Induction coil for an induction heating appliance

10085307 ยท 2018-09-25

Assignee

Inventors

Cpc classification

International classification

Abstract

The present invention relates to an induction coil for an induction heating appliance, in particular for an induction cooking hob. The induction coil comprises at least one base plate (10) and at least one winding arrangement (12). The winding arrangement (12) includes at least one portion of high winding concentration (18) and at least one portion of low winding concentration (20). The base plate (10) is arranged above one or more winding arrangements (12). The base plate (10) includes at least one conductive portion (14) and at least one non-conductive portion (16). At least one conductive portion (14) of the base plate (10) is arranged above at least one portion of high winding concentration (18) of the winding arrangement (12). At least one non-conductive portion (16) of the base plate (10) is arranged above at least one portion of low winding concentration (20) of the winding arrangement (12). The conductive portion (14) of the base plate (10) is made by at least one conductive material. The non-conductive portion (16) of the base plate (10) is made by at least one non-conductive material and/or formed by at least one cut-out in the base plate (10). Further, the present invention relates to an induction heating appliance. Moreover, the present invention relates to an induction cooking hob.

Claims

1. An induction coil for an induction cooking hob, wherein: the induction coil comprises at least one base plate and at least one winding arrangement, the at least one winding arrangement includes at least one portion of high winding concentration and at least one portion of low winding concentration, the base plate is arranged above one or more of said at least one winding arrangement, the base plate includes at least one electrically conductive portion and at least one electrically non-conductive portion, the at least one electrically conductive portion of the base plate is arranged above at least one portion of high winding concentration of the at least one winding arrangement, the at least one electrically non-conductive portion of the base plate is arranged only above the at least one portion of low winding concentration of the at least one winding arrangement, the at least one electrically conductive portion of the base plate is made by at least one electrically conductive material, and the at least one electrically non-conductive portion of the base plate is made by at least one electrically non-conductive material and/or formed by at least one cut-out in the base plate.

2. The induction coil according to claim 1, wherein the base plate covers one said winding arrangement or a plurality of adjacent winding arrangements.

3. The induction coil according to claim 1, wherein a ground area of the at least one winding arrangement includes at least one acute angle.

4. The induction coil according to claim 1, a ground area of the at least one winding arrangement has a triangular shape including two or three acute angles.

5. The induction coil according to claim 4, wherein the ground area of the at least one winding arrangement includes one right angle.

6. The induction coil according to claim 5, wherein the induction coil comprises at least one pair of winding arrangements including one right angle, wherein said at least one pair of winding arrangements comprises a square or rectangular ground area.

7. The induction coil according to claim 6, wherein the at least one pair of winding arrangements is covered by one square or rectangular base plate.

8. The induction coil according to claim 6, wherein a plurality of pairs of said winding arrangements are arranged in a row or as a matrix.

9. The induction coil according to claim 1, wherein the at least one electrically conductive material of the base plate includes metal.

10. The induction coil according to claim 9, said at least one electrically conductive material including aluminum.

11. The induction coil according to claim 1, wherein the at least one electrically non-conductive material of the base plate includes mica.

12. The induction coil according to claim 1, wherein the base plate is made of a mica sheet, wherein the electrically conductive portion of said base plate is formed by conductive windings made of litz wire and deposited on said mica sheet.

13. The induction coil according to claim 1, wherein the base plate is made of metal and the electrically non-conductive portion is formed by a plurality of cut-outs in said base plate.

14. The induction coil according to claim 13, wherein the electrically non-conductive portion is formed by a plurality of slots and/or holes.

15. The induction coil according to claim 13, said metal being aluminum.

16. The induction coil according to claim 1, wherein the base plate includes a plurality of ferrite elements, wherein a concentration of said ferrite elements in the electrically non-conductive portion is higher than in the electrically conductive portion.

17. An induction cooking hob, comprising an induction coil comprising at least one base plate and at least one winding arrangement, wherein: the at least one winding arrangement includes at least one portion of high winding concentration and at least one portion of low winding concentration, the base plate is arranged above one or more of said at least one winding arrangement, the base plate includes at least one electrically conductive portion and at least one electrically non-conductive portion, the at least one electrically conductive portion of the base plate is arranged above at least one portion of high winding concentration of the at least one winding arrangement, the at least one electrically non-conductive portion of the base plate is arranged only above the at least one portion of low winding concentration of the at least one winding arrangement, the at least one electrically conductive portion of the base plate is made by at least one electrically conductive material, and the at least one electrically non-conductive portion of the base plate is made by at least one electrically non-conductive material and/or formed by at least one cut-out in the base plate.

Description

(1) The present invention will be described in further detail with reference to the drawing, in which

(2) FIG. 1 illustrates a schematic top view of a base plate for the induction coil according to a first embodiment of the present invention,

(3) FIG. 2 illustrates a schematic top view of a winding arrangement for the induction coil according to a preferred embodiment of the present invention,

(4) FIG. 3 illustrates a schematic top view of the base plate for the induction coil according to a second embodiment of the present invention,

(5) FIG. 4 illustrates a schematic sectional side view of the base plate for the induction coil according to a first example of the first embodiment of the present invention,

(6) FIG. 5 illustrates a schematic sectional side view of the base plate for the induction coil according to a second example of the first embodiment of the present invention,

(7) FIG. 6 illustrates a schematic sectional side view of the base plate for the induction coil according to a third example of the first embodiment of the present invention,

(8) FIG. 7 illustrates a schematic sectional side view of a pair of base plates for the induction coil according to a third embodiment of the present invention,

(9) FIG. 8 illustrates a schematic top view of the base plate for the induction coil according to a fourth embodiment of the present invention,

(10) FIG. 9 illustrates a schematic top view of two base plates for the induction coil according to a fifth embodiment of the present invention, and

(11) FIG. 10 illustrates a schematic top view of a formation of eight winding arrangements according to the preferred embodiment of the present invention.

(12) FIG. 1 illustrates a schematic top view of a base plate 10 for the induction coil according to a first embodiment of the present invention. In this example, the ground area of the base plate 10 is triangular and includes one right angle and two acute angles. The triangular base plate 10 may be equilateral. In general, the ground area of the base plate 10 may have an arbitrary shape, but at least one acute angle.

(13) The base plate 10 includes a conductive portion 14 and a non-conductive portion 16. The conductive portion 14 extends over the environment of the right angle. The non-conductive portion 16 extends over the environments of the acute angles. The conductive portion 14 is made of at least one conductive material, while the non-conductive portion 16 is made of at least one dielectric material. For example, the conductive portion 14 is made of aluminium and the non-conductive portion 16 is made of mica.

(14) FIG. 2 illustrates a schematic top view of a winding arrangement 12 for the induction coil according to a preferred embodiment of the present invention.

(15) The winding arrangement 12 has substantially the same ground area as the base plate 10 in FIG. 1. The winding arrangement 12 is triangular and includes one right angle and two acute angles. The winding arrangement 12 includes a portion of high winding concentration 18 in the environment of the right angle. Further, the winding arrangement 12 includes two portions of low winding concentration 20 in the environments of the both acute angles.

(16) Within the induction coil the base plate 10 of FIG. 1 is congruent with the winding arrangement 12 of FIG. 2. If the induction coil is a part of an induction cooking hob, then the base plate 10 of FIG. 1 is arranged above and covers the winding arrangement 12 of FIG. 2. Thereby, the conductive portion 14 of the base plate 10 covers the portion of high winding concentration 18 of the winding arrangement 12. In a similar way, the non-conductive portion 16 of the base plate 10 covers the portions of low winding concentration 20 of the winding arrangement 12.

(17) The conductive portion 14 of the base plate 10 reacts locally to the magnetic field generated by the portion of high winding concentration 18 of the winding arrangement 12, so that the coupling between the magnetic field and matter being heated by said magnetic field is reduced. In contrast, the non-conductive portions 16 of the base plate 10 do not react to the magnetic field generated by the portion of low winding concentration 20 of the winding arrangement 12, so that the coupling between the magnetic field and the matter being heated by said magnetic field remains unchanged. This allows a uniform heat distribution. For example, the matter being heated by the magnetic field is the bottom of a cooking pot.

(18) FIG. 3 illustrates a schematic top view of the base plate 10 for the induction coil according to a second embodiment of the present invention.

(19) The base plate 10 of the second embodiment is substantially the same as the base plate 10 shown in FIG. 1, but comprises additionally a number of ferrite elements 22. In this example, the base plate 10 comprises nine ferrite elements 22. The ferrite elements 22 are arranged above the base plate 10. The spatial density of the ferrite elements 22 above the conductive portion 14 of the base plate 10 is smaller than their spatial density above the non-conductive portions 16 of said base plate 10. The ferrite elements 22 are concentrated above the non-conductive portions 16 of the base plate 10. The ferrite elements 22 increase the coupling between the magnetic field and the matter being heated by said magnetic field.

(20) FIG. 4 illustrates a schematic sectional side view of the base 10 plate for the induction coil according to a first example of the first embodiment of the present invention. In this example, the conductive material is integrated inside a sheet made of dielectric material. The conductive material inside the dielectric material extends over the conductive portion 14 of the base plate 10. In the non-conductive portion 16 the sheet made of dielectric material does not contain any conductive material. For example, the dielectric material is mica, while the conductive material is litz wire inside the sheet made of mica. In this example, the layer thickness of the conductive material is marginally smaller than the layer thickness of the sheet made of dielectric material.

(21) FIG. 5 illustrates a schematic sectional side view of the base plate 10 for the induction coil according to a second example of the first embodiment of the present invention. In this example, the conductive material is arranged inside and below the sheet made of dielectric material. The conductive material inside and below the dielectric material extends over the conductive portion 14 of the base plate 10, while the dielectric material in the non-conductive portion 16 of the base plate 10 does not contain any conductive material. In this example, the conductive material has about the double layer thickness as the sheet made of dielectric material.

(22) FIG. 6 illustrates a schematic sectional side view of the base plate 10 for the induction coil according to a third example of the first embodiment of the present invention. In this example, the conductive material is integrated inside an upper portion of the sheet made of dielectric material. The conductive material inside the dielectric material extends over the conductive portion 14 of the base plate 10. In the non-conductive portion 16 the sheet made of dielectric material does not contain any conductive material. In this example, the conductive material has about the half layer thickness as the sheet made of dielectric material.

(23) FIG. 7 illustrates a schematic sectional side view of a pair of base plates 10 for the induction coil according to a third embodiment of the present invention. In the third embodiment the pair of base plates 10 is used instead of one single base plate. The base plates 10 have the same ground areas and are arranged on top of each other. The conductive material is attached at the bottom side of an upper base plate 10 and upon the top side of a lower base plate 10. The conductive material is arranged below the upper base plate 10 and upon the lower base plate 10. The conductive materials attached at the base plates 10 extend over the conductive portions 14 of said base plates 10, while the dielectric materials in the non-conductive portions 16 of the base plates 10 are not coated by any conductive material.

(24) FIG. 8 illustrates a schematic top view of the base plate 10 for the induction coil according to a fourth embodiment of the present invention. The base plate 10 has a triangular ground area. In particular, the base plate 10 is provided for covering the winding arrangement 12 shown in FIG. 2.

(25) The base plate 10 is made of one or more conductive materials, e.g. aluminium. The base plate 10 includes a plurality of slots 24. The slots 24 in the base plate of the fourth embodiment are arranged in a portion corresponding with the non-conductive portions 16 of the base plates 10 of the first and second embodiments. The portion of the base plate 10 of the fourth embodiment without slots 24 corresponds with the conductive portions 14 of the base plates 10 of the first and second embodiments. In contrast, the portion of the base plate 10 of the fourth embodiment with slots 24 corresponds with the non-conductive portions 16 of the base plates 10 of the first and second embodiments. The base plate 10 of the fourth embodiment includes the slots 24 instead the dielectric material the first and second embodiments.

(26) The portion of the base plate 10 with slots 24 reacts locally to the magnetic field generated by the portion of high winding concentration 18 of the winding arrangement 12, so that the coupling between the magnetic field and matter being heated by said is magnetic field is reduced. In contrast, the portion of the base plate 10 with the slots 24 do not or less react to the magnetic field generated by the portion of low winding concentration 20 of the winding arrangement 12, so that the coupling between the magnetic field and the matter being heated by said magnetic field remains unchanged. The arrangement of the slots 24 allows a uniform heat distribution.

(27) Furthermore, the slots 24 may be combined with the non-conductive portions 16. Thus, the base plate 10 may include the non-conductive portions 16 made of dielectric material as well as the slots 24. The dielectric material and the slots 24 have similar effects in view of the magnetic field.

(28) FIG. 9 illustrates a schematic top view of two base plates 10 for the induction coil according to a fifth embodiment of the present invention. The both base plates 10 in FIG. 9 differ in the details of the geometric arrangements of the slots 24. However, the both base plates 10 in FIG. 9 cause substantially the same physical effect.

(29) The base plates 10 in FIG. 9 have square shapes. Each square base plate 10 in FIG. 9 corresponds with two composite triangular base plates 10 of FIG. 8. In particular, each base plate 10 in FIG. 9 is provided for covering two triangular winding arrangements 12 shown in FIG. 2, wherein said winding arrangements 12 are arranged side-by-side, so that they form a square ground area.

(30) FIG. 10 illustrates a schematic top view of a formation of eight winding arrangements 12 according to the preferred embodiment of the present invention. Four pairs of winding arrangements 12 are arranged as a two-by-two matrix. Each pair of winding arrangements 12 form a square ground area. The square base plates 10 of FIG. 9 are provided for covering a pair of winding arrangements 12 in each case and/or the triangular base plates 10 of FIGS. 1, 2, 3 and/or 8 are provided for covering a single winding arrangements 12 in each case.

(31) Although illustrative embodiments of the present invention have been described herein with reference to the accompanying drawings, it is to be understood that the present invention is not limited to those precise embodiments, and that various other changes and modifications may be affected therein by one skilled in the art without departing from the scope or spirit of the invention. All such changes and modifications are intended to be included within the scope of the invention.

LIST OF REFERENCE NUMERALS

(32) 10 base plate 12 windings 14 conductive portion 16 non-conductive portion 18 portion of high winding concentration 20 portion of low winding concentration 22 ferrite element 24 slot