IP Library › Granted Patent US 9,133,317
Granted Patent B2
US 9,133,317 · App. 12/087,157 · Granted Sep 15, 2015

Coating material

Inventors: Keiichi Asami (Sodegaura, JP); Masako Yoshida (Sodegaura, JP)
Assignee: MITSUI CHEMICALS, INC.
C08J7/047C08G18/0823C08G18/34C08G18/4854C08G18/6666C09D5/002C09D5/02C09D123/00C09D123/10C09D175/04B05D1/02B05D7/02B05D7/14C08J2323/00Y10T428/31692Y10T428/31913
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Quick Facts
Patent No.
US 9,133,317
App. No.
12/087,157
Granted
Sep 15, 2015
Kind
B2
Abstract

There is provided a coating material comprising a mixture of a water-based resin composition of a thermoplastic elastomer (A) and/or a thermoplastic elastomer (B) in which at least one moiety is modified with a functional group; one of a water-based resin composition of a resin (G) formed from a copolymerizable monomer (G-1) which includes a monomer having an α,β-monoethylenic unsaturated group and other copolymerizable monomer, and a water-based resin composition of an urethane resin (U); and a water-based resin composition of a petroleum-based hydrocarbon resin (D) and/or a rosin-based resin (E) and/or a terpene-based resin (F). The coating material causing no separation phenomenon provides a coating composition or a primer with which spray coating is possible, and is a completely water-based coating material exhibiting an excellent adhesivity to a molded article of various resins such as polyolefin and a synthetic rubber or to metals such as a steel plate and aluminum.

Claims (72)

1. A coating material comprising a mixture of a water-based resin composition of

a thermoplastic elastomer (A),

which may optionally be modified with functional groups, and comprises

a propylene-based elastomer (A-3)

 having a melting point measured by differential scanning calorimetry (DSC) of below 100° C. or no observed melting point,

and

an isotactic polypropylene (A-4)

 selected from

homopolypropylene

 having a copolymer component excluding propylene of 3 mol% or less,

block polypropylene

 having a normal decane elution rubber component of 3 to 30 wt %,

and

random polypropylene

 having the melting point measured by DSC in the range of 110 to 150° C.;

a water-based resin composition of an urethane resin (U); and

a water-based resin composition of

a petroleum-based hydrocarbon resin (D) and/or

a rosin-based resin (E)

selected from the group consisting of

natural rosins, polymerized rosins, modified rosins with maleic acid, fumaric acid or (metha)acryric acid, esterified products of rosins, phenol-modified products of rosins, esterified products of the phenol-modified products of rosins

and

hydrogenated products thereof

and/or

a terpene-based resin (F).

2. The coating material according to claim 1 , wherein the propylene-based elastomer (A-3) having a melting point measured by differential scanning calorimetry (DSC) of below 100° C. or no observed melting point is one of a propylene homopolymer or a copolymer of propylene and at least one α-olefin having 2 to 20 carbon atoms excluding propylene, wherein the ethylene content is from 0 to 30 mol% and the α-olefin having 4 to 20 carbon atoms is from 0 to 30 mol%.

3. The coating material according to claim 1 , wherein the thermoplastic elastomer (A) comprises 50 to 99.5 wt% of the propylene-based elastomer (A-3) having a melting point measured by differential scanning calorimetry (DSC) of below 100° C. or no observed melting point, and 0.5 to 50 wt% of the isotactic polypropylene (A-4), while (A-3)+(A-4)=100 wt%.

4. A coating composition containing the coating material of claim 1 .

5. A primer containing the coating material of claim 1 .

6. A coated film, which is formed by coating a substrate with the coating material of claim 1 .

7. The coated film according to claim 6 , wherein the substrate is a polyolefin-based resin.

8. The coated film according to claim 6 , wherein the substrate is a metal.

9. A coating material comprising 10 to 98 parts by weight of

a water-based resin composition of a thermoplastic elastomer (A),

which may optionally be modified with functional groups, and comprises

a propylene-based elastomer (A-3)

having a melting point measured by differential scanning calorimetry (DSC) of below 100° C. or no observed melting point,

and

an isotactic polypropylene (A-4)

 selected from

homopolypropylene

 having a copolymer component excluding propylene of 3 mol% or less,

block polypropylene

 having a normal decane elution rubber component of 3 to 30 wt%,

and

random polypropylene

 having the melting point measured by DSC in the range of 110 to 150° C.;

1 to 89 parts by weight of

a water-based resin composition of an urethane resin (U); and

1 to 89 parts by weight of

a water-based resin composition of a petroleum-based hydrocarbon resin (D) and/or

a rosin-based resin (E)

selected from the group consisting of

 natural rosins, polymerized rosins, modified rosins with maleic acid, fumaric acid or (metha)acryric acid, esterified products of rosins, phenol-modified products of rosins, esterified products of the phenol-modified products of rosins and hydrogenated products thereof

and/or

a terpene-based resin (F),

wherein the (A), (U), and (D) and/or (E) and/or (F) are mixed to give the total of 100 parts by weight.

10. A coating material comprising a mixture of a water-based resin composition of a thermoplastic elastomer (A),

which may optionally be modified with functional groups, and comprises

a propylene-based elastomer (A-1) and/or a propylene-based elastomer (A-2),

wherein the propylene-based elastomer (A-1) has (1)(a) 50 to 93 mol% of units derived from propylene, (b) 5 to 48 mol% of units derived from a-olefin having 4 to 20 carbon atoms, and (c) 2 to 40 mol% of units derived from ethylene, in such proportion, while the sum of structural units derived from propylene, structural unit derived from ethylene, and structural units derived from α-olefin having 4 to 20 carbon atoms is 100 mol%; (2) an intrinsic viscosity [η] measured at 135° C. in decalin of 0.1 to 12 dl/g; and (3) a molecular weight distribution (Mw/Mn) determined by gel permeation chromatography (GPC) of 3.0 or less, and

wherein the propylene-based elastomer (A-2) has (1)(a) 50 to 95 mol% of units derived from propylene and (b) 5 to 50 mol% of units derived from a-olefin having 4 to 20 carbon atoms; (2) an intrinsic viscosity [η] measured at 135° C. in decalin of 0.1 to 12 dl/g; and (3) a molecular weight distribution (Mw/Mn) determined by gel permeation chromatography (GPC) of 3.0 or less;

a water-based resin composition of an urethane resin (U); and

a water-based resin composition of

a petroleum-based hydrocarbon resin (D) and/or

a rosin-based resin (E)

selected from the group consisting of

natural rosins, polymerized rosins, modified rosins with maleic acid, fumaric acid or (metha)acryric acid, esterified products of rosins, phenol-modified products of rosins, esterified products of the phenol-modified products of rosins

and

hydrogenated products thereof

and/or

a terpene-based resin (F).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2008
From: ASAMI, KEIICHI; YOSHIDA, MASAKO
To: MITSUI CHEMICALS, INC.
Reel/Frame 021207/0305 →
Priority Claims (4)
JP 2005-377788 · Dec 28, 2005 · national
JP 2006-011719 · Jan 19, 2006 · national
JP 2006-104864 · Apr 6, 2006 · national
JP 2006-149732 · May 30, 2006 · national
Continuity (1)
Related Publication 20090162679A1 · Jun 25, 2009