WO2021203234A1 - Low odour cyanoacrylate composition - Google Patents
Low odour cyanoacrylate composition Download PDFInfo
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- WO2021203234A1 WO2021203234A1 PCT/CN2020/083469 CN2020083469W WO2021203234A1 WO 2021203234 A1 WO2021203234 A1 WO 2021203234A1 CN 2020083469 W CN2020083469 W CN 2020083469W WO 2021203234 A1 WO2021203234 A1 WO 2021203234A1
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- cyanoacrylate
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- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F22/00—Homopolymers and copolymers of compounds having one or more unsaturated aliphatic radicals each having only one carbon-to-carbon double bond, and at least one being terminated by a carboxyl radical and containing at least one other carboxyl radical in the molecule; Salts, anhydrides, esters, amides, imides or nitriles thereof
- C08F22/30—Nitriles
- C08F22/32—Alpha-cyano-acrylic acid; Esters thereof
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- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J151/00—Adhesives based on graft polymers in which the grafted component is obtained by reactions only involving carbon-to-carbon unsaturated bonds; Adhesives based on derivatives of such polymers
- C09J151/06—Adhesives based on graft polymers in which the grafted component is obtained by reactions only involving carbon-to-carbon unsaturated bonds; Adhesives based on derivatives of such polymers grafted on to homopolymers or copolymers of aliphatic hydrocarbons containing only one carbon-to-carbon double bond
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B7/00—Layered products characterised by the relation between layers; Layered products characterised by the relative orientation of features between layers, or by the relative values of a measurable parameter between layers, i.e. products comprising layers having different physical, chemical or physicochemical properties; Layered products characterised by the interconnection of layers
- B32B7/04—Interconnection of layers
- B32B7/12—Interconnection of layers using interposed adhesives or interposed materials with bonding properties
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- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F220/00—Copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and only one being terminated by only one carboxyl radical or a salt, anhydride ester, amide, imide or nitrile thereof
- C08F220/02—Monocarboxylic acids having less than ten carbon atoms; Derivatives thereof
- C08F220/10—Esters
- C08F220/34—Esters containing nitrogen, e.g. N,N-dimethylaminoethyl (meth)acrylate
- C08F220/36—Esters containing nitrogen, e.g. N,N-dimethylaminoethyl (meth)acrylate containing oxygen in addition to the carboxy oxygen, e.g. 2-N-morpholinoethyl (meth)acrylate or 2-isocyanatoethyl (meth)acrylate
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- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08F—MACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
- C08F255/00—Macromolecular compounds obtained by polymerising monomers on to polymers of hydrocarbons as defined in group C08F10/00
- C08F255/02—Macromolecular compounds obtained by polymerising monomers on to polymers of hydrocarbons as defined in group C08F10/00 on to polymers of olefins having two or three carbon atoms
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08L—COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
- C08L23/00—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers
- C08L23/02—Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers not modified by chemical after-treatment
- C08L23/04—Homopolymers or copolymers of ethene
- C08L23/08—Copolymers of ethene
- C08L23/0846—Copolymers of ethene with unsaturated hydrocarbons containing atoms other than carbon or hydrogen
- C08L23/0869—Copolymers of ethene with unsaturated hydrocarbons containing atoms other than carbon or hydrogen with unsaturated acids, e.g. [meth]acrylic acid; with unsaturated esters, e.g. [meth]acrylic acid esters
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- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09J—ADHESIVES; NON-MECHANICAL ASPECTS OF ADHESIVE PROCESSES IN GENERAL; ADHESIVE PROCESSES NOT PROVIDED FOR ELSEWHERE; USE OF MATERIALS AS ADHESIVES
- C09J4/00—Adhesives based on organic non-macromolecular compounds having at least one polymerisable carbon-to-carbon unsaturated bond ; adhesives, based on monomers of macromolecular compounds of groups C09J183/00 - C09J183/16
- C09J4/06—Organic non-macromolecular compounds having at least one polymerisable carbon-to-carbon unsaturated bond in combination with a macromolecular compound other than an unsaturated polymer of groups C09J159/00 - C09J187/00
Definitions
- This invention relates to a cyanoacrylate composition
- a cyanoacrylate composition comprising at least one rubber toughening compound; and at least one ⁇ -alkoxyalkyl cyanoacrylate.
- the rubber toughening compound and ⁇ -alkoxyalky cyanoacrylate are well compatible with each other so that high odor alkyl cyanoacrylates, such as ethyl cyanoacrylate, is not needed in the composition.
- the cured product of cyanoacrylate composition exhibits excellent side impact and T-peel strength to various materials, such as metals, plastics and woods.
- Cyanoacrylate adhesive is well known for its instant bonding property and has been widely used in many different fields.
- Traditional cyanoacrylate adhesive has the drawback that its cured product does not show good impact resistance, and therefore needs to be reinforced with a rubber toughening compound.
- Alkyl cyanoacrylate monomer such as ethyl cyanoacrylate
- ethyl cyanoacrylate has demonstrated to be well compatible with the rubber toughening compound to make a toughened cyanoacrylate adhesive composition.
- ethyl cyanoacrylate has a strong odor which makes the cyanoacrylate adhesive composition unpleasant to be used.
- ethyl cyanoacrylate often causes blooming of the cured cyanoacrylate adhesive, and therefore not suitable to be used if the aesthetic appearance of an article bonded by the cyanoacrylate adhesive is important.
- the present invention relates to a cyanoacrylate composition, comprising:
- R 1 represents a C 1 -C 8 optionally substituted divalent hydrocarbon group, preferably a C 1 -C 4 optionally substituted divalent hydrocarbon group, and more preferably a C 2 -C 3 optionally substituted divalent hydrocarbon group;
- R 2 represents a C 2 -C 20 optionally substituted univalent hydrocarbon group, preferably a C 2 -C 8 optionally substituted univalent hydrocarbon group, and more preferably a C 2 -C 4 optionally substituted univalent hydrocarbon group.
- the present invention also relates to a cured product of the cyanoacrylate composition.
- the cured product of the cyanoacrylate composition exhibits excellent side impact and T-peel strength to various materials, such as metals, plastics and woods.
- the present invention also relates to an article bonded by the cyanoacrylate composition.
- the present invention also relates to a process of preparing the cyanoacrylate composition, comprising steps of:
- step b) cooling the solution from step a) to room temperature.
- the present invention also relates to a method of bonding two substrates together, comprising the steps of:
- Figure 1 illustrates the blooming of the cured products of the cyanoacrylate compositions in Ex. 1, Ex. 2 and Ex. 6;
- Figure 2 illustrates the solubility of rubber toughening compound in different cyanoacrylate monomers in Ex. 3 and Ex. 7.
- (meth) acrylate refers to both or any one of “acrylate” and “methacrylate” .
- (meth) acrylic refers to both or any one of “acrylic” and “methacrylic” .
- the term “monomer” refers to a polymer building block which has a defined molecular structure, and which can be reacted to form a part of a polymer.
- hydrocarbon group refers to an organic group consisting of carbon and hydrogen.
- Example of hydrocarbon group includes but limited to an alkyl group, such as methyl, ethyl, propyl, butyl, pentyl, hexyl, isopropyl, tertiary butyl, isobutyl and the groups alike; an alkenyl group, such as vinyl, allyl, butenyl, pentenyl, hexenyl and the groups alike; an aralkyl group, such as benzyl, phenethyl, 2- (2, 4, 6-trimethylphenyl) propyl and the groups alike; an aryl group, such as phenyl, tolyl, xyxyl and the groups alike; or an alkylidene group, such as methylidene, ethylidene, propylidene and the groups alike.
- optionally substituted in the term of “optionally substituted hydrocarbon group” means that one or more hydrogens on the hydrocarbon group may be replaced with a corresponding number of substituents preferably selected from halogen, nitro, azido, amino, carbonyl, ester, cyano, sulfide, sulfate, sulfoxide, sulfone, sulfone groups, and the likes.
- substantially free means that a material or functional group can be present in an incidental amount or that a particular occurrence or reaction only takes place to an insignificant extent, which does not affect desired properties.
- the material or functional group is not intentionally added to an indicated composition, but may be present at minor or inconsequential levels, for example, because it was carried over as an impurity as part of an intended composition component.
- the cyanoacrylate composition of the present invention comprises at least one rubber toughening compound.
- the rubber toughening compound is selected from the group consisting of (a) reaction products of the combination of ethylene, methyl acrylate and monomers having carboxylic acid cure sites, (b) copolymers of ethylene and methyl acrylate, (c) vinylidene chloride-acrylonitrile copolymers, (d) vinyl chloride/vinyl acetate copolymer, (e) copolymers of polyethylene and polyvinyl acetate, and combinations thereof.
- the rubber toughening compound is preferably a reaction product of the combination of ethylene, methyl acrylate and monomers having carboxylic acid cure sites, wherein the reaction product is substantially free of processing aids, such as release agent, complex organic phosphate esters, stearic acid and polyethylene glycol ether wax; and anti-oxidants, such as substituted diphenyl amine.
- Examples of commercially available rubber toughening compound are, for example, VAMAC VCS 5500, VAMAC MR, VAMAC G, VAMAC N123, VAMAC B-124, VAMAC VMX 1012 and VCD 6200 from DuPont.
- the amount of the rubber toughening compound is preferably from 1 to 50%, and more preferably from 1 to 30%by weight based on the total weight of the cyanoacrylate composition.
- the cyanoacrylate composition of the present invention comprises at least one ⁇ -alkoxyalkyl cyanoacrylate represented by structure (I) :
- R 1 represents a C 1 -C 8 optionally substituted divalent hydrocarbon group, preferably a C 1 -C 4 optionally substituted divalent hydrocarbon group, and more preferably a C 2 -C 3 optionally substituted divalent hydrocarbon group;
- R 2 represents a C 2 -C 20 optionally substituted univalent hydrocarbon group, preferably a C 2 -C 8 optionally substituted univalent hydrocarbon group, and more preferably a C 2 -C 4 optionally substituted univalent hydrocarbon group.
- the ⁇ -alkoxyalkyl cyanoacrylate of structure (I) may be synthesized as suggested in the paper “Synthesis and Characterization of Ethoxyethyl ⁇ -Cyanoacrylate and Reaction Intermediates” (Journal of Applied Polymer Science, Vol. 87, 1758–1773 (2003) by generating an oligo ( ⁇ -alkoxyalkyl cyanoacrylate) first through reacting alkoxyalkyl cyanoacetate with paraformaldehyde, followed by depolymerization at an elevated temperature in an acidic atmosphere with a high vacuum.
- ⁇ -alkoxyalkyl cyanoacrylate of structure (I) include but are not limited to ⁇ -ethoxyethyl cyanoacrylate, ⁇ -propoxyethyl cyanoacrylate, ⁇ -butoxyethyl cyanoacrylate, ⁇ -isopropoxyethyl cyanoacrylate, ⁇ -ethoxypropyl cyanoacrylate, and ⁇ -ethoxybutyl cyanoacrylate.
- the ⁇ -alkoxyalkyl cyanoacrylate in the present invention is ⁇ -ethoxyethyl cyanoacrylate.
- the weight ratio between the ⁇ -alkoxyalkyl cyanoacrylate and the rubber toughening compound is preferably from 100: 0.5 to 100: 50, more preferably from 100: 3 to 100: 30, and even more preferably from 100: 10 to 100: 30.
- the cured product of the cyanoacrylate composition would also has improved side impact and/or T-peel strength to various materials, such as metals, plastics and woods.
- Examples of commercially available ⁇ -alkoxyalkyl cyanoacrylate are AFINITICA 2-Ethoxyethyl Cyanoacrylate from Afinitica Technologies S. L. ; and 2-ethoxyethyl 2-cyanoacrylate from Cartell Chemical Co., Ltd.
- the amount of the ⁇ -alkoxyalkyl cyanoacrylate is preferably from 50%to 99%, and more preferably from 70 to 99%by weight based on the total weight of the cyanoacrylate composition.
- the cyanoacrylate composition may further comprise optional additives.
- suitable additives for the cyanoacrylate composition of the invention depends on the specific intended use of the cyanoacrylate composition and can be determined in the individual case by those skilled in the art.
- the cyanoacrylate composition of the present invention may further comprise at least one acid stabilizer.
- the acid stabilizer may be selected from the group consisting of boron trifluoride, boron trifluoride etherate complex, boron trifluoride dihydrate, trimethylsilyl triflate, sulphur dioxide, methanesulfonic acid, and mixtures thereof.
- acid stabilizer examples include, for example, boron trifluoride diethyl etherate and boron trifluoride dihydrate from Sigma-Aldrich.
- the amount of the acid stabilizer is preferably from 0 to 100 ppm, and more preferably from 0 to 30 ppm by weight based on the total weight of the cyanoacrylate composition.
- the cyanoacrylate composition of the present invention comprises at least one carboxylic acid to improve the shock resistance and/or T-peel strength of the cured product of the cyanoacrylate composition.
- the carboxylic acid may be selected from the group consisting of citric acid and its monohydrate, 1, 2, 4-benzene tricarboxylic acid (or trimellitic acid) , hemimellitic acid, trimesic acid, pyromellitic acid, 1, 2, 3, 4-butane tetracarboxylic acid, glutaric acid, 1, 2, 4, 5-benzene tetracarboxylic acid, 1, 2, 4-benzene tricarboxylic anhydride, 1, 2, 3-propene tricarboxylic acid (or aconitic acid) , 1,2, 3-propane tricarboxylic acid (tricarballylic acid) , 1, 2, 3-benzene tricarboxylic acid hydrate and combinations thereof.
- the carboxylic acid is citric acid.
- Examples of commercially available a carboxylic acid are, for example, trimellitic acid from Tokyo Chemical Industry; and citric acid from Sigma-Aldrich.
- the amount of the carboxylic acid is from 0%to 0.1%, and preferably from 0%to 0.01%by weight based on the total weight of the cyanoacrylate composition.
- the cyanoacrylate composition of the present invention may further comprise at least one accelerator, such as those selected from calixarenes and oxacalixarenes, silacrowns, crown ethers, cyclodextrins, polyethyleneglycol di (meth) acrylates, ethoxylated hydric compounds and combinations thereof.
- at least one accelerator such as those selected from calixarenes and oxacalixarenes, silacrowns, crown ethers, cyclodextrins, polyethyleneglycol di (meth) acrylates, ethoxylated hydric compounds and combinations thereof.
- calixarenes and oxacalixarenes are known, and are reported in the patent literature. See e.g. U.S. Pat. Nos. 4, 556, 700, 4, 622, 414, 4, 636, 539, 4, 695, 615, 4, 718, 966, and 4, 855, 461, the disclosures of each of which are hereby expressly incorporated herein by reference.
- One particularly desirable calixarene is tetrabutyl tetra [2-ethoxy-2-oxoethoxy] calix-4-arene.
- silacrowns again many are known, and are reported in the literature.
- Specific examples of silacrown compounds useful in the inventive compositions include dimethylsila-11-crown-4, dimethylsila-14-crown-5, and dimethylsila-17-crown-6. See e.g. U.S. Pat. No. 4, 906.317 (Liu) , the disclosure of which is hereby expressly incorporated herein by reference.
- a host of crown ethers are known. For instance, any one or more of 15-crown-5, 18-crown-6, dibenzo-18-crown-6, benzo-15-crown-5-dibenzo-24-crown-8, dibenzo-30-crown-10, tribenzo-18-crown-6, asym-dibenzo-22-crown-6, dibenzo-14-crown-4, dicyclohexyl-18-crown-6, dicyclohexyl-24-crown-8, cyclohexyl-12-crown-4, 1, 2-decalyl-15-crown-5, 1, 2-naphtho-15-crown-5, 3, 4, 5-naphtyl-16-crown-5, 1.2-methyl-benzo-18-crown-6, 1.2-methylbenzo-5, 6-methylbenzo-18-crown-6, 1, 2-t-butyl-18-crown-6, 1, 2-vinylbenzo-15-crown-5,
- Poly (ethylene glycol) di (meth) acrylates suitable for use herein include those within the following Structure:
- n is greater than 3, such as within the range of 3 to 12, with n being 9 as particularly desirable. More specific examples include PEG 200 DMA (where n is about 4) , PEG 400 DMA (where n is about 9) , PEG 600 DMA (where n is about 14) , and PEG 800 DMA, (where n is about 19) , where the number (e.g., 400) represents the average molecular weight of the glycol portion of the molecule, excluding the two methacrylate groups, expressed as grams/mole (i.e., 400 g/mol) .
- ethoxylated hydric compounds or ethoxylated fatty alcohols that may be employed
- appropriate ones may be chosen from those within the following Structure:
- C m can be a linear or branched alkyl or alkenyl chain
- m is an integer between 1 to 30, such as from 5 to 20
- n is an integer between 2 to 30, such as from 5 to 15, and R may be H or alkyl, such as C1-6 alkyl.
- the amount of the accelerator is from 0%to 5%, and preferably from 0%to 1%by weight based on the total weight of the cyanoacrylate composition.
- the cyanoacrylate composition of the present invention may contain further one or more additives that are usually used in the cyanoacrylate composition, such as, plasticizers, thickening agents, fillers, inhibitors, thixotropy or gelling agents, dyes and combinations thereof.
- additives such as, plasticizers, thickening agents, fillers, inhibitors, thixotropy or gelling agents, dyes and combinations thereof.
- the cyanoacrylate composition is preferably substantially free of alkyl cyanoacrylate which does not have an alkoxyl group, such as ethyl cyanoacrylate, butyl cyanoacrylate, octyl cyanoacrylate, 2-methylbutyl cyanoacrylate, and isoamyl cyanoacrylate.
- alkyl cyanoacrylate which does not have an alkoxyl group is either not fully low odor or will cause blooming of the cyanoacrylate composition after cured.
- the preparation of the cyanoacrylate composition of the present invention is also simplified if an alkyl cyanoacrylate which does not have an alkoxyl group is not used because less components are needed in the composition.
- the cyanoacrylate composition comprises:
- R 1 represents a C 1 -C 8 optionally substituted divalent hydrocarbon group, preferably a C 1 -C 4 optionally substituted divalent hydrocarbon group, and more preferably a C 2 -C 3 optionally substituted divalent hydrocarbon group;
- R 2 represents a C 2 -C 20 optionally substituted univalent hydrocarbon group, preferably a C 2 -C 8 optionally substituted univalent hydrocarbon group, and more preferably a C 2 -C 4 optionally substituted univalent hydrocarbon group;
- the weight ratio between the ⁇ -alkyl cyanoacrylate of structural (I) and the rubber toughening compound is preferably from 100: 0.5 to 100: 50.
- the cyanoacrylate composition of the present invention may be prepared by mixing all the components together at a temperature from 50 to 80 °C to dissolve the rubber toughening compound completely, and allowing the cyanoacrylate composition to be cooled to room temperature.
- the cyanoacrylate composition may be applied to a substrate by bar coating, jetting or spraying, and allowed to be cured by moisture in the air at room temperature for a sufficient time to permit the composition to fixture, such as 1 to 3 days.
- the cyanoacrylate composition may be used for bonding together two substrates by a method comprising the steps of:
- the blooming of the cured product of cyanoacrylate composition may be measured by dropping several drops of cyanoacrylate composition onto a black substrate and allowing the cyanoacrylate composition to be fully cured.
- a high temperature and high humidity condition e.g. 40 °C /98%RH
- the blooming of the cyanoacrylate composition is checked if a white ring or halo around the cured cyanoacrylate composition can be observed.
- the cyanoacrylate composition preferably does not show blooming after cured.
- the solubility of the rubber toughening agent in the cyanoacrylate monomers may be measured by dissolving the rubber toughening agent in cyanoacrylate monomers.
- the mixture of the rubber toughening agent and cyanoacrylate monomers is mixed vigorously at a temperature from 50 to 80 °C until the rubber toughening agent is fully dissolved to obtain a clear solution.
- the solution is then cooled to room temperature.
- the solubility of the rubber toughening agent in the cyanoacrylate monomers is checked visually if the solution is still clear at room temperature.
- the rubber toughening agent is preferably completely dissolvable in the cyanoacrylate monomers.
- the side impact of the cured product of the cyanoacrylate composition may be measured according to GM9751 General Motors Engineering Standards Side Impact Test, with a bonding area of 25.4 mm ⁇ 25.4 mm.
- the cured product of the cyanoacrylate composition preferably has a side impact greater than or equal to 9 J, more preferably has a side impact greater than or equal to 11 J, and even more preferably has a side impact greater than or equal to 13 J in the case that the cyanoacrylate composition is allowed to be cured on grit blasted mild steel for 24 hours at room temperature.
- the cured product of the cyanoacrylate composition preferably has a side impact greater than or equal to 1.5 J, more preferably has a side impact greater than or equal to 6 J, and even more preferably has a side impact greater than or equal to 9 J in the case that the cyanoacrylate composition is allowed to be cured on aluminum plate for 24 hours at room temperature.
- the T-peel strength of the cured product of the cyanoacrylate composition may be measured according to ASTM D1876/ISO 11339/DIN 53282, with a bonding area of 25.4 mm ⁇ 228.6 mm.
- the cured product of the cyanoacrylate composition preferably has a T-peel strength greater than or equal to 0.5 N/mm, and more preferably has a T-peel strength greater than or equal to 4 N/mm in the case that the cyanoacrylate composition is allowed to be cured on grit blasted mild steel for 3 days at room temperature.
- the cured product of the cyanoacrylate composition preferably has a T-peel strength greater than or equal to 1.5 N/mm, and more preferably has a T-peel strength greater than or equal to 3 N/mm in the case that the cyanoacrylate composition is allowed to be cured on aluminum plate for 3 days at room temperature.
- the blooming of cured cyanoacrylate composition was measured by steps of:
- VAMAC VCS 5500 Rubber toughening agent
- step b) mixing the mixture from step a) at 70 °C at a speed of 800 rpm for 3 to 5 hours until the rubber component is fully dissolved to obtain a clear solution;
- the rubber toughening agent was determined to be soluble in the cyanoacrylate monomers. If there were suspensions observed, the rubber toughening agent was determined to be insoluble in the cyanoacrylate monomers.
- the side impact of the cured product of the cyanoacrylate composition was measured according to GM9751 General Motors Engineering Standards Side Impact Test.
- the grit blasted mild steel were prepared by grit blasting on mild steel (available from Q-panel) with 80 mesh SiC powders.
- the dimension of grit blasted mild steel plate used for side impact testing was 25.4 mm ⁇ 100 mm.
- Side impact specimens were prepared by applying ⁇ 0.05 g cyanoacrylate composition on a bonding area of 25.4 mm ⁇ 25.4 mm. The assembled specimens were cured at room temperature for 1 day.
- the side impact of the cured product of the cyanoacrylate composition was measured according to GM9751 General Motors Engineering Standards Side Impact Test.
- the dimension of aluminum plate (available from Q-Panel Co. Inc. ) used for side impact testing was 25.4 mm ⁇ 100 mm.
- Side impact specimens were prepared by applying ⁇ 0.05 g cyanoacrylate composition on a bonding area of 25.4 mm ⁇ 25.4 mm. The assembled specimens were cured at room temperature for 1 day.
- T-peel strength of the cured cyanoacrylate composition was measured according to ASTM D1876/ISO 11339/DIN 53282.
- the dimension of the mild steel plate (available from Q-Panel Co. Inc. ) used for T-peel strength testing was 25.4 mm ⁇ 304.8 mm.
- T-peel specimens were prepared by applying ⁇ 0.5 g cyanoacrylate composition on a bonding area of 25.4 mm ⁇ 228.6 mm. The assembled specimens were cured at room temperature for 3 days.
- T-peel strength of the cured product of the cyanoacrylate composition was measured according to ASTM D1876/ISO 11339/DIN 53282.
- the dimension of the aluminum plate (available from Q-Panel Co. Inc. ) used for T-peel strength testing was 25.4 mm ⁇ 304.8 mm.
- T-peel specimens were prepared by applying ⁇ 0.5 g cyanoacrylate composition on a bonding area of 25.4 mm ⁇ 228.6 mm. The assembled specimens were cured at room temperature for 3 days.
- Ethyl cyanoacrylate (Ethyl 2-cyanoacrylate, available from Sigma-Aldrich) ;
- VAMAC VCS 5500 Rubber toughening compound
- Citric acid (Citric acid anhydrous, available from Sigma-Aldrich) ;
- Crown ether (Dibenzo-18-crown-6, available from Ferak Berlin GmbH) .
- the cyanoacrylate compositions were formulated as Examples according to Table 1 by mixing all of the components at 70°C at a speed of 800 rpm for 3 to 5 hours until all rubber toughening agent was fully dissolved, and allowed to be cooled to room temperature. Various tests described above were then performed on the cyanoacrylate compositions, and results were reported in Table 2.
- Ex. 1 to 5 utilized ⁇ -ethoxyethyl cyanoacrylate as the monomers.
- the rubber toughening compound (Vamac VCS 5500) showed good solubility to the monomers in Ex. 1 to 5 which was comparable to the solubility of rubber toughening compound in Ex. 6 when ethyl cyanoacrylate was used as the monomer.
- Cured products of the cyanoacrylate compositions in Ex. 1 to 5 showed comparable T-peel strength to aluminum plate compared with Ex. 6.
- Cured products in Ex. 3 and 4 showed even improved side impact to grit blasted mild steel plate, and cured products in Ex. 2 to 5 also showed better side impact to aluminum plate and T-peel strength to mild steel than Ex. 6.
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Abstract
Description
Claims (12)
- A cyanoacrylate composition, comprising:(a) at least one rubber toughening compound; and(b) at least one β-alkoxyalkyl cyanoacrylate represented by structure (I) :whereinR 1 represents a C 1-C 8 optionally substituted divalent hydrocarbon group, preferably a C 1-C 4 optionally substituted divalent hydrocarbon group, and more preferably a C 2-C 3 optionally substituted divalent hydrocarbon group; andR 2 represents a C 2-C 20 optionally substituted univalent hydrocarbon group, preferably a C 2-C 8 optionally substituted univalent hydrocarbon group, and more preferably a C 2-C 4 optionally substituted univalent hydrocarbon group.
- The cyanoacrylate composition according to claim 1, the rubber toughening compound is selected from the group consisting of (a) reaction products of the combination of ethylene, methyl acrylate and monomers having carboxylic acid cure sites, (b) copolymer of ethylene and methyl acrylate, (c) vinylidene chloride-acrylonitrile copolymers, (d) vinyl chloride/vinyl acetate copolymer, (e) copolymers of polyethylene and polyvinyl acetate, and combinations thereof.
- The cyanoacrylate composition according to claim 1 or 2, wherein the rubber toughening compound is preferably a reaction product of the combination of ethylene, methyl acrylate and monomers having carboxylic acid cure sites, wherein the reaction product is substantially free of release agents, anti-oxidants, stearic acid and polyethylene glycol ether wax.
- The cyanoacrylate composition according to any one of the proceeding claims, wherein the β-alkoxyalkyl cyanoacrylate is preferably β-ethoxyethyl cyanoacrylate.
- The cyanoacrylate composition according to any one of the proceeding claims, wherein the weight ratio between the β-alkoxyalkyl cyanoacrylate and the rubber toughening compound is preferably from 100: 0.5 to 100: 50, more preferably from 100: 3 to 100: 30, and even more preferably from 100: 10 to 100: 30.
- The cyanoacrylate composition according to any one of the proceeding claims, wherein the cyanoacrylate composition is substantially free of alkyl cyanoacrylate which does not have an alkoxyl group.
- The cyanoacrylate composition according to any one of the proceeding claims, further comprising at least one acid stabilizer, and/or at least one accelerator, and/or at least one carboxylic acid.
- The cyanoacrylate composition according to any one of the proceeding claims, comprising:a) at least rubber toughening compound;b) at least one β-alkoxyalkyl cyanoacrylate represented by structure (I) ;c) at least one acid stabilizer;d) at least one accelerator; ande) at least one carboxylic acid;whereinR 1 represents a C 1-C 8 optionally substituted divalent hydrocarbon group, preferably a C 1-C 4 optionally substituted divalent hydrocarbon group, and more preferably a C 2-C 3 optionally substituted divalent hydrocarbon group;R 2 represents a C 2-C 20 optionally substituted univalent hydrocarbon group, preferably a C 2-C 8 optionally substituted univalent hydrocarbon group, and more preferably a C 2-C 4 optionally substituted univalent hydrocarbon group; andthe weight ratio between the β-alkyl cyanoacrylate of structure (I) and the rubber toughening compound is preferably from 100: 0.5 to 100: 50.
- A cured product of the cyanoacrylate composition according to any one of the proceeding claims.
- An article bonded by the cyanoacrylate composition according to any one of the proceeding claims.
- A process of preparing the cyanoacrylate composition according to any one of the proceeding claims, comprising steps of:a) mixing all components together at a temperature from 50 to 80 ℃ to dissolve the rubber toughening compound completely to obtain a clear solution; andb) cooling the solution from step a) to room temperature.
- A method of bonding together two substrates, comprising the steps of:a) applying a cyanoacrylate composition according to claim 1, to at least one of the substrates; andb) mating together the substrates for a sufficient time to permit the composition to fixture.
Priority Applications (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2022561132A JP2023529055A (en) | 2020-04-07 | 2020-04-07 | Low odor cyanoacrylate composition |
| PCT/CN2020/083469 WO2021203234A1 (en) | 2020-04-07 | 2020-04-07 | Low odour cyanoacrylate composition |
| EP20929704.3A EP4133020A4 (en) | 2020-04-07 | 2020-04-07 | Low odour cyanoacrylate composition |
| KR1020227034383A KR20220160004A (en) | 2020-04-07 | 2020-04-07 | Cyanoacrylate composition with low odor |
| CN202080099216.1A CN115362230A (en) | 2020-04-07 | 2020-04-07 | Low odor cyanoacrylate compositions |
| US17/961,722 US20230049023A1 (en) | 2020-04-07 | 2022-10-07 | Low odour cyanoacrylate composition |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2020/083469 WO2021203234A1 (en) | 2020-04-07 | 2020-04-07 | Low odour cyanoacrylate composition |
Related Child Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US17/961,722 Continuation US20230049023A1 (en) | 2020-04-07 | 2022-10-07 | Low odour cyanoacrylate composition |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2021203234A1 true WO2021203234A1 (en) | 2021-10-14 |
Family
ID=78022464
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2020/083469 Ceased WO2021203234A1 (en) | 2020-04-07 | 2020-04-07 | Low odour cyanoacrylate composition |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US20230049023A1 (en) |
| EP (1) | EP4133020A4 (en) |
| JP (1) | JP2023529055A (en) |
| KR (1) | KR20220160004A (en) |
| CN (1) | CN115362230A (en) |
| WO (1) | WO2021203234A1 (en) |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH06145606A (en) * | 1992-11-11 | 1994-05-27 | Toagosei Chem Ind Co Ltd | Cyanoacrylate adhesive composition |
| CN101258211A (en) * | 2005-07-11 | 2008-09-03 | 汉高公司 | Toughened cyanoacrylate compositions |
| WO2010029134A1 (en) * | 2008-09-10 | 2010-03-18 | Loctite (R&D) Limited | Toughened cyanoacrylate compositions |
| EP2995663A1 (en) * | 2014-09-12 | 2016-03-16 | Afinitica Technologies, S. L. | Fast and elastic adhesive |
| WO2019081753A1 (en) * | 2017-10-27 | 2019-05-02 | Henkel IP & Holding GmbH | Toughened, low odor/low bloom cyanoacrylate compositions |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP5326556B2 (en) * | 2008-12-25 | 2013-10-30 | 東亞合成株式会社 | Adhesive composition |
| JP5434771B2 (en) * | 2010-04-27 | 2014-03-05 | 東亞合成株式会社 | Bonding method |
| JP2013112766A (en) * | 2011-11-30 | 2013-06-10 | Toagosei Co Ltd | 2-cyanoacrylate adhesive composition |
| GB2567868B (en) * | 2017-10-27 | 2020-05-06 | Henkel IP & Holding GmbH | Toughened low odour cyanoacrylate compositions |
| GB2567869B (en) * | 2017-10-27 | 2021-08-11 | Henkel IP & Holding GmbH | Toughened humidity/thermal resistant cyanoacrylate compositions |
-
2020
- 2020-04-07 EP EP20929704.3A patent/EP4133020A4/en not_active Withdrawn
- 2020-04-07 JP JP2022561132A patent/JP2023529055A/en active Pending
- 2020-04-07 KR KR1020227034383A patent/KR20220160004A/en not_active Ceased
- 2020-04-07 WO PCT/CN2020/083469 patent/WO2021203234A1/en not_active Ceased
- 2020-04-07 CN CN202080099216.1A patent/CN115362230A/en active Pending
-
2022
- 2022-10-07 US US17/961,722 patent/US20230049023A1/en not_active Abandoned
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH06145606A (en) * | 1992-11-11 | 1994-05-27 | Toagosei Chem Ind Co Ltd | Cyanoacrylate adhesive composition |
| CN101258211A (en) * | 2005-07-11 | 2008-09-03 | 汉高公司 | Toughened cyanoacrylate compositions |
| WO2010029134A1 (en) * | 2008-09-10 | 2010-03-18 | Loctite (R&D) Limited | Toughened cyanoacrylate compositions |
| EP2995663A1 (en) * | 2014-09-12 | 2016-03-16 | Afinitica Technologies, S. L. | Fast and elastic adhesive |
| WO2019081753A1 (en) * | 2017-10-27 | 2019-05-02 | Henkel IP & Holding GmbH | Toughened, low odor/low bloom cyanoacrylate compositions |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP4133020A4 * |
Also Published As
| Publication number | Publication date |
|---|---|
| EP4133020A4 (en) | 2023-12-06 |
| KR20220160004A (en) | 2022-12-05 |
| US20230049023A1 (en) | 2023-02-16 |
| JP2023529055A (en) | 2023-07-07 |
| EP4133020A1 (en) | 2023-02-15 |
| CN115362230A (en) | 2022-11-18 |
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