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Analysis and testing of adhesive bonds

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TLDR
An adhesive fracture mechanics approach is described with reference to the identification and design of the best tests for evaluating a given adhesive, the definition of the most meaningful fundamental parameters by which adhesives might be characterized, and the application of these parameters to the design of joints and to the prediction of their performance.
Abstract
An adhesive fracture mechanics approach is described with reference to the identification and design of the best tests for evaluating a given adhesive, the definition of the most meaningful fundamental parameters by which adhesives might be characterized, and the application of these parameters to the design of joints and to the prediction of their performance. Topics include standard adhesive test techniques, the theory of adhesive fracture, and adhesive fracture energy tests. Analytical methods and computer techniques for adhesive bonding, chemical and physical aspects of adhesive fracture, and specific applications and aspects of adhesive fracture mechanics are discussed.

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Surface, interfacial and molecular aspects of polymer bioadhesion on soft tissues

TL;DR: In this article, the nature of the adhesive interface, the surface roughness, the chemical structure of the bioadhesive-candidate material, the swelling (hydration) at the adhesive interfaces, and the dynamic development of the bond strength are analyzed in terms of molecular and surface theories.
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A simple rheological method for the in vitro assessment of mucin-polymer bioadhesive bond strength.

TL;DR: Validity of the technique and the effect of ionic charge, polymer conformation, and rate of shear on ηb and F are discussed, as is a comparison of this method to other methods for evaluating bioadhesive materials.
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The science of adhesion

TL;DR: In this paper, the authors reviewed the mechanics and mechanisms of failure of adhesive joints and the effects of various operating environments on joint performance, including surface and interfacial phenomena, including mechanisms of adhesion.
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Mucoadhesive Drug Delivery Systems

TL;DR: The factors that affect the bioadhesion power of a polymer, the methods that permit the evaluation of a bioadhesive system and the methods for surface characterization of biomaterials are discussed.
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Alignable epitaxial liftoff of GaAs materials with selective deposition using polyimide diaphragms

TL;DR: In this paper, a light emitting diode was grown on a GaAs substrate, lifted off, aligned and selectively deposited onto a silicon host substrate, and electrically contacted and tested.