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By Alphonsus V. Pocius

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Many of the topics in this chapter form the basis for rheology, the study of the deformation and flow of materials. In its most detailed form, rheology is highly mathematical. In this book, rheological phenomena and measurements are described in terms of “what happens” and mathematical descriptions are used only when necessary. It is the objective of this chapter to develop an understanding of the basic mechanical properties of materials. In particular, it is important to become familiar with the concepts of modulus, elongation, fracture resistance and the ways stress can be applied to an adhesive bond.

Adhesives are also used in the manufacture of furniture and cabinets. In particular, adhesives are used to make laminates incorporating materials such as Formica2 bonded to pressboard. 6 shows how a rubber-based adhesive is sprayapplied to a veneer and a base wood. The two materials are later laminated to generate the furniture article. Adhesives are widely used in other aspects of home construction as well. Floor and wall tile is applied with rubber-based mastic cements. These materials are discussed in Chapter 10.

12) This analysis describes the energetics of crack propagation but it does not give us a criterion for the energy necessary to extend a crack. If a certain stress is applied to a linear elastic material, we know the strain. A materials parameter for crack propagation analogous to the Young’s modulus for the tensile test is needed. Let us say that a crack propagates only if UC > UC,min . UC and UC,min have units of energy 25 26 2 The Mechanical Properties of Materials as They Relate to Adhesion and are not dependent on the size of the sample and the amount of crack growth that has taken place.

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