Low gloss olefin
The present invention provides low specular gloss polymeric compositions that exhibit good mechanical strength and methods of forming the same. According to the method of the invention, a masterbatch composition that includes fiberglass dispersed in a polypropylene homopolymer or copolymer is melt-mixed with a copolymer or homopolymer of polypropylene and a filler such as talc or calcium carbonate to form a polymer blend that exhibits low specular gloss and good mechanical properties.
1 . A method of forming a talc-filled polymer blend composition comprising melt mixing from about 40% to about 80% by weight of a polypropylene impact copolymer, from about 10% to about 40% by weight talc, and from about 1% by weight to about 10% by weight of a masterbatch composition comprising
from about 20% to about 40% by weight of fiberglass fibers having an average length of from about 1.0 mm to about 1.7 mm and a diameter of from about 11 μm to about 17 μm dispersed in carrier comprising polypropylene,
together to form a melt mixture that when processed and tested in accordance with ASTM D2457-03 exhibits a 60° specular gloss value of less than about 3.0.
2 . The method of claim 1 wherein the polypropylene impact copolymer comprises from about 10% to about 25% by weight of ethylene.
3 . The method of claim 1 wherein the talc has a particle size of from about 2 μm to about 15 μm.
4 . The method of claim 1 wherein the melt mixture further comprises additives selected from the group consisting of stabilizers, antioxidants, ultraviolet absorbers, lubricants and pigments.
5 . The method of claim 1 wherein the fiberglass fibers in the masterbatch composition have an average length of from about 0.9 mm to about 1.4 mm after melt mixing.
6 . The method of claim 1 wherein the melt mixture further comprises from about 1% to about 17.5% by weight of precipitated silica.
7 . A method of forming a calcium carbonate-filled polymer blend comprising melt mixing from about 30% by weight to about 70% by weight of a polypropylene homopolymer, from about 30% by weight to about 50% by weight calcium carbonate, and from about 1% by weight to about 10% by weight of a masterbatch composition comprising
from about 20% to about 40% by weight of fiberglass fibers having an average length of from about 1.0 mm to about 1.7 mm and a diameter of from about 11 μm to about 17 μm dispersed in carrier comprising polypropylene,
together to form a melt mixture that when processed and tested in accordance with ASTM D2457-03 exhibits a 60° specular gloss value of less than about 37.
8 . The method of claim 7 wherein the melt mixture further comprises additives selected from the group consisting of stabilizers, antioxidants, ultraviolet absorbers, lubricants and pigments.
9 . The method of claim 7 wherein the fiberglass fibers in the masterbatch composition have an average length of from about 0.9 mm to about 1.4 mm after melt mixing.
10 . The method of claim 7 wherein the melt mixture further comprises from about 1% to about 17.5% by weight of precipitated silica.
11 . A polymer blend composition comprising:
from about 40% by weight to about 80% by weight of a polypropylene impact copolymer;
from about 10% by weight to about 40% by weight talc; and
from about 0.5% to less than about 2.0% by weight of fiberglass fibers having an average length of from about 0.9 mm to about 1.4 mm;
12 . The polymer blend composition according to claim 11 wherein the polypropylene impact copolymer comprises from about 10% to about 25% by weight of ethylene.
13 . The polymer blend composition according to claim 11 wherein the talc has a particle size of from about 5 microns to about 15 microns.
14 . The polymer blend composition according to claim 11 further comprising additives selected from the group consisting of stabilizers, antioxidants, ultraviolet absorbers, lubricants and pigments.
15 . The polymer blend composition according to claim 11 further comprising from about 1% to about 17.5% by weight of precipitated silica.
16 . A polymer blend composition comprising:
from about 30% by weight to about 70% by weight of a polypropylene homopolymer;
from about 30% by weight to about 50% by weight calcium carbonate; and
from about 0.5% to less than about 2.0% by weight of fiberglass fibers having an average length of from about 0.9 mm to about 1.4 mm;
wherein the polymer blend exhibits a 60° specular gloss value of less than about 37 according to ASTM D2457-03.
17 . The polymer blend composition according to claim 16 further comprising additives selected from the group consisting of stabilizers, antioxidants, ultraviolet absorbers, lubricants and pigments.
18 . The polymer blend composition according to claim 16 further comprising from about 1% to about 17.5% by weight of precipitated silica.
19 . A melt-mixed polymer blend composition comprising:
from about 45% to about 55% by weight of a polypropylene-ethylene impact copolymer;
from about 10% to about 30% by weight of an ethylene-octene copolymer;
from about 5% to about 25% by weight of talc;
from about 2.5% to about 12.5% by weight of silica;
from about 0.25% to about 0.5% by weight of ethylene bis-stearamide wax;
from about 0.25% to about 0.5% by weight of calcium stearate; and
from about 0.5% to about 2.0% by weight of fiberglass fibers having an average length of from about 0.9 mm to about 1.4 mm and an average diameter of from about 11 μm to about 17 μm,
wherein the melt-mixed polymer blend composition exhibits a 60° specular gloss value of less than about 20 according to ASTM D2457-03.
20 . A component for a motor vehicle formed by injection molding the melt-mixed polymer blend composition according to claim 19.