By Alphonsus Pocius
This e-book describes, in transparent comprehensible language, the 3 major disciplines of adhesion know-how: mechanics of the adhesive bond, chemistry of adhesives, and floor technological know-how. a few wisdom of actual and natural chemistry is believed, yet no familiarity with the technological know-how of adhesion is needed. The emphasis is on figuring out adhesion, how surfaces should be ready and transformed, and the way adhesives should be formulated to accomplish a given job. in the course of the ebook, the writer offers a huge view of the sphere, with a constant sort that leads the reader from one step to the following in gaining an realizing of the technology.
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Extra resources for Adhesion and Adhesives Technology 3E
This criterion for bond design is often used since the designer wishes the adhesive bond to remain elastic under the design loads. 4. The plateau is seen in materials that “neck-in” or “draw down” as the sample elongates. Note that in the plateau region, the stress on the sample can actually decrease. Eventually, the material can no longer sustain the stress and it breaks. The stress at this point is known as the stress at break while the strain at this point is known as the strain at break or the elongation at break of the material.
Earlier in this chapter, a spring was used as a mechanical analogy for an elastic material. For a viscous material, we need a somewhat more complicated model, the dashpot. 7 shows a dashpot that is a piston inside a liquid-containing cylinder. If we pull on the piston shaft slowly and steadily, the piston moves with little applied force because liquids are infinitely deformable. If we pull rapidly on the piston shaft, however, the liquid cannot move fast enough past the edges of the piston and thus resists the motion of the piston.
Several of these instances will be discussed in this chapter. The actual measured strength of an adhesive bond is termed practical adhesion. 2. Practical adhesion must depend upon adhesion. If there was no adhesion between the adhesive and the adherend, stress could not be transmitted from the adherend into the adhesive and so on. Practical adhesion (stress necessary to break an adhesive bond) is primarily dependent upon the physical properties of the adhesive and the adherend. Practical adhesion depends upon adhesion in a complex way that is discussed in Chapter 6.
Adhesion and Adhesives Technology 3E by Alphonsus Pocius