Method for application of an expandable gluing system

Adhesive bonding and miscellaneous chemical manufacture – Methods – Surface bonding and/or assembly therefor

Reexamination Certificate

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C156S083000, C156S291000, C156S316000

Reexamination Certificate

active

06645332

ABSTRACT:

The present invention relates to a method for separate application of the components of an expandable gluing system onto a substrate, the hardener of which system is acidic and forms part of the expandable capability of the system. The invention also relates to a device for carrying out the method.
Expandable gluing systems are known in the art. Such expandable gluing systems can for example be used where pieces to be glued together exhibit irregularities in the surfaces thereof to which glue is to be applied, such as for example in the gluing of wooden pieces together, such as, for instance, for the manufacture of gluelam or laminated timber. The glue will then fill out these irregularities and thereby provide a joint having an improved strength as compared to a gluing system without a gas-forming substance. Another object of such systems is to reduce the amount of wood, which has to be removed by means of, for instance, planing before gluing in order to make the surfaces to be glued smooth. However, in known expandable gluing systems the expandable feature is accomplished by means of, for example, a gas-forming composition or mixture separate from the resin and hardener components, respectively, which is introduced into the gluing system at the time of gluing. Such an expandable gluing system, more particularly a carbamide resin based system, has been disclosed in SU-327224, wherein the mixing of a foaming composition with the resin suitably can be effected at the time of introduction of the carbamide resin curing catalyst.
Hitherto, expandable gluing systems have only been applied to substrates in the form of an admixture of the components included in said system, for example as disclosed in U.S. Pat. No. 3,615,975 A. The expandable systems known in the art, will, for example, be difficult to recirculate, due to, inter alia, the risk of clogging, or build up in the application apparatus of hardened, or partially hardened, mixture of the components of the gluing system. Additionally, the risk of foaming, or undesired gas formation in the application equipment will be present due to the presence of the forming composition. Also start and stop of such application, and operation during long periods of time, will be difficult in practise.
Accordingly, it would be highly desirable to provide a method for application of an expandable gluing system. wherein the components of said system can be recirculated, and wherein the formation of expanding agent, i.e. gas, prior to the pressing of the glued substrates together, is minimised. Also, it would be highly desirable to be able to uniformly regulate the process of expansion, i.e., gas formation, for example, in order to allow relatively long periods of time from application to pressing, and to secure a uniform formation of gas in the applied components. especially during the pressing.
Moreover, it would be highly desirable to find simple application systems for separate application of expandable gluing systems, which can be adjusted to the gluing system in question and the desired assembly times. Also, it would be highly desirable to find an expandable gluing system that requires small amounts of gas generating substances providing improved adhesive joints.
By assembly time it is meant the time that lapse from the moment of application of a gluing system onto a substrate to the moment of pressing the substrates to be glued together.
Thus, according to the present invention, a method for separate application of the components of an expandable gluing system, comprising a resin component and an acidic hardener component and a device suitable for carrying out the method are provided, by which enhanced adhesive and strength properties are obtained and at the same time the above-mentioned problems are overcome.
The method according to the present invention is defined in the appended claims. It comprises gluing of pieces of substrate together, by using an expandable gluing system comprising a resin component and a hardener component, wherein the hardener component is acidic, and the resin component comprises one or more gas generating substances capable of forming a gas when contacted with the hardener component, whereby the resin and the hardener components are separately applied onto the substrate.
The acidic hardener component used in the method of the invention comprises an acid, organic or inorganic such as hydrochloric acid, or an acidic salt such as ammonium chloride. An especially suitable group of acids are the organic acids. Suitable examples of the latter are paratoluene sulfonic acid and carboxylic acids, the latter of which being preferred. Examples of suitable organic carboxylic acids are, formic acid, citric acid, and maleic acid, of which formic acid, and maleic acid are preferred.
The hardener used also has the additional function of providing a component of the reaction system generating the gas, the other component of the gas-producing reaction system being the gas generating substance. Said gas generating substance is provided in admixture with the resin component of the gluing system.
Depending on the reactivity of the components in the gluing system, the desired assembly times, special considerations about substrate damaging by the acid used in the hardener and emission of vapour of the acid into the surrounding atmosphere, such as, in the working environment, the later applied strands may overlap, do not overlap, or do not contact, respectively, the corresponding previously applied strands of the other components.
As used here, the term “strand” also comprehends the meaning of the term “ribbon”, also conventionally used in the art, and any other like term.
The device according to the invention is defined in the appended claims and can be used for carrying out the method, wherein the components of the expandable gluing system are applied in the form of strands into a substrate.
The present invention, interalia, offers the advantages of using an expandable gluing system having a reduced number of essential constituents. Additionally, according to the invention, the need of a step comprising the addition of a gas-forming system into the gluing system, or into any of its components, prior to application of the gluing system, can conveniently be eliminated. Moreover, according to the invention only small amounts of the gas generating substance are needed, which gives rise to improved adhesives and strength properties of the glued products.
The technique according to the present invention is especially useful with the amino resin systems, the hardeners of which are generally acidic. Examples of such systems are; urea-formaldehyde, melamine-urea-formaldehyde, melamine-formaldehyde, melamine-urea-phenol-formaldehyde resins, and furfuryl alcohol modified varieties thereof.
The gas producing substance can be any carbonate or hydrogen carbonate that will generate CO
2
upon contact with an acid. Suitable examples are, for instance, sodium hydrogen carbonate, calcium carbonate, sodium carbonate, ammonium carbonate, ammonium hydrogen carbonate, magnesium carbonate, or a mixture thereof. Preferably calcium and/or sodium carbonate is used. The gas producing substance can normally be included in the resin component in an amount ranging from 0.1-10% by weight, suitably from 0.1-5%, preferably from 0.15-2% and most preferably from 0.15-1,9%, as calculated on the pure, active form of said substance, i.e. the form that will generate the gas, with any impurities excluded.
Other gas generating substances, which generate a gas having a low boiling point on the contact with an acid used in the hardener, could also be used in the present invention. Examples of such gases are, for instance, ammonia, nitric dioxide, etc., although not preferred from an environmental standpoint, for example.
The gas generating substance can also, for example, be used together with a conventional filler such as kaolin, or mixtures thereof. However, when the filler used comprises, or constitutes. one or more gas generating substances as used herein, the total amo

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