EP3662014A1

Polymer composition with improved mechanical properties

Abstract

This record has no abstract on file.

Term

11.9 yearsto projected expiry

Projected expiry 3 August 2038, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

17 claims: 12 independent, 5 dependent

  1. 1
    Claims of equivalent WO 2019025584 A1 ClaimsA composition comprising a melt blend of :a) 15 - 95 wt.-% of at least one thermoplastic elastomer, b) 5 - 50 wt.-% of at least one non-crosslinked elastomer, said proportions being based on the total weight of the blend, wherein the melt blend is obtained by melt processing of said blend components. The composition according to claim 1 , wherein the blend further comprises: c) 0.1 - 5.0 wt.-%, based on the total weight of the blend, of at least one catalyst. The composition according to claim 2, wherein the at least one non- crosslinked elastomer is crosslinked during the melt processing to a crosslinking degree, measured by using the method as defined in ISO 10147 standard, of not more than 10.0 wt.-%, more preferably not more than 5 wt.-%, even more preferably not more than 2.5 wt.- %, most preferably not more than 1 .5 wt.-%. The composition according to claim 2 or 3 wherein the at least one catalyst is selected from the group consisting of ZnO, CaO, MgO, AI2O3, CrO3, FeO, Fe2O3, NiO, zinc salts of fatty acids having at least 6 carbon atoms, preferably at least 13 carbon atoms, and zinc borate.
  2. 2
    5. The composition according to any of claims 2-4, wherein the blend further comprises at least one metal salt of a fatty acid different from the at least one catalyst and/or one or more fatty acids.
  3. 3
    6. The composition according to any of claims 2-5, wherein the at least one catalyst is ZnO, zinc salt of a fatty acid having at least 6 carbon atoms, preferably at least 13 carbon atoms, or zinc borate or a mixture of ZnO and at least one other metal oxide selected from the group consisting of CaO, MgO, AI2O3, CrO3, FeO, Fe2O3, and NiO.
  4. 4
    7. The composition according to any of previous claims, wherein the at least one non-crosslinked elastomer, before melt processing, has a mole percent unsaturation of not more than 5.0, preferably not more than 2.5.
  5. 5
    8. The composition according to any of previous claims, wherein the at least one non-crosslinked elastomer is selected from the group consisting of butyl rubber and halogenated butyl rubber, preferably a halogenated butyl rubber and/or the at least one thermoplastic elastomer is a thermoplastic polyolefin elastomer (TPE-O).
  6. 6
    9. The composition according to any of previous claims, wherein in the composition, the thermoplastic elastomer and the elastomer form a co-continuous phase.
  7. 7
    10. The composition according to any of previous claims, wherein the blend further comprises 0.1 - 10.0 % by weight, preferably 0.1 - 5.0 % by weight, based on the total weight of the blend, of at least one alkoxyamine hindered amine light stabilizer (NOR-HALS).
  8. 8
    1 1 . The composition according to any of previous claims comprising at least 75 wt.-%, preferably at least 85 wt.-% of the melt blend, based on the total weight of the composition.
  9. 9
    12. The composition according to any of previous claims having a blocking value, determined by means of the method cited in the description, of not more than 5.0 N/15 mm, preferably not more than 2.5 N/15 mm, most preferably not more than 1 .5 N/15 mm.
  10. 10
    13. The composition according to any of previous claims having elastic modulus, measured by using the method as defined in ISO 527-2 standard at a temperature of 23°C, of not more than 50 N/mm 2 , preferably not more than 25 N/mm 2 , most preferably not more than 15 N/mm 2 and/or a tensile strength at break, measured by using the method as defined in ISO 527-2 standard, of at least 5 N/mm 2 , preferably at least 7.5 N/mm 2 , most preferably at least 10 N/ mm 2 and/or an elongation at break, measured by using the method as defined in ISO 527-2 standard, of at least 500 %, preferably of at least 600 %, most preferably at least 650 %.
  11. 11
    14. The composition according to any of previous claims having a resistance to impact measured by using the method as defined in EN 12691 type A standard, of at least 1 Ό00 mm, preferably at least1 '250 mm and/or a resistance to impact measured by using the method as defined in EN 12691 type B standard, of at least 1 750 mm, preferably at least 2Ό00 mm, wherein both resistances are measured using a layer composed of the composition and having a thickness of 0.8 mm.
  12. 12
    15. A method for producing a polymer composition, the method comprising steps of:i) introducing the blend components as defined in one of claims 1 - 14 into a mixing apparatus, ii) melt processing the blend components in the mixing apparatus at a temperature that is above the melting point of the at least one thermoplastic elastomer.
  13. 16
    19. A method for producing a shaped article comprising steps of:i) Introducing the blend components as defined in one of claims 1 - 14 to a continuous type extrusion apparatus comprising an extruder and a flat die, ii) Melt processing the blend components in the extruder to obtain a melt processed mixture of the blend components, and iii) Extruding the melt processed mixture through the flat die to form a substrate layer, and optionally iv) Employing spaced apart calender cooling rolls through which the formed substrate layer is drawn immediately following step iii).