EP1234903A1

Electrical heating/warming fibrous articles

Abstract

A fibrous article that generates heat upon application of electrical power is formed, for example, by joining stitch and loop yarns to form a fibrous prebody, with the loop yarn overlaying the stitch yam at a technical face and forming loops at a technical back of the fabric prebody. An electrical resistance heating element (18), e.g., in the form of conductive elements, is joined with the stitch and loop yarns in the prebody at symmetrical and/or asymmetrical spaced-apart intervals as the stitch yarn, the electrical resistance heating elements extending between opposite edge regions of the fibrous article and conductor elements (40), e.g. located along edge regions, connect the electrical resistance heating elements to a source of electrical power (52). The technical face and/or the technical back of the fabric body may have fleece formed by finishing non-conductive fibers of the stitch yarn and/or loop yarn in a manner to avoid damage to electrical conductance of the electrical resistance heating elements. Preferably, the conductive elements have the form of a conductive yarn with one or more of: a core of insulating material, an electrical resistance-heating element, e.g., about the core, and a sheath material surrounding the electrical resistance-heating element (and core).

EP1234903A1, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 26 October 2021, 4.9 years ago.

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13 claims: 4 independent, 9 dependent

  1. 1
    A fibrous article adapted to generate heat upon application of electrical power, comprising:a fibrous body comprised of non-conductive fibers,a plurality of spaced apart electrical resistance heating elements in the form of conductive elements joined in said fibrous body with the non-conductive fibers and extending generally between opposite edge regions of said fibrous body, andelectrical conductor elements extending generally along said opposite edge regions of said fibrous body and adapted to connect said plurality of spaced apart electrical resistance heating elements in a parallel electrical circuit to a source of electrical power,said fibrous body having a technical face and a technical back, with fleece on at least one of said technical face and said technical back formed by finishing non-conductive fibers of said at least one of said technical face and said technical back in a manner to avoid damage to electrical conductivity performance ofthe conductive elements joined with the non-conductive fibers in said fibrous body.
  2. 7
    A fibrous article adapted to generate heat upon application of electrical power, comprising:a fibrous body comprised of non-conductive fibers,a plurality of spaced apart electrical resistance heating/warming elements in the form of conductive elements joined in said fibrous body together with the non-conductive fibers and extending generally between opposite edge regions of said fibrous body, andelectrical conductor elements extending generally along said opposite edge regions of said fibrous body and adapted to connect said plurality of spaced apart electrical resistance heating/warming elements in a parallel electrical circuit to a source of electrical power,said fibrous body having a face and a back, with fleece on at least one of said face and said back formed by finishing non-conductive fibers of said at least one of said face and said back in a manner to avoid damage to electrical conductivity performance of the conductive elements joined with the non-conductive fibers in said fibrous body, andsaid fibrous body comprising a first fibrous layer and a second fibrous layer, and said plurality of spaced apart electrical resistance heating/warming elements of said fibrous body being disposed generally between said first fibrous layer and said second fibrous layer.
  3. 10
    A fibrous article adapted to generate heat upon application of electrical power, formed by a method comprising the steps of:joining a stitch yarn and a loop yarn to form a fibrous prebody, with the loop yarn overlaying the stitch yarn at a technical face and forming in loops at a technical back of the fibrous prebody,at spaced-apart intervals, incorporating into the fibrous prebody as the stitch yarn an electrical resistance heating/warming element in the form of a conductive yarn,forming the fibrous prebody into a fibrous body, with the electrical resistance heating/warming elements extending between opposite edge regions of the fibrous body,in a manner to avoid damage to electrical conductivity performance of the electrical resistance heating/warming elements, finishing non-conductive fibers of at least one of said technical face and said technical back of the fibrous body to form a fleece surface region, andproviding conductive elements for connecting the electrical resistance heating/warming elements, in parallel, to a source of electrical power.
  4. 12
    A method of forming a fibrous article adapted to generate heat upon application of electrical power, said method comprising the steps of:joining a stitch yarn and a loop yarn to form a fibrous prebody, the stitch yarn forming a technical face of the fibrous prebody and the loop yarn forming a technical back of the fibrous prebody, the loop yarn forming in loops that overlay the stitch yarn at the technical face and at the technical back of the fibrous prebody,at spaced-apart intervals, incorporating into the fibrous prebody as the stitch yarn an electrical resistance heating element in the form of a conductive yarn,forming the fibrous prebody into a fibrous body, with the electrical resistance heating elements extending between opposite edge regions of the fibrous body,in a manner to avoid damage to electrical conductivity of the electrical resistance heating elements, finishing non-conductive fibers of at least one of said technical face and said technical back of the fibrous body to form a fleece surface region, andproviding conductive elements for connecting the electrical resistance heating elements, in parallel, to a source of electrical power.