MICROENCAPSULATED AMMONIUM OCTAMOLYBDATE AS A FLAME RETARDANT IN A CABLE JACKET
An indoor rated communications cable includes a communications carrying medium surrounded by a jacket. A material used to form the jacket is a polymer including a microencapsulated ammonium octamolybdate (AOM) additive therein. In some embodiments, the polymer may include polyvinyl chloride (PVC), fluorinated ethylene propylene (FEP) or polyolefin (PO). One or more additional flame retardants may also be added to the polymer. The communications cable may be a twisted pair, fiber optic or coaxial cable. The present invention also provides a method of forming the communications cable.
1 . A communications cable comprising:
a communications carrying medium; and
a jacket surrounding said communications carrying medium, wherein said jacket is formed of a polymer having a microencapsulated ammonium octamolybdate (AOM) additive therein.
2 . The communications cable according to claim 1 , wherein said communication cable is a plenum rated cable.
3 . The communications cable according to claim 1 , wherein said polymer includes polyvinyl chloride (PVC).
4 . The communications cable according to claim 1 , wherein said polymer includes low smoke polyvinyl chloride (PVC).
5 . The communications cable according to claim 1 , wherein said polymer includes fluorinated ethylene propylene (FEP).
6 . The communications cable according to claim 1 , wherein said communications carrying medium includes a first insulated conductor and a second insulated conductor, wherein said first insulated conductor is twisted with said second insulated conductor to form a first twisted pair, such that said communications carry medium in combination with said jacket causes said communications cable to be a twisted pair cable.
7 . The communications cable according to claim 6 , further comprising:
a shielding layer surrounding said first twisted pair, and located within said jacket, to form a shielded twisted pair cable.
8 . The communications cable according to claim 1 , wherein said communications carrying medium includes a central conductor surrounded by a dielectric material surrounded by a shielding layer, such that said communications carry medium in combination with said jacket causes said communications cable to be a coaxial cable.
9 . The communications cable according to claim 1 , wherein said communications carrying medium includes at least one optical fiber and one or more strength members, such that said communications carry medium in combination with said jacket causes said communications cable to be a fiber optic cable.
10 . The communication cable according to claim 1 , wherein said polymer includes other additives therein beside said microencapsulated AOM additive.
11 . The communication cable according to claim 10 , wherein said other additives include at least one of an additional flame retardant additive and an ultraviolet (UV) light resistance additive.
12 . The communications cable according to claim 1 , wherein said communications cable achieves the requirements of National Fire Protection Association 262: Standard Method of Test for Flame Travel and Smoke of Wires and Cables for Use in Air-Handling Spaces or the flame test specified by Underwriters Laboratories Inc. UL-910.
13 . The communications cable according to claim 1 , wherein said polymer is foamed to reduce the dielectric constant of said polymer.
14 . A communications cable comprising:
a communications carrying medium including a first insulated conductor and a second insulated conductor, wherein said first insulated conductor is twisted with said second insulated conductor to form a first twisted pair;
an inner jacket surrounding said first twisted pair; and
an outer jacket surrounding said inner jacket, wherein said outer jacket is formed of a polymer having a microencapsulated ammonium octamolybdate (AOM) additive therein.
15 . The communications cable according to claim 14 , further comprising:
a shielding layer surrounding said inner jacket and being surrounded by said outer jacket.
16 . The communications cable according to claim 14 , wherein said inner jacket is formed of a material including polyvinyl chloride (PVC).
17 . The communications cable according to claim 16 , wherein said polymer of said outer jacket includes fluorinated ethylene propylene (FEP).
18 . A method of making a communications cable comprising:
feeding a communications carrying medium from a reel; and
extruding an outer jacket around the communications carrying medium, wherein the outer jacket is formed of a polymer having a microencapsulated ammonium octamolybdate (AOM) additive therein.
19 . The method according to claim 18 , wherein said extruding operation includes melting pellets formed of the polymer with the AOM additive already within the pellets to form a compound, and passing the compound through an extrusion die to form the outer jacket surrounding the communications carrying medium.
20 . The method according to claim 18 , further comprising:
extruding an inner jacket around the communications carrying medium prior to extruding the outer jacket, such that the outer jacket surrounds the inner jacket.