CN220067724U - Integrated heating electromagnetic coil panel - Google Patents

Integrated heating electromagnetic coil panel Download PDF

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Publication number
CN220067724U
CN220067724U CN202321675353.2U CN202321675353U CN220067724U CN 220067724 U CN220067724 U CN 220067724U CN 202321675353 U CN202321675353 U CN 202321675353U CN 220067724 U CN220067724 U CN 220067724U
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China
Prior art keywords
electromagnetic coil
clamping
clamping block
integrated heating
ribs
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CN202321675353.2U
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Chinese (zh)
Inventor
黄炳强
陆科耀
姚元胜
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Zhongshan Tongwei Electric Appliance Co ltd
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Zhongshan Tongwei Electric Appliance Co ltd
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Abstract

The utility model discloses an integrated heating electromagnetic coil panel, which comprises a bracket body, wherein the lower surface of the bracket body is downwards extended to form an extension part, an installation cavity is arranged in the extension part, a plurality of clamping block groups are uniformly distributed on the lower surface of the bracket body, each clamping block group comprises a plurality of first clamping blocks, the distance between any two adjacent first clamping blocks in the clamping block groups is equal, and a first clamping groove is formed in each first clamping block; compared with the prior art, the integrated heating electromagnetic coil panel has the advantages that when the integrated heating electromagnetic coil panel is assembled, the wire body is directly wound into the coil on the bracket body, and when the integrated heating electromagnetic coil panel is used, the cooker is directly placed above the bracket body.

Description

Integrated heating electromagnetic coil panel
Technical Field
The utility model relates to the technical field of electromagnetic induction heating devices, in particular to an integrated heating electromagnetic coil panel.
Background
The electromagnetic coil panel is the core heating part of electromagnetic induction heating device, it usually includes the tray frame, the tray frame is provided with wire casing and magnetic stripe storage tank, the wire casing is twined and is had the coil, the magnetic stripe is inlayed in the magnetic stripe storage tank, this kind of electromagnetic coil panel is when being applied to electromagnetic induction heating device, electromagnetic induction device sets up base and panel, electromagnetic coil panel is fixed on the base, the panel is connected in the base top, there is the working region who corresponds with electromagnetic coil panel on the panel, when using, the cooking utensil is placed on the working region on the panel, the magnetic line of force can be produced after the coil circular telegram, heating cooker utensil. The electromagnetic coil panel and the panel of the electromagnetic induction heating device with the structure are of split structures, when the electromagnetic induction heating device is assembled, the electromagnetic coil panel is required to be fixed on the base, then the panel is installed on the base, and after the electromagnetic coil panel is installed on the base, the gap between the lower surface of the electromagnetic coil panel and the base is smaller, so that heat dissipation of the electromagnetic coil panel is not facilitated.
Disclosure of Invention
The utility model aims to provide an integrated heating electromagnetic coil panel which is used for solving the technical problems.
The utility model provides an integral type solenoid dish that generates heat, includes the support body, and the lower surface downwardly extending of support body has the extension, is equipped with the installation cavity in the extension, and the lower surface equipartition of support body has a plurality of fixture block groups, and every fixture block group all includes a plurality of first fixture blocks, and the interval between two arbitrary adjacent first fixture blocks in the fixture block group equals, is equipped with first draw-in groove on the first fixture block.
According to an embodiment of the utility model, the clamping block group further comprises two connecting ribs, the connecting ribs extend from the extending part to the outer edge of the support body, the two connecting ribs are respectively connected to two sides of a first clamping block in the clamping block group, the height of the first clamping block is higher than that of the connecting ribs, and a winding groove is formed by a gap between parts, extending out of the connecting ribs, of two adjacent first clamping blocks.
According to one embodiment of the utility model, the bracket body is arc-shaped and is provided with a containing cavity, and the shape of the connecting rib is matched with the radian of the corresponding position of the bracket body.
According to an embodiment of the present utility model, the first clamping block is in a fan shape.
According to one embodiment of the utility model, the extension part is cylindrical, the height of the extension part is matched with the height of the first clamping blocks, a plurality of second clamping grooves with arc lengths matched with the first clamping grooves are uniformly distributed on the lower edge of the extension part, and the distance between the outer wall surface of the extension part and the adjacent first clamping blocks is equal to the distance between any two adjacent first clamping blocks.
According to one embodiment of the utility model, a supporting group is further arranged between two adjacent clamping block groups, the supporting group comprises supporting ribs, and the heights of the supporting ribs are matched with the heights of the connecting ribs.
According to one embodiment of the utility model, each supporting group comprises two supporting ribs and a plurality of second clamping blocks, wherein the two supporting ribs are respectively connected to two sides of the second clamping blocks in the supporting group, the number of the second clamping blocks is smaller than that of the first clamping blocks, and the arc length between the second clamping block at the top and the first clamping block at any side of the second clamping block is not larger than that between the first clamping blocks at two sides of the second clamping block at the bottom.
According to one embodiment of the present utility model, the distance between two supporting ribs in the supporting set is smaller than the distance between two connecting ribs in the clamping block set.
According to one embodiment of the utility model, the bracket body is further provided with a connecting ring, and the connecting ribs and the supporting ribs extend from the extending part to the connecting ring.
According to an embodiment of the utility model, a plurality of fixing columns are uniformly distributed on the bracket body.
Compared with the prior art, the integrated heating electromagnetic coil panel has the following advantages:
when the integrated heating electromagnetic coil panel is assembled, the wire body is directly wound into the coil on the bracket body, and when the integrated heating electromagnetic coil panel is used, the cooker is directly placed above the bracket body, compared with a traditional electromagnetic induction heating device, the integrated heating electromagnetic coil panel does not need to be independently provided with the coil bracket to wind the coil, and the panel is not required to be provided for supporting the cooker, so that the integrated heating electromagnetic coil panel is simple in structure and convenient to assemble.
Drawings
FIG. 1 is a schematic diagram of an integrated heat generating electromagnetic coil panel of the present utility model;
FIG. 2 is an enlarged view of a portion of FIG. 1A;
FIG. 3 is a cross-sectional view of an integrated heat-generating electromagnetic coil panel of the present utility model;
in the figure: 1. the bracket comprises a bracket body, 11, an extension part, 111, a second clamping groove, 12, a first clamping block, 121, a first clamping groove, 13, a connecting rib, 14, a wire winding groove, 15, a supporting rib, 16, a second clamping block, 17, a connecting ring and 18, and a fixing column
The implementation and advantages of the functions of the present utility model will be further described with reference to the accompanying drawings.
Detailed Description
Various embodiments of the utility model are disclosed in the following drawings, in which details of the practice are set forth in the following description for the purpose of clarity. However, it should be understood that these practical details are not to be taken as limiting the utility model. That is, in some embodiments of the utility model, these practical details are unnecessary. Moreover, for the purpose of simplifying the drawings, some conventional structures and components are shown in the drawings in a simplified schematic manner.
It should be noted that all directional indicators (such as up, down, left and right, front and rear … …) in the embodiments of the present utility model are merely used to explain the relative positional relationship, movement conditions, etc. between the components in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions of the "first," "second," and the like, herein are for descriptive purposes only and are not intended to be specifically construed as order or sequence, nor are they intended to limit the utility model solely for distinguishing between components or operations described in the same technical term, but are not to be construed as indicating or implying any relative importance or order of such features. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
For a further understanding of the nature, features, and efficacy of the present utility model, the following examples are set forth in order to provide a further understanding of the utility model, and are intended to be described in connection with the accompanying drawings:
the utility model discloses an integrated heating electromagnetic coil panel, referring to fig. 1 to 3, which comprises a bracket body 1, wherein an extension part 11 is downwards extended from the lower surface of the bracket body 1, an installation cavity is arranged in the extension part 11, a temperature probe is installed in the installation cavity of the extension part 11, a plurality of clamping block groups are uniformly distributed on the lower surface of the bracket body 1, each clamping block group comprises a plurality of first clamping blocks 12, the distance between any two adjacent first clamping blocks 12 in the clamping block groups is equal, a first clamping groove 121 is formed in each first clamping block 12, and the first clamping groove 121 is used for clamping a magnetic stripe. The utility model discloses an integrated heating electromagnetic coil panel.A winding groove 14 is formed in a gap between two adjacent first clamping blocks 12, a coil body is wound in the winding groove 14 of a clamping block group and is uniformly wound on the lower surface of a bracket body 1, each winding groove 14 and the winding groove 14 adjacent to the left side and the right side of the winding groove are positioned on the same coil formed by the coil body, and the two first clamping blocks 12 on the upper side and the lower side of the winding groove 14 fix the positions of the coils, so that the coils wound by the coil body are firmly wound on the lower surface of the bracket body 1. When the integrated heating electromagnetic coil panel is applied to the electromagnetic induction heating device, the cooker can be directly placed on the upper surface of the bracket body 1, magnetic force lines are generated after the wire body is electrified, the cooker cuts alternating magnetic force lines to generate vortex at the metal part of the cooker, the vortex enables molecules of the metal part of the cooker to move irregularly at a high speed, and the molecules collide and rub with each other to generate heat energy, so that the cooker self-heats at a high speed and is used for heating and cooking foods, and the purpose of cooking the foods is achieved. When the integrated heating electromagnetic coil panel is assembled, the wire body is directly wound into the coil on the bracket body 1, and when the integrated heating electromagnetic coil panel is used, the cooker is directly placed above the bracket body 1, compared with a traditional electromagnetic induction heating device, the integrated heating electromagnetic coil panel does not need to be independently provided with a coil bracket to wind the coil, and a panel is not required to be provided for supporting the cooker, so that the integrated heating electromagnetic coil panel is simple in structure and convenient to assemble.
According to the integrated heating electromagnetic coil panel disclosed by the utility model, the bracket body 1 can be directly used for placing a cooker, if one side of the bracket body 1 for placing the cooker is called as the upper surface of the bracket body 1, the other side of the bracket body 1 is the lower surface of the bracket body 1, the first clamping block 12 on the upper side of the wire winding groove 14 is the first clamping block 12 on the side close to the edge of the bracket body 1 in the two first clamping blocks 12, the first clamping block 12 on the lower side of the wire winding groove 14 is the first clamping block 12 on the side close to the extension part 11 in the two first clamping blocks 12, and the description of the lower surface of the bracket body 1 and the two first clamping blocks 12 on the upper side and the lower side of the wire winding groove 14 is described in the definition.
Referring to fig. 1 and 2, the clamping block set of the integrated heating electromagnetic coil of the present utility model further includes two connecting ribs 13, the connecting ribs 13 extend from the extending portion 11 to the outer edge of the bracket body 1, the two connecting ribs 13 are respectively connected to two sides of a first clamping block 12 in the clamping block set, the height of the first clamping block 12 is higher than that of the connecting ribs 13, and a winding slot 14 is formed by a gap between the parts of two adjacent first clamping blocks 12 extending out of the connecting ribs 13. When the integrated heating electromagnetic coil panel is applied to an electromagnetic induction heating device, magnetic force lines are generated after the coil is electrified, the metal part of the cooker cuts the alternating magnetic force lines and heats, and the heat of the cooker is transferred to the bracket body 1; the connecting ribs 13 are arranged, the wire body is wound between the parts, extending out of the connecting ribs 13, of the first clamping blocks 12, the wire body can be supported by the connecting ribs 13, the wire body is prevented from being directly contacted with the support body 1, and the fact that heat on the support body 1 is transferred to the wire body to enable the temperature of the wire body to be too high is avoided.
Referring to fig. 1 and 3, in the integrated heating electromagnetic coil panel of the present utility model, the bracket body 1 is arc-shaped and forms a containing cavity, and the shape of the connecting rib 13 is adapted to the radian of the corresponding position of the bracket body 1. According to the integrated heating electromagnetic coil panel, the connecting ribs 13 are arranged along the outline of the lower surface of the support body 1, the wire body is wound in the winding groove 14 to form a plurality of coils, the coils become larger gradually from bottom to top, the coils extend from the bottom of the support body 1 to the edge of the support body 1, when the cooker is placed in the accommodating cavity of the support body 1, the coils generate magnetic force lines after being electrified, so that the part, surrounded by the accommodating cavity, of the cooker can generate heat, and the accommodated objects in the cooker are heated uniformly.
Referring to fig. 1 and 2, in the integrated heating electromagnetic coil panel of the present utility model, the first clamping block 12 is in a fan shape. The winding groove 14 formed by the gaps between two adjacent first clamping blocks 12 is a fan ring, when the wire body is wound in the winding groove 14, the formed coil is a circular ring, and the coil is wound uniformly on the lower surface of the bracket body 1.
Referring to fig. 1 to 3, in the integrated heating electromagnetic coil panel of the present utility model, the extension portion 11 is cylindrical, the height of the extension portion 11 is adapted to the height of the first clamping block 12, a plurality of second clamping grooves 111 with arc lengths adapted to the first clamping grooves 121 are uniformly distributed on the lower edge of the extension portion 11, and the distance between the outer wall surface of the extension portion 11 and the adjacent first clamping block 12 is equal to the distance between any two adjacent first clamping blocks 12. The gap between the outer wall surface of the extension part 11 and the adjacent first clamping block 12 also forms a winding groove 14, the wire body is wound in the gap between the outer wall surface of the extension part 11 and the adjacent first clamping block 12, so that the wire body can be wound on the lower surface of the bracket body 1 as much as possible, when the wire body is electrified, the cooker arranged in the accommodating cavity of the bracket body 1 heats more uniformly, and when the magnetic strip is installed, the magnetic strip is clamped in the first clamping groove 121 of the first clamping block 12 and the corresponding second clamping groove 111, so that the magnetic strip can cover the wire body in the whole clamping block group, the wire body is prevented from being not covered by the magnetic strip, and the coil which is not penetrated by magnetic force lines is prevented from occurring.
Referring to fig. 1, in the integrated heating electromagnetic coil panel of the present utility model, a supporting group is further disposed between two adjacent clamping block groups, the supporting group includes supporting ribs 15, and the height of the supporting ribs 15 is adapted to the height of the connecting ribs 13. When the wire body is in the lower surface wire-wrapping connection of the support body 1, the part of the wire body positioned in the wire-wrapping groove 14 is supported by the connecting ribs 13, and the part of the wire body positioned between the two clamping block groups is supported by the supporting ribs 15, so that the wire body can be firmly in the lower surface wire-wrapping connection of the support body 1.
Referring to fig. 1, each supporting group of the integrated heating electromagnetic coil panel of the present utility model includes two supporting ribs 15 and a plurality of second clamping blocks 16, wherein the two supporting ribs 15 are respectively connected to two sides of the second clamping blocks 16 in the supporting group, the number of the second clamping blocks 16 is less than that of the first clamping blocks 12, and the arc length between the second clamping block 16 at the top and the first clamping blocks 12 at any side of the second clamping block is not greater than that between the first clamping blocks 12 at two sides of the second clamping block 16 at the bottom. Because the support body 1 is the arc, the connecting rib 13 extends towards the outer fringe of support body 1 by the outer wall of extension 11, in the position department that is close to extension 11, the arc length between two adjacent connecting ribs 13 is than less, the position department that is close to the outer fringe of support body 1 more is the arc length between two adjacent connecting ribs 13, the wire body is when the bottom winding of support body 1, the position department that is close to the upper edge of support body 1 more is the wire body, the interval between two fixture block groups is the bigger, the wire body of the part between two fixture block groups is not spacing, the wire body shifts easily, influence the degree of consistency of its lower surface wiring at support body 1. Therefore, the second clamping block 16 is arranged between the two clamping block groups, the arc length between the second clamping block 16 at the top and the first clamping block 12 at any side of the second clamping block is not longer than the arc length between the first clamping blocks 12 at the two sides of the second clamping block 16 at the bottom, and therefore a wire body at a place with a large gap between the two clamping block groups can be fixed and limited by the second clamping block 16, and the wire body can be uniformly wound on the lower surface of the bracket body 1.
According to the integrated heating electromagnetic coil panel, the distance between two supporting ribs 15 in the supporting group is smaller than the distance between two connecting ribs 13 in the clamping block group. The supporting ribs 15 only play a role in assisting in supporting the wire body, if the distance between the supporting ribs 15 in the supporting group is too large, the size of the second clamping block 16 also needs to be correspondingly increased, the weight of the support body 1 can be increased, the distance between the two supporting ribs 15 in the supporting group is smaller than the distance between the two connecting ribs 13 in the clamping block group, the supporting group can assist in supporting the wire body, the excessive weight of the support body 1 can be avoided, and the material cost can be reduced.
Referring to fig. 1 and 3, the integral heating electromagnetic coil panel of the present utility model is further provided with a connection ring 17 on the bracket body 1, and the connection rib 13 and the support rib 15 extend from the extension portion 11 to the connection ring 17. The strength of the connecting ribs 13 and the supporting ribs 15 can be enhanced, and when the integrated heating electromagnetic coil panel is applied to the electromagnetic induction heating device, the part of the bracket body 1 above the connecting ring 17 can form an installation position, so that the installation of the bracket body 1 is convenient.
Referring to fig. 1, the integral heating electromagnetic coil panel of the present utility model has a plurality of fixing posts 18 uniformly distributed on the bracket body 1. When the integrated heating electromagnetic coil panel is applied to the electromagnetic induction heating device, the connecting piece passes through the bottom plate of the electromagnetic induction heating device and the fixing column 18 to fix the bracket body 1 to the bottom plate of the electromagnetic induction heating device, so that the bracket body 1 is convenient to install.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, or alternatives falling within the spirit and principles of the utility model.

Claims (10)

1. An integral type solenoid dish that generates heat, its characterized in that: including support body (1), the lower surface downwardly extending of support body (1) has extension (11), be equipped with the installation cavity in extension (11), the lower surface equipartition of support body (1) has a plurality of fixture block groups, every the fixture block group all includes a plurality of first fixture blocks (12), arbitrary two adjacent in the fixture block group interval between first fixture block (12) equals, be equipped with first draw-in groove (121) on first fixture block (12).
2. The integrated heating electromagnetic coil as set forth in claim 1, wherein the clamping block group further includes two connecting ribs (13), the connecting ribs (13) extend from the extending portion (11) to the outer edge of the support body (1), the two connecting ribs (13) are respectively connected to two sides of a first clamping block (12) in the clamping block group, the height of the first clamping block (12) is higher than that of the connecting ribs (13), and a winding groove (14) is formed by a gap between portions, extending from the connecting ribs (13), of two adjacent first clamping blocks (12).
3. The integrated heating electromagnetic coil as set forth in claim 2, wherein the bracket body (1) is arc-shaped and formed with a receiving cavity, and the shape of the connecting rib (13) is adapted to the radian of the corresponding position of the bracket body (1).
4. An integrated heat generating electromagnetic coil as recited in claim 3, wherein the first fixture block (12) is in the shape of a sector ring.
5. An integrated heating electromagnetic coil panel according to claim 3, wherein the extension portion (11) is cylindrical, the height of the extension portion (11) is matched with the height of the first clamping block (12), a plurality of second clamping grooves (111) with arc lengths matched with the first clamping grooves (121) are uniformly distributed on the lower edge of the extension portion (11), and the distance between the outer wall surface of the extension portion (11) and the adjacent first clamping blocks (12) is equal to the distance between any two adjacent first clamping blocks (12).
6. The integrated heating electromagnetic coil as set forth in claim 2, wherein a supporting group is further provided between two adjacent clamping block groups, the supporting group includes a supporting rib (15), and the height of the supporting rib (15) is adapted to the height of the connecting rib (13).
7. The integrated heating electromagnetic coil as set forth in claim 6, wherein each of the support groups includes two support ribs (15), and further includes a plurality of second clamping blocks (16), the two support ribs (15) are respectively connected to two sides of the second clamping blocks (16) in the support group, the number of the second clamping blocks (16) is smaller than that of the first clamping blocks (12), and an arc length between a topmost second clamping block (16) and the first clamping blocks (12) on either side of the topmost second clamping block is not greater than an arc length between the first clamping blocks (12) on two sides of the bottommost second clamping block (16).
8. The integrated heat generating electromagnetic coil as recited in claim 7, wherein a spacing between two support ribs (15) in the support group is smaller than a spacing between two connecting ribs (13) in the fixture block group.
9. The integrated heating electromagnetic coil as set forth in claim 6, wherein the bracket body (1) is further provided with a connecting ring (17), and the connecting ribs (13) and the supporting ribs (15) extend from the extension portion (11) to the connecting ring (17).
10. The integrated heating electromagnetic coil as set forth in claim 1, wherein the bracket body (1) is further uniformly provided with a plurality of fixing posts (18).
CN202321675353.2U 2023-06-28 2023-06-28 Integrated heating electromagnetic coil panel Active CN220067724U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321675353.2U CN220067724U (en) 2023-06-28 2023-06-28 Integrated heating electromagnetic coil panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321675353.2U CN220067724U (en) 2023-06-28 2023-06-28 Integrated heating electromagnetic coil panel

Publications (1)

Publication Number Publication Date
CN220067724U true CN220067724U (en) 2023-11-21

Family

ID=88757240

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321675353.2U Active CN220067724U (en) 2023-06-28 2023-06-28 Integrated heating electromagnetic coil panel

Country Status (1)

Country Link
CN (1) CN220067724U (en)

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