Abstract:
A substrate having a flame retardant polymer chemically bonded to at least a portion of the substrate. The use of a substrate possessing at least a partially coated outer surface of a flame retardant polymer enables the manufacturing of polymer composites, containing the coated substrate, that possess very effective flame retardant performance while reducing the loading levels over conventional flame retardant additives.
Abstract:
A substrate having a flame retardant polymer chemically bonded to at least a portion of the substrate. The use of a substrate possessing at least a partially coated outer surface of a flame retardant polymer enables the manufacturing of polymer composites, containing the coated substrate, that possess very effective flame retardant performance while reducing the loading levels over conventional flame retardant additives.
Abstract:
Un sustrato que tenga un polímero retardador de llama ligado químicamente a, al menos, una parte del sustrato. El uso de un sustrato que posea, al menos, una superficie exterior parcialmente revestida de un polímero retardador de llama permite la fabricación de compuestos poliméricos, que contienen el sustrato revestido, que presentan un alto rendimiento de retardo de llamas. A su vez, reducen los niveles de carga en comparación con los aditivos retardadores de llama convencionales.
Abstract:
Composiciones y métodos para producir compuestos poliméricos que contienen aditivos de refuerzo. En una modalidad, un relleno también está incluido en la fórmula. Los artículos producidos de los aditivos de refuerzo y los compuestos de esta invención son útiles como materiales de construcción y autopartes.
Abstract:
A polymeric matrix is melt processed with reactive monomers or oligomers that are miscible in the polymeric matrix. Upon initial melt processing and mixing, the reactive monomers or oligomers contained within the resulting polymeric matrix are cured with actinic radiation to form a polymeric alloy. The alloy of the polymeric matrix and the cured polymer possesses a non-equilibrium morphology and a surface energy that is effectively secured for a desired application and use after subsequent compounding.
Abstract:
A substrate having a flame retardant polymer chemically bonded to at least a portion of the substrate. The use of a substrate possessing at least a partially coated outer surface of a flame retardant polymer enables the manufacturing of polymer composites, containing the coated substrate, that possess very effective flame retardant performance while reducing the loading levels over conventional flame retardant additives.
Abstract:
The deposition of graphene is accomplished by various techniques that result in a change of the graphene's solubility in the liquid medium. The solubility change enables the deposition of the graphene onto the substrate. Once the graphene is deposited onto the substrate, the at least partially coated substrate may be separated from the liquid medium. The substrates may then serve as a carrier to deliver the graphene to a desired application.
Abstract:
A polymeric composite derived from a reclaimed polymeric material. The polymeric composite in particulate form can be thermally compressed into panels and other embodiments that require a component that possesses sufficient mechanical strength and moisture resistance. In certain embodiments, the panel may be utilized as one layer in a multilayered article.
Abstract:
A melt processable composite derived from the combination of a polymeric matrix, a cellulosic material, a coupling agent, a multifunctional coupling agent and an optional desiccant. The composite exhibits color fastness and resistance to moisture.
Abstract:
A melt processable composite derived from the combination of a polymeric matrix, a cellulosic material, a coupling agent, a multifunctional coupling agent and an optional desiccant. The composite exhibits color fastness and resistance to moisture.