Crosslinked resin molded body, crosslinkable resin composition, method of producing these, silane master batch, and molded article

US10040913B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10040913-B2
Application numberUS-201715480752-A
CountryUS
Kind codeB2
Filing dateApr 6, 2017
Priority dateOct 8, 2014
Publication dateAug 7, 2018
Grant dateAug 7, 2018

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  5. First independent claim

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Abstract

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A production method, containing the step of: mixing 0.02 to 0.6 parts by mass of an organic peroxide, 0.2 to 300 parts by mass of an inorganic filler, 2 to 15.0 parts by mass of a silane coupling agent, and a silanol condensation catalyst, based on 100 parts by mass of a polyolefin-based resin, in which the inorganic filler has an X value specified by Formula (I) satisfies 5 to 1050, X=ΣA/B   Formula (I) wherein, ΣA denotes a total amount of a product of a BET specific surface area (m 2 /g) of the inorganic filler and a blending amount of the inorganic filler, and B denotes a blending amount of the silane coupling agent; and a crosslinkable resin composition and a crosslinked resin molded body produced by the production method; and a silane master batch and a molded article.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method of producing a crosslinked resin molded body, comprising the following steps (1), (2) and (3): step (1): obtaining a mixture by mixing 0.02 to 0.6 parts by mass of an organic peroxide, 0.2 to 300 parts by mass of an inorganic filler having a BET specific surface area falling within a range of from 0.5 to 400 m 2 /g, 2 to 15.0 parts by mass of a silane coupling agent, and a silanol condensation catalyst, based on 100 parts by mass of a polyolefin-based resin that comprises ethylene-propylene-diene rubber (EPDM); step (2): obtaining a molded body by molding the mixture obtained in the step (1); and step (3): obtaining a crosslinked resin molded body by bringing the molded body obtained in the step (2) into contact with water, wherein the step (1) has the following steps (a) to (d): step (a): mixing the organic peroxide, the silane coupling agent, and the inorganic filler in which an X value specified by the following Formula (I) satisfies 5 to 1050: X=ΣA/B,   Formula (I) wherein: A denotes a product of the BET specific surface area (m 2 /g) of the inorganic filler and a blending amount of that inorganic filler; ΣA denotes a total amount of the products; and B denotes a blending amount of the silane coupling agent; step (b): melting and mixing the mixture obtained in the step (a) with a whole or part of the polyolefin-based resin at a temperature equal to or higher than a decomposition temperature of the organic peroxide; step (c): mixing the silanol condensation catalyst with, as a carrier resin, a resin different from the polyolefin-based resin or a remaining portion of the polyolefin-based resin; and step (d): mixing the melted mixture obtained in the step (b) with the mixture obtained in the step (c). 2. The method of producing a crosslinked resin molded body according to claim 1 , wherein the mixing amount of the silane coupling agent is more than 4 parts by mass and 15.0 parts by mass or less, with respect to 100 parts by mass of the polyolefin-based resin. 3. The method of producing a crosslinked resin molded body according to claim 1 , wherein the silane coupling agent is vinyltrimethoxysilane or vinyltriethoxysilane. 4. The method of producing a crosslinked resin molded body according to claim 1 , wherein the inorganic filler is at least one selected from the group consisting of silica, aluminum hydroxide, magnesium hydroxide, calcium carbonate, magnesium carbonate, kaolin, zinc borate, zinc hydroxystannate, and talc. 5. A method of producing a crosslinkable resin composition, comprising: mixing 0.02 to 0.6 parts by mass of an organic peroxide, 0.2 to 300 parts by mass of an inorganic filler having a BET specific surface falling within a range of from 0.5 to 400 m 2 /g, 2 to 15.0 parts by mass of a silane coupling agent, and a silanol condensation catalyst, based on 100 parts by mass of a polyolefin-based resin that comprises ethylene-propylene-diene rubber (EPDM), wherein the mixing comprises: step (a): mixing the organic peroxide, the silane coupling agent, and the inorganic filler in which an X value specified by the following Formula (I) satisfies 5 to 1050: X=ΣA/B,   Formula (I) wherein: A denotes a product of the BET specific surface area (m 2 /g) of the inorganic filler and a blending amount of that inorganic filler: ΣA denotes a total amount of the product(s); and B denotes a blending amount of the silane coupling agent; steps (b): melting and mixing the mixture obtained in the step (a) with a whole or part of the polyolefin-based resin at a temperature equal to or higher than a decomposition temperature of the organic peroxide; step (c): mixing the silanol condensation catalyst with, as a carrier resin, a resin different from the polyolefin-based resin or a remaining portion of the polyolefin-based resin; and step (d): mixing the melted mixture obtained in the step (b) with the mixture obtained in the step (c). 6. A crosslinkable resin composition produced by the method of producing a crosslinkable resin composition according to claim 5 . 7. A crosslinked resin molded body produced by the method of producing a crosslinked resin molded body according to claim 1 . 8. A molded article, comprising the crosslinked resin molded body according to claim 7 . 9. A silane master batch used for producing a crosslinkable resin composition prepared by mixing 0.02 to 0.6 parts by mass of an organic peroxide, 0.2 to 300 parts by mass of an inorganic filler having a BET specific surface area falling within a range of from 0.5 to 400 m 2 /g, 2 to 15.0 parts by mass of a silane coupling agent, and a silanol condensation catalyst, based on 100 parts by mass of a polyolefin-based resin that comprises ethylene-propylene-diene rubber (EPDM), wherein the silane master batch is prepared through the following steps (a) and (b): step (a): mixing the organic peroxide, the silane coupling agent, and the inorganic filler in which an X value specified by the following Formula (I) satisfies 5 to 1050: X=ΣA/B,   Formula (I) wherein: A denotes a product of the BET specific surface area (m 2 /g) of the inorganic filler and a blending amount of that inorganic filler: ΣA denotes a total amount of the product(s); and B denotes a blending amount of the silane coupling agent; and step (b): melting and mixing the mixture obtained in the step (a) with a whole or part of the polyolefin-based resin at a temperature equal to or higher than a decomposition temperature of the organic peroxide. 10. The method of producing a crosslinked resin molded body according to claim 1 , wherein the X value specified by the Formula (I) satisfies 75-1050. 11. The method of producing a crosslinked resin molded body according to claim 1 , wherein the X value specified by the Formula (I) satisfies 10 to 250. 12. The method of producing a crosslinked resin molded body according to claim 1 , wherein the blending amount of the inorganic filler is 0.5 to 9.5 parts by mass. 13. The method of producing a crosslinkable resin composition according to claim 5 , wherein the X value specified by the Formula (I) satisfies 75-1050. 14. The method of producing a crosslinkable resin composition according to claim 5 , wherein the X value specified by the Formula (I) satisfies 10-250. 15. The method of producing a crosslinkable resin composition according to claim 5 , wherein the blending amount of the inorganic filler is 0.5 to 9.5 parts by mass. 16. The method of producing a crosslinkable resin composition according to claim 5 , wherein a blending amount of the polyolefin-based resin is such that the polyolefin-based resin is present in an amount of 70 mass % or more in the obtained crosslinkable resin composition. 17. The silane master batch according to claim 9 , wherein a blending amount of the inorganic filler is 0.5 to 9.5 parts by mass.

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What does patent US10040913B2 cover?
A production method, containing the step of: mixing 0.02 to 0.6 parts by mass of an organic peroxide, 0.2 to 300 parts by mass of an inorganic filler, 2 to 15.0 parts by mass of a silane coupling agent, and a silanol condensation catalyst, based on 100 parts by mass of a polyolefin-based resin, in which the inorganic filler has an X value specified by Formula (I) satisfies 5 to 1050, X=ΣA/B …
Who is the assignee on this patent?
Furukawa Electric Co Ltd
What technology area does this patent fall under?
Primary CPC classification C08J3/22. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Aug 07 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).