THERMOPLASTIC ELASTOMERS DERIVED FROM DE-VULCANIZED RUBBER
A thermoplastic copolymer is made by first de-vulcanizing a sulfur-crosslinked elastomeric material to produce a liquid phase component. The liquid phase component is subsequently mixed with a compatible thermoplastic polymer at a temperature above its melting point thereof, and the resulting mixture is cooled to produce a solid product.
1 . A method of making a thermoplastic elastomer, comprising: utilizing a de-vulcanized elastomeric material which as such is a liquid phase component; subsequently mixing said liquid phase component with a compatible thermoplastic polymer at a temperature above the melting point thereof; and cooling the resulting mixture to produce a solid thermoplastic elastomer.
2 . A method as claimed in claim 1 , comprising mixing about 25-75% de-vulcanized elastomeric polymer with about 25-75% post-consumer, post-industrial or virgin thermoplastic resin with appropriate monomeric content.
3 . A method as claimed in claim 1 comprising mixing about 30-70% de-vulcanized SBR/NR derived from post-consumer tire crumb with about 30-70% virgin, post-industrial or post-consumer polystyrene resins.
4 . A method as claimed in claim 1 comprising mixing about 30-70% de-vulcanized SBR/NR derived from post-consumer tire crumb with about 30-70% virgin, post-industrial or post-consumer polyolefin resins.
5 . A method as claimed in claim 1 comprising mixing about 30-70% de-vulcanized NBR with about 30-70% virgin, post-industrial or post-consumer ABS polymer.
6 . A method as claimed in claim 1 comprising mixing about 30-70% de-vulcanized EPDM with about 30-70% virgin, post-industrial and post-consumer polyolefin resins.
7 . A method as claimed in claim 1 comprising mixing about 30-70% de-vulcanized EPDM with about 30-70% virgin, post-industrial and post-consumer ethylene vinyl acetate polymer.
8 . A method as claimed in claim 1 comprising mixing about 30-70% de-vulcanized post-consumer tire derived elastomer with about 30-70% virgin, post-industrial and post-consumer polyolefin resin.
9 . A method as claimed in claim 1 wherein the mixing takes place in an internal mixer such as a Banbury mixer, twin-screw extruder or Farrel Continuous Mixer.
10 . A method as claimed in claim 1 wherein the thermoplastic polymer elements may vary from 10-90% of the mixture.
11 . A method as claimed in claim 1 wherein the de-vulcanized elastomeric polymer elements may vary from 10-90% of the mixture.
12 . A method as claimed in claim 1 wherein an additional thermoplastic polymer element may be added to produce a ter-polymer alloy.
13 . A method of making a thermoplastic elastomer, comprising: utilizing a de-vulcanized elastomeric material which as such is a liquid phase component; subsequently mixing said liquid phase component with a compatible thermoplastic polymer at a temperature ideally within about 5 deg C above the melting point thereof; and cooling the resulting mixture to produce a solid thermoplastic elastomer.
14 . The method of claim 13 , wherein the thermoplastic is a monomer, copolymer or terpolymer.
15 . The method of claim 13 , wherein shear mixing is used to reduce the viscosity of the elastomer.
16 . A method of making a thermoplastic elastomer using a mixer, comprising: introducing a de-vulcanized elastomer phase to the mixer, reducing the elastomer phase viscosity by applied shear using the mixer, subsequently introducing a thermoplastic phase at a process temperature minimally above the melt point of the utilized plastic; and subsequently mixing the thermoplastic phase and elastomer phase to produce a thermoplastic elastomer.
17 . The method of claim 16 , wherein the temperature is ideally within about 5 deg Celsius above of the melt point of the thermoplastic.