EP0154621A1 - Electrical heating cap. - Google Patents

Electrical heating cap.

Info

Publication number
EP0154621A1
EP0154621A1 EP83903037A EP83903037A EP0154621A1 EP 0154621 A1 EP0154621 A1 EP 0154621A1 EP 83903037 A EP83903037 A EP 83903037A EP 83903037 A EP83903037 A EP 83903037A EP 0154621 A1 EP0154621 A1 EP 0154621A1
Authority
EP
European Patent Office
Prior art keywords
cap
hair
heat
heating
head
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP83903037A
Other languages
German (de)
French (fr)
Other versions
EP0154621A4 (en
EP0154621B1 (en
Inventor
John G Hulett
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to AT83903037T priority Critical patent/ATE58815T1/en
Publication of EP0154621A1 publication Critical patent/EP0154621A1/en
Publication of EP0154621A4 publication Critical patent/EP0154621A4/en
Application granted granted Critical
Publication of EP0154621B1 publication Critical patent/EP0154621B1/en
Expired legal-status Critical Current

Links

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
    • H05B3/342Heating elements having extended surface area substantially in a two-dimensional plane, e.g. plate-heater flexible, e.g. heating nets or webs heaters used in textiles
    • 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
    • H05B2203/002Heaters using a particular layout for the resistive material or resistive elements
    • H05B2203/003Heaters using a particular layout for the resistive material or resistive elements using serpentine layout
    • 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

Landscapes

  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Cleaning And Drying Hair (AREA)
  • Resistance Heating (AREA)
  • Discharge Heating (AREA)
  • Catching Or Destruction (AREA)

Abstract

A heat cap (30) for applying heat to hair on a user's head, primarily to pile or row (42) of hair along the top of a user's head. The heat cap (30) is shaped to conform substantially to the shape of the user's head with the pile of hair thereon so as to apply heat evenly to the hair. An electrical heating coil (124) is disposed in and attached to the heat cap only in those areas (52) where heat is desired for the hair and is absent in areas (54) of the heat cap where it is undesirable to apply heat to the head. An adjustable flap (62, 64) with an attachment (66, 68) on each side of the heat cap enables the size of the cap to be adjusted to fit different users. The adjustable flaps (62, 64) also tend to hold the cap outward away from the ear and lower sides of the head and can be easily opened to enabe access (60) to the user's ear while the heat cap is being worn. An electrical thermostat automatically brings the heat cap to an optimal temperature and maintains the temperature during the desired conditioning period. The heat cap (30) is manufactured by cutting a plurality of similarly shaped flat pieces (32, 34) and joining them together along certain corresponding sides (36), and then disposing the heating coil (124) between the flat pieces.

Description

ELECTRICAL HEATING CAP BACKGROUND OF THE INVENTION
The frequent use of hot rollers and electrical hair dryers tends to cause hair damage, requiring periodic application of hair conditioning products. Preferably these conditioners are applied to damaged hair in a head-controlled environment for a short period of time, usually about 30 minutes. Although it is preferable to apply hair conditioners in a salon under the supervision of a professional hair dresser, hair conditioning is also commonly self-applied at home using a commercially available heat cap or other heat controlled apparatus.
A number of heating caps for home use are presently available in the marketplace. These caps are commonly heavy and bulky thereby causing difficulties with handling and storage. More importantly, the heating caps of the prior art all appear to have a boat-like shape, best referred to as a "prairie schooner" design which is ill-constructed to apply even, uniform heat to damaged hair with conditioner thereon. This boat -like shape creates hot spots on the head causing burns to the skin and scalp of the user. Many prior art heat caps are also constructed to apply heat to unnecessary body areas thereby wasting energy and causing additional discomfort to the ears and forehead of the user. The heat caps of the prior art also typically have a two-way or three-way switch allowing only a limited selection of temperature choices thereby frequently resulting in burns or inefficient usage by the inexperienced user. Finally, the unwieldy construction and shape of prior art heat caps makes it very difficult to assemble said products thereby increasing the cost and complexity of manufacturing and maintenance. SUMMARY OF THE INVENTION
The present invention is designed to overcome the diffi¬ culties discussed above with prior art heat caps. The heat cap of the present invention is specifically constructed to form a prismoidal-like cavity open at the base and conforming approximately to the shape of a user's head with a row of hair piled thereon. The heating cap of the present invention provides for electrical heating elements only in areas of the heat cap which are adjacent to said row of hair and other hair about said row of hair with the heating means being disposed throughout the conditioning zone at a substantial uniform distance from the row of hair. The remainder of the heat cap comprises a cool zone adjacent to portions of the user's head other than those portions with hair thereon the cool zone being without any heating means and thereby saves on energy usage and minimizes the possibility of burns to the user's skin or scalp. This cool zone is also preferably substantially spaced from the user's head portions for which no heat is needed.
The present invention also provides an electrical thermostat for automaticaEy bringing the heating cap to an optimal temperature and then holding the heat at that temperature during the desired conditioning period. The present invention also utilizes a flexible material for the heating cap having adjusting means for changing the size of the curved cavity so as to fit users' heads of different sizes. This adjustment means preferably also includes openings adjacent to the ears of the user's head so as to minimize any obstruction to hearing by the user and to allow the user to utilize the telephone during the heat conditioning process. The heating cap in the present invention also includes substantial insulating elements between the heating means and the inner surface of the heating cap so as to protect the user's head from exposure to extreme heat from any unlikely malfunction of the heating cap.
One embodiment of the present invention comprises a heating cap for applying heat to a pile of hair on top of a user's head. The heating cap includes a curved shell forming an open cavity with an inner surface shaped to conform substantially to the shape of the user's head with said pile of hair thereon. The
OM heating cap also includes heating means disposed within the shell for radiating heat through the inner surface to heat the pile of hair and other hair on the user's head. The inner surface of the shell has a conditioning zone adjacent to the pile of hair with heating means disposed throughout this conditioning zone at a substantially uniform distance from the pile of hair. The heating cap also includes a cool zone adjacent to portions of the user's head other than the top of the head having the pile of hair thereon and other hair on the user's head the cool zone being without any heating means.
In another embodiment of the present invention, the heating cap is provided for applying heat to a row of hair lying primarily along the top of the head. The heating cap includes an outer covering having the first and second sides each having a curvilinear edge joined to the curvilinear edge of the other side and a second edge separated from the second edge of the other side to form a prismoidal-like cavity open at the base conforming approximately to the shape of the user's head and a row of hair thereon. The heating cap also includes an inner covering conforming substantially to the shape of the outer covering and connected thereto along corresponding edges to form a closed cavity between the inner and outer coverings. The heating cap further includes heating means within such closed cavity throughout the portion of said cavity adjacent the row of hair for radiating heat through the inner covering to the row of hair.
In a further embodiment of the present invention, a method of manufacturing a heating cap is provided including the steps of cutting identically shaped first and second flat flexible members. Each said member has wing-shaped member pairs which are mirror-images of each other and which are joined together by a common bridge portion. Each wing-shaped portion includes first and second curvilinear edges separated by the bridge portion. The method includes the step of disposing a heating element and insulation material between the first and second flat members. The first and second flat members are joined together along their commonly shaped edges and folded along _ their common bridge portions so that the corresponding mirror-image member pairs of both members overlay each other. Finally, the commonly
OM . »,--. VV I curvilinear edges of each mirror-image member pair are joined together to form a flat heat cap having flexible sides which separate for form a cavity which conforms substantially to the shape of a human head having hair piled on thereon. From the foregoing, it can be seen that there are several advantages to the present invention in view of the prior art. The construction of the heat cap of the present invention is such that it is shaped to fit a user's head with hair piled thereon so as to provide uniform heat to the hair being conditioned. Heating elements are provided in the heat cap only where needed to condition the hair with a cool zone being provided elsewhere for the safety of the user and to minimize energy usage. The heat cap of the present invention is adjustable for different size heads. It includes an automatic thermostat to prevent overheating and to reach optimum energy usage and conditioning of the hair, and it includes an insulation pad between the coils and the head to prevent burning of the scalp . Finally, the size and construction of the present invention makes it extremely easy to manufacture, package and store and results in an attractive, light-weight, relatively inexpensive heat cap.
The following detailed description of the present invention together with reference to the figures shown therein provides additional features and advantages of the present invention as follows.
BRIEF DESCRIPTION OF THE DRAWINGS
FIGURE 1 is a perspective view of a typical prior art heating cap in place on the user's head;
FIGURE 2 is a side perspective view of a preferred embodiment of the heating cap of the present invention disposed on a user's head;
FIGURE 3 is a front perspective view of the heat cap of the present invention shown in FIGURE 2 ;
FIGURE 4 is a side elevation view of the heating cap of FIGURE 1 in a flat position off of the user's head;
FIGURE 5 is a side view of the heating cap of FIGURE 1 showing the adjustment means thereof;
O P FIGURES 6 , 7 and 8 are views of the heat cap in FIGURE 1 showing a preferred method of construction of the heating cap of the present invention; and
FIGURE 9 is an exploded view of a portion of the heating cap shown in FIGURE 8 with one of the adjustment flaps folded back to show the adjusting means of the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
Referring now to the figures , a detailed description is given of a preferred embodiment of the invention as illustrated in the accompanying drawings. FIGURE 1 shows a typical example of a prior art heating cap 10 similar in shape to many others of the prior art. Its "prairie schooner" shape is typified by a high vertical side 12 curving around the head of the wearer and terminated with a flat top 14 which curves downward around the back of the user's head.
For purposes of illustration only, the heating cap is shown as being transparent so that the position of the user's head can be seen. The disadvantages of the shape of this prior art heat cap are readily apparent. The flat top 14 of the cap tends to rest substantially flush along the top of the head where a row of hair 16 has been piled for the conditioning process. However, the portion of the hair row 18 and 19 at the front and back of the head respectively are a substantially greater distance removed from the electrical heating cap than the center portion 20 of the hair row 16 which is normally pushed flat against the user's head by the top of cap 10. Thus , a uniform distribution heat to the hair is not possible with this shape.
Moreover, in typical prior art heating caps of the type shown in FIGURE 1, the electrical heating coils are placed throughout the heating cap thus applying heat to various parts of the face, head and neck which do not require heat for the conditioning process. A particularly likely place for the application of undesirable heat is the forehead 22 of the user which typically lies quite close to the side wall 12 of the heating cap . Moreover, the user's ears and parts of the upper face normally rest quite close to the side wall 12. The result is that the user may be burned or injured by excessive heat especially where the flat top of the cap tends to rest substantially flush along the top of the head and at other unprotected areas of the face and head. Alternately, the user may adjust the heat low enough to be comfortable to those portions where heat is not desired thus substantially diminishing the effectiveness of the heat cap in applying heat to the row of hair 16-20 on top of the user's head.
Prior art heating caps of the type shown in FIGURE 1 are also difficult to assemble having as many as 25 steps involved in the assembly most of which require manual labor. Since the hat does not naturally lie flat, it cannot be manufactured or cut with a die and needs to be sewed together by hand. Moreover, the shape of prior art caps of the type shown in FIGURE 1 make them difficult to store and ship. Finally, the heat loss from having heating coils spaced throughout the prior art heat cap 10 is substantial. As much as 60% of the heat of these caps may be lost because of placement of coils in locations not requiring the application of heat to the hair.
FIGURES 2 and 3 show a preferred embodiment of the electrical heating cap 30 of the present invention. The cap comprises two hemispherical sides 32 and 34 which are joined together about their curved periphery 36 and not joined along their diametrical straight sides 38 and 40 respectively. The resulting shape of the heating cap 30 is such that it forms an open cavity within which the user's head, with a pile of hair thereon, comfortably fits.
FIGURE 4 also shows a transparent head cap for purposes of illustration only to show the advantages of the heat cap of the present invention. As shown, the hair is piled on top of the user's head from the hair in the front, on the sides and at the back of the user to from a row 42 lying along the top center of the head. This row is substantially equally spaced from the peaked top 36 of the heat cap along the top of the user's head. It is also spaced at substantially equal distances from the sides 32 and 34 of the electrical heat cap. Moreover, the shape of the heat cap of the present invention disposes the front and back 44 and 46 respectively of the cap peak a substantial distance from the user's forehead 48 and back of head 50 respectively. Thus, undesirable heat is not applied to the portions of the user's head for which heat is not required.
The heat cap 30 of the present invention comprises a hot zone 52 and a cold zone 54 separated by a dotted line 56 which is shown in FIGURES 2 and 3 only for purposes of illustration.
Dotted line 56 runs horizontally just about the user's ears from the front to the back of the cap. In the hot zone 52 , heating elements are uniformly spaced within the heat cap to apply heat to the portion of hair primarily piled on top of the user's head. No heating elements are provided in the cool zone 54 so that the user's forehead, ears and face are not subjected to undesirable heat which can cause discomfort or injury to the user. Moreover, by omitting the heating elements from undesirable areas in the heat cap 30, a substantial amount of electricity is saved thus resulting in a much more efficiently operated heat cap.
The resulting shape of the heat cap 30 of the invention provides a peaked top 36 which is up high around the top of the head where the hair of the user is piled high so as to apply heat uniformly to the hair without pushing the hair down or applying heat also to the uncovered scalp. The sides 32 and 34 of the heat cap 30 slant outward to conform substantially to the shape of the user's head and continue outward to a point 58 with a curved opening 60 for the user's ear. Thus, the heat cap 30 extends out away from the ear to minimize the application of undesirable heat to the ear and also provides for an aperture 60 through which the user can hear. The heat cap also extends outward away from the forehead of the user and away from the sides of user's head and face not requiring heat. Moreover, the cool zone 54 of the heat cap 30 also minimizes the application of heat to parts of the face and scalp where it is not needed. Thus , the heat cap of the present invention uniformly applies heat to the conditioned hair of the user while substantially minimizing the use of power and increasing the comfort of the user.
Referring again to FIGURE 4 , it can be seen that the side piece 32 of the heat cap includes an opening extending from the base 38 to the ear aperature 60. As a result, two opposing flaps 62 and 64 are formed each having an attachment member 66 and 68 respectively affixed thereto for attachment to each other. In the present embodiment shown in FIGURE 4 , attachment member 66 runs along the base 38 of cap side 32 and attachment member 68 runs substantially vertically along the flap side 64. Attachment member 66 and 68 are preferably made of some type of self-attaching material or device such as "Velcro." By positioning members 66 and 68 substantially perpendicular to each other, the flaps may be adjusted relative to each other so that the open cavity formed by the heating cap 30 may be made larger or smaller to fit the heads of different users. When desired, attachment members 66 and 68 may be dis¬ connected so that flap 62 as shown in FIGURE 4 or flap 64 may be bent back away from the user's head to more completely expose the user's ear for listening or using the telephone without removing the heat cap. Referring now to FIGURE 5 , the heat cap 30 of the present invention is shown in a flat position removed from the wearer's head. In this position, the sides 32 and 34 of heat cap 30 lie flat against each other so that heat cap 30 may be easily stored. Attachment members 66 and 68 on flap 62 and 64 respectively are disconnected. FIGURE 5 also shows an electrical heating cord 70 running from the back of the heat cap to an electrical plug 72. Preferably, no manually operated heat switch is needed for the selection of different temperatures by the user. Instead, heat cap 30 includes a conventional thermostat therein for sensing the temperature within the heat cap and maintaining the heating coils on or off so as to achieve and hold this optimal temperature. In the preferred embodiment of the present invention, the air temperature within the cavity of the cap is pref¬ erably held at about 125°F for a 30-minute conditioning period. Referring now to FIGURES 6 , 7 and 8 , a preferred method of manufacturing the heating cap of the present invention is shown. A flexible "wing-shaped" member 80 is cut from a long-wearing, heat resistant material such as reinforced vinyl.
Member 80 is cut to form two wing pairs 82 and 84 being mirror-images of each other which are joined together by common bridge portion 86. Wing member 82 has first and second curvilinear edges 88 and 90 which are separated by bridge portion 86. Wing member 84 likewise has similar curvilinear edges 92 and
f OM 94. Bridge member 82 also has a substantially straight edge 96 extending substantially radially from the curvilinear edge 88 and a second radial edge member 98 extending from the far end of curvilinear edge 90 opposite bridge 86. Wing member 84 has similar edges 100 and 102. A "pie-shaped" opening is formed between edges 96 and 98 by flaps 104 and 106 which meet at a circular aperature 108. Wing member 84 has similar flap members 110 and 112 terminating at a circular aperature 114.
An insulation member 120 is cut to approximately the shape of wing member 82 but being slightly smaller about its periphery. A similar insulation pad 122 is cut to overlay wing member 84. This insulation pad may be of any suitable insulating material such as "Keflon. " A heating element 124 is disposed about a portion of insulation pads 120 and 122 so as to provide a substantially even heating through the portion of the heat cap previously referred to as the "hot zone. " In the preferred embodiment shown in FIGURE 6 ,' the heating element is a small, insulated, flexible wire having sufficient resistance to generate substantial and uniform heat along its length. This heating element 124 also covers a corresponding portion of insulation pad
122 (not shown) .
A second insulation pad 132 is then cut and placed over the top of insulation pad 122 and the heating coil 124 thereon. Insulation pad 132 has preferably substantially the same size and shape as insulation pad 122. Correspondingly, a second insulation pad (not shown) is also cut and placed over the top of insulation pad 120 and the heating element line disposed thereon.
Referring now to FIGURE 7 , a second "wing-shaped" member 140 is cut having a shape and size substantially identical to that of wing-shaped member 80. Wing-shaped member 140 is then disposed over wing-shaped member 80 with the insulation pads and heating element which were previously described disposed between members 80 and 140. These two members are then joined together along their commonly shaped edges by sewing, heat sealing, gluing or the like. Preferably, the bridge portion 142 is not sewed directly to bridge portion 86 of member 80 since there are no open edges, so that the heating element can extend freely between opposite sides of the members. Finally, in FIGURE 8 , wing-shaped members 80 and 140 are folded along their corresponding bridge portions 86 and 142 so that the mirror-image pairs of both members are folded on each other. The mirror-image pairs are then attached together along common curvilinear edges 144 and 146 and common curvilinear edges 148 and 150 as shown in FIGURES 7 and 8. This attachment may be accomplished preferably by heat sealing, sewing, gluing or the like. The straight edges of the common wing-shaped pairs 152 , 154 , 156 and 158 are not joined together so as to leave an opening over which the heat cap may fit onto the user's head.
Referring now to FIGURE 9, the adjusting members 66 and 68 are attached to the flaps 62 and 64 of the side 32 of the' heap cap 30. Similar adjusting members are attached to side 34 opposite side 32 including adjusting member 160 shown in FIGURE 9. Members 66 and 68 are preferably attached by sewing or gluing but may be attached in any other suitable manner. As previously mentioned, members 66 and 68 are affixed so that the two members may be attached together at different positions allowing the user to adjust the size of the head cavity formed by the heat cap.
Although a preferred embodiment of the present invention has been described and disclosed in detail, it should be understood that the present invention includes other obvious modifications besides the embodiments shown. For example, the electrical heating cap of the present invention may be formed in somewhat different shapes from that shown provided that the cap shape provides an open head cavity designed substantially to fit the user's head having hair piled on the top thereof for conditioning. It should also be understood that different other suitable fabrics and materials may be utilized other than those described herein which have the necessary flexible and heat properties required for satisfactory .-operation of the heat cap of the present invention. Moreover, other minor modifications in the positioning of the heating elements and insulation pads which clearly fall within the scope of the present invention.
What is claimed is:

Claims

1. A heating cap for applying heat to a pile of hair on top of a user's head, comprising: a curved shell forming an open cavity with an inner surface shaped to conform substantially to the shape of the user's head with said pile of hair thereon; and heating means disposed within said shell for radiating heat through said inner surface to heat said pile of hair and other hair on the user's head the inner surface of said shell having a conditioning zone adjacent said pile of hair and said other hair with said heating means therein disposed throughout said conditioning zone at a substantially uniform distance from said pile of hair and said other hair and a cool zone adjacent to portions of the user's head other than said pile of hair and said other hair said cool zone being without said heating means therein.
2. The heating cap of Claim 1 wherein said heating means comprises an electrical circuit having a heating element therein extending substantially throughout said conditioning zone.
3. The heating cap of Claim 2 wherein said electrical circuit includes a thermostat for automatically controlling the heat emitted by said heating element.
4. The heating cap of Claim 1 wherein said curved shell comprises a flexible material for conforming to the shape of the user's head.
5. The heating cap of Claim 1 wherein said curved shell includes adjusting means for changing the shape of said curved shell to fit users' heads of different sizes.
6. The heating cap of Claim 1 wherein said curved shell further comprises openings adjacent the ears of the user's head.
7. The heating cap of Claim 1 and further comprising insulating means in said shell between said heating means and said L'Δ
inner surface for protecting the user's head from exposure to extreme heat from said heating means.
8. A heating cap for applying heat primarily adjacent to a row of hair lying substantially along the top of a user's head comprising: an outer covering with first and second sides each 5 having a curvilinear edge joined to the curvilinear edge of the other side and a second edge separated from the second edge of the other side to form a prismoidal-like cavity open at the base conforming approximately to the shape of the user's head with the row of hair thereon; *LQ an inner covering conforming substantially to the shape of the outer covering and connected thereto along corresponding edges to form a closed cavity between the inner and outer coverings , and heating means disposed within said closed cavity ■ 5 throughout the portion of said cavity adjacent said row of hair for radiating heat through said inner covering to said row of hair.
9. The heating cap of Claim 8 wherein said inner covering comprises a conditioning zone adjacent said row of hair having heating means for radiating heat to said hair and a cool zone adjacent to a portion of the head other than that portion having said row of hair said cool zone not having said heating
5 means therein.
10. The heating cap of claim 9 wherein said heating means comprises an electrical circuit having a heating element extending substantially throughout said conditioning zone.
11. The heating cap of Claim 10 wherein said electrical circuit comprises a thermostat for rapidly raising the temperature of said prismoidal-like cavity to a predetermined level and then maintaining that temperature.
12. The heating cap of Claim 8 wherein said outer covering further comprises adjustment means for changing the shape of said cavity to fit the heads of different users.
13. The heating cap of Claim 12 wherein said adjustment means comprises first and second adjustable connector pairs on each side of said cover each pair being spaced apart from each other.
14. The heating cap of Claim 12 wherein said adjustment means comprises a slot opening in each of said second edges each slot having first and second adjustable attachment members one on each side of the slot.
15. The heating cap of Claim 14 wherein said slot opening is disposed along said second edge to be adjacent an ear of said user so that the attachment members may be disengaged to enable access to said user's ear while the heat cap is disposed on the user's head.
16. A method of manufacturing a heating cap , comprising: cutting identically shaped first and second flat flexible members each member having wing-shaped member pairs which are mirror-images of each other and which are joined together by a common bridge portion each wing-shaped portion including first and second curvilinear edges separated by said bridge portion; disposing a heating element and insulation material between said first and second flat members; joining said first and second flat members together along their commonly shaped edges; folding said first and second members along their common bridge portions so that the corresponding mirror-image member pairs of both members overlay each other; and joining the commonly shaped curvilinear edges of each mirror-image member pair to form a flat heat cap having flexible sides which separate to form a cavity conforming substantially to the shape of a human head having hair piled on the top thereof.
17. The method of Claim 16 wherein said first and second flat members are joined together by heat sealing along said
- commonly shaped edges.
18. The method of Claim 16 wherein each mirror-image member pair are joined together by heat sealing along said commonly shaped curvilinear edges.
19. The method of Claim 16 wherein heating element is disposed only in a part of the area between the first and second flat members which is adjacent to said hair with the heat cap in position on the human head.
20. The method of Claim 16 wherein said first and second flat flexible members are made of vinyl.
21. A heating cap for applying heat to a user's head, comprising: first and second side members each member having two identically shaped layers of a flat, flexible material connected together and having heating means there between said first and second members being joined together along at least one common side; and adjusting means on each of said members for moving between first and second positions said first position enabling said first and second members to lie flat "adjacent each other and said second position curving said first and second members outward away from each other while being joined along said common side to form an open cavity to encompass the user's head.
EP83903037A 1983-08-29 1983-08-29 Electrical heating cap Expired EP0154621B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AT83903037T ATE58815T1 (en) 1983-08-29 1983-08-29 ELECTRIC HEATING CAP.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/US1983/001319 WO1985001178A1 (en) 1983-08-29 1983-08-29 Electrical heating cap

Publications (3)

Publication Number Publication Date
EP0154621A1 true EP0154621A1 (en) 1985-09-18
EP0154621A4 EP0154621A4 (en) 1986-01-28
EP0154621B1 EP0154621B1 (en) 1990-11-28

Family

ID=22175422

Family Applications (1)

Application Number Title Priority Date Filing Date
EP83903037A Expired EP0154621B1 (en) 1983-08-29 1983-08-29 Electrical heating cap

Country Status (6)

Country Link
EP (1) EP0154621B1 (en)
JP (1) JPS60502231A (en)
AT (1) ATE58815T1 (en)
AU (1) AU565756B2 (en)
DE (1) DE3382037D1 (en)
WO (1) WO1985001178A1 (en)

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DE102014012663B4 (en) * 2014-08-22 2017-08-17 Forster Rohner Ag Method of making a flexible heating system, flexible heating system and use

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Title
See also references of WO8501178A1 *

Also Published As

Publication number Publication date
DE3382037D1 (en) 1991-01-10
WO1985001178A1 (en) 1985-03-14
EP0154621A4 (en) 1986-01-28
ATE58815T1 (en) 1990-12-15
EP0154621B1 (en) 1990-11-28
AU565756B2 (en) 1987-09-24
AU2035483A (en) 1985-03-29
JPS60502231A (en) 1985-12-19

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