By Lieng-Huang Lee (auth.), Lieng-Huang Lee (eds.)
Since the 1st symposium on fresh Advances in Adhesion, held September, 1971 in Washington, D. C. , this department of the yankee Chemical Society has always subsidized a number of symposia on adhesion and adhesives. The chemists have progressively discovered the significance of adhesion in numerous fields of technological know-how and expertise. in the course of those years, the technology of adhesion has progressively grown besides growth in floor technology and fracture mechanics. in addition, new adhesives were invented and utilized in genuine constructions, for instance, structural and aerospace adhesives. based on socio-economic calls for, new different types of adhesives were brought to strive against the issues of pollutants and to advertise energy-conservation. The advancements of hot-melt adhesives, waterborne adhesives, and radiation-curable adhesives are brilliant examples of successes in fixing a number of the difficulties. As chemists, our hatural wish is to appreciate how these new adhesives and new sorts of adhesives are made. therefore, we're drawn to studying concerning the chemistry of adhesives in order that we could create new generations of fabrics to meet destiny wishes. It was once in response to this universal curiosity that w~ set forth to org'anize this Symposium on contemporary advancements in Adhesive Chemistry. It was once held from March 21 via 23, 1983 within the Westin inn, Seattle, Washington. The Symposium was once rather well attended. in actual fact, for the 1st classes, we needed to movement from the smaller Mt. St.
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Additional resources for Adhesive Chemistry: Developments and Trends
T. Dickinson, "Fracto-Emission Adhesive Failure,n in Ref. 14. Accompanying 35. Y. Nakano, nPhotosensitive Adhesives and Sealants," Adhesives Age, 16, No. 12, 28 (1973). 36. K. C. Stueben, "Radiation Curing of PressureSensitive Adhesives: It. 5, 16 (1977). -H. LEE 54 37. K. C. Stueben, "Ultraviolet Cured Pressure Sensitive Adhesives," in Ref. 14. 38. V. D. McGinness, "Polymer and Formulation Design Characteristics for Developing Adhesive Bonding Radiation-Curable Systems," in Ref. 14. 39. J. V. Crivello and J.
40 (1983). 33. R. L. Levy and D. P. Ames, "Monitoring Epoxy Cure Kinetics with a Viscosity-Dependent Fluorescence Probe," in Ref. 14. 34. J. T. Dickinson, "Fracto-Emission Adhesive Failure,n in Ref. 14. Accompanying 35. Y. Nakano, nPhotosensitive Adhesives and Sealants," Adhesives Age, 16, No. 12, 28 (1973). 36. K. C. Stueben, "Radiation Curing of PressureSensitive Adhesives: It. 5, 16 (1977). -H. LEE 54 37. K. C. Stueben, "Ultraviolet Cured Pressure Sensitive Adhesives," in Ref. 14. 38. V. D.
These adhesives can react with aminoplasts, phenolics, and epoxy resins for increased water and creep resistance. One of the most interesting waterborne systems is polyurethane (93). Polyurethane dispersions can be made by the following processes (94): acetone, prepolymer mixing, melt-dispersion (95), self-dispersion of solids, ketimine process (96), and ketazine process (97). The acetone 33 RECENT DEVELOPMENTS: ADHESIVE AND SEALANT CHEMISTRY process involves the formation of an ionomer first in organic solvent and then in a dispersion in the acetone-H 2 0 mixture (8:2).
Adhesive Chemistry: Developments and Trends by Lieng-Huang Lee (auth.), Lieng-Huang Lee (eds.)