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:
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 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 present invention enhances the optical features of acrostats. The invention utilizes a barrier film having at least one layer containing optically enhancing elements. Aerostats formed from the barrier film possess unique aesthetic features.
Abstract:
Polymeric composites are produced by melt processing biobased polymers with an acrylated silicone polyether at temperatures that promote free radical reactions between the bio-based polymer and the acrylated silicone polyether. The bio-based compositions have an excellent balance of mechanical properties and are suitable for flame retardant applications.
Abstract:
Microfabricated particles are dispersed throughout a matrix to create a composite. The microfabricated particles are engineered to a specific structure and composition to enhance the physical attributes of a composite material. The microfabricated particles are generated by forming a profile extrudate. A profile extrudate is an article of indefinite length that has a cross sectional profile of a desired structure with micro-scale dimensions. Upon or after formation, the profile extrudate may be divided along its length into a plurality of microfabricated particles.
Abstract:
Microfabricated particles are dispersed throughout a matrix to create a composite. The microfabricated particles are engineered to a specific structure and composition to enhance the physical attributes of a composite material.