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- W1536717091 abstract "<dm:abstracts xmlns:dm=http://www.elsevier.com/xml/dm/dtd><ce:abstract xmlns:ce=http://www.elsevier.com/xml/common/dtd view=all class=author id=aep-abstract-id1><ce:section-title>Publisher Summary</ce:section-title><ce:abstract-sec view=all id=aep-abstract-sec-id2><ce:simple-para id=fsabs030 view=all>This chapter presents the two common types of butt joints: a two-material butt joint and an adhesively bonded butt joint that joins two adherends together with a relatively thin adhesive layer. Tensile-loaded butt joints are not often used in structurally demanding applications as load misalignment can introduce large bond-normal bending stresses. Perhaps the most common application of the butt joint is as test geometry to characterize adhesive strength. Butt-joint test specimens usually bond two relatively rigid adherends together with a thin adhesive layer. The joint is loaded in tension, and the adhesive's apparent tensile strength is defined as the failure load divided by the bond area. This strength definition is based on the premise that failure is associated with the nominal applied tensile stress at joint failure. The chapter focuses on the failure of sharp-edged butt joints with failure initiating along the edges of the bond. However, there are also instances when failure initiates away from the edges of the bond. It describes the methods for performing an interface-corner failure analysis, the limitations to such an approach, supporting experimental studies, and a discussion of unresolved issues in its application. Although the focus of the chapter is on butt joints, the approach applies to sharp-cornered joints in general. The chapter also presents the results for a sharp-cornered, embedded inclusion.</ce:simple-para></ce:abstract-sec></ce:abstract></dm:abstracts>" @default.
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- W1536717091 title "Engineering plasticity: Application of numerical and analytical techniques" @default.
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