MY142003A

Expandable polypropylene resin particle and molded object obtained therefrom by in-mold molding

Abstract

A SPECIFIC RELATIONSHIP MUST BE SATISFIED IN CASE OF: (A) A STRUCTURAL UNIT CONTAINING 100 TO 85 MOLE % DERIVED FROM PROPYLENE AND 0 TO 15 MOLE % DERIVED FROM ETHYLENE AND/OR ALPHA-OLEFIN HAVING 4 TO 20 CARBONS; (B) THE CONTENT OF POSITION IRREGULARITY UNITS FORMED BY 2, 1-INSERTIONS OF PROPYLENE MONOMER UNITS WITH RESPECT TO ALL PROPYLENE INSERTIONS IS 0.5% TO 2.0% AS MEASURED BY 13C-NMR AND THE CONTENT OF POSITION IRREGULARITY UNITS FORMED BY 1,3-INSERTIONS OF PROPYLENE MONOMER UNITS WITH RESPECT TO ALL PROPYLENE INSERTIONS IS 0.005% TO 0.4% AS MEASURED BY 13C-NMR; AND (C) THE WATER VAPOR TRANSMISSION RATE, WHICH IS Y [G/M2/24 HR] AS A FILM, AND THE MELTING POINT TM[?C] EXHIBIT A SPECIFIC RELATIONSHIP. FIGURE 1

MY142003A, drawing sheet 1
Sheet 1 of 41

Term

No projected expiry on record.

  1. Priority
  2. Filed
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  4. Today

20 claims: 20 independent, 0 dependent

  1. 1
    CLAIMS:1. A polypropylene resin composition comprising: 5 % to 95 % by weight of the following propylene polymer [A];and 95 % to 5 % by weight of the following propylene polymer [B], wherein the total amount of the propylene polymers [A] and [B] is 100 % by weight, wherein the propylene polymer [A] satisfies the following requirements (a) to (c): (a) a structural unit containing 100 to 85 mole % derived from propylene and 0 to 15 mole % derived from ethylene and/or alpha-olefm having 4 to 20 carbons, wherein the total amount of the structural unit derived from propylene and from ethylene and/or alpha-olefin having 4 to 20 carbons is 100 mol %;(b) as measured by 13C-NMR, the content of the position irregularity units formed by 2,1-insertions of propylene monomer units with respect to all propylene insertions is 0.5% to 2.0%, and the content of position irregularity units formed by 1,3-insertions of propylene monomer units with respect to all propylene insertions is 0.005% to 0.4%;(c) wherein the melting point is defined as Tm [°C], the water vapor transmission rate, when the propylene polymer [A] is formed into a film, is defined as Y [g/m2/24hr], and Tm and Y satisfy the following Formula (1): (-0.20)-Tm + 35 < Y < (-0.33)-Tm + 60 ... Formula (1);and the propylene polymer [B] satisfies only (a) of said requirements (a) to (c).
  2. 2
    A polypropylene resin composition as in claim 1, wherein the polypropylene resin composition exhibits a substantially single melting peak when measured using a differential scanning calorimeter.
  3. 3
    A polypropylene resin expanded particle comprising the polypropylene resin composition as in claim 1 or 2 as the base resin. AMENDMENT 1 5 JAN 2010 _MylPO PI 20032440 231
  4. 4
    A polypropylene resin expanded particle comprising:a core layer (11) in an expanded state comprising the polypropylene resin expanded particle or the polypropylene resin composition of any preceding claim;and a coat layer (12) comprising a thermoplastic resin and covering said core layer.
  5. 5
    A polypropylene resin expanded particle as in claim 4, wherein said coat layer (12) comprises an olefin polymer having a melting point that is less than the melting point of the polypropylene resin forming said core layer (11), or an olefin polymer that exhibits substantially no melting point.
  6. 6
    A polypropylene resin expanded particle as in claim 4, wherein said coat layer (12) is a composition in which a resin identical to the core layer (11) is blended in the amount of 1 to 100 parts by weight per 100 parts by weight of the olefin polymer. 15
  7. 7
    A polypropylene resin expanded particle as in claim 4, wherein said coat layer (12) comprises an olefm polymer having a melting point lower than either of the propylene polymers [A] and [B] forming the core layer (11) or an olefin polymer that exhibits substantially no melting point. 20
  8. 8
    The polypropylene resin expanded particle as in any one of claims 4-7, wherein said resin composition of said core layer (12) exhibits a substantially single melting peak when measured using a differential scanning calorimeter.
  9. 9
    A polypropylene resin expanded particle as in claim 4, wherein said propylene 25 polymer [A] and/or said polypropylene polymer [B] of said coat layer (12) are blended in the amount of 1 part to 100 parts by weight per 100 parts by weight of an olefin polymer. AMENDMENT 1 5 JAN 2010 MylPcT PI 20032440 232
  10. 10
    A polypropylene resin expanded particle or a composition as in any preceding claim, wherein said propylene polymer further satisfies the following requirement (d):(d) the isotactic triad fraction of the propylene unit chains, which are linked head-to-tail, is 97% or more as measured by 13C-NMR.
  11. 11
    A polypropylene resin expanded particle as in any preceding claim, wherein said propylene polymer further satisfies the following requirement (e):(e) the melt flow rate is 0.5 g/10 minutes to 100 g/10 minutes.
  12. 12
    The polypropylene resin expanded particle as in any one of claims 3-11, further containing a blowing agent that satisfies the following requirement (f):(f) wherein the critical temperature of the blowing agent is defined as Tc [°C], and Tc satisfies the following Formula (2): -90 < Tc < 400 ... Formula (2).
  13. 13
    A molded article (1;3) obtainable by molding a plurality the polypropylene resin expanded particles of any one of claims 3-12 in a mold, the molded article having a density of 0.5 g/cm3 to 0.008 g/cm3.
  14. 14
    A shock absorber (1) obtainable by molding the expanded particles of any one of claims 3-12 in a mold.
  15. 15
    A shock absorber (1) as in claim 14, wherein the density of said shock absorber (1) is 0.02 to 0.45 g/cm3. AMENDMENT 1 5 jan 2010 MylPO- PI 20032440 233
  16. 16
    A shock absorber (1) as in claim 14 or 15, further comprising a skin layer (15) disposed on a surface thereof, the skin layer (15) having a density that is higher than an inner portion of the shock absorber. 5
  17. 17
    An automobile bumper comprising the shock absorber (1) as in any one of claims 14-16 as its core material.
  18. 18
    A polypropylene resin expanded molded article (1; 3) obtainable by heating and molding a plurality of the polypropylene expanded particles of any one of claims 3-12, wherein:10 the rate of water vapor transmission Y [g/m2/hour] of the molded article, as measured in accordance with ASTM E-96, and the density X [g/cm3] of the expanded molded article satisfy the following Formula (3): Y < (43.6)-X2 - (4.5)-X + 0.15 ... Formula (3). 15
  19. 19
    A polypropylene resin expanded molded article (1;3) as in claim 18, wherein said polypropylene resin expanded molded article has a crystalline structure in which a peak inherent to the base resin and a peak at higher temperature than that of the inherent peak appear as endothermic peaks on a first DSC curve obtained when 2 mg to 4 mg of test specimens cut out from said polypropylene resin expanded molded article are heated up to 220 °C at a rate of 10
  20. 20
    20 °C/minute by means of a differential scanning calorimeter.
Independent claims20