Abstract:
A non-adherent wound dressing (1) comprises a substrate (2) in the form of a perforated sheet of melt-blown non-woven material. The substrate (2) is impregnated with, and coated on both sides with, a silicone gel (3).
Abstract:
A coated substrate is disclosed, including a solvent-sensitive substrate and a polyester coating disposed on the solvent-sensitive substrate, wherein the polyester coating includes a polyester copolymer of a polyol and a polyacid. A method for forming a coated substrate is disclosed including spraying solvated polyester material from a spray nozzle onto a solvent-sensitive substrate and drying the solvated polyester material to form a polyester disposed on the solvent-sensitive substrate, wherein the solvated polyester material and the polyester coating include a polyester copolymer of a polyol and a polyacid.
Abstract:
A tufted carpet comprises consecutively a primary backing stitched with loops of yarn to form a tufted structure projecting outwardly from the primary backing, a layer of latex, a layer of polyolefin, and a secondary backing comprising a woven polyolefin.
Abstract:
A FLAME-RESISTANT TEXTILE ARTICLE COMPRISING FILAMENTS, STAPLE FIBERS OR YARNS FROM NATURAL AND/OR SYNTHETIC MATERIAL AND A HOMOGENEOUS MIXTURE CONSISTING OF A HALOGEN PHOSPHORIC ACID ESTERS, A PHOSPHORUS-CONTAINING PLASTICIZING AGENT, A POLYALKYL HALIDE, ANTIMONY OXIDE AND A POLYURETHANE.
Abstract:
A self-healing resin composition includes 35 phr to 110 phr of a main resin, 10 phr to 30 phr of a self-healing component, a hardener, a matting agent, and a solvent. The main resin contains a diol monomer and a diisocyanate monomer. The self-healing component includes at least one of a cyclosiloxane and a self-healing component as represented in a formula (I) of:
R1 is formed from a first isocyanate, R2 is formed from a second isocyanate, and R3 is selected from the group consisting of:
“x” is an integer ranging from 3 to 50. “y” is an integer ranging from 3 to 50. “m” is an integer ranging from 3 to 50. “n1” is an integer ranging from 3 to 50. “n2” is an integer ranging from 3 to 50.
Abstract:
A waterproof and UV-resistant form-fitting cover comprising a four-way stretchable fabric that is pre-cut to an unstretched shape corresponding to 60-80% of a stretched shape that fits onto an object to be covered by the fabric, wherein the fabric is UV-resistant and waterproof. A method of manufacturing a form-fitting cover includes steps of receiving an electronic order specifying a size and shape for the cover, determining a material and blend based on the size and shape, computing a fabric size, and cutting a four-way stretchable fabric to an unstretched shape corresponding to the object to be covered.
Abstract:
A non-adherent wound dressing (1) comprises a substrate (2) in the form of a perforated sheet of melt-blown non-woven material. The substrate (2) is impregnated with, and coated on both sides with, a silicone gel (3).
Abstract:
A thin film may include a high toughness and a high air permeability, e.g., when applied to skin, and may be used as a functional member or an electronic functional member. The thin film may include fibers, which may be formed into a net shape constituting a fibrous net, and a coating film, which may be formed on the surfaces of the fibers and in gaps between the fibers. The fibers may be formed by an electrospinning method. The fibers may be formed by using any of a polyurethane, a polyvinyl alcohol (PVA) derivative, and a polyvinylidene fluoride (PVDF) as a material. The coating film may be formed by using polydimethylsiloxane (PDMS) as a material. A conductive film, which may be formed on a part of all of the coating film, may also be provided.
Abstract:
A composite material contains a nonwoven layer (i) which contains fibers formed from a first thermoplastic elastomer having meshes with a mesh size in the range from 10 to 100 μm, and a membrane layer (ii) which contains a second thermoplastic elastomer and having a layer thickness of less than 30 μm. The membrane is either pore-free (ii.1) or is porous and has pores with an average pore diameter of less than 2000 nm (ii.2). The membrane (ii) is at least partially in direct contact with the fibers of the nonwoven layer (i) and covers the mesh openings in the nonwoven layer (i) at least partially. The fibers of the first nonwoven layer (i) and the membrane (ii) in the contact area are at least partly joined to one another in an interlocking manner.
Abstract:
A multi-layer façade film having a fleece layer and two plastic film layers, the fleece layer being sandwiched between the plastic film layers and bonded thereto. Each layer is elastically extensible in all directions. The fleece is made of a thermoplastic elastomer in a melt-blown process. Each film layer includes an elastically deformable thermoplastic urethane and is connected to the fleece as an extrusion coating. The façade film has a yield strength of at least 40% in the length and width directions of the film. A 50 mm wide film strip has a tensile strength of at least 120 N, a maximum Sd value of 1.5 m for vapor permeability, and a value corresponding to a water column of at least 8 m for water impermeability.