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Design Analysis of Adhesively Bonded Structures

机译:胶粘结构的设计分析

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摘要

The existing analytical solutions for the peeling and shearing stresses in polymeric adhesively bonded structures are either too inaccurate or too complex for adoption by practicing engineers. This manuscript presents a closed-form solution that is reasonably accurate yet simple and concise enough to be adopted by practicing engineers for design analysis and exploration. Analysis of these concise solutions have yielded insightful design guidelines: (i) the magnitude of peeling stress is generally higher than that of shearing stress; (ii) the peeling stress in a balanced structure may be reduced most effectively by reducing the elastic modulus of the adherends or by increasing the adhesive-to-adherend thickness ratio and less effectively by reducing the elastic modulus of the adhesive; and (iii) the peeling stress in an unbalanced structure may be reduced by increasing the in-plane compliance of the structure, which may be implemented most effectively by reducing the thicknesses of the adherends and less effectively by reducing the elastic modulus of the adherends.
机译:聚合物粘合结构中剥离应力和剪切应力的现有分析解决方案太不准确或太复杂,以致于无法由实践工程师采用。该手稿提供了一种封闭形式的解决方案,该解决方案相当准确,但又足够简捷,可供实践的工程师用于设计分析和探索。通过对这些简洁的解决方案的分析,得出了有见地的设计指南:(i)剥离应力的大小通常高于剪切应力的大小; (ii)可以通过减小被粘物的弹性模量或通过增加粘合剂与被粘物的厚度比来最有效地减小平衡结构中的剥离应力,而通过减小粘合剂的弹性模量则不太有效。 (iii)可通过增加结构的平面内柔度来降低不平衡结构中的剥离应力,这可通过减小被粘物的厚度而最有效地实现,而通过减小被粘物的弹性模量则不太有效。

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