By B. Ellis (auth.), Mr Bryan Ellis (eds.)

Epoxy resins were commercially to be had for roughly forty five years and also have many significant commercial purposes, specially the place technical benefits warrant their just a little greater charges. The chemistry of those resins is interesting and has attracted research through many very capable scientists. The technological functions of the epoxy resins are very hard and there are various new advancements every year. The goals of the current publication are to give in a compact shape either theoretical and functional details that may help in the examine, learn and concepts within the box of epoxy resin technological know-how and expertise. The literature on epoxy resins is so tremendous that it's not attainable to be encyclopaedic and that's now not the functionality of the current textual content. it's the editor's wish that the choice of issues mentioned will offer an updated survey. there's a few overlap within the chapters yet this can be minimum and so every one bankruptcy is basically self contained. as with any chemical compounds there are toxicological and different risks. those are usually not handled during this textual content on account that a bit wisdom might be risky, yet fabric provided delivers information about any safeguard precautions that could be helpful. in spite of the fact that, frequently those precautions will not be laborious and epoxy resins, or extra particularly the hardeners, could be dealt with with ease. it really is was hoping that this article is going to supply an up to date define of the technological know-how and expertise of epoxy resins and stimulate extra examine into unsolved difficulties and support extra technological developments.

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Peters, D. (1967) The Chemistry of the Ether Linkage, Ch. 1, ed. Patai, S. Wiley-Interscience, New York (see especially p. 14). c. (1967) The Chemistry of the Ether Linkage, Ch. 11, ed. Patai, S. WileyInterscience, New York, pp. 501-503. F. (1980a) Experimental Methods in Polymer Chemistry Wiley, Chichester, UK. Ch. 15, pp. 221-254; Ch. 20, pp. 299-331. (1980b) Ch. 23,24,25. pp. 368-442. (1980c) Ch. 9, pp. 123-141. Ravindrath, K. S. (1974) f. Appl. Polym. Sci. 24, 1115-1123. E. F. (1963) f. Appl.

Modern Plastics International (1982) Jan. p. 48. E. S. (1959) Chern. Rev. 59,737-799. Peters, D. (1967) The Chemistry of the Ether Linkage, Ch. 1, ed. Patai, S. Wiley-Interscience, New York (see especially p. 14). c. (1967) The Chemistry of the Ether Linkage, Ch. 11, ed. Patai, S. WileyInterscience, New York, pp. 501-503. F. (1980a) Experimental Methods in Polymer Chemistry Wiley, Chichester, UK. Ch. 15, pp. 221-254; Ch. 20, pp. 299-331. (1980b) Ch. 23,24,25. pp. 368-442. (1980c) Ch. 9, pp. 123-141.

This is very important for the kinetics of cure with amine hardeners which will be discussed in chapter 3. Other types of hydroxyl group which may be present are a-glycol units formed by hydrolysis of an epoxy group, and also phenolic hydroxyl due to incomplete reaction of the phenol when the resin was manufactured, especially when larger concentrations of bisphenol A are used. Common methods for the assay of hydroxyl groups are inapplicable because the epoxy groups present interfere (Urbanski, 1977).

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