CN213371295U - Pot body subassembly and have its cooking utensil - Google Patents

Pot body subassembly and have its cooking utensil Download PDF

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Publication number
CN213371295U
CN213371295U CN202020803751.8U CN202020803751U CN213371295U CN 213371295 U CN213371295 U CN 213371295U CN 202020803751 U CN202020803751 U CN 202020803751U CN 213371295 U CN213371295 U CN 213371295U
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China
Prior art keywords
base
pot body
magnetic strip
positioning
body assembly
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Active
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CN202020803751.8U
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Chinese (zh)
Inventor
余溧帅
黄家建
钟辰根
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Zhejiang Supor Electrical Appliances Manufacturing Co Ltd
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Zhejiang Supor Electrical Appliances Manufacturing Co Ltd
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Priority to CN202020803751.8U priority Critical patent/CN213371295U/en
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Abstract

The utility model discloses a kind of deep pot body subassembly and have its cooking utensil, a kind of deep pot body subassembly includes the coil panel, magnetic stripe frame and base, the magnetic stripe frame sets up the downside at the coil panel and installs to the coil panel through the mode of rotatory joint, the base is located the below of coil panel, the magnetic stripe frame sets up two at least last reference columns of downwardly extending, the base is provided with two at least lower reference columns of upwards extending, lower reference column corresponds from top to bottom with last reference column, one in last reference column and the lower reference column is provided with the locating hole, another in last reference column and the lower reference column inserts the locating hole and spacing and support in the locating hole. The utility model provides a kind of deep pot body subassembly, magnetic stripe frame can be connected to the base and supported by the base, can restrict the rotation of magnetic stripe frame for the coil panel, make the magnetic stripe frame keep with the firm joint state of coil panel, prevent that the magnetic stripe frame from appearing in the not hard up risk that breaks away from and drop from the coil panel of joint position department.

Description

Pot body subassembly and have its cooking utensil
Technical Field
The utility model relates to a domestic kitchen appliance technical field particularly relates to a kind of deep pot body subassembly and have its cooking utensil.
Background
Existing electromagnetic heating cooking appliances, such as rice cookers, are generally provided with a coil disk wound thereon and a magnetic strip holder mounted to the coil disk, the magnetic strip being attached to the magnetic strip holder. Among the existing installation modes of the magnetic strip frame, one installation mode is to fasten the magnetic strip frame to the coil panel through fasteners such as screws, and the installation mode is easy to damage components, and has more complicated assembly process and lower assembly process efficiency; another kind of mounting means is through the mode installation to the coil panel of rotatory joint, nevertheless because the magnetic stripe frame only has the joint structure with the coil panel for when cooking utensil suffered to rock, vibrations, fall the accident such as, the magnetic stripe frame is extremely easily not hard up and breaks away from in joint position department, makes the magnetic stripe frame rock for the coil panel, has the potential safety hazard.
Therefore, there is a need for a pot body assembly and a cooking appliance having the same to at least partially solve the above problems.
SUMMERY OF THE UTILITY MODEL
In the summary section a series of concepts in a simplified form is introduced, which will be described in further detail in the detailed description section. The inventive content does not imply any attempt to define the essential features and essential features of the claimed solution, nor is it implied to be intended to define the scope of the claimed solution.
For at least partially solving the above-mentioned problem, the utility model provides a kind of deep pot body subassembly for cooking utensil, it includes:
a coil panel;
the magnetic strip frame is arranged on the lower side of the coil panel and is installed on the coil panel in a rotary clamping manner;
a base located below the coil disk,
wherein the magnetic strip frame is provided with at least two upper positioning columns extending downwards,
the base is provided with at least two lower positioning columns extending upwards, the lower positioning columns correspond to the upper positioning columns up and down,
one of the upper positioning column and the lower positioning column is provided with a positioning hole, and the other of the upper positioning column and the lower positioning column is inserted into the positioning hole, limited and supported in the positioning hole.
According to this scheme, the magnetic stripe frame can be connected to the base and supported by the base to can restrict the magnetic stripe frame and for the ascending removal of coil panel in the horizontal direction, make the magnetic stripe frame install on a kind of deep pot body subassembly firmly, especially can restrict the rotation of magnetic stripe frame for the coil panel, make the magnetic stripe frame keep with the firm joint state of coil panel, prevent that the magnetic stripe frame from appearing not hard up and break away from and the risk that drops from the coil panel in joint position department. When the cooker body assembly is shaken, vibrated, dropped and the like, the magnetic strip rack can be stably installed on the coil panel and cannot fall off, so that the potential safety hazard is avoided.
Optionally, a support wall body extending vertically is disposed in the positioning hole, and the support wall body extends radially inward from a hole wall of the positioning hole and supports the other of the upper positioning column and the lower positioning column entering the positioning hole.
According to the scheme, the coil panel and the magnetic strip frame can be supported by means of the supporting wall body, when the positioning hole is formed in the lower positioning column, the length of the upper positioning column cannot be too long through the supporting wall body, the manufacturing cost is reduced, the upper positioning column can be prevented from being directly supported by the base, the base is prevented from being damaged, the external shape of a product is prevented from being influenced, and the base is prevented from being damaged; when the positioning hole is arranged on the upper positioning column, the length of the positioning column can be reduced through the supporting wall body, and the manufacturing cost is reduced.
Optionally, the magnetic strip holder comprises a base and an attachment arm extending radially outward from the base, the upper locating post being disposed on a lower surface of the base.
According to the present solution, the magnetic strip holder and the coil disk can be supported at the base, resulting in better structural stability, since the base supports most of the weight of the coil disk.
Optionally, the lower positioning column is provided with a positioning hole, and the upper positioning column is inserted into the positioning hole and limited in the positioning hole.
According to this scheme, the radial dimension of lower reference column can be set to be greater than the radial dimension of last reference column, and this makes lower reference column can provide more stable support and limit structure to can be convenient for form the lower reference column that has the locating hole on the base.
Optionally, the magnetic strip frame is provided with a central hole, and the at least two upper positioning columns are arranged around the central hole.
According to this scheme, can prevent the rotation of magnetic stripe frame around the axial centerline of magnetic stripe frame better to can form spaced apart support position, make the magnetic stripe frame support on the base more steadily, and then can keep the balance of coil panel.
Optionally, the magnetic strip frame is provided with two upper positioning columns, and the two upper positioning columns are symmetrically arranged relative to the central hole.
According to the scheme, the magnetic strip frame can be stably supported on the base while the connecting structure between the magnetic strip frame and the base is simplified, and the balance of the coil panel is kept.
Optionally, the base is provided with a boss protruding downwards, the boss is provided with a concave part recessed downwards, and the lower positioning column is arranged in the concave part and located in the middle of the boss.
According to this scheme, can reduce the mounting height of coil panel and magnetic strip frame to the mounting height of pot in can further reducing reduces a kind of deep pot body subassembly at vertical ascending size, makes cooking utensil miniaturization.
Optionally, the coil panel is provided with a limiting groove and a vertically extending elastic blocking rib at intervals, the magnetic stripe frame is provided with a limiting arm, and the limiting arm is screwed into the limiting groove in the circumferential direction and is limited between the limiting groove and the elastic blocking rib in the circumferential direction.
According to this scheme, spacing arm can block into between spacing groove and the elasticity fender muscle, makes magnetic stripe frame joint to coil panel, joint simple structure, the manufacturing of being convenient for to the joint is effectual, and the magnetic stripe frame is difficult for not hard up and break away from in joint position department. And only can install the magnetic stripe frame to the coil panel through the rotation operation along a direction, and assembly process is simple, easily operation
Optionally, the shape of the other one of the upper positioning column and the lower positioning column corresponds to the shape of the positioning hole; and/or
And the other one of the upper positioning column and the lower positioning column is provided with a hole.
According to the scheme, the limiting and supporting effects can be ensured, and the other one of the upper positioning column and the lower positioning column is prevented from being separated from the positioning hole; and/or material costs can be saved and the weight of the product can be reduced.
According to another aspect of the present invention, there is provided a cooking appliance comprising a cover and the pot body assembly of any one of the above aspects, wherein the cover is openably and closably disposed on the pot body assembly to form a cooking space.
Drawings
The following drawings of the present invention are used herein as part of the present invention for understanding the present invention. There are shown in the drawings, embodiments and descriptions of the invention, which are used to explain the principles of the invention.
In the drawings:
figure 1 is a schematic cross-sectional view of a pot body assembly according to the present invention;
FIG. 2 is an enlarged view of portion A of FIG. 1;
FIG. 3 is an exploded schematic view of the pot body assembly shown in FIG. 1;
FIG. 4 is an enlarged view of portion B of FIG. 3;
FIG. 5 is a schematic view of the internal structure of the base shown in FIG. 1;
FIG. 6 is an enlarged view of portion C of FIG. 5;
fig. 7 is a schematic structural view of the magnetic strip holder shown in fig. 1.
Description of reference numerals:
100: the pot body assembly 101: inner pot
102: an outer pot 103: temperature limiter
110: the pot body 111: base seat
112: middle plate 113: outer casing
114: lower locating posts 115: boss
116: middle plate support column 117: base support column
120: coil disk 121: limiting groove
122: the elastic stopper rib 123: projecting part
130: magnetic strip holder 131: upper positioning column
132: center hole 133: limiting arm
134: base 135: attachment arm
141: positioning hole 142: supporting wall body
143: hole(s)
Detailed Description
In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. It will be apparent, however, to one skilled in the art, that the present invention may be practiced without one or more of these specific details. In other instances, well-known features have not been described in order to avoid obscuring the present invention.
In the following description, a detailed description will be given for a thorough understanding of the present invention. It is apparent that the implementation of the embodiments of the present invention is not limited to the specific details familiar to those skilled in the art. The preferred embodiments of the present invention are described in detail below, however, other embodiments of the present invention are possible in addition to these detailed descriptions.
It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments in accordance with the invention. As used herein, the singular is intended to include the plural unless the context clearly dictates otherwise. It will be further understood that the terms "comprises" and/or "comprising," when used in this specification, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
Ordinal words such as "first" and "second" are referred to in this application as labels only, and do not have any other meanings, such as a particular order, etc. Also, for example, the term "first component" does not itself imply the presence of "second component", and the term "second component" does not itself imply the presence of "first component".
It is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "inner", "outer", and the like are used herein for purposes of illustration only and are not limiting.
Exemplary embodiments according to the present invention will now be described in more detail with reference to the accompanying drawings. These exemplary embodiments may, however, be embodied in many different forms and should not be construed as limited to only the embodiments set forth herein. It is to be understood that these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of these exemplary embodiments to those skilled in the art.
As shown in fig. 1, the present invention provides a pot body assembly 100 comprising a pot body 110 and an inner pot 101. The pot body 110 has a cylindrical inner pot receiving part. The inner pot 101 can be fixedly arranged at the inner pot containing part, or can be freely put into the inner pot containing part or taken out of the inner pot containing part, so that the inner pot 101 can be conveniently cleaned. The inner pot 101 is generally made of a metal material and has a circular opening on an upper surface for containing a material to be heated, such as rice, soup, etc.
The pot body 110 may include a base 111, a middle plate 112 and a housing 113. The base 111 is disposed below the middle plate 112 and the housing 113. The middle plate 112 is disposed inside the case 113. The upper end of the outer case 113 may be coupled to the middle plate 112, and the lower end of the outer case 113 may be coupled to the upper end of the base 111. For example, the housing 113 may snap fit with the base 111 assembly or be connected together by other suitable means. The inner side of the outer shell 113 is provided with an outer pot 102 for preserving heat of the inner pot 101. The upper end of the outer pot 102 is connected to the middle plate 112.
The pot body assembly 100 further includes a coil panel 120 and a magnetic strip rack 130 disposed within the pot body 110 to heat the inner pot 101. The coil disk 120 is positioned below the inner pot 101, and the magnetic strip holder 130 is disposed at a lower side of the coil disk 120. A coil is wound on the coil disk 120. A magnetic stripe is attached to the magnetic stripe housing 130. For example, a receptacle may be provided on the magnetic strip holder 130, with the magnetic strip received within the receptacle. The magnetic strip holder 130 may be mounted to the coil disk 120. The upper end of the coil panel 120 is connected to the lower end of the outer pot 102.
In this embodiment, the magnetic stripe frame 130 and the coil panel 120 are provided with a snap structure to be fitted with each other. The magnetic strip holder 130 can be mounted to the coil disk 120 by means of a rotary snap fit. The term "rotationally clamping" as used herein means that the clamping structure on the magnetic strip holder 130 and the clamping structure on the coil panel 120 are clamped together by rotating the magnetic strip holder 130 around the axial center line of the magnetic strip holder 130 relative to the coil panel 120, so as to complete the connection between the two. It will be appreciated that the axial centerline of the magnetic strip carrier 130 substantially overlaps the axial centerline of the coil disk 120.
It is noted that directional terms used herein to describe the various parts, portions, means, etc. of the pot body assembly 100, such as "upper", "lower", "above", "below", "upward", "downward", "upwardly", "downwardly", "upper", "lower", "upper side", "lower side", etc., are relative to the pot body assembly 100 in a horizontally disposed state.
In order to prevent the magnetic stripe frame 130 from loosening and separating at the clamping position, the embodiment is provided with a connecting structure between the magnetic stripe frame 130 and the base 111. As shown in fig. 2 to 6, the magnetic strip holder 130 may be provided with at least two upper positioning posts 131 extending downward. The base 111 may be provided with at least two lower positioning posts 114 extending upward. The lower positioning pillars 114 can correspond to the upper positioning pillars 131 up and down, that is, the upper positioning pillars 131 are located above the lower positioning pillars 114. One of the upper positioning column 131 and the lower positioning column 114 is provided with a positioning hole 141, and the other of the upper positioning column 131 and the lower positioning column 114 can be inserted into the positioning hole 141 and is limited and supported in the positioning hole 141 (fig. 2).
In this embodiment, the magnetic strip rack 130 can be connected to the base 111 and supported by the base 111 by means of the connection structure of the upper positioning columns 131 and the lower positioning columns 114, so that the movement of the magnetic strip rack 130 relative to the coil panel 120 in the horizontal direction can be limited, the magnetic strip rack 130 can be stably mounted on the cooker body assembly 100, especially the rotation of the magnetic strip rack 130 relative to the coil panel 120 can be limited, specifically, the rotation of the magnetic strip rack 130 in the direction opposite to the mounting direction during the rotational clamping is limited, the magnetic strip rack 130 can be kept in a stable clamping state with the coil panel 120, and the risk that the magnetic strip rack 130 is loosened at the clamping position to be separated from the coil panel 120 and fall off from the coil panel 120 is prevented. When the cooker body assembly 100 is subjected to shaking, vibrating, falling and the like, the magnetic strip rack 130 can be stably installed on the coil panel 120 without falling off, thereby avoiding the occurrence of potential safety hazards.
In the illustrated embodiment, the lower positioning post 114 is provided with a positioning hole 141. The upper positioning column 131 can be inserted into the positioning hole 141 of the lower positioning column 114 and limited in the positioning hole 141. Therefore, the radial dimension of the lower positioning column 114 can be set to be larger than the radial dimension of the upper positioning column 131, which enables the lower positioning column 114 to provide a more stable supporting and limiting structure, and can facilitate the formation of the lower positioning column 114 with the positioning hole 141 on the base 111, because the base 111 is usually made of plastic material, it is easy to integrally form the lower positioning column 114 with the positioning hole 141 and the base 111 when the base 111 is formed.
The following description will be given taking the positioning post 114 provided with the positioning hole 141 as an example.
As shown in fig. 2 to 6, at least two lower positioning pillars 114 are arranged at intervals, correspondingly, at least two upper positioning pillars 131 are also arranged at intervals, and the positions of the upper positioning pillars 131 and the lower positioning pillars 114 can correspond up and down. In the illustrated embodiment, the magnetic strip holder 130 is provided with two upper positioning posts 131 (fig. 4), and correspondingly the base 111 is provided with two lower positioning posts 114 (fig. 6).
The upper positioning column 131 can protrude from the lower surface of the magnetic strip holder 130. Specifically, the magnetic strip holder 130 may include a base 134 and an attachment arm 135 extending radially outward from the base 134. The magnetic strip is received in a receptacle on the attachment arm 135. The upper positioning columns 131 can be arranged on the base 134, in particular on the lower surface of the base 134. Thereby, the magnetic strip holder 130 and the coil disk 120 may be supported at the base 134, resulting in better structural stability, since the base 134 supports most of the weight of the coil disk 120.
The magnetic strip holder 130 is also provided with a central bore 132 for mounting the temperature limiter 103. The central aperture 132 is disposed on a base 134. At least two upper locating posts 131 can be spaced around the central aperture 132. In the illustrated embodiment, two upper positioning posts 131 may be symmetrically arranged with respect to the central hole 132. In this embodiment, the center line of the central hole 132 substantially overlaps the axial center line of the magnetic stripe frame 130, and the upper positioning hole 141 is disposed around the central hole 132, so that the magnetic stripe frame 130 can be better prevented from rotating around the axial center line of the magnetic stripe frame 130, and spaced support positions can be formed, so that the magnetic stripe frame 130 can be more stably supported on the base 111, and the balance of the coil panel 120 can be maintained.
The lower positioning posts 114 protrude from the inner surface of the base 111. Specifically, the base 111 may be provided with a boss 115 (fig. 3) protruding downward. The shape of the boss 115 is designed according to the structures of the magnetic stripe frame 130 and the coil disk 120. The boss 115 is substantially circular in shape. The boss 115 has a recess depressed downward. Lower locating post 114 is disposed within the recess and is located in the middle of boss 115 (fig. 5). The lower positioning posts 114 protrude from the bottom surface of the recess. By providing the boss 115 having the concave portion, the installation height of the coil panel 120 and the magnetic strip holder 130 can be reduced, so that the installation height of the inner pot 101 can be further reduced, the size of the pot body assembly 100 in the vertical direction can be reduced, and the cooking appliance can be miniaturized.
A support wall 142 extending in the vertical direction may be disposed in the positioning hole 141. A plurality of spaced apart support walls 142 may be included within the locating aperture 141, for example, the illustrated embodiment shows 3 spaced apart support walls 142. The support wall 142 may extend radially inward from the wall of the positioning hole 141 and support the upper positioning post 131 entering the positioning hole 141. In other words, the upper positioning posts 131 can abut against the supporting wall 142. By providing the supporting wall 142, the length of the upper positioning column 131 is not too long, the manufacturing cost is reduced, and the upper positioning column 131 is prevented from being directly supported by the base 111, thereby preventing the base 111 from being damaged and affecting the external shape of the product. The supporting wall 142 extends upward from the base 111, that is, the supporting wall 142, the lower positioning pillar 114 and the base 111 can be integrally formed.
The shape of the upper positioning post 131 corresponds to the shape of the positioning hole 141, for example, in the illustrated embodiment, the outer shape of the upper positioning post 131 is a cylinder, and the cross-sectional shape of the positioning hole 141 is a circle. Of course, in the present embodiment, the shapes of the two positioning posts and the positioning hole 141 are not limited, and an appropriate shape may be selected. The upper positioning column 131 may be provided with a hole 143, so as to save the material cost of the magnetic strip rack 130 and reduce the weight of the magnetic strip rack 130.
In embodiments where the positioning holes 141 are provided in the upper positioning posts 131, the shapes of the lower positioning posts 114 correspond to the shapes of the positioning holes 141. The lower positioning column 114 is provided with a hole 143, which can save the material cost of the base 111 and reduce the weight of the base 111.
The magnetic strip holder 130 as described above can be snapped to the coil disk 120, and a snap structure for snapping the two is provided herein. As shown in fig. 4, the coil disk 120 may be provided with at least two retaining grooves 121 and a vertically extending elastic rib 122. At least the retaining grooves 121 can be arranged in a central annular array of the coil disk 120. The elastic stop rib 122 may be disposed in at least two of the at least two limiting grooves 121, respectively, as required. In the illustrated embodiment, four retaining grooves 121 are shown arranged in an annular array; the elastic stop ribs 122 are correspondingly arranged at the two limiting grooves 121 which are symmetrically arranged.
The limiting groove 121 and the elastic blocking rib 122 are both protruded downwards. The elastic stopper rib 122 can be disposed near the stopper groove 121. The openings of the stopper grooves 121 all face the same direction in the circumferential direction. The elastic rib 122 is located at the opening side of the limiting groove 121. As shown in fig. 7, the magnetic stripe housing 130 may be provided with a stopper arm 133 extending in a radial direction. The stopper arms 133 are provided in at least two numbers, and the stopper arms 133 can correspond to the stopper grooves 121 one to one. The stopper arm 133 can be screwed into the stopper groove 121 via the opening in the circumferential direction and is circumferentially restricted between the stopper groove 121 and the elastic stopper rib 122 (fig. 4).
It should be noted that, the term "close" used herein means that the distance between the elastic stop rib 122 and the limiting groove 121 is set within a predetermined range, which can satisfy the requirement of circumferentially limiting the limiting arm 133 between the limiting groove 121 and the elastic stop rib 122, specifically, the limiting arm 133 can respectively abut against the inner surface of the limiting groove 121 and the elastic stop rib 122 in the circumferential direction.
The elastic stopper rib 122 is elastically deformable between a screwing-in position allowing the stopper arm 133 to be screwed in and a blocking position preventing the stopper arm 133 from being screwed out. When the magnetic stripe frame 130 is installed, the limiting arm 133 can extrude the elastic blocking rib 122 when the magnetic stripe frame 130 rotates, the elastic blocking rib 122 is elastically deformed after being extruded, the entering direction of the limiting arm 133 is avoided, and after the limiting arm 133 is screwed into the limiting groove 121, the elastic blocking rib 122 is restored to be deformed, so that the limiting arm 133 is limited between the limiting groove 121 and the elastic blocking rib 122.
With this embodiment, can be for coil panel 120 along axial centerline rotation magnetic stripe frame 130 to make spacing arm 133 card go into between spacing groove 121 and the elasticity fender muscle 122 when rotatory, thereby make magnetic stripe frame 130 joint to coil panel 120, the joint simple structure, the manufacturing of being convenient for, and the joint is effectual, and magnetic stripe frame 130 is difficult not hard up and breaks away from in joint position department. And the magnetic strip holder 130 can be mounted to the coil disk 120 only by the rotating operation in one direction, the assembling process is simple, and the operation is easy.
Referring back to fig. 2, the catching groove 121 can support the catching arm 133 upward, and particularly, a lower surface of the catching arm 133 can abut against an inner bottom surface of the catching groove 121, whereby the magnetic stripe frame 130 can be supported at a lower side of the coil bobbin 120.
Referring back to fig. 3, the upper portion of the coil disk 120 may be provided with a projection 123 extending radially outward. The projection 123 is provided with a through hole. The protrusion 123 may be provided in a plurality of spaced apart, for example, 4 substantially uniformly arranged protrusions 123 are shown. The middle plate 112 may be provided with downwardly extending middle plate support posts 116, with at least two of the middle plate support posts 116 having upper screw holes. The base 111 may be provided with downwardly extending base support posts 117 (fig. 5), at least two of the base support posts 117 having lower screw holes. The middle plate support post 116 may pass through the through hole of the protrusion 123 to interface with the base support post 117. Screws can be inserted into the upper screw holes from the lower screw holes upwards to fasten the base support posts 117 to the middle plate support posts 116, so as to fixedly connect the base 111, the coil panel 120 and the middle plate 112. The lower portion of the coil disk 120 is supported on the base 111 by the magnetic stripe frame 130, and the upper portion of the coil disk 120 is connected with the base 111 and the middle plate 112 by the projection 123 having the through hole.
The coil disk 120 in the present embodiment can be held at a fixed position within the pot body 110.
According to another aspect of the present invention, there is also provided a cooking appliance, which comprises the above-mentioned pot body assembly 100 and the lid body. The cover body has a shape substantially corresponding to the pot body 110. The lid is openably and closably provided on the pot body assembly 100, and in particular, it is pivoted to the pot body 110 by a pivot shaft and can be freely pivoted about the pivot axis where the pivot shaft is located between a closed position and an open position with respect to the pot body 110, so as to facilitate the closing and opening of the pot body 110. When the cover body is covered on the cooker body 110, the cover body covers the inner pot 101, and a cooking space is formed between the cover body and the inner pot 101. The lid body also typically has a sealing ring, which may be made of, for example, a rubber material, disposed between the lid body and the inner pot 101 for sealing the cooking space when the lid body is in a closed position.
According to the utility model discloses a cooking utensil can be for electric rice cooker, electric pressure cooker or other cooking utensil that have the electromagnetic heating function, and cooking utensil except having the function of cooking rice, can also have various functions such as cooking congee.
The utility model provides a cooking utensil's a kind of deep pot body subassembly 100, magnetic strip frame 130 can be installed to coil panel 120 through the mode of rotatory joint. The magnetic strip holder 130 may be provided with an upper positioning post 131 extending downward. The base 111 may be provided with a lower positioning post 114 extending upwardly. The lower positioning posts 114 can vertically correspond to the upper positioning posts 131. One of the upper positioning column 131 and the lower positioning column 114 is provided with a positioning hole 141, and the other of the upper positioning column 131 and the lower positioning column 114 can be inserted into the positioning hole 141 and is limited and supported in the positioning hole 141.
Therefore, the magnetic strip rack 130 can be connected to and supported by the base 111, and can limit the movement of the magnetic strip rack 130 relative to the coil panel 120 in the horizontal direction, so that the magnetic strip rack 130 is stably installed on the cooker body assembly 100, especially can limit the rotation of the magnetic strip rack 130 relative to the coil panel 120, so that the magnetic strip rack 130 maintains a stable clamping state with the coil panel 120, and the risk that the magnetic strip rack 130 loosens at the clamping position to be separated from the coil panel 120 and fall off from the coil panel 120 is prevented. When the cooker body assembly 100 is subjected to shaking, vibrating, falling and the like, the magnetic strip rack 130 can be stably installed on the coil panel 120 without falling off, thereby avoiding the occurrence of potential safety hazards.
Unless defined otherwise, technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. Features described herein in one embodiment may be applied to another embodiment, either alone or in combination with other features, unless the feature is otherwise inapplicable or otherwise stated in the other embodiment.
The present invention has been described in terms of the above embodiments, but it is to be understood that the above embodiments are for purposes of illustration and description only and are not intended to limit the invention to the described embodiments. Furthermore, it will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that many more modifications and variations are possible in light of the teaching of the present invention and are within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (10)

1. A pot assembly for a cooking appliance, comprising:
a coil disk (120);
the magnetic strip rack (130) is arranged on the lower side of the coil panel (120) and is mounted on the coil panel (120) in a rotary clamping manner;
a base (111), the base (111) being located below the coil disk (120),
wherein the magnetic strip rack (130) is provided with at least two upper positioning columns (131) extending downwards,
the base (111) is provided with at least two lower positioning columns (114) extending upwards, the lower positioning columns (114) correspond to the upper positioning columns (131) up and down,
one of the upper positioning column (131) and the lower positioning column (114) is provided with a positioning hole (141), and the other one of the upper positioning column (131) and the lower positioning column (114) is inserted into the positioning hole (141), limited and supported in the positioning hole (141).
2. The pot body assembly of claim 1, wherein a vertically extending support wall (142) is disposed within the locator aperture (141), the support wall (142) extending radially inward from an aperture wall of the locator aperture (141) and supporting the other of the upper locating post (131) and the lower locating post (114) entering the locator aperture (141).
3. The pot body assembly of claim 1, wherein the magnetic strip rack (130) comprises a base (134) and attachment arms (135) extending radially outward from the base (134), the upper locating posts (131) being disposed on a lower surface of the base (134).
4. The pot body assembly according to any one of claims 1 to 3, wherein the lower positioning column (114) is provided with a positioning hole (141), and the upper positioning column (131) is inserted into the positioning hole (141) and is retained within the positioning hole (141).
5. The pot body assembly according to claim 1, wherein the magnetic strip rack (130) is provided with a central hole (132), the at least two upper positioning posts (131) being arranged around the central hole (132).
6. The pot body assembly according to claim 5, wherein the magnetic strip rack (130) is provided with two of the upper positioning posts (131), the two upper positioning posts (131) being symmetrically arranged with respect to the central hole (132).
7. The pot body assembly of claim 1, wherein the base (111) is provided with a downwardly projecting boss (115), the boss (115) having a downwardly recessed recess, the lower locating post (114) being disposed within the recess and in the middle of the boss (115).
8. The pot body assembly according to claim 1, wherein the coil plate (120) is provided with a spacing groove (121) and a vertically extending elastic blocking rib (122) at intervals, and the magnetic strip rack (130) is provided with a spacing arm (133), and the spacing arm (133) is screwed into the spacing groove (121) in the circumferential direction and is limited between the spacing groove (121) and the elastic blocking rib (122) in the circumferential direction.
9. The pot body assembly of claim 1,
the other one of the upper positioning column (131) and the lower positioning column (114) has a shape corresponding to that of the positioning hole (141); and/or
The other of the upper positioning column (131) and the lower positioning column (114) is provided with a hole (143).
10. A cooking appliance comprising a pot body assembly (100) according to any one of claims 1 to 9 and a cover openably provided on the pot body assembly (100) to form a cooking space.
CN202020803751.8U 2020-05-14 2020-05-14 Pot body subassembly and have its cooking utensil Active CN213371295U (en)

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