CA2877263C

Metal polymer composite, a method for its extrusion and shaped articles made therefrom

Abstract

The invention relates to a metal polymer composite having properties that are enhanced or increased in the composite. Such properties include color, magnetism, thermal conductivity, electrical conductivity, density, improved malleability and ductility and thermoplastic or injection molding properties. The metal polymer composite comprises a specific metal particulate, a polymer phase, and optionally an interfacial modifier.

CA2877263C, drawing sheet 1
Sheet 1 of 24

Term

Term ended

Expired 12 November 2024, 1.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

33 claims: 17 independent, 16 dependent

  1. 1
    CA 02877263 2015-11-06 CLAIMS 1. An injection molding process comprising heating a composite to an elevated temperature and injecting that composite into a mold;wherein the composite comprises a polymer and a metal particulate coated with an interfacial modifier, with the metal of the particulate having a density greater than 4 g/cm3 and the interfacial modifier being in an amount between 0.005 and 1 wt%;wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds'1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, io when measured under the same processing conditions, wherein the interfacial modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the particles within the polymer phase of the composite, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  2. 2
    A compression molding process comprising molding a composite under elevated pressure;wherein the composite comprises a polymer and metal particulate coated with an interfacial modifier, with the metal of the particulate 20 having a density greater than 4 g/cm3 and the interfacial modifier being in an amount between 0.005 and 1 wt%;wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds'1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same processing conditions, wherein the interfacial modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the particles within the polymer phase of the composite, compared CA 02877263 2015-11-06 to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  3. 3
    A sequential compounding process comprising blending a polymer and metal particulate coated with an interfacial modifier, with the metal of the particulate having a density greater than 4 g/cm3 and the interfacial modifier being in an amount between 0.005 and 1 wt%, to form a composite;wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds’1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured io under the same processing conditions, wherein the interfacial modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the particles within the polymer phase of the composite, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  4. 4
    A sequential compounding process comprising a first operation of blending a substantially solvent-free mixture of a polymer and metal particulate coated with an interfacial modifier, with the metal of the particulate having a density 20 greater than 4 g/cm3 and the interfacial modifier being in an amount between 0.005 and 1 wt%, to form a composite, and a second operation of extruding or molding an object, wherein the molding is compression molding or injection molding;wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds’1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same processing conditions, wherein the interfacial modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the 30 particles within the polymer phase of the composite, compared to the same CA 02877263 2015-11-06 composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  5. 5
    A sequential compounding process for manufacturing a composite article, comprising a first operation of blending a solvent, polymer, and metal particulate coated with an interfacial modifier, with the metal of the particulate having a density greater than 4 g/cm3 and the interfacial modifier being in an amount between 0.005 and 1 wt%, and a second operation of extruding or molding the article, wherein the molding is compression molding or injection molding;wherein the interfacial modifier is selected such that the composite exhibits an increased io melt flow, in seconds’1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same processing conditions, wherein the interfacial modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the particles within the polymer phase of the composite, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  6. 7
    A sequential compounding process comprising blending a solvent, polymer, and metal particulate coated with an interfacial modifier to form a composite, with the metal having a density greater than 7 g/cm3 and the interfacial modifier being in an amount between 0.005 and 1 wt%, followed by a solvent degassing of the composite during a melt portion of the compounding process;wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds’1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same processing conditions, wherein the CA 02877263 2015-11-06 interfacial modifier coating is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier allows for greater freedom of movement of the particles within the polymer phase of the composite, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  7. 8
    A method of manufacturing a metal polymer composite article comprising:(a) forming a metal polymer mixture by combining: (i) a metal particulate, the metal having a density greater than io 4 g/cm3 and an excluded volume of 13 to 60 volume %, the metal particulate comprising a coating of an effective composite forming amount of an interfacial modifier;and (ii) a polymer phase comprising a polymer in an amount sufficient to substantially occupy excluded volume of the particulate;(b) blending the metal polymer mixture to form a metal polymer composite blend having a density greater than 4 g/cm3 and a storage modulus of greater than 300 MPa;and (c) shaping the metal polymer composite blend to form a metal polymer composite article;20 wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds’1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same processing conditions, wherein the interfacial modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the particles within the polymer phase of the composite, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions. CA 02877263 2015-11-06
  8. 11
    The method of any one of claims 8 to 10, wherein the article comprises a pigment or a dye.
  9. 12
    The method of any one of claims 8 to 11, wherein the metal particulate comprises at least 5 wt% of the metal with particle size ranging greater than 250 microns. io
  10. 15
    The method of any one of claims 8 to 14, further comprising extruding the blend with a coextrudate comprising a polymer.
  11. 16
    The method of any one of claims 8 to 14, further comprising passing the blend through a shaped die to form a shaped composite.
  12. 18
    The method of any one of claims 8 to 17, wherein the metal particulate comprises a particle size of greater than 10 microns.
  13. 19
    The method of any one of claims 8 to 14, wherein the blending is performed in an extruder. CA 02877263 2015-11-06
  14. 24
    A method of manufacturing a metal polymer composite article comprising:(a) forming a metal polymer mixture by combining: (i) a metal particulate comprising stainless steel, the steel having a density greater than 4 g/cm3 and an excluded volume of 13 to 60 volume %, the metal particulate comprising a coating of an effective amount of an interfacial modifier;and (ii) a polymer phase comprising a thermoplastic polymer in an amount sufficient to substantially occupy the excluded volume of the particulate;20 (b) blending the metal polymer mixture to form a metal polymer composite having a density greater than 4 g/cm3 and a storage modulus of greater than 300 MPa;and (c) shaping the metal polymer composite to form the metal polymer composite article;wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds'1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same processing conditions, wherein the interfacial CA 02877263 2015-11-06 modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the particles within the polymer phase of the composite, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  15. 27
    The method of any one of claims 24 to 26, wherein the metal polymer composite comprises 0.005 to 3 wt% of the interfacial modifier.
  16. 30
    A method of manufacturing a metal polymer composite article comprising:(a) forming a metal polymer mixture by combining: (i) a metal particulate comprising a particle blend of first metal 20 particles and second metal particles, the metal having a density greater than 4 g/cm3 and an excluded volume of 13 to 60 volume %, the metal particulate comprising a coating of an effective amount of an interfacial modifier;and (ii) a polymer phase comprising a thermoplastic polymer in an amount sufficient to substantially occupy the excluded volume of the particulate;CA 02877263 2015-11-06 (b) blending the metal polymer mixture to form a metal polymer composite having a density greater than 4 g/cm3 and a storage modulus of greater than 300 MPa;and (c) shaping the metal polymer composite to form the metal polymer composite article;wherein the interfacial modifier is selected such that the composite exhibits an increased melt flow, in seconds'1, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same processing conditions, wherein the interfacial 10 modifier is chemically bonded to the metal particulate and not chemically bonded to the polymer phase in the composite, and wherein the interfacial modifier coating allows for greater freedom of movement of the particles within the polymer phase of the composite, compared to the same composite without the metal particulate having an exterior coating comprising the interfacial modifier, when measured under the same conditions.
  17. 33
    The method of any one of claims 30 to 32 comprising shaping the metal polymer composite by extruding at a temperature greater than 100 °C and at a shear rate of 1 to 500 s'1.
Independent claims17