Fiber containing aqueous foam composite, the process and use
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B32B-038/10
C04B-016/06
B32B-013/04
B32B-015/08
B32B-017/06
C04B-014/36
C04B-018/08
C04B-024/20
C04B-038/10
E04D-001/22
E04D-001/28
C04B-028/02
C04B-028/14
C04B-040/00
C04B-103/42
C04B-103/48
C04B-111/40
출원번호
US-0196214
(2016-06-29)
등록번호
US-10252942
(2019-04-09)
발명자
/ 주소
Chao, Yen-Yau Harrison
출원인 / 주소
ALLIED FOAM TECH CORP.
대리인 / 주소
STIP Law Group, LLC
인용정보
피인용 횟수 :
0인용 특허 :
4
초록▼
Foamed fiber compositions and processes of making said compositions. Compositions include a hydraulic mixture including (i) a polymer and (ii) one or more of gypsum, fly ash, and cement; and a foam including a foaming agent, a foam stabilizer, and 0.5-35% fibers by weight. The process for forming th
Foamed fiber compositions and processes of making said compositions. Compositions include a hydraulic mixture including (i) a polymer and (ii) one or more of gypsum, fly ash, and cement; and a foam including a foaming agent, a foam stabilizer, and 0.5-35% fibers by weight. The process for forming the foamed fiber composition includes providing a stable foam including a foaming agent and a foam stabilizer; mixing fibers into the stable foam until the fibers are uniformly distributed in the foam to form a fiber-containing foam, wherein the fiber-containing aqueous foam contains 0.5-35% fibers by weight; and mixing the fiber-containing foam into a hydraulic slurry including (i) a polymer and (ii) one or more of gypsum, fly ash, and cement. The composition is suitable for use in roof tiles, underlayments, backerboards, cement composites, foam fills, bricks, cement sidings, etc.
대표청구항▼
1. A foamed fiber composition comprising: a hydraulic mixture including (i) a polymer and (ii) one or more of gypsum, fly ash, and cement;a foam including a foaming agent, a foam stabilizer, and 0.5-35% fibers by weight,wherein the fibers have a fineness of 2-350 dtex;wherein the foaming agent has t
1. A foamed fiber composition comprising: a hydraulic mixture including (i) a polymer and (ii) one or more of gypsum, fly ash, and cement;a foam including a foaming agent, a foam stabilizer, and 0.5-35% fibers by weight,wherein the fibers have a fineness of 2-350 dtex;wherein the foaming agent has the general formula (I): where R is an aliphatic hydrocarbon radical having from 8 to 24 carbon atoms; R1 is selected form the group consisting of an alkyl group having from 1-16 carbon atoms, a hydroxyalkyl group having from 1-16 carbon atoms, a benzyl group, a group which, when taken together with the nitrogen, represents a heterocyclic radical, and any of such groups having a hydrogen atom replaced by a fluorine atom; R2 and R3 are selected form the group consisting of an alkyl group having form 1-6 carbon atoms, a hydroxyalkyl group having from 1-6 carbon atoms, a benzyl group, a hydrogen atom, a group which, when taken together with the nitrogen, represents a heterocyclic radical, and any of such groups having a hydrogen atom replaced by a fluorine atom; and X− is an anionic counter ion; and wherein the foam stabilizer has the general formula (II): R′—X2−Y+ (II)where R′ is an aliphatic hydrocarbon radical with 10 to 24 carbon atoms; X2 is an anionic group selected from the group consisting of carboxylate, sulfate, sulfonate, and phosphate; and Y is a cationic counter ion selected from the group consisting of ammonium, sodium, and potassium salt. 2. The composition of claim 1, wherein the foam comprises 5-90% by volume of the composition. 3. The composition of claim 1, wherein the fibers comprise one or more of the group consisting of polyvinyl alcohol, nylon, polypropylene, basalt, rayon, cellulose, steel, wood, aramid, polyester, and acrylic. 4. The composition of claim 1, wherein the fly ash includes fly ash F, fly ash C, or a mixture thereof and the cement is portland cement. 5. The composition of claim 1, wherein the polymer has a concentration of up to 30% by dry weight of the hydraulic substance. 6. The composition of claim 1, wherein the polymer is selected from the group consisting of polyurethane, polyacrylic copolymers, ethylene vinyl acetate copolymers, synthetic and natural rubber emulsions, polyisocyanate dispersions, aqueous urea formaldehyde solutions, and mixtures thereof. 7. The composition of claim 1, further comprising one or more of: a fly ash activator selected from the group consisting of alkali citrates, silicates, calcium carbonate, lithium carbonate, and mixtures thereof;a rheology modifier selected from the group consisting of kaolin, meta kaolin, silica fume, limestone, and mixtures thereof;an aggregate material selected from the group consisting of expanded clays, furnace slags, pumice, polystyrene beads, vermiculite, expanded shales, and mixtures thereof; anda plasticizer or superplasticizer. 8. A flexible, water resistant and weather resistant roof tile composite comprising the foamed fiber composition of claim 1 surrounding a fiberglass mat core, the roof tile composite having a thickness of 100-150 mm. 9. A flexible, water resistant and weather resistant roof tile composite comprising the foamed fiber composition of claim 1 applied to a metallic backing. 10. A flexible, water resistant and weather resistant underlayment comprising the foamed fiber composition of claim 1 applied to a fiberglass mat or scrim, the underlayment having a thickness of 50-155 mm. 11. A strong and lightweight cement backerboard comprising the foamed fiber composition of claim 1 sandwiched between a first fiberglass scrim or mat and a second fiberglass scrim or mat. 12. A flexible, abrasion resistant and lightweight foamed cement composite comprising the foamed fiber composition of claim 1 applied to an alkali-resistant fiberglass scrim or mat. 13. A flexible foamed cementitious composite comprising the foamed fiber composition of claim 1 applied to an organic panel. 14. A foam fill for sandwich panels, wall cavities, flooring, and roof coatings comprising the foamed fiber composition of claim 1. 15. A brick comprising the foamed fiber composition of claim 1. 16. A cement siding comprising the foamed fiber composition of claim 1. 17. The composition of claim 1, wherein the content of the fibers is 0.5-15% by weight. 18. The composition of claim 1, wherein the fibers are uniformly distributed in the foamed fiber composition without shrinkage cracking. 19. The composition of claim 1, wherein the fibers are uniformly distributed in the foamed fiber composition without fiber lump or fiber ball. 20. The composition of claim 1, wherein the foamed fiber composition has a modulus of rupture (MOR) larger than 750, wherein the MOR is measured on a 3-point bending test with respect to the composition at a thickness of 0.5 inch. 21. A process for forming a foamed fiber composition, the process comprising: providing a stable foam including a foaming agent and a foam stabilizer;mixing fibers into the stable foam until the fibers are uniformly distributed in the foam to form a fiber-containing foam, wherein the fiber-containing aqueous foam contains 0.5-35% fibers by weight, and wherein the fibers have a fineness of 2-350 dtex;mixing the fiber-containing foam into a hydraulic slurry including (i) a polymer and (ii) one or more of gypsum, fly ash, and cement;wherein the foaming agent has the general formula (I): where R is an aliphatic hydrocarbon radical having from 8 to 24 carbon atoms; R1 is selected form the group consisting of an alkyl group having from 1-16 carbon atoms, a hydroxyalkyl group having from 1-16 carbon atoms, a benzyl group, a group which, when taken together with the nitrogen, represents a heterocyclic radical, and any of such groups having a hydrogen atom replaced by a fluorine atom; R2 and R3 are selected form the group consisting of an alkyl group having form 1-6 carbon atoms, a hydroxyalkyl group having from 1-6 carbon atoms, a benzyl group, a hydrogen atom, a group which, when taken together with the nitrogen, represents a heterocyclic radical, and any of such groups having a hydrogen atom replaced by a fluorine atom; and X− is an anionic counter ion; and wherein the foam stabilizer has the general formula (II): R′—X2−Y+ (II)where R′ is an aliphatic hydrocarbon radical with 10 to 24 carbon atoms; X2 is an anionic group selected from the group consisting of carboxylate, sulfate, sulfonate, and phosphate; and Y is a cationic counter ion selected from the group consisting of ammonium, sodium, and potassium salt. 22. The process of claim 21, wherein the fiber-containing foam mixed into the hydraulic slurry has a volume of 5-90% of the volume of the hydraulic slurry. 23. The process of claim 21, wherein the polymer has a concentration of up to 30% by dry weight of the hydraulic substance. 24. The process of claim 21, wherein the polymer is selected from the group consisting of polyurethane, polyacrylic copolymers, ethylene vinyl acetate copolymers, synthetic and natural rubber emulsions, polyisocyanate dispersions, aqueous urea formaldehyde solutions, and mixtures thereof. 25. The process of claim 21, wherein the fibers are mixed into the stable aqueous foam at a rotation speed of less than 300 rotations per minute. 26. The process of claim 21, further comprising incorporating one or more of the following compounds into the foamed fiber composition: a fly ash activator selected from the group consisting of alkali citrates, silicates, calcium carbonate, lithium carbonate, and mixtures thereof;a rheology modifier selected from the group consisting of kaolin, metakaolin, silica fume, limestone, and mixtures thereof;an aggregate material selected from the group consisting of expanded clays, furnace slags, pumice, polystyrene beads, vermiculite, expanded shales, and mixtures thereof; anda plasticizer or superplasticizer.
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이 특허에 인용된 특허 (4)
Motoi, Koji; Matsuo, Ryuichi; Muranaka, Takeshi; Murata, Takumi, Composite material and synthetic sleeper using the composite material.
Howanietz Friedrich (Penzingerstrasse 20 A-1140 Vienna ATX) Kozlowski Alexander (Mariahilferstrasse 106/9 A-1070 Vienna ATX), Concrete mixtures or mortar mixtures or concretes or mortars and process for their production.
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