WO2005123802A1 - Curing agents for epoxy resins - Google Patents
Curing agents for epoxy resins Download PDFInfo
- Publication number
- WO2005123802A1 WO2005123802A1 PCT/EP2005/052854 EP2005052854W WO2005123802A1 WO 2005123802 A1 WO2005123802 A1 WO 2005123802A1 EP 2005052854 W EP2005052854 W EP 2005052854W WO 2005123802 A1 WO2005123802 A1 WO 2005123802A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- curing agent
- adduct
- weight
- agent according
- compound
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G59/00—Polycondensates containing more than one epoxy group per molecule; Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups
- C08G59/18—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing
- C08G59/182—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing using pre-adducts of epoxy compounds with curing agents
- C08G59/184—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing using pre-adducts of epoxy compounds with curing agents with amines
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G59/00—Polycondensates containing more than one epoxy group per molecule; Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups
- C08G59/18—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G59/00—Polycondensates containing more than one epoxy group per molecule; Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups
- C08G59/18—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing
- C08G59/40—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing characterised by the curing agents used
- C08G59/50—Amines
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08G—MACROMOLECULAR COMPOUNDS OBTAINED OTHERWISE THAN BY REACTIONS ONLY INVOLVING UNSATURATED CARBON-TO-CARBON BONDS
- C08G59/00—Polycondensates containing more than one epoxy group per molecule; Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups
- C08G59/18—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing
- C08G59/40—Macromolecules obtained by polymerising compounds containing more than one epoxy group per molecule using curing agents or catalysts which react with the epoxy groups ; e.g. general methods of curing characterised by the curing agents used
- C08G59/50—Amines
- C08G59/54—Amino amides>
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L63/00—Compositions of epoxy resins; Compositions of derivatives of epoxy resins
Definitions
- the invention relates to curing agents for epoxy resins, consisting of
- A) an adduct obtainable by reacting a1) a polyethylene polyamine having up to six nitrogens in the molecule, and a2) a monoglycidyl ether, and
- curable compositions for producing mouldings and sheetlike structures, and also for applications in the adhesives and sealants sector and for epoxy-resin mortars, is likewise provided by this invention.
- Curable compositions based on aminic curing agents and epoxy resins are widely used in industry for the coating and finishing of metallic and mineral substrates, as adhesives and sealants, as matrix resins, as tooling resins or, very generally, as casting resins for producing mouldings or sheetlike structures.
- Aminic curing agents used are, in particular, aliphatic, cycloaliphatic or aromatic amines.
- the mechanical and physical properties of the curable or cured compositions based on these amines are sufficient for many applications. In many cases in practice, however, these products have disadvantages, such as poor surfaces or severe formation of hydrates, for example.
- These surface defects are not just a visual disruption, as in the case of a topcoat material, for example.
- the surface defects, particularly the formation of hydrates may result in a situation in which, when the curing agent has to be overcoated, such as when used as a primer, for example, the inter-coat adhesion is not sufficient, and the subsequently applied topcoat material undergoes redetachment.
- amine compounds which have a low free amine content.
- use is frequently made of preadducts of such amines with epoxy resins.
- the advantages, besides improved surface properties, are a lower vapour pressure and hence also reduced odour nuisance and toxicology.
- the free amine content of such compounds is always still very high, use is sometimes made of what are known as "isolated adducts". In this case the excess free amine is separated off by distillation.
- the disadvantage of these compounds is their viscosity, which is too high. In order to be able to be processed at room temperature and lower temperatures, it is necessary to add relatively large fractions of diluents.
- the curing agents of the invention have comparatively low viscosities and enable processing at room temperature, so that there is no need to add disruptive solvents and/or plasticizers.
- the free amine content of these adducts is low.
- Adduct components a2) used for preparing the polyamine adducts A) include monofunctional, preferably aromatic, glycidyl ethers, such as phenyl glycidyl ether, cresyl glycidyl ether, glycidyl ethers based on distilled cashew nut oil, glycidyl ethers based on monoalcohols, styrene oxide, etc. Preference is given to using phenyl glycidyl ether and cresyl glycidyl ether.
- amine compounds a1) use is made of polyethylene polyamines which have not more than 6 (six) nitrogen atoms in the molecule. Preference is given to polyethylene polyamines, such as aminoethylpiperazine, ethylenediamine, diethylenetriamine or triethylenetetramine, for example. Of particular preference the compound a1) is selected from ethylenediamine and/or diethylenetriamine.
- the epoxide compound is added to an excess of the amine component at 60°C to 80°C with stirring and, after reaction has taken place, the excess of the amine compound is separated off by distillation, under reduced pressure where appropriate.
- the amino compound is placed in the reaction vessel and acrylonitrile is added at 50 ⁇ C-100°C. For the complete reaction, stirring is carried out for a further 60 min.
- the level of adducting is chosen in accordance with the invention such that there are 0.1 to 2.5 mol, preferably 0.5 to 2 mol, of acrylonitrile per mole of the amine compound.
- Amines b1) which can be used include in principle all amines which have at least two reactive amine hydrogen atoms, examples being heterocyclic amines such as piperazine, N- aminoethylpiperazine; cycloaliphatic amines such as isophoronediamine, 1 ,2-(1 ,3; 1 ,4)- diamin ⁇ cyclohexane, aminopropylcyclohexylamine, tricyclododecanediamine (TCD); araliphatic amines, such as xylylenediamine; aliphatic, optionally substituted amines such as ethylenediamine, propylenediamine, hexamethylenediamine, 2,2,4(2,4,4)-trimethyl- hexamethylenediamine, 2-methylpentamethylenediamine; ether amine such as 1,7 diamino- 4-oxaheptane, 1 ,10-diamino-4,7-dioxadecane,
- ether diamines based on propoxylated diols, triols and polyols ("Jeffamine from Huntsman). Additionally it is possible to use polyalkylene polyamines such as diethylenetriamine, triethylenetetramine, dipropylenetriamine, tripropylenetetramine and also high molecular weight amines or adducts or condensates that contain free amine hydrogen.
- adduct B is a xylylenediamine-acrylonitrile adduct.
- the polyaminoamides C) are prepared by conventional methods, by condensation of diamines or polyamines, preferably polyethylene polyamines, and carboxylic acids.
- Polyethylene polyamines used are amines which contain 3 or more than 3 nitrogen atoms in the molecule, such as diethylenetriamine, triethylenetetramine, tetraethylenepentamine (TEPA), pentaethylenehexamine (PEHA), hexaethyleneheptamine (HEHA) and higher polyethylene polyamines or polyethyleneamine mixtures.
- the acids, or fatty acids, used for condensation of the polyethylene polyamines are monomeric, dimeric or polymerized, saturated or unsaturated, and can contain hydrocarbon radicals having 2-60 carbon atoms. Inventively preferred are fatty acids which contain at least 8 carbon atoms.
- the polyethylene polyamine is charged to the reaction vessel and the fatty acid is added at 60°C-100 ⁇ C. The reaction mixture is heated to 260°C and the water of reaction which forms is removed by distillation.
- the molar ratio of diamine or polyamine to acid groups is preferably from 1 :1 to 1:1.5.
- the invention additionally provides a curable composition characterized in that it comprises a curable epoxide compound, a curing agent of the invention, and optionally one or more auxiliaries and additives customary in epoxy resin technology.
- the epoxide compounds also used in accordance with the invention for the curable compositions are commercially customary products having on average more than one epoxide group per molecule and derived from mono- and/or polyhydric and/or polynuclear phenols, especially bisphenols and also novolaks, such as bisphenol A diglycidyl ether and bisphenol F diglycidyl ether, for example.
- An extensive compilation of these epoxide compounds is found in the handbook "Epoxiditatien und Epoxidharze” by A.M. Paquin, Springer Verlag Berlin, 1958, chapter IV, and also in Lee & Neville, "Handbook of Epoxy Resins", 1967, Chapter 2.
- compositions of two or more epoxide compounds can also be used.
- compositions of glycidyl ethers based on bisphenol A, bisphenol F or novolaks with what are called reactive diluents such as monoglycidyl ethers of phenols or glycidyl ethers based on mono- or polyhydric aliphatic or cyloaliphatic alcohols, for example.
- reactive diluents examples include phenyl glycidyl ether, cresyl glycidyl ether, p-tert-butyl phenyl glycidyl ether, butyl glycidyl ether, Ci 2 -C ⁇ alcohol glycidyl ether, butane diglycidyl ether, hexane diglycidyl ether, cyclohexanedimethyl diglycidyl ether or glycidyl ethers based on polyethylene glycols or polypropylene glycols. If necessary the viscosity of the epoxy resins can be reduced further by adding these reactive diluents.
- the mixing ratio of curing agent of the invention to epoxy resin is preferably chosen equivalently; that is, one epoxide equivalent is used for each amine equivalent.
- a superstoichiometic or substoichiometric amount of the hardener component it is possible to employ a superstoichiometic or substoichiometric amount of the hardener component.
- This invention provides in one instance for the use of the curable compositions of the invention for producing mouldings and sheetlike structures, and also for applications in the adhesives and sealants sector and for e poxy-resin mortars.
- the resulting products tend to feature more rapid curing and better surfaces, whereas in the case of the combination of A) and C) the adhesion to various substrates tends to show a marked improvement.
- the user is therefore provided with the possibility, in accordance with the desired profile of requirements, of using an appropriate combination of A) and B) and/or C) as curing agents.
- the invention further provides the cured products obtainable by curing a composition according to the invention.
- the epoxy resins also used can be cured hot and cold (room temperature) with the curing agents of the invention.
- the epoxy resins can be cured in the presence of further adjuvants, such as auxiliaries and additives that are customary in epoxy resin technology.
- auxiliaries and additives that are customary in epoxy resin technology.
- auxiliaries and additives include gravel, sands, silicates, graphite, silicon dioxide, talc, mica, and so on, in the particle- size distributions that are customary in this area.
- pigments, dyes, stabilizers, flow control agents, plasticizing agents, non-reactive extender resins, plasticizers and accelerators are examples that may be mentioned.
- the curable compositions may further comprise the curing agents that are customary in epoxy resin technology, especially aminic curing agents, as co-hardeners.
- compositions of the invention can be used very generally as casting resins for producing cured products, and can be used in the formulation that is appropriate to the particular end use, for example, as adhesives, as matrix resins, as tooling resins or as coating materials.
- Example 4 Hardener formulation comprising A) and B)
- Example 2 are homogenized at 60°C to 70 °C.
- Viscosity 900 mPa»s.
- Theoretical amine equivalent about 85.
- Example 5 Hardener formulation comprising A) and B)
- 500 g of the adduct from Example 1 and 500 g of the trimethylhexamethylenediamine adduct from Example 3 are homogenized at 60°C to 70 °C.
- Viscosity 450 mPa»s.
- Theoretical amine equivalent about 71.
- Example 6 Hardener formulation comprising A) and C)
- Viscosity 1050 mPa «s. Theoretical amine equivalent: about 81.
- Example 7 Hardener formulation comprising A) and B) and C)
- Example 2 and 250 g of Aradur 370 polyaminoamide formed from monomeric fatty acid and triethylenetetramine, from Huntsman are homogenized at 60°C to 70 °C.
- Viscosity 970 mPa»s.
- Theoretical amine equivalent about 83.
- Araldite GY 783 is a bisphenol A/bisphenol F resin mixture modified with C ⁇ 2 /C ⁇ 4 glycidyl ether and having a viscosity of about 1000 mPa « s (23°C) and an epoxide equivalent weight of about 190;
- the cure rates of the curable compositions of the invention are very high at 10°C, while the processing lives are comparatively long.
- inventive examples in fact, a much quicker cure with a much longer pot life is apparent
- Aradur 3278 shows a much quicker initial cure for a comparable pot life. Cure performance of this kind is desirable in practice, since on the one hand the processor has sufficient time to apply the curable mixture while on the other hand, in the coating sector for example, the coating can be accessed or worked on very rapidly. This result could not have been foreseen. Instead the expectation would have been that a relatively long processing life would be accompanied also by a slower cure rate.
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- Chemical & Material Sciences (AREA)
- Health & Medical Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Medicinal Chemistry (AREA)
- Polymers & Plastics (AREA)
- Organic Chemistry (AREA)
- Epoxy Resins (AREA)
- Paints Or Removers (AREA)
- Adhesives Or Adhesive Processes (AREA)
Abstract
Description
Claims
Priority Applications (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN2005800204135A CN1980973B (en) | 2004-06-21 | 2005-06-20 | Epoxy curing agent |
| JP2007517283A JP2008503626A (en) | 2004-06-21 | 2005-06-20 | Curing agent for epoxy resin |
| AU2005254740A AU2005254740A1 (en) | 2004-06-21 | 2005-06-20 | Curing agents for epoxy resins |
| EP05773996A EP1761581B1 (en) | 2004-06-21 | 2005-06-20 | Curing agents for epoxy resins |
| DE602005003026T DE602005003026T2 (en) | 2004-06-21 | 2005-06-20 | HARDENER FOR EPOXY RESINS |
| US11/630,498 US20080293870A1 (en) | 2004-06-21 | 2005-06-20 | Curing Agents for Epoxy Resins |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102004029921.8 | 2004-06-21 | ||
| DE102004029921 | 2004-06-21 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2005123802A1 true WO2005123802A1 (en) | 2005-12-29 |
Family
ID=35124386
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2005/052854 Ceased WO2005123802A1 (en) | 2004-06-21 | 2005-06-20 | Curing agents for epoxy resins |
Country Status (9)
| Country | Link |
|---|---|
| US (1) | US20080293870A1 (en) |
| EP (1) | EP1761581B1 (en) |
| JP (1) | JP2008503626A (en) |
| KR (1) | KR20070056005A (en) |
| CN (1) | CN1980973B (en) |
| AU (1) | AU2005254740A1 (en) |
| DE (1) | DE602005003026T2 (en) |
| ES (1) | ES2292146T3 (en) |
| WO (1) | WO2005123802A1 (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102009028019A1 (en) | 2009-02-04 | 2010-08-05 | Evonik Degussa Gmbh | Curable compositions based on epoxy resins and hetero-polycyclic polyamines |
| WO2014052319A3 (en) * | 2012-09-28 | 2014-07-17 | Dow Global Technologies Llc | Adduct compositions |
| WO2017136333A1 (en) * | 2016-02-02 | 2017-08-10 | Evonik Degussa Gmbh | Amidoamine and polyamide curing agents, compositions, and methods |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102008049888B4 (en) * | 2008-10-02 | 2013-05-08 | Vacuumschmelze Gmbh & Co. Kg | Magnetic system positioned in a shroud and method of manufacturing a magnet system |
| WO2010121853A1 (en) * | 2009-04-24 | 2010-10-28 | Huntsman Advanced Materials (Switzerland) Gmbh | Method of making chemically resistant moulds and tools |
| CN103517947B (en) * | 2011-07-08 | 2016-02-24 | 艾达索高新材料无锡有限公司 | A kind of reinforced composite material and recycling method thereof |
| EP2752437A1 (en) * | 2013-01-08 | 2014-07-09 | Sika Technology AG | Hardener for low emission epoxy resin products |
| JP6886641B2 (en) * | 2015-03-31 | 2021-06-16 | 三菱瓦斯化学株式会社 | Epoxy resin curing agent, epoxy resin composition, paint, civil engineering and building materials, cured product and composite material, and manufacturing method of epoxy resin curing agent. |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP0454027A2 (en) * | 1990-04-25 | 1991-10-30 | Sunstar Giken Kabushiki Kaisha | Adhesive for inner lining hose of water tube |
| JPH03275781A (en) * | 1990-03-26 | 1991-12-06 | Nippon Steel Chem Co Ltd | Solventless coating composition |
| JPH10139861A (en) * | 1996-11-05 | 1998-05-26 | Fuji Kasei Kogyo Kk | Water-based epoxide resin composition |
Family Cites Families (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPS517029A (en) * | 1974-07-04 | 1976-01-21 | Nippon Synthetic Chem Ind | TOSOSAGYOSEINISUGURETA EHOKISHIJUSHEMARUJON |
| JPS5450535A (en) * | 1977-09-29 | 1979-04-20 | Hitachi Ltd | Adhesive composition for sealing of liquid crystal element |
| JPS6375044A (en) * | 1986-09-17 | 1988-04-05 | Toto Ltd | Production of open-cell porous material |
| CN87101669A (en) * | 1987-02-27 | 1988-09-07 | 项新 | Curing agent capable of enhancing toughness of epoxy resin |
| JPH03275714A (en) * | 1990-03-23 | 1991-12-06 | Nippon Steel Chem Co Ltd | Curing agent composition for epoxy resin and epoxy resin composition containing same composition |
| JP3025514B2 (en) * | 1990-06-11 | 2000-03-27 | 新日鐵化学株式会社 | Curing agent for epoxy resin and epoxy resin composition containing the same |
| US5246984A (en) * | 1992-06-03 | 1993-09-21 | Air Products And Chemicals, Inc. | Water dispersible polyamine-epoxy adduct and epoxy coating composition |
| DE19616020A1 (en) * | 1996-04-23 | 1997-10-30 | Huels Chemische Werke Ag | New polyamines and a process for their preparation |
| WO1999054373A1 (en) * | 1998-04-17 | 1999-10-28 | Sanyo Chemical Industries, Ltd. | Curable composition and cured article thereof |
-
2005
- 2005-06-20 US US11/630,498 patent/US20080293870A1/en not_active Abandoned
- 2005-06-20 DE DE602005003026T patent/DE602005003026T2/en not_active Expired - Lifetime
- 2005-06-20 JP JP2007517283A patent/JP2008503626A/en active Pending
- 2005-06-20 KR KR1020067026870A patent/KR20070056005A/en not_active Withdrawn
- 2005-06-20 WO PCT/EP2005/052854 patent/WO2005123802A1/en not_active Ceased
- 2005-06-20 EP EP05773996A patent/EP1761581B1/en not_active Expired - Lifetime
- 2005-06-20 ES ES05773996T patent/ES2292146T3/en not_active Expired - Lifetime
- 2005-06-20 CN CN2005800204135A patent/CN1980973B/en not_active Expired - Lifetime
- 2005-06-20 AU AU2005254740A patent/AU2005254740A1/en not_active Abandoned
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH03275781A (en) * | 1990-03-26 | 1991-12-06 | Nippon Steel Chem Co Ltd | Solventless coating composition |
| EP0454027A2 (en) * | 1990-04-25 | 1991-10-30 | Sunstar Giken Kabushiki Kaisha | Adhesive for inner lining hose of water tube |
| JPH10139861A (en) * | 1996-11-05 | 1998-05-26 | Fuji Kasei Kogyo Kk | Water-based epoxide resin composition |
Non-Patent Citations (2)
| Title |
|---|
| PATENT ABSTRACTS OF JAPAN vol. 016, no. 093 (C - 0917) 6 March 1992 (1992-03-06) * |
| PATENT ABSTRACTS OF JAPAN vol. 1998, no. 10 31 August 1998 (1998-08-31) * |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102009028019A1 (en) | 2009-02-04 | 2010-08-05 | Evonik Degussa Gmbh | Curable compositions based on epoxy resins and hetero-polycyclic polyamines |
| WO2014052319A3 (en) * | 2012-09-28 | 2014-07-17 | Dow Global Technologies Llc | Adduct compositions |
| WO2017136333A1 (en) * | 2016-02-02 | 2017-08-10 | Evonik Degussa Gmbh | Amidoamine and polyamide curing agents, compositions, and methods |
| US10676564B2 (en) | 2016-02-02 | 2020-06-09 | Evonik Operations Gmbh | Amidoamine and polyamide curing agents, compositions, and methods |
Also Published As
| Publication number | Publication date |
|---|---|
| CN1980973A (en) | 2007-06-13 |
| US20080293870A1 (en) | 2008-11-27 |
| JP2008503626A (en) | 2008-02-07 |
| EP1761581B1 (en) | 2007-10-24 |
| EP1761581A1 (en) | 2007-03-14 |
| AU2005254740A1 (en) | 2005-12-29 |
| DE602005003026T2 (en) | 2008-08-14 |
| DE602005003026D1 (en) | 2007-12-06 |
| CN1980973B (en) | 2010-05-26 |
| ES2292146T3 (en) | 2008-03-01 |
| KR20070056005A (en) | 2007-05-31 |
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