23
AI Technical Summary
[0003]一方面,电源线插座与电磁炉底壳通过螺丝刚性锁定,导致电源线无法与整机实现可拆卸分离
[0020]本实用新型提出的一种用于电磁炉的电源线插座结构,让电源线插座不用锁螺丝即可固定在电磁炉底壳上,从而可实现电源线与电磁炉整机的分离。
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Figure CN224804380U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power cord socket technology, and in particular to a power cord socket structure for an induction cooker. Background Technology
[0002] Most induction cookers on the market use multiple screws to rigidly fix the socket to the side wall of the cooker's bottom shell. This fixing method has significant technical limitations.
[0003] On the one hand, the power cord socket is rigidly locked to the bottom shell of the induction cooker with screws, making it impossible to detach the power cord from the entire unit. In daily use, if users need to replace the power cord or repair the socket, they must first disassemble the bottom shell of the induction cooker, which is not only cumbersome and prone to damaging the sealing structure of the bottom shell, but also increases the user's daily maintenance costs.
[0004] On the other hand, when the power cord cannot be detached, extra space needs to be reserved for the power cord when storing the induction cooker, and the cord is easy to get tangled with other kitchen utensils, and the outer sheath may be worn due to compression and bending of the cord.
[0005] Therefore, as users' demands for the convenience of home appliance maintenance and the safety of cleaning continue to increase, the existing structure that relies on screws to fix power cord sockets can no longer meet actual usage needs.
[0006] Therefore, it is necessary to improve existing technologies. Utility Model Content
[0007] The present invention aims to at least partially solve one of the problems existing in the prior art. To this end, one objective of the present invention is to propose a power cord socket structure for an induction cooker, which allows the power cord socket to be fixed to the bottom shell of the induction cooker without screws, thereby enabling the separation of the power cord from the entire induction cooker.
[0008] The above objective is achieved through the following technical solution:
[0009] A power cord socket structure for an induction cooker includes a bottom shell body and a power cord socket. The bottom shell body extends axially upward to form a side wall structure, which forms an induction cooker mounting cavity. A power opening is provided on the side wall structure. Socket positioning components are formed on both sides of the power opening and on the inner side of the side wall structure. The power cord socket is engaged within the socket positioning components.
[0010] In some embodiments, the power cord socket includes a socket body and a pin assembly. The socket body can be inserted into a power cord plug to connect to a power source. The socket body includes a plug cavity formed by an axial recess to fit the power cord plug. The bottom of the plug cavity is provided with a plurality of through plug holes. The pin assembly passes through a plurality of the plug holes, and both ends of the pin assembly extend out of the sides of the plug holes respectively. The pin assembly is interference-fitted with the plug holes. A plurality of reinforcing portions are provided on the outer side of the plurality of plug holes and at the connection point with the pin assembly. The reinforcing portions are used to reinforce the connection between the pin assembly and the plug cavity.
[0011] In some embodiments, the socket body further includes a locking portion, which extends radially outward from the upper end of the plug cavity. The locking portion includes an integrally formed locking wing and a locking edge. The locking wing extends from the left and right sides of the plug cavity, and the locking edge extends from the upper and lower sides of the plug cavity.
[0012] In some embodiments, a connecting portion is provided at the top of the locking portion, the inner cavity of the connecting portion is connected to the plug cavity, and the outer edge is adapted to the inner circumference of the power opening, and the connecting portion can be inserted into the power opening.
[0013] In some embodiments, the socket positioning assembly includes a first positioning assembly and a second positioning assembly, wherein the first positioning assembly is located in front of the second positioning assembly.
[0014] In some embodiments, the first positioning component includes a first connecting group and a second connecting group. The first connecting group is disposed on both sides of the power opening and extends from the inside of the sidewall structure. The side of the first connecting group away from the power opening is bent in opposite directions to form the second connecting group. The width between the first connecting groups is greater than the distance between the two positioning wings. The distance between the sidewall structure and the second connecting group is greater than the thickness of the positioning wings.
[0015] In some embodiments, the second positioning component includes a third connecting group, the second connecting group extending outward to form the third connecting group, and the width between the third connecting groups is greater than the width of the outer side of the plug cavity.
[0016] In some embodiments, the second positioning component further includes a clamping component connected to the third connecting group. The clamping component includes clamping posts, with reinforcing plates provided outward on both sides of the two clamping posts. An inclined hook portion is provided inward at the top of the two clamping posts. The inclined hook portion extends downward at an angle along the direction of the line connecting the centers of the two clamping posts. The width between the two clamping posts is greater than the outer width of the plug cavity. The distance between the hook tips of the two inclined hook portions is smaller than the outer width of the plug cavity. The height of the hook tips of the inclined hook portions is greater than the height of the plug cavity.
[0017] In some embodiments, the socket positioning assembly further includes a reinforcing pad at the bottom of the first positioning assembly and the second positioning assembly, and a limiting pad is provided on the reinforcing pad and between the two clamping assemblies to restrict the movement of the socket body.
[0018] In some embodiments, the socket body is made of insulating material, and the pin assembly is made of metal.
[0019] Compared with the prior art, the present invention has at least the following beneficial effects:
[0020] This utility model proposes a power cord socket structure for induction cookers, which allows the power cord socket to be fixed to the bottom shell of the induction cooker without screws, thereby enabling the power cord to be separated from the entire induction cooker. Attached Figure Description
[0021] Figure 1 This is a top view of the power cord socket structure in the embodiment;
[0022] Figure 2 yes Figure 1 A magnified view of part A in the middle;
[0023] Figure 3 This is a three-dimensional schematic diagram of the power cord socket structure in the embodiment;
[0024] Figure 4 yes Figure 3 A magnified view of part B in the middle section;
[0025] Figure 5 This is a three-dimensional schematic diagram of the socket positioning component in the embodiment;
[0026] Figure 6 yes Figure 5 A magnified view of part C in the middle;
[0027] Figure 7 This is a three-dimensional schematic diagram of the main body of the bottom shell in the embodiment;
[0028] Figure 8 This is a three-dimensional schematic diagram of the power cord socket in the embodiment;
[0029] Figure 9 This is an exploded view of the power cord socket in the embodiment.
[0030] In the diagram: 1. Bottom shell main body; 2. Power cord socket; 3. Side wall structure; 31. Power opening; 4. Socket positioning assembly; 41. First positioning assembly; 411. First connecting group; 412. Second connecting group; 42. Second positioning assembly; 421. Third connecting group; 422. Clamping assembly; 4221. Clamping post; 4222. Reinforcing plate; 4223. Angled hook; 43. Reinforcing pad; 431. Limiting pad; 5. Socket main body; 51. Plug cavity; 511. Plug hole; 52. Reinforcing part; 53. Locking part; 531. Locking wing; 532. Locking edge; 54. Connecting part; 6. Pin assembly. Detailed Implementation
[0031] The following embodiments illustrate the present invention, but the present invention is not limited to these embodiments. Modifications to the specific implementation of the present invention or equivalent substitutions for some technical features, without departing from the spirit of the present invention, should all be covered within the scope of the technical solution claimed by the present invention.
[0032] like Figure 1-9 As shown, this embodiment provides a power cord socket structure for an induction cooker. The induction cooker includes a bottom shell body 1 and a power cord socket 2. The bottom shell body 1 extends axially upward to form a side wall structure 3. The side wall structure 3 forms an induction cooker mounting cavity. A power opening 31 is provided on the side wall structure 3. Socket positioning components 4 are formed on both sides of the power opening 31 and on the inner side of the side wall structure 3. The power cord socket 2 is engaged in the socket positioning components 4.
[0033] This utility model proposes a power cord socket structure for induction cookers, which allows the power cord socket to be fixed to the bottom shell of the induction cooker without screws, thereby enabling the power cord to be separated from the entire induction cooker.
[0034] Specifically, the power cord socket 2 includes a socket body 5 and a pin assembly 6. The socket body 5 can be inserted into a power cord plug to connect to the power source. The socket body 5 includes a plug cavity 51 formed axially inward to fit the power cord plug. The bottom of the plug cavity 51 is provided with several through plug holes 511. The pin assembly 6 passes through several plug holes 511, and both ends of the pin assembly 6 extend out from the sides of the plug holes 511. The pin assembly 6 is interference-fitted with the plug holes 511. Several reinforcing parts 52 are provided on the outer side of the several plug holes 511 at the connection point with the pin assembly 6. The reinforcing parts 52 are used to reinforce the connection between the pin assembly 6 and the plug cavity 51. The design of the socket body 5 allows users to easily detach and reattach the power cord plug from the induction cooker.
[0035] Furthermore, the socket body 5 also includes a locking portion 53, which extends radially outward from the upper end of the plug cavity 51. The locking portion 53 includes an integrally formed locking wing 531 and a locking edge 532. The locking wing 531 extends from the left and right sides of the plug cavity 51, and the locking edge 532 extends from the upper and lower sides of the plug cavity 51. The locking wing 531 increases the area of the socket body 5 that can be locked in place. During production, the manufacturer can use the locking portion 53 to lock the socket body 5 into the socket positioning assembly 4, reducing the difficulty of production.
[0036] Specifically, a connecting part 54 is provided at the top of the locking part 53. The inner cavity of the connecting part 54 is connected to the plug cavity 51, and its outer edge is adapted to the inner circumference of the power opening 31. The connecting part 54 can be inserted into the power opening 31. The insertion of the connecting part 54 into the power opening 31 can, on the one hand, fill the gap between the power opening 31 and the plug cavity 51, thereby preventing oil and water from entering the bottom shell body 1. On the other hand, it allows the socket body 5 to connect better with the power opening 31, making it convenient for the power cord plug to be inserted into the power cord socket 2.
[0037] Furthermore, the socket positioning assembly 4 includes a first positioning assembly 41 and a second positioning assembly 42, with the first positioning assembly 41 located in front of the second positioning assembly 42. This provides multiple positioning for the socket body 5, making the power cord socket 2 more stable overall.
[0038] Furthermore, the first positioning component 41 includes a first connecting group 411 and a second connecting group 412. The first connecting group 411 is disposed on both sides of the power opening 31 and extends from the inside of the side wall structure 3. The side of the first connecting group 411 away from the power opening 31 is bent in opposite directions to form the second connecting group 412. The width between the first connecting groups 411 is greater than the distance between the two locking wings 531, and the distance between the side wall structure 3 and the second connecting group 412 is greater than the thickness of the locking wings 531. This arrangement allows the locking wings 531 to engage within the first positioning component 41, expanding the contact between the first positioning component 41 and the socket body 5, and increasing the stability of their connection.
[0039] Preferably, the second positioning component 42 includes a third connecting group 421, which is formed by the outward extension of the second connecting group 412. The width between the third connecting groups 421 is greater than the outer width of the plug cavity 51. The second positioning component 42 can fix the plug cavity 51.
[0040] Specifically, the second positioning component 42 further includes a clamping component 422, which is connected to the third connecting group 421. The clamping component 422 includes clamping posts 4221, with reinforcing plates 4222 extending outward from both sides of the two clamping posts 4221. An inclined hook portion 4223 is provided inward from the top of the two clamping posts 4221. The inclined hook portion 4223 extends downward at an angle along the line connecting the centers of the two clamping posts 4221. The width between the two clamping posts 4221 is greater than the outer width of the plug cavity 51, the distance between the hook tips of the two inclined hook portions 4223 is smaller than the outer width of the plug cavity 51, and the height of the hook tips of the inclined hook portions 4223 is higher than the height of the plug cavity 51. The clamping assembly 422 has slight elasticity. During production, the plug cavity 51 can be gently pressed down above the clamping assembly 422. Guided by the angled hook portion 4223, the plug cavity 51 can slide into the clamping post 4221. Thus, the plug cavity 51 is fixed between the clamping posts 4221 and the angled hook portion 4223 on both sides.
[0041] Furthermore, the socket positioning assembly 4 also includes a reinforcing pad 43. The reinforcing pad 43 is located at the bottom of the first positioning assembly 41 and the second positioning assembly 42. A limiting pad 431 is provided on the reinforcing pad 43 and between the two clamping assemblies 422 to restrict the movement of the socket body 5. The reinforcing pad 43 increases the thickness of the bottom shell body 1 and strengthens the connection between the socket positioning assembly 4 and the bottom shell body 1. In addition, the integral molding of the first positioning assembly 41, the second positioning assembly 42, the reinforcing pad 43 and the bottom shell body 1 allows each delicate component to support each other, making the socket positioning assembly 4 as a whole firm and better able to engage the power cord socket 2.
[0042] The socket body 5 is made of insulating material, while the pin assembly 6 is made of metal. This design allows users to safely insert or remove the power cord plug.
[0043] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and these all fall within the protection scope of this utility model.
Claims
1. A power cord socket structure for an induction cooker, characterized in that: The device includes a bottom shell body (1) and a power cord socket (2). The bottom shell body (1) extends axially upward to form a side wall structure (3). The side wall structure (3) forms an induction cooker mounting cavity. A power opening (31) is provided on the side wall structure (3). A socket positioning component (4) is formed on both sides of the power opening (31) and on the inner side of the side wall structure (3). The power cord socket (2) is fitted into the socket positioning component (4).
2. The power cord socket structure for an induction cooker according to claim 1, characterized in that: The power cord socket (2) includes a socket body (5) and a pin assembly (6). The socket body (5) can be plugged into the power cord to connect to the power source. The socket body (5) includes a plug cavity (51) that is recessed along the axial direction to adapt to the power cord plug. The bottom of the plug cavity (51) is provided with a plurality of through plug holes (511). The pin assembly (6) passes through a plurality of the plug holes (511) and the two ends of the pin assembly (6) extend out of the two sides of the plug holes (511) respectively. The pin assembly (6) is press-fitted to the plug holes (511). A plurality of reinforcing parts (52) are provided on the outer side of the plurality of plug holes (511) and at the connection with the pin assembly (6). The reinforcing parts (52) are used to reinforce the connection between the pin assembly (6) and the plug cavity (51).
3. The power cord socket structure for an induction cooker according to claim 2, characterized in that: The socket body (5) also includes a locking part (53), which extends radially outward from the upper end of the plug cavity (51). The locking part (53) includes an integrally formed locking wing (531) and a locking edge (532). The locking wing (531) extends from the left and right sides of the plug cavity (51), and the locking edge (532) extends from the upper and lower sides of the plug cavity (51).
4. The power cord socket structure for an induction cooker according to claim 3, characterized in that: A connecting part (54) is provided at the top of the locking part (53). The inner cavity of the connecting part (54) is connected to the plug cavity (51), and the outer edge is adapted to the inner circumference of the power opening (31). The connecting part (54) can be inserted into the power opening (31).
5. The power cord socket structure for an induction cooker according to claim 4, characterized in that: The socket positioning component (4) includes a first positioning component (41) and a second positioning component (42), with the first positioning component (41) located in front of the second positioning component (42).
6. The power cord socket structure for an induction cooker according to claim 5, characterized in that: The first positioning component (41) includes a first connecting group (411) and a second connecting group (412). The first connecting group (411) is disposed on both sides of the power opening (31) and extends from the inside of the side wall structure (3). The first connecting group (411) is bent in opposite directions on the side away from the power opening (31) to form the second connecting group (412). The width between the first connecting groups (411) is greater than the distance between the two positioning wings (531). The distance between the side wall structure (3) and the second connecting group (412) is greater than the thickness of the positioning wings (531).
7. A power cord socket structure for an induction cooker according to claim 6, characterized in that: The second positioning component (42) includes a third connecting group (421), which extends outward from the second connecting group (412) to form the third connecting group (421), and the width between the third connecting groups (421) is greater than the width of the outer side of the plug cavity (51).
8. A power cord socket structure for an induction cooker according to claim 7, characterized in that: The second positioning component (42) further includes a clamping component (422), which is connected to the third connecting group (421). The clamping component (422) includes clamping posts (4221), and reinforcing plates (4222) are provided outward on both sides of the two clamping posts (4221). An inclined hook portion (4223) is provided inward at the top of the two clamping posts (4221). The inclined hook portion (4223) extends downward along the direction of the line connecting the centers of the two clamping posts (4221). The width between the two clamping posts (4221) is greater than the outer width of the plug cavity (51). The distance between the hook tips of the two inclined hook portions (4223) is smaller than the outer width of the plug cavity (51). The height of the hook tip of the inclined hook portion (4223) is higher than the height of the plug cavity (51).
9. A power cord socket structure for an induction cooker according to claim 8, characterized in that: The socket positioning assembly (4) further includes a reinforcing pad (43) at the bottom of the first positioning assembly (41) and the second positioning assembly (42). A limiting pad (431) is provided on the reinforcing pad (43) and between the two clamping assemblies (422) to restrict the movement of the socket body (5).
10. A power cord socket structure for an induction cooker according to any one of claims 2-8, characterized in that: The socket body (5) is made of insulating material, and the pin assembly (6) is made of metal.