Abstract:
The invention, relates to a fiber produced from ternary polymer mixture, developed for use generally in clothing, home and similar textiles, synthetic hair, wigs, plush, construction, defense and in the protective clothes, having quality and high fire-resistance. Fiber (1) comprises Co-Polyacrylonitrile (co-PAN) (2), Polyvinylchloride (PVC) (3), and Co-Polyvinylchloride (co-PVC) (4).
Abstract:
Provided are nylon fibers having fire retardant agents dispersed therein and methods for manufacturing such fibers. The fire retardant agents may comprise Tis(tribromophenyl) triazine and/or antimony trioxide. Fabrics made from such fibers are also provided.
Abstract:
Artificial grass (100, 200, 320) with good fire-retardant performance including its manufacturing process (300) is disclosed, particularly to be used for indoor applications. The fire retardant, particularly of halogen-based type (311), is incorporated within the artificial fiber filaments (101, 201, 301). The backing (102, 202, 302) onto which the artificial fiber filaments (101, 201, 301) are attached, may also be provided with a fire retardant.
Abstract:
Compositions and articles with improved flame properties and fabric with improved melt dripping properties is disclosed. Reduced melt dripping can prevent injuries. Methods for making and using such compositions, articles and fabric are disclosed.
Abstract:
The present invention is directed toward a flame retardant article comprising a polyolefin, an activatable flame retardant and an optional flame retardant activator wherein the flame retardant performance of the flame retardant article is at least about 1% higher on the limiting oxygen index (LOI) scale after activation treatment than before activation treatment as measured by LOI ASTM D2863. The flame retardant article can be made into a building substrate, garment, banner, light reflector and cover.
Abstract:
The present disclosure provides a flame retardant composition as well as fibers comprising a matrix and an additive wherein each of the matrix and the additive is independently selected from Ultra High Molecular weight Polyethylene (UHMPE) and Polyphosphazene (PPZ) and wherein, when the matrix is UHMPE, the additive is PPZ and when the matrix is PPZ, the additive is UHMPE. Further the present disclosure provides a process of melt spinning the flame retardant composition of a matrix and an additive wherein each of the matrix and the additive is independently selected from UHMPE and PPZ and wherein, when the matrix is UHMPE, the additive is PPZ and when the matrix is PPZ, the additive is UHMPE to obtain flame retardant fibers. The flame retardant fibers of the present disclosure has various industrial and medicinal applications
Abstract:
The present invention relates to a flame retardant plexifilamentary film- fibril strand comprising at least one polyolefin and at least one flame retardant selected from the group consisting of: phosphate esters, phosphonate esters, phosphinate esters, polyphosphazines, nitrogen-containing polyphosphates, hindered amines and mixtures thereof. The present invention also relates to flame retardant sheet made from the flame retardant plexifilamentary film-fibril strands. The sheet can be made into a flame retardant building substrate, garment, banner, light reflector and cover.