H05B3/36

Thermal shield system
11691483 · 2023-07-04 ·

A thermal shield system with wireless control capabilities including a multi-layer shield, a housing containing a power source and processor, and a programmable control mechanism, wherein the control mechanism is in communication with the processor to facilitate direct or remote manual programming of time and temperature of the shield system. The multi-layer shield includes a perimeter having a first layer comprised of reflective material, a second layer comprised of a plurality of conductive pads arranged in a plurality of rows within a structural support sheet, a third layer comprised of thermal material, an electrical wire running through and connecting said conductive pads of the second layer, and a surround spanning the perimeter of the shield. The surround of the shield has flexibility to allow folding or rolling for compact storage of said shield and having rigidity to provide structural integrity of said shield. The electrical wire connects each of the plurality of conductive pads in a series to generate consistent and uniform heat while minimizing depletion of the power source.

Thermal shield system
11691483 · 2023-07-04 ·

A thermal shield system with wireless control capabilities including a multi-layer shield, a housing containing a power source and processor, and a programmable control mechanism, wherein the control mechanism is in communication with the processor to facilitate direct or remote manual programming of time and temperature of the shield system. The multi-layer shield includes a perimeter having a first layer comprised of reflective material, a second layer comprised of a plurality of conductive pads arranged in a plurality of rows within a structural support sheet, a third layer comprised of thermal material, an electrical wire running through and connecting said conductive pads of the second layer, and a surround spanning the perimeter of the shield. The surround of the shield has flexibility to allow folding or rolling for compact storage of said shield and having rigidity to provide structural integrity of said shield. The electrical wire connects each of the plurality of conductive pads in a series to generate consistent and uniform heat while minimizing depletion of the power source.

Method and arrangement for manufacture of a product or completion of a product
11546973 · 2023-01-03 ·

The invention relates to a method for manufacture of a product or in completion of a product. A flexible mat (20) is manufactured from an incompletely cured thermo-setting plastic, wherein the mat comprises an article (10) of electrically conductive material. The incompletely cured mat (20) including the article (10) is then formed as a function of a forming tool or to lie against or for contact with a product, whereafter final curing of the mat (20) is executed by supplying electric power to the article (10) or by external heat application or ultraviolet light. The invention also relates to an arrangement and uses.

AIRCRAFT FEATURE WITH HEATING SYSTEM FORMED OF LASER-INDUCED GRAPHENE

Disclosed is a first method of providing a heating system to an outer skin of an aircraft, that has the steps of forming laser-induced graphene (LIG) on a polymer sheet by directing laser energy towards the polymer sheet; coupling electrical leads to the LIG; and bonding the polymer sheet against the outer skin or erosion protection layer secured to the outer skin so that to the polymer sheet conforms with a shape of the outer skin.

Electrically conductive sheet for use in three-dimensional molding

The present disclosure provides an electrically conductive sheet for use in three-dimensional molding including: a pseudo-sheet structure in which plural electrically conductive linear bodies extending unidirectionally are arranged spaced apart from each other; and a resin protective layer provided on a surface of the pseudo-sheet structure. In the above mentioned electrically conductive sheet, each of the electrically conductive linear bodies in the pseudo-sheet structure includes: a first portion formed in a wave pattern having a wavelength λ1 and an amplitude A1; and a second portion formed in a wave pattern having a wavelength λ2 and an amplitude A2, at least one of which is different from the wavelength λ1 or the amplitude A1 of the first portion.

COMPOSITE ELECTRICALLY HEATABLE BLANKET FOR DOMESTICATED QUADRUPED ANIMALS

A composite horse heating blanket is comprised by an upper electrically heatable blanket section dimensioned and shaped to overlap a top section of a horse's body to cover the back spinal regions and upper regions of the rib cage of the horse on opposite sides of the horse. The upper heating blanket section has a marginal lower side free end edge band region adapted for the securement of a depending blanket section to provide cover below the upper region of the rib cage portion on opposite sides of the horse's body. The upper electrically heatable section is provided with electrical heating elements immovably retained therein at predetermined locations. A battery pouch is provided with dc batteries and a switch controls the electrical power from the batteries to the electrical heating elements. The side blanket sections may be removably attached to the upper blanket section to provide many additional features and advantages with heated or non-heated horse blankets.

Treatment instrument and manufacturing method of treatment instrument
11510727 · 2022-11-29 · ·

A treatment instrument including a heat transmitter that includes a treating surface and an installation surface, a substrate attached to the installation surface, and a heat generator formed on a surface of the substrate. The substrate surface and heat generator together form an uneven surface. First and second adhesion layers formed of a material having thermal conductivity and electrical insulation are provided between the installation surface and the substrate. The first adhesion layer is in close contact with the installation surface, and the second adhesion layer is in close contact with the heat generator and the substrate surface. The second adhesion layer is inserted into a recess in the uneven surface formed by the heat generator on substrate surface so as to increase the contact area between the second adhesion layer and the uneven surface.

Treatment instrument and manufacturing method of treatment instrument
11510727 · 2022-11-29 · ·

A treatment instrument including a heat transmitter that includes a treating surface and an installation surface, a substrate attached to the installation surface, and a heat generator formed on a surface of the substrate. The substrate surface and heat generator together form an uneven surface. First and second adhesion layers formed of a material having thermal conductivity and electrical insulation are provided between the installation surface and the substrate. The first adhesion layer is in close contact with the installation surface, and the second adhesion layer is in close contact with the heat generator and the substrate surface. The second adhesion layer is inserted into a recess in the uneven surface formed by the heat generator on substrate surface so as to increase the contact area between the second adhesion layer and the uneven surface.

Thin Film Heater
20220377853 · 2022-11-24 · ·

A method of fabricating a thin film heater includes a first step of etching a metal sheet from two opposing sides to provide a planar heating element; and a second step of attaching the heating element to a flexible electrically insulating backing film. The method allows for the fabrication of a thin film heater which provides more uniform heating and allows for greater range of selection of the properties of the flexible electrically insulating backing film and the parameters of the etching process. A heater assembly and an aerosol generating device incorporating the thin film are also described.

Thin Film Heater
20220377853 · 2022-11-24 · ·

A method of fabricating a thin film heater includes a first step of etching a metal sheet from two opposing sides to provide a planar heating element; and a second step of attaching the heating element to a flexible electrically insulating backing film. The method allows for the fabrication of a thin film heater which provides more uniform heating and allows for greater range of selection of the properties of the flexible electrically insulating backing film and the parameters of the etching process. A heater assembly and an aerosol generating device incorporating the thin film are also described.