MICRO-FOAMING MASTERBATCH PELLET COMPOSITIONS FOR MICRO-FOAMED PLASTICS AND METHOD OF MANUFACTURING THE SAME
Provided herewith is a micro-sized foaming pellets masterbatch composition for a weight-reduced controlled micro-foaming plastic product, which includes a thermoplastic carrier resin, a bi-component micro-foaming agent comprising a gas carrier and an acid carrier, an amphiphilic stabilizing agent selected from a fatty acid-modified salt, glycerol monostearate, or a combination thereof, and an adsorbing dispersant. The masterbatch composition is compatible with a broad processing temperature range to cater to the manufacture of a wide variety of plastic types with various base plastic resins, while allowing controlled micro-sized foaming in the plastic products, thereby enabling facile manufacture of microfoam plastic products with lower weight and good mechanical strength retention with low cost, high flexibility and regulatory compliance.
1 . A micro-sized foaming pellets masterbatch composition for fabrication of weight-reduced controlled micro-foaming plastic product, comprising:
a low-melting point thermoplastic carrier resin with melting point lower than 125° C.;
a bi-component micro-foaming agent comprising a gas carrier and an acid carrier;
an amphiphilic stabilizing agent selected from a fatty acid-modified salt, glycerol monostearate, or a combination thereof; and
an adsorbing dispersant,
wherein the micro-sized foaming pellets masterbatch composition is configured to be integrated into a weight-reduced controlled micro-foaming plastic product by mixing with a base plastic resin to create a foamed plastic by extrusion and injection molding;
wherein the weight ratio of gas carrier in the bi-component micro-foaming agent is 3% to 15%;
wherein the weight ratio of acid carrier in the bi-component micro-foaming agent is 15% to 50%;
wherein 90% of the pores of the weight-reduced controlled micro-foaming plastic product has a pore size of less than 150 μm;
wherein the weight of the weight-reduced controlled micro-foaming plastic product is at least 9% lower than a plastic product prepared without integrating the micro-sized foaming pellets masterbatch composition;
wherein at least 75% of the tensile strength of a plastic product prepared without integrating the micro-sized foaming pellets masterbatch composition is retained in the weight-reduced controlled micro-foaming plastic product; and
wherein at least 95% of the flexural modulus of a plastic product prepared without integrating the micro-sized foaming pellets masterbatch composition is retained in the weight-reduced controlled micro-foaming plastic product.
2 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the low melting point thermoplastic carrier resin is selected from linear low-density polyethylene (LLDPE), low-density polyethylene (LDPE), ethylene methyl acrylate (EMA), ethylene vinyl acetate (EVA), or any combinations thereof.
3 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the gas carrier of the bi-component micro-foaming agent is selected from sodium bicarbonate, ammonium carbonate, or a combination thereof.
4 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the acid carrier of the bi-component micro-foaming agent is selected from citric acid, sodium dihydrogen citrate, sodium dihydrogen phosphate, or any combinations thereof.
5 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the fatty acid-modified calcium carbonate is selected from oleic acid-modified calcium carbonate, stearyl phosphate-modified calcium carbonate, palmitic acid-modified calcium carbonate, stearic acid-modified calcium carbonate, or any combinations thereof.
6 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the adsorbing dispersant is mineral oil comprising hydrocarbons with 20 to 30 carbon atoms.
7 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the content of the low-melting point thermoplastic carrier resin ranges from 50 wt % to 90 wt %.
8 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the content of the bi-component micro-foaming agent ranges from 10 wt % to 50 wt %.
9 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the content of the amphiphilic stabilizing agent ranges from 1 wt % to 10 wt %.
10 . The micro-sized foaming pellets masterbatch composition of claim 1 , wherein the content of the dispersant ranges from 0.5 wt % to 10 wt %.
11 . A method of preparing a weight-reduced controlled micro-foaming plastic product with the micro-sized foaming pellets masterbatch composition of claim 1 , comprising:
mixing a low-melting point thermoplastic carrier resin, a bi-component micro-foaming agent, an amphiphilic stabilizing agent and a dispersant to form a first mixture;
subjecting the first mixture to extrusion and pelletizing the first mixture at a temperature of 60° C. to 150° C. to form the micro-sized foaming pellets masterbatch composition;
mixing the micro-sized foaming pellets masterbatch composition with base plastic resins at a weight ratio of 1:99 to 4:96 to form a second mixture; and
subjecting the second mixture to extrusion and molding the second mixture at a temperature of 220° C. to 300° C. to form the weight-reduced controlled micro-foaming plastic product.
12 . The method of claim 11 , wherein subjecting the first mixture to extrusion and pellitizing the first mixture comprises extrusion under a screw rotation speed of 140 rpm to 160 rpm.
13 . The method of claim 11 , wherein subjecting the second mixture to extrusion and molding the second mixture comprises extrusion under a screw rotation speed of 90 rpm to 110 rpm.
14 . The method of claim 11 , wherein the micro-sized foaming pellets masterbatch composition comprises:
60 wt % to 88 wt % of the low-melting point thermoplastic carrier resin;
20 wt % to 40 wt % of the micro-foaming agent;
1 wt % to 3 wt % of the adsorbing dispersant; and
0.5 wt % to 9 wt % of the amphiphilic stabilizing agent.
15 . The method of claim 11 , wherein the low-melting point thermoplastic carrier resin is selected from linear low-density polyethylene (LLDPE), low-density polyethylene (LDPE), ethylene methyl acrylate (EMA), ethylene vinyl acetate (EVA), or any combinations thereof.
16 . The method of claim 11 , wherein the gas carrier of the bi-component micro-foaming agent is selected from sodium bicarbonate, ammonium carbonate, or a combination thereof.
17 . The method of claim 11 , wherein the acid carrier of the bi-component micro-foaming agent is selected from citric acid, sodium dihydrogen citrate, sodium dihydrogen phosphate, or any combinations thereof.
18 . The method of claim 11 , wherein the fatty acid-modified calcium carbonate is selected from oleic acid-modified calcium carbonate, stearyl phosphate-modified calcium carbonate, palmitic acid-modified calcium carbonate, stearic acid-modified calcium carbonate, or any combinations thereof.
19 . The method of claim 11 , wherein the adsorbing dispersant is mineral oil comprising hydrocarbons with 20 to 30 carbon atoms.
20 . The method of claim 11 , wherein the base plastic resins is selected from polyethylene (PE), polypropylene (PP), polyethylene terephthalate (PET), polyamide 6 (PA6), acrylonitrile butadiene styrene (ABS), polycarbonate (PC), or any combinations thereof.