MLchartDataset catalogue

Patent · US9523029B2 · B2 · US

Two-component mortar composition and its use

(11) Publication number
US9523029B2
(21) Application number
13/988,220
(22) Filing date
2011-11-08
(30) Priority date
2010-11-18
(43) Publication date
2016-12-20
(45) Date of grant
2016-12-20
(51) IPC
C04B 111/00; C04B 26/06; C04B 26/16; C04B 28/04; C04B 28/06; C09K 8/00; C09K 8/467; E21B 43/16; F16B 13/14
(52) CPC
  • C09K Materials for miscellaneous applications, not provided for elsewhere: 8/467
  • C04B Lime, magnesia; slag; cements; compositions thereof, e.g. mortars, concrete or like building materials; artificial stone {}; ceramics; refractories; treatment of natural stone: 14/06, 14/066, 14/10, 14/24, 14/368, 20/0096, 2103/10, 2103/20, 2111/00715, 22/068, 24/00, 24/023, 24/121, 24/2641, 24/282, 24/287, 26/06, 26/16, 28/04, 28/06, 40/065, 40/0666, 7/02, 7/32
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 13/142
(73) Assignee
BUERGEL THOMAS; HILTI AG
(72) Inventors
BUERGEL THOMAS
(54) Title
Two-component mortar composition and its use
(57) Abstract

A description is given of a two-component mortar composition having a curable resin component having a content of at least one free-radically polymerizable resin, fillers, accelerators, stabilizers and optionally further conventional mortar constituents and a hardener component which is arranged separately therefrom to inhibit reaction and has a content of at least one peroxide for chemical fastening of anchoring means in boreholes, which is characterized in that the resin component contains from 0.1 to 0.5% by weight of at least one accelerator and from 0.003 to 0.03% by weight of at least one stabilizer and the hardener component contains from 0.1 to 0.35% by weight of organic peroxide, in each case based on the total weight of resin component and hardener component, and also the use of this two-component mortar composition for chemical fastening of anchoring means in boreholes.

Full text
View on Google Patents

Claims (19)

  1. A two-component mortar composition comprising a curable resin component and a hardener component; wherein the resin component and the hardener component are unmixed with each other; wherein the resin component contains from 8 to 25% by weight of at least one free-radically polymerizable resin, from 8 to 25% by weight of at least one reactive diluent, from 0.1 to 0.5% by weight of at least one accelerator, from 0.003 to 0.03% by weight of at least one stabilizer, from 40 to 70% by weight of at least one filler, and from 0.5 to 5% by weight of at least one thickening agent; and wherein the hardener component contains from 0.1 to 0.35% by weight of at least one peroxide, from 3 to 15% by weight water, from 5 to 25% by weight of at least one filler, and from 0.1 to 3% by weight of at least one thickening agent, in each case based on the total weight of resin component and hardener component; wherein the ratio of the resin component to the hardener component is in a range of 2:1 to 7:1 parts by weight.
  2. The two-component mortar composition according to claim 1, wherein the at least one free-radically polymerizable resin is selected from the group consisting of an unsaturated polyester, a vinyl ester, a urethane(meth)acrylate and an epoxy(meth)acrylate.
  3. The two-component mortar composition according to claim 1, wherein the at least one accelerator is selected from the group consisting of a tertiary N,N-substituted aniline, a tertiary N,N-substituted toluidine and an alkoxylated derivative thereof.
  4. The two-component mortar composition according to claim 3, wherein the resin component contains N,N-dimethyl aniline, N,N-diethyl aniline, N-ethyl-N-(hydroxyethyl)-aniline, N,N-dimethyl-p-toluidine, N-methyl-N-(hydroxyethyl)-p-toluidine, N,N-diisopropyliden-p-toluidine, di(hydroxyethyl)-p-toluidine, di(hydroxyethyl)-m-toluidine and/or ethyoxylated di(hydroxyethyl)-p-toluidine as the tertiary N,N-substituted aniline or the tertiary N,N-substituted toluidine, respectively.
  5. The two-component mortar composition according to claim 1, wherein the at least one stabilizer is selected from the group consisting of a phenolic stabilizer and a non-phenolic stabilizer.
  6. The two-component mortar composition according to claim 5, wherein the phenolic stabilizer is at least one selected from the group consisting of hydrochinon, 2-methyl hydrochinon, methoxyphenol, 2,4,6-trimethylphenol, pyrocatechol, 3-methoxypyrocatechol, 3,5-di-tert.-butylpyrocatechol, butylhydroxytoluene and derivatives thereof.
  7. The two-component mortar composition according to claim 5, wherein the non-phenolic stabilizer is at least one selected from the group consisting of an N-oxyl compound and a heterocyclic stabilizer.
  8. The two-component mortar composition according to claim 7, wherein the non-phenolic stabilizer is at least one selected from the group consisting of an N-oxyl compound and a heterocyclic stabilizer; wherein the N-oxyl compound is selected from the group consisting of a piperidinyl-N-oxyl and a tetrahydropyrrol-N-oxyl derivative; and wherein the heterocyclic stabilizer is phenothiazine.
  9. The two-component mortar composition according to claim 8, wherein the piperidin-N-oxyl is 4-hydroxy-2,2,6,6-tetramethyl-piperidin-N-oxyl.
  10. The two-component mortar composition according to claim 1, wherein the reactive diluent is at least one ethylenically unsaturated compound.
  11. The two-component mortar composition according to claim 10, wherein the at least one reactive diluent is selected from the group consisting of styrene, alpha-methylstyrene, divinyl benzene, (meth)acrylamide, methyl(meth)acrylate, ethyl(meth)acrylate, propyl(meth)acrylate, butyl(meth)acrylate, ethylhexyl(meth)acrylate, neopentylglycol(meth)acrylate, ethylene glycoldi(meth)acrylate, diethylene glycoldi(meth)acrylate, polyethylene glycol(meth)acrylate, propylene glycoldi(meth)acrylate, butandioldi(meth)acrylate, glycerin(meth)acrylate, hydroxyethyl(meth)acrylate, acetoacetatoethyl(meth)acrylate, alcoxylated bisphenol-A-di(meth)acrylate and glycidylmethacrylate.
  12. The two-component mortar composition according to claim 1, wherein the at least one peroxide is an organic peroxide.
  13. The two-component mortar composition according to claim 12, wherein the organic peroxide is selected from the group consisting of dibenzoyl peroxide, methyl ethyl ketone peroxide, tert.-butylperbenzoate, cyclohexanonperoxide, lauryl peroxide, cumolhydroperoxide and tert.-butylperoxy-2-ethyl hexanoate.
  14. The two-component mortar composition according to claim 1, wherein the at least one filler in the resin component and/or the at least one filler in the hardener component are selected from the group consisting of quartz, sand, fumed silica, corundum, chalk, talc, ceramic, aluminum oxide, glass, cement, light spar and heavy spar.
  15. The two-component mortar composition according to claim 1, wherein the at least one thickening agent in the resin component and/or the at least one thickening agent in the hardener component are selected from the group consisting of fumed silica, layered silicate, acrylate or polyurethane thickeners, castor oil derivatives, Neuburg siliceous earth and xanthan gum.
  16. The two-component mortar composition according to claim 1, wherein the hardener component contains from 0 to 5% by weight of at least one organic solvent.
  17. The two-component mortar composition according to claim 16, wherein the at least one organic solvent, which can be copolymerized with the free-radically polymerizable resin, is selected from the group consisting of a glycol, glycerin, a water-soluble polyethylene glycol derivative and a polypropylene glycol derivative.
  18. A method for chemical fastening of anchoring means in boreholes, comprising the steps of: a) separately producing the resin component and the hardener component of the two-component mortar composition according to claim 1, b) mixing the resin component and the hardener component in a static mixer, c) introducing the mixture resulting from step b) into a prepared borehole, and d) introducing an anchoring means into the borehole.
  19. A two-component mortar composition container, wherein the container is selected from the group consisting of a multi-chamber device or capsules; wherein the multi-chamber device comprises at least two chambers, wherein one chamber comprises the resin component according to claim 1 and another chamber comprises the hardener component according to claim 1, and wherein the multi-chamber device is selected from the group consisting of a multi-chamber cartridge and a multi-chamber cylinder; and wherein the capsules comprises at least two capsules, wherein one capsule comprises the resin component according to claim 1 and another capsule comprises the hardener component according to claim 1.

Description

This application is a national stage of PCT International Application No. PCT/EP2011/069613, filed Nov. 8, 2011, which claims priority under 35 U.S.C. §119 to German Patent Application No. 10 2010 051 818.2, filed Nov. 18, 2010, the entire disclosure of which is herein expressly incorporated by reference. The subject matter of the present invention is a two-component mortar composition having a curable resin component having a content of at least one free-radically polymerizable resin, fillers, accelerators, stabilizers and optionally further conventional mortar constituents and a hardener component, which is arranged separately therefrom to inhibit reaction and has a content of at least one peroxide for chemical fastening of anchoring means in boreholes, as well as its use for chemical fastening of anchoring means in boreholes. Two-component mortar compositions of this type are utilized, for example, as injection mortar for chemical anchoring of (preferably) metal elements in (preferably) mineral subsurfaces, such as in particular structures made of brickwork, concrete or natural stone.

The boreholes, which are required accordingly for fastening the anchoring means, are thereby initially introduced into the mineral subsurface, whereupon the curable resin component is mixed with the hardener component of the two-component mortar composition and is introduced into the borehole, whereupon the anchoring means, which is to be fastened, is inserted and adjusted, whereupon the mortar composition hardens.

Citations (12)

  • CN101484497A
  • CN1481399A
  • CN1500129A
  • DE10115591A1
  • EP0589831B1
  • EP0761792A2
  • EP1217017A1
  • EP2032622B1
  • US2004072954A1
  • US2004092656A1
  • US2009308533A1
  • US5854305A
Record as JSON
{
  "publication_number": "US9523029B2",
  "country": "US",
  "kind": "B2",
  "title": "Two-component mortar composition and its use",
  "abstract": "A description is given of a two-component mortar composition having a curable resin component having a content of at least one free-radically polymerizable resin, fillers, accelerators, stabilizers and optionally further conventional mortar constituents and a hardener component which is arranged separately therefrom to inhibit reaction and has a content of at least one peroxide for chemical fastening of anchoring means in boreholes, which is characterized in that the resin component contains from 0.1 to 0.5% by weight of at least one accelerator and from 0.003 to 0.03% by weight of at least one stabilizer and the hardener component contains from 0.1 to 0.35% by weight of organic peroxide, in each case based on the total weight of resin component and hardener component, and also the use of this two-component mortar composition for chemical fastening of anchoring means in boreholes.",
  "claims": [
    "1. A two-component mortar composition comprising a curable resin component and a hardener component; wherein the resin component and the hardener component are unmixed with each other; wherein the resin component contains from 8 to 25% by weight of at least one free-radically polymerizable resin, from 8 to 25% by weight of at least one reactive diluent, from 0.1 to 0.5% by weight of at least one accelerator, from 0.003 to 0.03% by weight of at least one stabilizer, from 40 to 70% by weight of at least one filler, and from 0.5 to 5% by weight of at least one thickening agent; and wherein the hardener component contains from 0.1 to 0.35% by weight of at least one peroxide, from 3 to 15% by weight water, from 5 to 25% by weight of at least one filler, and from 0.1 to 3% by weight of at least one thickening agent, in each case based on the total weight of resin component and hardener component; wherein the ratio of the resin component to the hardener component is in a range of 2:1 to 7:1 parts by weight.",
    "2. The two-component mortar composition according to claim 1, wherein the at least one free-radically polymerizable resin is selected from the group consisting of an unsaturated polyester, a vinyl ester, a urethane(meth)acrylate and an epoxy(meth)acrylate.",
    "3. The two-component mortar composition according to claim 1, wherein the at least one accelerator is selected from the group consisting of a tertiary N,N-substituted aniline, a tertiary N,N-substituted toluidine and an alkoxylated derivative thereof.",
    "4. The two-component mortar composition according to claim 3, wherein the resin component contains N,N-dimethyl aniline, N,N-diethyl aniline, N-ethyl-N-(hydroxyethyl)-aniline, N,N-dimethyl-p-toluidine, N-methyl-N-(hydroxyethyl)-p-toluidine, N,N-diisopropyliden-p-toluidine, di(hydroxyethyl)-p-toluidine, di(hydroxyethyl)-m-toluidine and/or ethyoxylated di(hydroxyethyl)-p-toluidine as the tertiary N,N-substituted aniline or the tertiary N,N-substituted toluidine, respectively.",
    "5. The two-component mortar composition according to claim 1, wherein the at least one stabilizer is selected from the group consisting of a phenolic stabilizer and a non-phenolic stabilizer.",
    "6. The two-component mortar composition according to claim 5, wherein the phenolic stabilizer is at least one selected from the group consisting of hydrochinon, 2-methyl hydrochinon, methoxyphenol, 2,4,6-trimethylphenol, pyrocatechol, 3-methoxypyrocatechol, 3,5-di-tert.-butylpyrocatechol, butylhydroxytoluene and derivatives thereof.",
    "7. The two-component mortar composition according to claim 5, wherein the non-phenolic stabilizer is at least one selected from the group consisting of an N-oxyl compound and a heterocyclic stabilizer.",
    "8. The two-component mortar composition according to claim 7, wherein the non-phenolic stabilizer is at least one selected from the group consisting of an N-oxyl compound and a heterocyclic stabilizer; wherein the N-oxyl compound is selected from the group consisting of a piperidinyl-N-oxyl and a tetrahydropyrrol-N-oxyl derivative; and wherein the heterocyclic stabilizer is phenothiazine.",
    "9. The two-component mortar composition according to claim 8, wherein the piperidin-N-oxyl is 4-hydroxy-2,2,6,6-tetramethyl-piperidin-N-oxyl.",
    "10. The two-component mortar composition according to claim 1, wherein the reactive diluent is at least one ethylenically unsaturated compound.",
    "11. The two-component mortar composition according to claim 10, wherein the at least one reactive diluent is selected from the group consisting of styrene, alpha-methylstyrene, divinyl benzene, (meth)acrylamide, methyl(meth)acrylate, ethyl(meth)acrylate, propyl(meth)acrylate, butyl(meth)acrylate, ethylhexyl(meth)acrylate, neopentylglycol(meth)acrylate, ethylene glycoldi(meth)acrylate, diethylene glycoldi(meth)acrylate, polyethylene glycol(meth)acrylate, propylene glycoldi(meth)acrylate, butandioldi(meth)acrylate, glycerin(meth)acrylate, hydroxyethyl(meth)acrylate, acetoacetatoethyl(meth)acrylate, alcoxylated bisphenol-A-di(meth)acrylate and glycidylmethacrylate.",
    "12. The two-component mortar composition according to claim 1, wherein the at least one peroxide is an organic peroxide.",
    "13. The two-component mortar composition according to claim 12, wherein the organic peroxide is selected from the group consisting of dibenzoyl peroxide, methyl ethyl ketone peroxide, tert.-butylperbenzoate, cyclohexanonperoxide, lauryl peroxide, cumolhydroperoxide and tert.-butylperoxy-2-ethyl hexanoate.",
    "14. The two-component mortar composition according to claim 1, wherein the at least one filler in the resin component and/or the at least one filler in the hardener component are selected from the group consisting of quartz, sand, fumed silica, corundum, chalk, talc, ceramic, aluminum oxide, glass, cement, light spar and heavy spar.",
    "15. The two-component mortar composition according to claim 1, wherein the at least one thickening agent in the resin component and/or the at least one thickening agent in the hardener component are selected from the group consisting of fumed silica, layered silicate, acrylate or polyurethane thickeners, castor oil derivatives, Neuburg siliceous earth and xanthan gum.",
    "16. The two-component mortar composition according to claim 1, wherein the hardener component contains from 0 to 5% by weight of at least one organic solvent.",
    "17. The two-component mortar composition according to claim 16, wherein the at least one organic solvent, which can be copolymerized with the free-radically polymerizable resin, is selected from the group consisting of a glycol, glycerin, a water-soluble polyethylene glycol derivative and a polypropylene glycol derivative.",
    "18. A method for chemical fastening of anchoring means in boreholes, comprising the steps of: a) separately producing the resin component and the hardener component of the two-component mortar composition according to claim 1, b) mixing the resin component and the hardener component in a static mixer, c) introducing the mixture resulting from step b) into a prepared borehole, and d) introducing an anchoring means into the borehole.",
    "19. A two-component mortar composition container, wherein the container is selected from the group consisting of a multi-chamber device or capsules; wherein the multi-chamber device comprises at least two chambers, wherein one chamber comprises the resin component according to claim 1 and another chamber comprises the hardener component according to claim 1, and wherein the multi-chamber device is selected from the group consisting of a multi-chamber cartridge and a multi-chamber cylinder; and wherein the capsules comprises at least two capsules, wherein one capsule comprises the resin component according to claim 1 and another capsule comprises the hardener component according to claim 1."
  ],
  "description_excerpt": "This application is a national stage of PCT International Application No. PCT/EP2011/069613, filed Nov. 8, 2011, which claims priority under 35 U.S.C. §119 to German Patent Application No. 10 2010 051 818.2, filed Nov. 18, 2010, the entire disclosure of which is herein expressly incorporated by reference. The subject matter of the present invention is a two-component mortar composition having a curable resin component having a content of at least one free-radically polymerizable resin, fillers, accelerators, stabilizers and optionally further conventional mortar constituents and a hardener component, which is arranged separately therefrom to inhibit reaction and has a content of at least one peroxide for chemical fastening of anchoring means in boreholes, as well as its use for chemical fastening of anchoring means in boreholes. Two-component mortar compositions of this type are utilized, for example, as injection mortar for chemical anchoring of (preferably) metal elements in (preferably) mineral subsurfaces, such as in particular structures made of brickwork, concrete or natural stone.\n\nThe boreholes, which are required accordingly for fastening the anchoring means, are thereby initially introduced into the mineral subsurface, whereupon the curable resin component is mixed with the hardener component of the two-component mortar composition and is introduced into the borehole, whereupon the anchoring means, which is to be fastened, is inserted and adjusted, whereupon the mortar composition hardens.",
  "cpc": [
    "C09K 8/467",
    "C04B 14/06",
    "C04B 14/066",
    "C04B 14/10",
    "C04B 14/24",
    "C04B 14/368",
    "C04B 20/0096",
    "C04B 2103/10",
    "C04B 2103/20",
    "C04B 2111/00715",
    "C04B 22/068",
    "C04B 24/00",
    "C04B 24/023",
    "C04B 24/121",
    "C04B 24/2641",
    "C04B 24/282",
    "C04B 24/287",
    "C04B 26/06",
    "C04B 26/16",
    "C04B 28/04",
    "C04B 28/06",
    "C04B 40/065",
    "C04B 40/0666",
    "C04B 7/02",
    "C04B 7/32",
    "F16B 13/142"
  ],
  "ipc": [
    "C04B 111/00",
    "C04B 26/06",
    "C04B 26/16",
    "C04B 28/04",
    "C04B 28/06",
    "C09K 8/00",
    "C09K 8/467",
    "E21B 43/16",
    "F16B 13/14"
  ],
  "assignees": [
    "BUERGEL THOMAS",
    "HILTI AG"
  ],
  "inventors": [
    "BUERGEL THOMAS"
  ],
  "filing_date": "2011-11-08",
  "publication_date": "2016-12-20",
  "grant_date": "2016-12-20",
  "priority_date": "2010-11-18",
  "application_number": "US-201113988220-A",
  "family_id": "45047734",
  "citations": [
    "CN101484497A",
    "CN1481399A",
    "CN1500129A",
    "DE10115591A1",
    "EP0589831B1",
    "EP0761792A2",
    "EP1217017A1",
    "EP2032622B1",
    "US2004072954A1",
    "US2004092656A1",
    "US2009308533A1",
    "US5854305A"
  ]
}

Record 1,814 of 5,000 in Patents full text (MLC-0201). Request the full dataset.