Spherical silica particles and resin composition using same
US-2024417544-A1 · Dec 19, 2024 · US
US12534595B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12534595-B2 |
| Application number | US-201816157496-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 11, 2018 |
| Priority date | Oct 11, 2018 |
| Publication date | Jan 27, 2026 |
| Grant date | Jan 27, 2026 |
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A composition of matter and method of forming the same includes a non-crosslinked polymer, and particulate material dispersed within the non-crosslinked polymer, wherein the composition of matter includes a viscoplastic property. The non-crosslinked polymer may include any of a silicon based polymer compound, an organo silicon polymer compound, at least one polysiloxane, polydimethylsiloxane, and methyl terminated polydimethylsiloxane. The non-crosslinked polymer may include any of polybutadiene, polyisoprene, poly(ethylene-co-butadiene), poly(ethylene-co-propylene), and polyisobutylene. The particulate material may include any of fumed silica, monodisperse silica spheres, fumed alumina, and mixtures thereof.
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What is claimed is: 1 . A composition of matter comprising: a non-crosslinked polymer fluid comprising at least one polymer compound having a molecular weight of entanglement (MW ENT ), and wherein the polymer compound has an average molecular weight in the range of from about two to about five times the MW ENT , a particulate material that forms a reversible interparticle network through hydrogen bonding dispersed within the non-crosslinked polymer, and a component for reducing adhesion of the composition, wherein the composition of matter comprises a viscoplastic property and minimal elastic response over the desired usable temperature of 50 F to 100 F, and wherein the composition of matter has an indentation response curve with an average plateau force that remains within plus or minus 1.0 N of a target force. 2 . The composition of matter of claim 1 , wherein the non-crosslinked polymer fluid is selected from the group consisting of a silicon-based polymer compound, an organo-silicon polymer compound, polysiloxane, polydimethylsiloxane, and methyl-terminated polydimethylsiloxane. 3 . The composition of matter of claim 2 , wherein the polydimethylsiloxane comprises an average molecular weight in the range of from about 63,000 g/mol to about 306,000 g/mol. 4 . The composition of matter of claim 1 , wherein the non-crosslinked polymer fluid comprises at least one polymer compound, and wherein the polymer compound has an average molecular weight in the range of from about 63,000 g/mol to about 432,000 g/mol. 5 . The composition of matter of claim 1 , wherein the non-crosslinked polymer fluid is selected from the group consisting of polybutadiene, polyisoprene, poly(ethylene-co-butadiene), poly(ethylene-co-propylene), and polyisobutylene. 6 . The composition of matter of claim 1 , wherein the particulate material is selected from the group consisting of fumed silica, monodisperse silica spheres, fumed alumina, and mixtures thereof. 7 . The composition of matter of claim 1 , wherein the particulate material comprises particles of a size in the range of from about 10 nm to about 1 μm. 8 . The composition of matter of claim 1 , wherein the particulate material comprises particles having a surface chemistry such that the particles form non-covalent bonds with adjacent particles or with the non-crosslinked polymer fluid or with both the adjacent particles and the non-crosslinked polymer fluid. 9 . The composition of matter of claim 1 , wherein the composition of matter comprises from about 2 to about 55 percent by volume of the particulate material. 10 . The composition of matter of claim 1 , wherein the composition of matter comprises from about 28 to about 98 percent by volume of the non-crosslinked polymer fluid. 11 . The composition of matter of claim 1 , wherein the composition of matter comprises from about 45 to about 98 percent by volume of the non-crosslinked polymer fluid. 12 . The composition of matter of claim 1 , wherein the composition of matter comprises from about 51 to about 96 percent by volume of the non-crosslinked polymer fluid. 13 . The composition of matter of claim 1 , wherein the component for reducing adhesion of the composition comprises a particulate detackifying agent. 14 . The composition of matter of claim 13 , wherein the particulate detackifying agent comprises an average particle size of about 10 μm. 15 . The composition of matter of claim 13 , wherein the particulate detackifying agent comprises corn starch. 16 . The composition of matter of claim 13 , wherein the composition of matter comprises about 36.2 percent by volume of the particulate detackifying agent. 17 . The composition of matter of claim 13 , wherein the composition of matter comprises from about 10 to about 70 percent by volume of the particulate detackifying agent. 18 . The composition of matter of claim 13 , wherein the composition of matter comprises from about 30 to about 60 percent by volume of the particulate detackifying agent. 19 . The composition of matter of claim 1 , wherein the particulate material comprises particles of a size of about 100 nm. 20 . The composition of matter of claim 1 , further comprising a colorant. 21 . A method of forming a composition of matter, the method comprising: providing a non-crosslinked polymer fluid comprising at least one polymer compound having a molecular weight of entanglement (MW ENT ), and wherein the polymer compound has an average molecular weight in the range of from about two to about five times the MW ENT ; dispersing a particulate material comprising cornstarch and no more than 10 volume percent fumed silica relative to the composition of matter within the non-crosslinked polymer, wherein the fumed silica forms reversible bonds through hydrogen bonding with the non-crosslinked polymer; forming the composition of matter containing the non-crosslinked polymer and the particulate material, wherein the composition of matter comprises a viscoplastic property and has a minimal elastic response over the desired usable temperature of 50 F to 100 F; and introducing a component for reducing adhesion of the composition therein. 22 . A composition of matter comprising: a polydimethylsiloxane fluid having a molecular weight in the range of from about 63,000 g/mol to about 306,000 g/mol; and a particulate material that forms a reversible hydrogen bond with the polydimethylsiloxane dispersed within the polydimethylsiloxane, wherein the particulate material includes particles of a size in the range of from about 10 nm to about 1 μm that have a surface chemistry such that the particles exhibit non-covalent interparticle interactions that can be broken during deformation when a force is applied to the composition of matter allowing the composition of matter to flow and that reform when the force is no longer applied to the composition of matter and deformation of the composition of matter has ceased; a particulate detackifying agent introduced into the composition which reduces adhesion of the composition; and wherein the composition of matter comprises a viscoplastic property and has a minimal elastic response over the desired usable temperature of 50 F to 100 F, where the material flows like a fluid under an applied force producing a deformed state in the composition of matter but then is dimensionally stable when the applied force is removed thus preserving the deformed state of the composition of matter after the applied force has been removed. 23 . A composition of matter comprising: a polysiloxane fluid; and a particulate material dispersed within the polysiloxane, wherein the particulate material includes particles of a size in the range of from about 10 nm to about 1 μm that have a surface chemistry such that the particles form non-covalent bonds with the silicone-based, non-crosslinked polymer, wherein the particulate material comprises fumed silica and cornstarch, wherein the fumed silica comprises no more than 18.8 volume percent of the composition of matter and the cornstarch comprises about 30 to about 60 volume percent of the composition of matter; and wherein the composition of matter comprises a viscoplastic property and has a minimal elastic response over the desired usable temperature of 50 F to 100 F, where the material flows like a fluid under an applied force producing a deformed state in the composition of matter but then is dimensionally stable when t
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