STYRENIC BLOCK COPOLYMERS AND COMPOSITIONS CONTAINING THE SAME
A block copolymer of the formula [S-I-(I/B)] n X or [S-I-(I/B)-/B] n X or mixtures thereof wherein each S is independently a polymer block of an alkenyl arene; each I is a polymer block of isoprene; each B is a polymer block of butadiene and each (I/B) is a mixed random polymer block of isoprene and butadiene in a weight ratio I:B of from about 10:90 to about 90:10, n is an integer equal to or greater than 2, X is the residue of a coupling agent, and wherein the alkenyl arene content of the block copolymer represents a weight ratio of the alkenyl arene block to conjugated diene block of the total block copolymer and is in the range of from about 15 to about 35 wt %. Compositions for the manufacture of transparent, gel-free films, adhesives, fibers, injection molded articles, dipped goods, oil gels, and bitumen are also disclosed and comprise from about 3 to about 90 wt % of the claimed block copolymer and one or more components selected from thermoplastic resins, polyolefins, tackifying resins, end block resins, polystyrene, oils, engineering thermoplastics, fillers, and antioxidants.
1 . A block copolymer of the formula:
[S-I-(I/B)] n X or [S-I-(I/B)-B] n X or mixtures thereof,
wherein each S is independently a polymer block of an alkenyl arene having a molecular weight of 8,000 to 25,000,
each I is a polymer block of isoprene having a molecular weight of 5,000 to 10,000,
each (I/B) is a mixed random polymer block of isoprene and butadiene in a weight ratio of isoprene to butadiene of from about 10:90 to about 90:10,
n is an integer equal to or greater than 2,
each B is a polymer block of butadiene having a molecular weight of 1,000 to 50,000,
X is the residue of a coupling agent, where the block copolymer has a coupling efficiency of greater than 90 weight percent, and
wherein the alkenyl arene content of the block copolymer represents a weight ratio of the alkenyl arene block to conjugated diene block of the total block copolymer and is in the range of from about 10 to about 35 wt %.
2 . The block copolymer of claim 1 wherein each S block has an apparent molecular weight from about 10,000 to about 18,000.
3 . The block copolymer of claim 1 wherein each I block has an apparent molecular weight from about 6,000 to about 8,000.
4 . The block copolymer of claim 1 wherein each B block has an apparent molecular weight of from about 1,000 to about 15,000.
5 . The block copolymer of claim 1 wherein each I/B block has an apparent molecular weight of about 25,000 to about 150,000.
6 . The block copolymer of claim 1 wherein the apparent molecular weight of the block copolymer is from about 40,000 to about 400,000.
7 . The block copolymer of claim 1 wherein the apparent molecular weight of the block copolymer is from about 70,000 to about 150,000.
8 . The block copolymer of claim 1 wherein the block copolymer has a coupling efficiency greater than 93%.
9 . The block copolymer of claim 1 wherein the 1,2-vinyl bonds for the butadiene portion and the 3,4-vinyl bonds for the isoprene portion are in a proportion of at most 15 wt %, based on the total weight of the conjugated diene.
10 . A composition to be used for the manufacture of transparent, gel-free films, comprising:
a) at least 30 wt % of a styrenic block copolymer of the formula
[S-I-(I/B)] n X or [S-I-(I/B)-B] n X or mixtures thereof,
wherein each S is independently a polymer block of an alkenyl arene having a molecular weight of 8,000 to 25,000,
each I is a polymer block of isoprene having a molecular weight of 5,000 to 10,000,
each (I/B) is a mixed random polymer block of isoprene and butadiene in a weight ratio of isoprene to butadiene of from about 10:90 to about 90:10,
n is an integer equal to or greater than 2,
each B is a polymer block of butadiene having a molecular weight of 1,000 to 50,000,
X is the residue of a coupling agent, where the block copolymer has a coupling efficiency of greater than 90 weight percent, and
wherein the alkenyl arene content of the block copolymer represents a weight ratio of the alkenyl arene block to conjugated diene block of the total block copolymer and is in the range of from about 10 to about 35 wt %.
b) from 5 to 70 wt % of one or more components selected from the group consisting of olefin polymers, styrene polymers, styrene/diene block copolymers, hydrogenated styrene/diene block copolymers, tackifying resins, and end block resins, and
c) from 0 to 10 wt % of a plasticizing oil.
11 . A composition according to claim 10 , wherein the component b) is an olefin polymer selected from the group consisting of ethylene homopolymers, ethylene/alpha-olefin copolymers, propylene homopolymers, propylene/alpha-olefin copolymers, high impact polypropylene, butylene homopolymers and butylene/alpha olefin copolymers.
12 . A composition according to claim 10 wherein the component b) is a styrene polymer selected from the group consisting of crystal polystyrene, high impact polystyrene, medium impact polystyrene, styrene/acrylonitrile copolymers, styrene/acrylonitrile/butadiene (ABS) polymers, syndiotactic polystyrene, styrene/methyl-methacrylate copolymers and styrene/olefin copolymers or a block copolymer selected from the group consisting of styrene/diene block copolymers, hydrogenated styrene/diene block copolymers, and mixtures thereof.
13 . A composition according to claim 10 , wherein each S block has an apparent molecular weight from about 10,000 to about 18,000.
14 . A composition according to claim 10 , wherein each I block has an apparent molecular weight from about 6,000 to about 8,000.
15 . A composition according to claim 10 , wherein the apparent molecular weight of the block copolymer is from about 40,000 to about 400,000.
16 . A composition according to claim 10 , wherein the block copolymer has a coupling efficiency greater than 93%.
17 . A composition according to claim 10 , wherein the 1,2-vinyl bonds for the butadiene portion and the 3,4-vinyl bonds for the isoprene portion are in a proportion of at most 15 wt %, based on the total weight of the conjugated diene.
18 . Extruded mono- or multi-layer films prepared from the compositions according to claim 10 .
19 . Cast or blown mono- or multi-layer films for personal hygiene applications, prepared from the compositions according to claim 10 .
20 . The block copolymer of claim 10 having a melt flow of 1 to about 40 g/10 minutes as measured at 200° C. under a load of 5 kg in accordance with ASTM D1238; tensile strength of at least about 2700 psi as measured according to ASTM D412, and thermal stability of less than about 100% increase in viscosity after one hour at 230° C.