THERMOPLASTIC ELASTOMER COMPOUNDS HAVING HIGH BIORENEWABLE CONTENT FOR OVERMOLDING ON NON-ELASTOMERIC POLYMER SUBSTRATES
TPE compounds having at least 35 weight percent of bio-renewable content are disclosed as candidates for use as overmolding layers on to polypropylene substrates.
1 . A thermoplastic elastomer compound, comprising:
(a) HSFC
(b) bio-PE
(c) SEBS
(d) PP
(e) mineral oil,
wherein the compound has a bio-renewable content of at least 35 weight percent and a 90° Peel Test on PP of greater than 10 pli.
2 . The compound of claim 1 , wherein the HSFC is bio-renewable content from sources comprising sugar cane or corn and wherein the bio-PE is bio-renewable content from sources comprising sugar cane.
3 . The compound of claim 1 , wherein the compound further optional additives selected from the group consisting of adhesion promoters; biocides; anti-fogging agents; anti-static agents; dispersants; fillers and extenders; fire and flame retardants and smoke suppressants; hardness adjusters; initiators; lubricants; micas; mold release agents; colorants; plasticizers; processing aids; release agents; silanes, titanates; zirconates; slip agents; anti-blocking agents; stabilizers; stearates; ultraviolet light absorbers; viscosity regulators; waxes; and combinations of them.
4 . The compound of claim 3 , wherein the optional additives comprise UV absorbers, anti-oxidants, mold release agents, or combinations thereof.
5 . The compound of claim 3 , wherein the weight percent ranges of ingredients are
HSFC TPE
30-80
Bio-based PE
1-30
SEBS
3-40
PP
1-30
Mineral Oil
3-60
Optional Additives
0.05-2.
6 . The compound of claim 4 , wherein the weight percent ranges of ingredients are
HSFC TPE
40-60
Bio-based PE
5-20
SEBS
5-20
PP
5-20
Mineral Oil
10-30
Optional Additives
0.1-1.
7 . The compound of claim 3 , wherein the weight percent ranges of ingredients are
HSFC TPE
42-48
Bio-based PE
7-17
SEBS
10-15
PP
7.5-9
Mineral Oil
16-22
Optional Additives
0.6-1.0.
8 . The compound of claim 4 , wherein the weight percent ranges of ingredients are
HSFC TPE
42-48
Bio-based PE
7-17
SEBS
10-15
PP
7.5-9
Mineral Oil
16-22
Optional Additives
0.6-1.0.
9 . The compound of claim 1 , wherein the Shore A Hardness is less than 65, wherein the percent Elongation is less than 100, and wherein the 90° Peel Test on PP is at least about 15.
10 . A polymeric article, comprising a compound of claim 1 .
11 . The polymeric article of claim 10 , wherein the article is in final molded, extruded, thermoformed, calendered, spun, casted, or 3D-printed shape.
12 . The polymeric article of claim 10 , wherein the compound is an overmolding layer and where the polymeric article also comprises a thermoplastic overmolded layer, wherein the overmolding layer is two-component molded onto the overmolded layer.
13 . The polymeric article of claim 12 , one overmolding layer of the compound is one formulation and wherein a second overmolding layer of the compound is a second formulation and wherein both overmolding layers are two-component molded to the overmolded layer.
14 . The polymeric article of claim 12 , wherein each overmolding layer provides a gripping surface for a human hand.
15 . A method of using the compound of claim 1 to form a polymer article, wherein the method comprises the step of shaping the compound to form the article, wherein shaping is selected from the group consisting of molding, extrusion, thermoforming, calendering, spinning, casting, or 3D-printing.