Patent classifications
D06N2201/0272
A STRAP
In summary, the invention is directed to a strap for tensioning a vehicle side curtain, the strap comprising: a strap body having a plurality of warp yarns and a weft yarn, the weft yarn being interleaved with each of the plurality of warp yarns, wherein the warp yarns are tensioned in a substantially straight configuration; and a coating to retain the warp yarns in their straight configuration.
FLEXIBLE, ARC RESISTANT, FLUID REPELLANT, HIGH TEMPERATURE AND ABRASION RESISTANT, CIRCUMFERENTIALLY CONTINUOUS, SEAMLESS TEXTILE SLEEVE AND METHOD OF CONSTRUCTION THEREOF
A textile sleeve having a seamless, circumferentially continuous wall including a textile layer formed of yarns interlaced with one another. The textile layer having an outer surface and an opposite inner surface bounding an enclosed cavity extending lengthwise along a central longitudinal axis between opposite open ends. At least some of the yarns include multifilaments resistant to heat and monofilaments resistant to heat, and a silicone-based coating adhered to the outer surface.
PROTECTION OF A MOBILE COMMUNICATION DEVICE
According to an example embodiment, an arrangement is provided, the arrangement including a mobile communication device including a terminal device for wireless communication with one or more other devices via a communication channel, and a fire retardant sleeve having a shape and size that enable accommodating the mobile communication device therein, wherein at least part of the mobile communication device is enclosed within the fire retardant sleeve.
SOUND ABSORBING FABRIC WITH IMPROVED THERMAL INSULATION AND METHOD OF MANUFACTURING THE SAME
Disclosed are a sound absorbing fabric with improved thermal insulation, and a method of manufacturing the same, wherein an inorganic aerogel powder and a thermosetting binder resin are impregnated into a non-woven fabric made of a heat-resistant fiber, wherein the inorganic aerogel powder has a surface modified by a surfactant to be uniformly mixed with and dispersed in a binder resin, thereby forming the sufficient number of micro cavities inside the non-woven fabric and increasing dispersibility of the inorganic aerogel powder, and thus heat resistance, sound absorbing and sound insulating properties, and thermal insulation properties can be significantly improved.
Ballistic fiber compositions, ballistic protective articles, and related methods
A ballistic fiber composition may include a fabric that may be comprised of polyamide fibers, an adhesive polymer coating the fabric, and a carbonaceous material and a ceramic filler embedded in the adhesive polymer coating. A method of producing a ballistic protective article may include mixing a carbonaceous material and a ceramic filler into an adhesive to create a mixture, and then coating a polyamide fabric with the mixture. A ballistic protective article may include an aromatic polyamide fabric that is coated with an elastomeric adhesive polymer coating, with calcium carbonate and a carbonaceous material embedded in the elastomeric adhesive polymer coating. The carbonaceous material may include at least one material selected from graphene, carbon nanofiber, and carbon nanotubes.
FIRE RESISTANT SHEET AND COVERED ARTICLE
There is provided a fire resistant sheet having excellent flame retardance and an article covered with a fire resistant sheet. The present invention provides a fire resistant sheet including: a fiber base material layer containing a non-melting fiber A having a high-temperature shrinkage rate of 3% or less and a thermal conductivity, conforming to ISO22007-3 (2008), of 0.060 W/m.Math.K or less, and a thermoplastic fiber B having an LOI value, conforming to JIS K7201-2 (2007), of 25 or more; and a resin layer containing expandable graphite, wherein a phase transition temperature, conforming to JIS K7121 (2012), of the resin is lower by 20 C. or more than an expansion starting temperature of the expandable graphite, and an article covered with the fire resistant sheet.
MEMBRANOUS BODY
A membranous body includes a super fiber layer configured with super fiber, and resin solvent layers that are in contact with the super fiber layer and formed to interpose the super fiber layer therebetween. The super fiber layer has been subjected to at least one of a deoiling treatment and a hydrophilic treatment.