GB2033705A - Flexible heating elements - Google Patents

Flexible heating elements Download PDF

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Publication number
GB2033705A
GB2033705A GB7930724A GB7930724A GB2033705A GB 2033705 A GB2033705 A GB 2033705A GB 7930724 A GB7930724 A GB 7930724A GB 7930724 A GB7930724 A GB 7930724A GB 2033705 A GB2033705 A GB 2033705A
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components
type
rows
heating element
passage
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GB7930724A
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GB2033705B (en
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Priority to GB7930724A priority Critical patent/GB2033705B/en
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Expired legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/20Heating elements having extended surface area substantially in a two-dimensional plane, e.g. plate-heater
    • H05B3/34Heating elements having extended surface area substantially in a two-dimensional plane, e.g. plate-heater flexible, e.g. heating nets or webs
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/014Heaters using resistive wires or cables not provided for in H05B3/54

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  • Resistance Heating (AREA)

Abstract

A heating element comprising a plurality of ceramic components strung together on a heating wire to form a flexible structure, adjacent ceramic components comprising integrally formed mating projections and depressions. The heating element may consist entirely either of two different types of components, 1,6, Fig. 10, or of three different types of components, 1, 6,7, Fig. 12, the components 1 being shown in detail in Figs. 1,2 and 3, (not shown), the components 6 in Figs. 4, 5 and 6 (not shown) and the components 7 in Figs. 7, 8 and 9, (not shown). <IMAGE>

Description

SPECIFICATION Flexible heating elements The present invention relates to flexible heating elements.
Flexible heating elements are known which comprise a series of ceramic blocks strung onto a heating wire. A heating element of considerable surface area can be obtained by arranging the heating wire such that it follows a circuituous path through a series of ceramic blocks. A flexible mat-like structure held together by the heating wire results.
British Patent Specification 893,125 describes a heating element in which small ovoid ceramic beads are arranged on the wire between adjacent blocks to improve flexibility without exposing the wire. The small beads do indeed improve flexibility but they cause handling difficulties during manufacture or subsequent modification to the heating element. To avoid these handling difficulties British Patent Specification No. 1,415,002 proposes the use of blocks having bead-shaped projections formed integrally therewith to provide the desired improved flexibility without using small ceramic components.
The system described in specification 1,415,002 does however require the provision of four different types of ceramic block to enable the assembly of generally rectangular heating elements and this increases the costs involved in obtaining, storing and assembling the ceramic components. In contrast, the system according to specification 893 125 requires only three different ceramic components including the small beads. Narrow heating elements having only two rows of ceramic components can in fact be fabricated from only three of the components described in specification 1,415,002, but such narrow elements can be fabricated from only two of the components described in specification 893,125.
It is an object of the present invention to provide a heating element which can be manufactured easily from a minimum number of ceramic components.
According to the present invention, there is provided a heating element comprising a plurality of ceramic components strung together on a heating wire to form a flexible structure, adjacent ceramic components comprising integrally formed mating projections and depressions, characterised in that the element comprises ceramic components of a first type each having a body defining two generally parallel passages therethrough, both passages terminating at one end in a common slot, one passage terminating at the other end in a depression, and the other passage terminating at the other end in a projection; and ceramic components of a second type having a body defining a passage therethrough terminating at one end in a depression and at the other end in a projection, the components of the first type forming two parallel rows, the components of the two rows being staggered relative to each other, and the components of the second type being arranged to fill spaces formed at the ends of the two relatively staggered rows such that the two rows of components are of substantially the same length and each passage in one row is aligned with a respective passage in the other row, the components being oriented such that the projections and depressions of adjacent rows interengage, and the wire being arranged to pass through the passages in each component and to lie in the slots in the components of said first type.
Preferably, the heating element also comprises ceramic components of a third type each having a body defining two generally parallel passages therethrough, each passage terminating at one end in a projection and at the other end in a depression, and the projection of one passage being located on the same side of the body as the depression of the other passage, wherein the components of said third type are arranged in at least one row located between the said two parallel rows, the components of each pair of adjacent rows being positioned relative to each other so that said passages are aligned, and the components of the second type being arranged to fill spaces formed at the ends of the relatively staggered rows such that a generally rectangular structure results, the components being oriented such that the projections and depressions of adjacent rows interengage, and the wire being arranged to pass through the passages in each component and to lie in the slots in the components of said first type.
It will be appreciated that a double row element can be manufactured using only two types of ceramic component, and a three or more row element can be manufactured using only three types of ceramic component.
When the element is assembled the interengaged projections and depressions can more relative to each other to enable the element to bend. The element can thus be fitted in close contact with for example curved surfaces.
Embodiments of the present invention will now be described, by way of example, with reference to the accompanying drawings, in which: Figs. 1,2 and 3 respectively show side, side sectional and bottom end views of a first ceramic component; Figs. 4, 5 and 6 respectively show side, side sectional and bottom end views of a second component; Figs. 7, 8 and 9 respectively shown side, side sectional and bottom end views of a third component used in the element of Fig. 1; and Figs. 10 to 13 show four embodiments of the invention manufactured from components as shown in Figs. 1to9.
Referring to Figs. 1 to 3, the illustrated ceramic body 1 is of a first type which comprises two passages 2 each of which terminates at one end in a - common slot 3 and at the other end in a projection 4 or a depression 5. The projection 4 and depression 5 have matching frusto-conical axial sections.
Referring to Figs. 4 to 6, the illustrated ceramic body 6 is of a second type which comprises a single passage 2 extending between a projection 4 and a depression 5.
Referring to Figs. 7 to 9, the illustrated ceramic body 7 is of a third type which comprises two passages 2, each terminating at one end in a projection 4 and at the other end in a depression 5. The projec tion 4 of one passage 2 is located on the same side of the body as the depression 5 of the other passage 2.
Referring now to Fig. 10, the illustrated embodi mentofthe invention comprises a row 8 of three members 1 of the first type (Figs. 1 to 3), and a row 9 made up from two members 6 of the second type (Figs.4 to 6) and two members 1 of the first type.
Thus the members 1 of the two rows 8 and 9 are staggered relative to each other, and the members 6 fill spaces atthe ends of the row9which resultfrom the fact that the row 8 has one more member 1 than the row 9. A wire 10 is passed via two further lead in members 6 along the path indicated by dotted lines.
Referring to Fig. 11, an alternative two row heating element is illustrated. This element is similar two that of Fig. 10 but row 8 has an extra member 6 and row 9 has an extra member 1 but only one member 6. The resulting structure differs from that of Fig. 10 in that the two ends of the wire 10 are fed in from opposite sides rather than the same side.
The embodiments of the invention illustrated in Figs. 10 and 11 which comprise only two rows of ceramic bodies are known as cross wound snake heaters. It will be noted that these embodiments are fabricated from only two types of ceramic bodies.
Generally however it is desired to provide heating elements of greater width, and Figs. 12 and 13 illustrate embodiments of the invention the basic structure of which enables the production of heating elements of any rectangular shape.
Referring to Fig. 12, the illustrated element comprises a row 11 of three members 1 of the first type, a row 12 of two members 7 of the third type (Figs. 7 to 9) and two members 6 of the second type, a row 13 of three members 7 of the third type, and a row 14 of two members 1 of the first type and two members 6 of the second type. Two further members 6 of the second type serve for leading in the wire 10. It will be noted that the members 6 of the second type in rows 12 and 14 fill in gaps in a rectangular array formed by the members 1 and 7. The structure of Fig. 12 may be expanded simply by adding a member 1 of the first type to rows 11 and 14 and a member7 of the third type to rows 12 and 13, or by adding pairs of rows corresponding to rows 12 and 13.Fig. 12 is thus illustrative of any element having an even number of rows of the members of the third type.
Referring to Fig. 13, the illustrated element comprises a row 15 of three members 1 of the first type, a row 16 of two members 7 of the third type and two members 6 of the second type, and a row 17 of two members 1 of the first type and two members 6 of the second type. Two further members 6 of the second type serve for leading in the wire 10. will again be noted that the members 6 in rows 16 and 17 fill in gaps in a rectangular array formed by the members 1 and 7. The structure of Fig. 13 may be expanded simply by adding a member 1 to rows 15 and 17 and a member 7 to row 16, or by adding pairs of rows corresponding to a row of three members 7 and a row such as row 16. Fig. 13 is thus illustrative of any element having an odd number of rows of the mem bers of the third type.
The interengagement of the projections and depressions in the assembled elements may be seen from Figs. 10 to 13. Assembly is a simple matter not only because at most only three ceramic compo nents are used, but also because the wire can be threaded through each component by always inserting the wire into the appropriate passage from its depression end. Thus the element of Fig. 12 can be assembled by threading the wire through the components in the following order starting at the left hand bottom corner of Fig. 12: 6,6,7,6,1,7,7,1,7,7,1,7,7,1,7,7,1,6,7,6,6. Therefore it is not necessary to think about the orientation of the individual components. Providing the components are selected in the correct order, the assembler merely inserts the wire into the depression end of a passage in the selected component and the correct orientation results automatically.
It will be appreciated thatthe use of a jig to hold the ceramic bodies will facilitate the insertion of the wire.
It will be appreciated that elements other than these illustrated in Figs. 10 to 13 may be manufactured from the components of Fig. 1 to 9. It will also be appreciated that the shapes of the ceramic components may if desired differ from those illustrated.
For example, the projections and depressions may be part-spherical rather than frusto-conical in axial section.

Claims (8)

1. A heating element comprising a plurality of ceramic components strung together on a heating wire to form a flexible structure, adjacent ceramic components comprising integrally formed mating projections and depressions, characterised in that the element comprises ceramic components of a first type each having a body defining two generally parallel passages therethrough, both passages terminating at one end in a common slot, one passage terminating at the other end in a depression, and the other passage terminating at the other end in a projection; and ceramic components of a second type having a body defining a passage therethrough terminating at one end in a depression and atthe other end in a projection, the components of the first type forming two parallel rows, the components of the two rows being staggered relative to each other, and the components of the second type being arranged to fill spaces formed at the ends of the two relatively staggered rows such that the two rows of components are of substantially the same length and each passage in one row is aligned with a respective passage in the other row, the components being oriented such that the projections and depressions of adjacent rows interengage, and the wire being arranged to pass through the passages in each component and to lie in the slots in the components of said first type.
2. A heating element according to claim 1, comprising ceramic components of a third type each having a body defining two generally parallel passages therethrough, each passage terminating at one end in a projection and at the other end in a depression, and the projection of one passage being located on the same side of the body as the depression of the other passage, wherein the components of said third type are arranged in at least one row located bet ween the said two parallel rows, the components of each pair of adjacent rows being positioned relative to each other so that said passages are aligned, and the components of the second type being arranged to fill spaces formed atthe ends of the relatively staggered rows such that a generally rectangular structure results, the components being oriented such that the projections and depressions of adjacent rows interengage, and the wire being arranged to pass through the passages in each component and to lie in the slots in the components of said first type.
3. A heating element according to claim 1, comprising two adjacent rows of components of said first type, one row comprising one less component of said first type than the other and being terminated at each end by a component of said second type.
4. A heating element according to claim 1, comprising two adjacent rows of components of said first type, each row comprising equal numbers of said components of said first type, each of the two adjacent rows being terminated at one end by a component of said second type.
5. A heating element according to claim 2, comprising an even number of rows of components of said third type.
6. A heating element according to claim 2, comprising an odd number of rows of components of said third type.
7. A heating element according to any preceding claim, wherein each projection is frusto-conical in axial section.
8. A heating element substantially as hereinbefore described with reference to the accompanying drawings.
GB7930724A 1978-09-29 1979-09-05 Flexible heating elements Expired GB2033705B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
GB7930724A GB2033705B (en) 1978-09-29 1979-09-05 Flexible heating elements

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB7838749 1978-09-29
GB7930724A GB2033705B (en) 1978-09-29 1979-09-05 Flexible heating elements

Publications (2)

Publication Number Publication Date
GB2033705A true GB2033705A (en) 1980-05-21
GB2033705B GB2033705B (en) 1982-10-20

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2144955A (en) * 1983-07-22 1985-03-13 Park Royal Porcelain Co Ltd Paint stripper element
EP0407027A2 (en) * 1989-05-26 1991-01-09 Shinko Pantec Co., Ltd. Method for repairing glasslined equipments by sol-gel process
EP0551830A1 (en) * 1992-01-13 1993-07-21 Husky Injection Molding Systems Ltd. Flexible heating element for a hot runner housing including method of manufacture and method of installation
GB2280580A (en) * 1993-07-27 1995-02-01 Turbine Blading Ltd Heat treatment apparatus for turbine blades

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2144955A (en) * 1983-07-22 1985-03-13 Park Royal Porcelain Co Ltd Paint stripper element
EP0407027A2 (en) * 1989-05-26 1991-01-09 Shinko Pantec Co., Ltd. Method for repairing glasslined equipments by sol-gel process
EP0407027A3 (en) * 1989-05-26 1991-01-30 Shinko Pantec Co., Ltd. Method and apparatus for repairing glasslined equipments by sol-gel process
EP0551830A1 (en) * 1992-01-13 1993-07-21 Husky Injection Molding Systems Ltd. Flexible heating element for a hot runner housing including method of manufacture and method of installation
GB2280580A (en) * 1993-07-27 1995-02-01 Turbine Blading Ltd Heat treatment apparatus for turbine blades
WO1995004444A1 (en) * 1993-07-27 1995-02-09 Turbine Blading Limited Heat treatment apparatus for turbine blades
GB2280580B (en) * 1993-07-27 1997-02-26 Turbine Blading Ltd Heat treatment apparatus for turbine blades

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Publication number Publication date
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