CN220512728U - Feeding device and cooking equipment - Google Patents

Feeding device and cooking equipment Download PDF

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Publication number
CN220512728U
CN220512728U CN202322240571.XU CN202322240571U CN220512728U CN 220512728 U CN220512728 U CN 220512728U CN 202322240571 U CN202322240571 U CN 202322240571U CN 220512728 U CN220512728 U CN 220512728U
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China
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mounting
hole
limiting
sub
piece
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CN202322240571.XU
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Chinese (zh)
Inventor
李龙
杨建成
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Oak Deer Robotics Jiangsu Co Ltd
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Oak Deer Robotics Jiangsu Co Ltd
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Priority to CN202322240571.XU priority Critical patent/CN220512728U/en
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Abstract

The application discloses a feeding device and cooking equipment. The feeding device comprises a mounting piece and a joint assembly. The mounting member is provided with a mounting hole. The joint component is detachably clamped in the mounting hole. The joint component comprises a connecting piece and a limiting piece, wherein the connecting piece is used for connecting a pipeline for conveying liquid, the limiting piece is arranged on one side of the connecting piece, and the limiting piece can be switched between a first position of the mounting hole and a second position of the mounting hole. The connector assembly is movable within the mounting hole with the limiter in the first position. And under the condition that the limiting piece is positioned at the second position, the rest sides of the connecting piece are in interference with the side walls corresponding to the mounting holes, and the limiting piece is in interference with the side walls corresponding to the mounting holes. Therefore, the limiting piece can prevent the connecting piece from falling out of the mounting hole, the joint assembly is more firmly combined with the mounting piece, and the joint assembly is not easy to fall off from the mounting piece when liquid flows outwards.

Description

Feeding device and cooking equipment
Technical Field
The application relates to the technical field of cooking, and more particularly relates to a feeding device and cooking equipment.
Background
Cooking devices, such as a cooker, are typically capable of automatically dispensing liquid into the pot through a liquid dispensing device to season semi-finished dishes within the pot. Most of the existing joints on the liquid feeding device are integrally designed or fixedly designed, so that the parts are difficult to detach and replace when damaged, and meanwhile, the detachable parts are easy to fall off from the mounting parts, so that the normal use of the cooking equipment is affected.
Disclosure of Invention
The embodiment of the application provides a feeding device and cooking equipment, and detachable part that is used for at least solving drops the problem from the installation part easily.
The feeding device of the embodiment of the application comprises a mounting piece and a joint assembly. The mounting member is provided with a mounting hole. The connector assembly is detachably clamped in the mounting hole, the connector assembly comprises a connecting piece and a limiting piece, the connecting piece is used for being connected with a pipeline for conveying liquid, the limiting piece is arranged on one side of the connecting piece, and the limiting piece can be switched between a first position of the mounting hole and a second position of the mounting hole. The connector assembly is movable within the mounting hole with the limiter in the first position. And under the condition that the limiting piece is positioned at the second position, the rest sides of the connecting piece are in interference with the side walls corresponding to the mounting holes, and the limiting piece is in interference with the side walls corresponding to the mounting holes.
In some embodiments, at least one side of the connecting piece except the side where the limiting piece is located is provided with a clamping portion, and the clamping portion is used for being combined with the side wall of the mounting hole so that the joint assembly is clamped in the mounting hole.
In some embodiments, the limiter comprises a fixed portion, an extending portion, and a limiting portion. The fixing part is connected with one side of the connecting piece. One end of the extension part is connected with the fixing part. The limiting part is connected with the other end of the extending part, and one side of the limiting part is in contact with one side of the connecting piece. Under the condition that the joint assembly is installed in the installation hole, the limiting part penetrates through the installation hole, and the other side of the limiting part is in contact with the side wall of the installation hole.
In certain embodiments, the mounting hole includes a first sub-hole and a second sub-hole in communication. The second sub-hole is used for giving way to the limiting piece in the process of installing the joint assembly, and the first sub-hole is used for limiting the connecting piece and the limiting piece when the joint assembly is installed.
In certain embodiments, the extension is resilient. Under the condition that the extending part is stressed and deformed, the limiting part can swing relative to the fixing part so as to relieve the interference between the limiting part and the side wall corresponding to the mounting hole.
In some embodiments, the extension includes first and second sub-portions that are folded into contact. The first sub-portion is connected with the limiting portion, and the second sub-portion is connected with the fixing portion. And the second sub-part corresponds to the second sub-hole along the direction that the fixing part points to the limiting part.
In some embodiments, the mounting holes comprise a plurality of connector assemblies, the plurality of mounting holes respectively correspond to the plurality of connector assemblies, and the connector assemblies are detachably clamped in the corresponding mounting holes. The plurality of joint assemblies are arranged in a plurality of rows in a spaced straight line, and each row of the joint assemblies corresponds to a space between two adjacent joint assemblies in adjacent rows of the joint assemblies.
In some embodiments, the sides of the connector assemblies of adjacent rows that are not provided with the stop members are disposed opposite.
In some embodiments, the connector has opposite ends respectively located on opposite sides of the mounting member, and the joint assembly further includes a pipe passing through the opposite ends of the connector.
The cooking equipment of the embodiment of the application comprises a storage component and the feeding device of any embodiment, wherein the storage component is used for containing liquid, and the feeding device is communicated with the storage component.
In the feeding device and the cooking equipment, the joint assembly can be detachably clamped in the mounting hole to be connected with or separated from the mounting piece, and the mounting hole can be reserved for the limiting piece to enable the connecting piece to extend into the mounting hole in the process of mounting the joint assembly. Under the condition that the installation of the joint assembly is completed, the connecting piece can be abutted against the side wall of the installation hole, and the limiting piece can be abutted against the side wall of the connecting piece and the side wall of the installation hole respectively so as to prevent the connecting piece from falling out of the installation hole. At this time, the joint component is more firmly combined with the mounting piece, and the joint component is not easy to fall off from the mounting piece when the liquid flows outwards.
Additional aspects and advantages of embodiments of the application will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of embodiments of the application.
Drawings
The foregoing and/or additional aspects and advantages of the present application will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which:
FIG. 1 is a schematic perspective view of a dosing device according to certain embodiments of the present application;
FIG. 2 is a schematic perspective view of a part of the structure of the feeder shown in FIG. 1;
FIG. 3 is a schematic perspective view of a joint assembly and piping of the feeder apparatus shown in FIG. 1;
FIG. 4 is a schematic plan view of the fitting assembly and tubing shown in FIG. 3 from another perspective;
fig. 5 is a schematic plan view of a cooking apparatus according to some embodiments of the present application.
Description of main reference numerals:
1000. a cooking device; 200. a storage assembly; 300. a pot body; 100. a feeding device; A. a first position; B. a second position; x, a first direction; y, second direction; z, third direction; 10. a mounting member; 101. a first side of the mount; 103. a second side of the mount; 11. a mounting hole; 111. a first sub-aperture; 113. a second sub-aperture; 13. a fixing member; 30. a joint assembly; 31. a connecting piece; 3101. a first side of the connector; 3102. a second side of the connector; 3103. a first end of the connector; 3104. a second end of the connector; 3105. a third side of the connector; 3106. a fourth side of the connector; 3107. a through hole; 311. an engagement portion; 3111. a first engagement portion; 3113. a second engaging portion; 33. a limiting piece; 331. a fixing part; 333. an extension; 3331. a first sub-section; 3333. a second sub-section; 335. a restriction portion; 50. a pipeline.
Detailed Description
Embodiments of the present application are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are exemplary only for explaining the embodiments of the present application and are not to be construed as limiting the embodiments of the present application.
In the description of the present application, it should be understood that the terms "thickness," "upper," "top," "bottom," "inner," "outer," and the like indicate an orientation or a positional relationship based on that shown in the drawings, merely for convenience of description and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present application. And the terms "first", "second" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include one or more features. In the description of the present application, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
In the description of the present application, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly and may be fixedly connected, or detachably connected, or integrally connected, in one example; may be mechanically or electrically connected, or may be in communication with each other; either directly or indirectly through intermediaries, may be in communication with each other between two elements or in an interaction relationship between the two elements.
Referring to fig. 1 and 2, a feeding device 100 of the present application includes a mounting member 10 and a joint assembly 30. The mounting member 10 is provided with mounting holes 11. The joint assembly 30 is detachably clamped in the mounting hole 11, the joint assembly 30 comprises a connecting piece 31 and a limiting piece 33, the connecting piece 31 is used for being connected with a pipeline 50 for conveying liquid, the limiting piece 33 is arranged on one side of the connecting piece 31, and the limiting piece 33 can be switched between a first position A of the mounting hole 11 and a second position B of the mounting hole 11. With the stop 33 in the first position a, the joint assembly 30 is able to move within the mounting hole 11. In the case where the stopper 33 is at the second position B, the remaining sides of the connecting member 31 are abutted against the side walls corresponding to the mounting holes 11, and the stopper 33 is abutted against the side walls corresponding to the mounting holes 11.
In the feeding device 100 of the present application, the joint assembly 30 is detachably clamped in the mounting hole 11 to be connected with or separated from the mounting member 10, and in the process of mounting the joint assembly 30, the mounting hole 11 can be unseated by the limiting member 33 so that the connecting member 31 extends into the mounting hole 11. In the case that the installation of the joint assembly 30 is completed, the connection member 31 can collide with the sidewall of the installation hole 11, and the stopper 33 can collide with the connection member 31 and the sidewall of the installation hole 11, respectively, to prevent the connection member 31 from being separated from the installation hole 11. At this time, the joint assembly 30 is more firmly combined with the mounting member 10, and the joint assembly 30 is not easily detached from the mounting member 10 when the liquid flows outward.
The dosing device 100 is further described below with reference to the drawings.
Referring to fig. 2 and 3, in some embodiments, the mounting member 10 is a plate-like structure for fixing the position of the joint assembly 30 and mounting the joint assembly 30. The mounting member 10 includes a first side 101 and a second side 103 opposite to each other, wherein the first direction X may be a direction in which the first side 101 of the mounting member 10 points toward the second side 103 of the mounting member 10, or a direction in which the second side 103 of the mounting member 10 points toward the first side 101 of the mounting member 10, that is, a thickness direction of the mounting member 10. In the first direction X, the mounting hole 11 penetrates the mount 10. The joint assembly 30 can extend into the mounting hole 11, and in the case that the joint assembly 30 is mounted on the mounting member 10, the joint assembly 30 can be combined with and/or abutted against the side wall of the mounting hole 11, so that the joint assembly 30 is more firmly connected with the mounting member 10. After the joint assembly 30 is mounted to the mount 10, the feeding device 100 can be integrally mounted to other structures of the cooking apparatus 1000 (shown), such as: and a storage assembly 200. At this time, the liquid stored in the storage module 200 can flow out from the feeder 100, but the liquid does not leak out from the connection between the feeder 100 and the mount 10.
Further, in some embodiments, the mounting holes 11 include a plurality, the joint assemblies 30 include a plurality, and the plurality of mounting holes 11 correspond to the plurality of joint assemblies 30, respectively, and each joint assembly 30 may be used to transmit a different liquid, or the plurality of joint assemblies 30 may be used to transmit the same liquid. Each of the joint assemblies 30 is detachably caught in the corresponding mounting hole 11, and in case that the structure of the joint assembly 30 is damaged, a user can detach the damaged joint assembly 30 from the mounting member 10 for repair or directly replace the new joint assembly 30. In the case of a longer service life of the feeding device 100, the user can also remove and clean the joint assembly 30 together to avoid clogging of the joint assembly 30 and also to avoid contamination of the transferred liquid by the contaminated joint assembly 30.
Specifically, in some embodiments, the plurality of joint assemblies 30 are arranged at intervals and can be arranged in a plurality of rows along a straight line, and the arrangement direction of the plurality of joint assemblies 30 is the second direction Y, that is, the length direction of the mounting member 10. The arrangement direction of the multi-row connector assembly 30 is a third direction Z, which is the width direction of the mounting member 10, the second direction Y is perpendicular to the third direction Z, and both the second direction Y and the third direction Z are perpendicular to the first direction X.
More specifically, in some embodiments, at least one joint assembly 30 of each row of joint assemblies 30 can correspond to one joint assembly 30 of an adjacent row. For example: two adjacent rows of connector assemblies 30 are a first row and a second row, respectively, in one example, one of the connector assemblies 30 in the first row can correspond to any one of the connector assemblies 30 in the second row, while the other connector assembly 30 in the first row can not correspond to any one of the connector assemblies 30 in the second row. In another example, each of the header assemblies 30 in the first row can correspond to one of the header assemblies 30 in the second row. Wherein a first connector assembly 30 in a first row may correspond to either a first connector assembly 30 in a second row or a last connector assembly 30 in the second row.
In other embodiments, at least one joint assembly 30 in each row of joint assemblies 30 can correspond to a spacing between two adjacent joint assemblies 30 in adjacent rows of joint assemblies 30. For example: the adjacent two rows of header assemblies 30 are a first row and a second row, respectively, and in one example, the number of header assemblies 30 in the first row is the same as the number of header assemblies 30 in the second row. At this time, the position of the joint assemblies 30 in at least one first row corresponds to the clearance of the side of the first joint assembly 30 in the second row away from the second joint assembly 30. Alternatively, the location of at least one of the first row of tab assemblies 30 corresponds to the void on the side of the penultimate tab assembly 30 in the second row that is remote from the penultimate tab assembly 30. Alternatively, the location of the connector assemblies 30 in at least one second row corresponds to the spacing of the first connector assembly 30 in the first row on the side remote from the second connector assembly 30. Alternatively, the position of the joint assemblies 30 in at least one second row corresponds to the spacing of the penultimate joint assembly 30 in the first row on the side remote from the penultimate joint assembly 30. In another example, the number of header assemblies 30 in the first row and the number of header assemblies 30 in the second row are different. At this time, the position of at least one of the joint assemblies 30 in the first row corresponds to the interval between adjacent two joint assemblies 30 of the second row. Alternatively, the position of the joint assemblies 30 in at least one second row corresponds to the spacing between adjacent two joint assemblies 30 of the first row. The staggered arrangement of the joint assemblies 30 of two adjacent rows can enable the joint assemblies 30 to avoid each other in the installation process, so that collision is avoided. Meanwhile, the staggered joint assemblies 30 can also enable the positions of the flowing-out liquids to avoid each other, so that different liquids are prevented from being mixed and polluting the joint assemblies 30.
More specifically, in some embodiments, the sides of the adjacent rows of the joint assemblies 30 where the stoppers 33 are not provided are disposed opposite to each other, and in this case, when the joint assemblies 30 are detached or when the joint assemblies 30 are installed, the moving directions of the joint assemblies 30 of the adjacent rows are opposite, thereby enabling easier detachment of the joint assemblies 30.
Still further, in some embodiments, the mounting hole 11 includes a first sub-hole 111 and a second sub-hole 113 that communicate. The inner contour dimensions of the first sub-aperture 111 and the inner contour dimensions of the second sub-aperture 113 are different. With the joint assembly 30 installed in the mounting hole 11, the connection member 31 is located in the first sub-hole 111 and the side wall of the connection member 31 can collide with the inner wall of the first sub-hole 111. The limiting member 33 can extend into the first sub-hole 111 and respectively abut against the connecting member 31 and the inner wall of the side of the first sub-hole 111 not contacted with the connecting member 31. At this time, the first sub-hole 111 can limit the connecting member 31 and the limiting member 33 when the joint assembly 30 is mounted, so as to prevent the joint assembly 30 from falling out of the first sub-hole 111. Since the limiting member 33 is mounted on the connecting member 31, the limiting member 33 protrudes from the surface of the connecting member 31, and when the joint assembly 30 is mounted, in order to enable the joint assembly 30 to extend into the mounting hole 11, it is necessary to provide the second sub-hole 113 matched with the limiting member 33, and the inner dimension of the second sub-hole 113 is at least greater than the outer dimension of the cross section of the portion of the structure in which the limiting member 33 can extend into the second sub-hole 113. The second sub-aperture 113 allows for yielding of the stop 33 such that the stop 33 can extend into the second sub-aperture 113 and move from the second sub-aperture 113 into the first sub-aperture 111 to limit the position of the joint assembly 30 relative to the mount 10. During installation of the joint assembly 30, the joint assembly 30 extends into the mounting hole 11 from the second side 103 of the mounting member 10 in the forward direction of the first direction X, or the joint assembly 30 extends into the mounting hole 11 from the first side 101 of the mounting member 10 in the reverse direction of the first direction X, at which time the connecting member 31 extends into the first sub-hole 111 and is partially located in the second sub-hole 113, and a portion of the structure of the stopper 33 can extend into the second sub-hole 113. When the connecting member 31 moves into the first sub-hole 111, a part of the structure of the limiting member 33 can move from the second sub-hole 113 into the first sub-hole 111, and at this time, the limiting member 33 limits the connecting member 31, and the connecting member 31 abuts against and/or is combined with the inner wall of the first sub-hole 111, so that the joint assembly 30 is mounted on the mounting member 10.
Still further, in some embodiments, at least one securing member 13 is provided on the mounting member 10, the securing member 13 being capable of connecting the mounting member 10 to other structures of the cooking apparatus 1000 (shown in fig. 5). The types of the fixing members 13 include, but are not limited to, screws, bolts, adhesive structures, and the like. The mounting member 10 may be fixedly connected to other structures of the cooking apparatus 1000 through the fixing member 13 in a non-detachable manner, or may be fixedly connected to other structures of the cooking apparatus 1000 through the fixing member 13 in a detachable manner. In the case where the fixing member 13 is a bolt, in some embodiments, the fixing member 13 can be penetrated at a position where the mounting member 10 is not provided with the mounting hole 11. In other embodiments, the securing member 13 can pass through one of the mounting holes 11 to secure the mounting member 10 to other structures of the cooking apparatus 1000.
Referring to fig. 2 and 3, in some embodiments, the joint assembly 30 is configured to direct the flow of a liquid, including but not limited to water, oil, aqueous solutions of liquid or solid flavors, etc., through the joint assembly 30. The liquid that flows out may be either liquid material that is added to the pan 300 (shown in fig. 5) of the cooking apparatus 1000 or the remaining liquid material that is desired to be drained from the storage assembly 200. Wherein the connection member 31 can be coupled with the sidewall of the mounting hole 11 such that the connection member 31 is mounted on the mounting member 10. The stopper 33 may abut against a side wall of the mounting hole 11 which is not in contact with the connector 31, so that the entire joint assembly 30 is engaged with the mounting hole 11.
Further, in some embodiments, the connection member 31 of the joint assembly 30 is a block structure capable of abutting at least two inner walls of the first sub-hole 111. The connector 31 can be mounted to the mount 10 in the first direction X, and the liquid can flow out through the connector 31. The attachment member 31 includes first and second opposite sides 3101 and 3102, first and second opposite ends 3103 and 3104, and third and fourth opposite sides 3105 and 3106. With the joint assembly 30 mounted to the mount 10, the first end 3103 of the connector 31 and the second end 3104 of the connector 31 are disposed opposite each other in the first direction X and on opposite sides of the mount 10, respectively. That is, in some embodiments, the first end 3103 of the connector 31 is located on the first side 101 of the mounting member 10 and the second end 3104 of the connector 31 is located on the second side 103 of the mounting member 10. The first side 3101 of the connector 31 and the second side 3102 of the connector 31 are disposed opposite in the third direction Z, and the third side 3105 of the connector 31 and the fourth side 3106 of the connector 31 are disposed opposite in the second direction Y of the mounting member 10. The stopper 33 is disposed on the first side 3101 of the connector 31, and the connector 31 may further be provided with a through hole 3107, wherein the through hole 3107 penetrates through the first end 3103 of the connector 31 and the second end 3104 of the connector 31, and liquid can flow from one end to the other end of the connector 31 through the through hole 3107.
Still further, referring to fig. 4, in some embodiments, at least one side of the connecting member 31 other than the side of the limiting member 33 is provided with an engaging portion 311, that is, the engaging portion 311 can be disposed on the second side 3102 of the connecting member 31, the third side 3105 of the connecting member 31, and the fourth side 3106 of the connecting member 31. When the joint assembly 30 is mounted in the mounting hole 11, the engagement portion 311 can be coupled with the side wall of the mounting hole 11 so that the joint assembly 30 engages in the mounting hole 11 and movement of the joint assembly 30 in the first direction X is restricted.
Specifically, in some embodiments, the engaging portion 311 may include a first engaging portion 3111, where the first engaging portion 3111 is located on the second side 3102 of the connector 31, i.e., along the third direction Z, and the first engaging portion 3111 is disposed on a side of the connector 31 away from the limiter 33. When the joint assembly 30 is mounted to the mount 10, the first engagement portion 3111 can be engaged with a side wall of the first sub-hole 111 of the mounting hole 11 on a side away from the stopper 33 in the third direction Z, so that the connector 31 can be mounted within the first sub-hole 111. In some embodiments, the first engaging portion 3111 is a groove formed to extend from the second side 3102 of the connecting member 31 toward the first side 3101 of the connecting member 31 along the third direction Z, and a sidewall of the first sub-hole 111 can extend into the groove to couple the connecting member 31 with the mounting member 10. In other embodiments, the first engaging portion 3111 is a protrusion extending from the second side 3102 of the connector 31 away from the connector 31 in the third direction Z, and a groove is formed on a sidewall of the first sub-hole 111 in the third direction Z away from the connector 31, and the first engaging portion 3111 can be combined with the groove to combine the connector 31 with the mounting member 10.
More specifically, in some embodiments, the engaging portion 311 may further include a second engaging portion 3113, where the second engaging portion 3113 is located on at least one side wall of the connector 31 that abuts against the side wall of the first sub-hole 111, that is, where the second engaging portion 3113 has one, the second engaging portion 3113 is provided on the third side 3105 of the connector 31 or the fourth side 3106 of the connector 31. When there are two second engagement portions 3113, the second engagement portions 3113 are provided on the third side 3105 of the connector 31 and the fourth side 3106 of the connector 31. When the joint assembly 30 is mounted to the mount 10, the second engagement portion 3113 can be engaged with at least one of two side walls of the mounting hole 11 opposite in the second direction Y to mount the joint assembly 30 in the mounting hole 11. In some embodiments, along the second direction Y, the second engagement portion 3113 is a groove formed to extend from the third side 3105 of the connecting member 31 and/or the fourth side 3106 of the connecting member 31 toward the connecting member 31, and a sidewall of the first sub-hole 111 can extend into the groove to couple the connecting member 31 with the mounting member 10. In other embodiments, the second engagement portion 3113 is a protrusion extending from the third side 3105 of the connector 31 and/or the fourth side 3106 of the connector 31 in a direction away from the connector 31 along the second direction Y. Along the second direction Y, a groove is formed on a sidewall of the first sub-hole 111 corresponding to the second engaging portion 3113 in a direction away from the connecting member 31, and the second engaging portion 3113 can be coupled to the groove to couple the connecting member 31 to the mounting member 10.
Still further, in some embodiments, the stopper 33 is a structure that restricts movement of the connecting member 31 in the third direction Z. The material of the stopper 33 includes, but is not limited to, metal, plastic, silica gel, or the like. Specifically, the stopper 33 includes a fixing portion 331, an extending portion 333, and a restricting portion 335. The fixing portion 331, the extending portion 333, and the restricting portion 335 are sequentially connected. The fixing portion 331 is used for connecting the limiting member 33 to the connecting member 31, the extending portion 333 is used for connecting the fixing portion 331 and the engaging portion 311 and enabling the limiting portion 335 to swing relative to the fixing portion 331 through deformation, and the limiting portion 335 can respectively abut against the side wall of the first sub-hole 111 and the first side 3101 of the connecting member 31, so that the joint assembly 30 is clamped in the mounting hole 11 and the position of the joint assembly 30 relative to the mounting member 10 in the third direction Z is fixed, and the joint assembly 30 is prevented from falling off.
More specifically, the fixing portion 331 has a substantially sheet-like structure, and the fixing portion 331 and the first side 3101 of the connector 31 may be detachably connected by a screw connection, a snap connection, a screw connection, or the like, or may be non-detachably connected by a glue connection, an interference connection, or the like. The extension 333 is a sheet structure, and the thickness direction of the extension 333 is the second direction Y. One end of the extension 333 is connected to the fixing portion 331. The other end of the extension 333 is connected to the restriction 335. One side of the restriction portion 335 abuts against one side of the connection member 31, and, when the joint assembly 30 is mounted in the mounting hole 11, the height of the longitudinal section of the restriction member 33 along the third direction Z can be adapted to the distance between the first side 3101 of the connection member 31 and the side wall of the first sub-hole 111 away from the connection member 31, so that the other side of the restriction portion 335 abuts against the side wall of the mounting hole 11 when the restriction portion 335 is inserted into the first sub-hole 111.
More specifically, in some embodiments, the extension portion 333 has elasticity, and since there is no fixed connection relationship between the restriction portion 335 and the connecting member 31, the extension portion 333 can swing the restriction portion 335 by deformation. In the state where the extension 333 is not deformed and the joint assembly 30 is mounted to the mounting hole 11, the restriction portion 335 is located in the first sub-hole 111. When the extension portion 333 is deformed by force, the restricting portion 335 can swing relative to the fixing portion 331, at this time, the restricting portion 335 moves from the first sub-hole 111 to the second sub-hole 113, and the restricting portion 335 is separated from the sidewall of the first sub-hole 111, that is, the interference between the restricting portion 335 and the sidewall corresponding to the mounting hole 11 is released. At this time, the restriction portion 335 no longer restricts the movement of the connection member 31 in the third direction Z within the mounting hole 11, and therefore the joint assembly 30 can be removed from the mounting hole 11.
In some embodiments, the extension 333 includes a first sub-portion 3331 and a second sub-portion 3333 that are in a bent-over interface. The first sub-portion 3331 is connected to the restricting portion 335, and the second sub-portion 3333 is connected to the fixing portion 331 and corresponds to the second sub-hole 113. That is, the projection of the second sub-portion 3333 onto the mount 10 in the first direction X can fall entirely within the range of the second sub-aperture 113. Accordingly, the second sub-aperture 113 can allow movement of the second sub-portion 3333 within the second sub-aperture 113 in the first direction X to enable the joint assembly 30 to extend into the mounting aperture 11 in the first direction X.
Referring to fig. 2 and 3, in some embodiments, the joint assembly 30 further includes a conduit 50, the conduit 50 being capable of passing through the first end 3103 of the connector 31 and the second end 3104 of the connector 31 in the first direction X and for transporting a liquid. Specifically, the material of the pipe 50 includes, but is not limited to, metal, plastic, or silica gel. The outer dimension of the cross section of the tube 50 should be smaller than the inner dimension of the through hole 3107 so that the tube 50 can be inserted into the through hole 3107.
Referring to fig. 5, a cooking apparatus 1000 according to an embodiment of the present application includes a storage assembly 200 and a feeding device 100 according to any of the above embodiments, where the storage assembly 200 is used for accommodating a liquid, and the feeding device 100 is in communication with the storage assembly 200.
Please combine fig. 1 and 2, in summary, in the cooking apparatus 1000 of the present application, the joint assembly 30 can be detachably clamped in the mounting hole 11 to connect with or separate from the mounting member 10, and in the process of mounting the joint assembly 30, the mounting hole 11 can be configured to let the limiting member 33 be in a position to allow the connecting member 31 to extend into the mounting hole 11. In the case where the fitting assembly 30 is installed, the connection member 31 can collide with the side wall of the installation hole 11, and the stopper 33 can collide with the connection member 31 and the side wall of the installation hole 11, respectively, and thereby prevent the connection member 31 from coming out of the installation hole 11. At this time, the joint assembly 30 is more firmly combined with the mounting member 10, and the joint assembly 30 is not easily detached from the mounting member 10 when the liquid flows outward.
In the description of the present specification, reference to the terms "certain embodiments," "in one example," "exemplary," and the like, means that a particular feature, structure, material, or characteristic described in connection with the embodiments or examples is included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, the different embodiments or examples described in this specification and the features of the different embodiments or examples may be combined and combined by those skilled in the art without contradiction.
While embodiments of the present application have been shown and described above, it will be understood that the above embodiments are illustrative and not to be construed as limiting the present application, and that variations, modifications, alternatives, and variations may be made to the above embodiments by one of ordinary skill in the art within the scope of the present application.

Claims (10)

1. A charging device, comprising:
the mounting piece is provided with a mounting hole; and
The connector assembly is detachably clamped in the mounting hole and comprises a connecting piece and a limiting piece, the connecting piece is used for connecting a pipeline for conveying liquid, the limiting piece is arranged on one side of the connecting piece, the limiting piece can be switched between a first position of the mounting hole and a second position of the mounting hole, and the connector assembly can move in the mounting hole under the condition that the limiting piece is positioned at the first position; and under the condition that the limiting piece is positioned at the second position, the rest sides of the connecting piece are in interference with the side walls corresponding to the mounting holes, and the limiting piece is in interference with the side walls corresponding to the mounting holes.
2. The feeding device according to claim 1, wherein at least one side of the connecting piece except the side where the limiting piece is located is provided with a clamping portion, and the clamping portion is used for being combined with the side wall of the mounting hole so that the joint assembly is clamped in the mounting hole.
3. The feeding device of claim 1, wherein the limiting member comprises:
the fixing part is connected with one side of the connecting piece;
an extension part, one end of which is connected with the fixing part; and
The limiting part is connected with the other end of the extending part, and one side of the limiting part is abutted against one side of the connecting piece; under the condition that the joint assembly is installed in the installation hole, the limiting part penetrates through the installation hole, and the other side of the limiting part is in contact with the side wall of the installation hole.
4. A feeding device according to claim 3, wherein the mounting hole comprises a first sub-hole and a second sub-hole which are in communication, the second sub-hole is used for yielding the limiting member in the process of mounting the joint assembly, and the first sub-hole is used for limiting the connecting member and the limiting member when the joint assembly is mounted.
5. The feeding device according to claim 4, wherein the extension portion has elasticity, and the restricting portion can swing relative to the fixing portion to release interference between the restricting portion and a side wall corresponding to the mounting hole in a case that the extension portion is deformed by force.
6. The feeding device of claim 5, wherein the extension portion comprises a first sub-portion and a second sub-portion which are connected in a bending manner, the first sub-portion is connected with the limiting portion, the second sub-portion is connected with the fixing portion, and the second sub-portion corresponds to the second sub-hole along the direction in which the fixing portion points to the limiting portion.
7. The feeding device of claim 1, wherein the plurality of mounting holes are formed, the plurality of joint assemblies are formed, the plurality of mounting holes are respectively corresponding to the plurality of joint assemblies, the joint assemblies are detachably clamped in the corresponding mounting holes, the plurality of joint assemblies are arranged in a plurality of rows at intervals in a straight line, and each row of joint assemblies corresponds to the interval between two adjacent joint assemblies in the adjacent rows.
8. The feeder apparatus of claim 7, wherein the sides of the adjacent rows of the connector assemblies not having the stop members are disposed opposite each other.
9. The feeding device of claim 1, wherein the opposite ends of the connecting member are located on opposite sides of the mounting member, respectively, and the joint assembly further comprises a pipe passing through the opposite ends of the connecting member.
10. A cooking apparatus, comprising:
the storage component is used for containing liquid; and
The feeder device of any one of claims 1-9, in communication with the storage assembly.
CN202322240571.XU 2023-08-18 2023-08-18 Feeding device and cooking equipment Active CN220512728U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322240571.XU CN220512728U (en) 2023-08-18 2023-08-18 Feeding device and cooking equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322240571.XU CN220512728U (en) 2023-08-18 2023-08-18 Feeding device and cooking equipment

Publications (1)

Publication Number Publication Date
CN220512728U true CN220512728U (en) 2024-02-23

Family

ID=89923485

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322240571.XU Active CN220512728U (en) 2023-08-18 2023-08-18 Feeding device and cooking equipment

Country Status (1)

Country Link
CN (1) CN220512728U (en)

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