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Analysis and Design of Structural Bonded Joints (Softcover Reprint of the Original 1st 1999)

Analysis and Design of Structural Bonded Joints

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"Analysis and Design of Structural Bonded Joints" by Liyong Tong, Grant P. Steven is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

254 7. 2 AEROSPACE 261 7. 3 MARINE 265 7. 4 GROUND TRANSPORTATION 268 7. 5 CNIL 270 References 285 Index Preface Most structures consist of an assembly of a number of individual components that must be connected to form an integral load transmission path. These connections are often referred to as joints and can be achieved in a variety of forms, e. g. by bolting, riveting, or other forms of mechanical fastening, or by welding or brazing for connecting metallic elements, or by adhesive bonding. No matter what forms of connections are used in the structure, these joints are potentially the weakest points in the structure and the locations where a weight penalty may apply. Thus structural joints must be designed adequately to meet the specific design requirements. Adhesive bonding represents one of the most important enabling technologies for developing innovative design concepts and structural configurations as well as exploiting new materials. The evolution of adhesive bonding technology, and its current knowledge base, was made possibly by the explosive growth in the adhesive applications in a great variety of industries over the past few decades. While it is easy for everyone to identify examples of adhesive bonding in the world around us, analysis and design of structural bonded joints represent one of the most challenging jobs in structural design and manufacturing. Compared to other joining methods, particularly mechanical fastening, adhesive bonding can offer substantial performance and economic advantages.

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Best For: Engineers and researchers working on structural connections in aerospace, marine, ground transportation, and civil engineering sectors.
Focus: The analysis and design principles of structural bonded joints used to connect individual components in load-bearing assemblies.
Covers: Methods of joining components including mechanical fastening, welding, brazing, and bonded joints, with applications in various transportation and civil engineering fields.
Why It Matters: Understanding bonded joint design is essential for creating reliable load transmission paths in complex structures, impacting safety and performance across multiple engineering disciplines.

"Analysis and Design of Structural Bonded Joints" by Liyong Tong, Grant P. Steven is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

Topic: Dynamics

Author: Liyong Tong, Grant P. Steven

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

254 7. 2 AEROSPACE 261 7. 3 MARINE 265 7. 4 GROUND TRANSPORTATION 268 7. 5 CNIL 270 References 285 Index Preface Most structures consist of an assembly of a number of individual components that must be connected to form an integral load transmission path. These connections are often referred to as joints and can be achieved in a variety of forms, e. g. by bolting, riveting, or other forms of mechanical fastening, or by welding or brazing for connecting metallic elements, or by adhesive bonding. No matter what forms of connections are used in the structure, these joints are potentially the weakest points in the structure and the locations where a weight penalty may apply. Thus structural joints must be designed adequately to meet the specific design requirements. Adhesive bonding represents one of the most important enabling technologies for developing innovative design concepts and structural configurations as well as exploiting new materials. The evolution of adhesive bonding technology, and its current knowledge base, was made possibly by the explosive growth in the adhesive applications in a great variety of industries over the past few decades. While it is easy for everyone to identify examples of adhesive bonding in the world around us, analysis and design of structural bonded joints represent one of the most challenging jobs in structural design and manufacturing. Compared to other joining methods, particularly mechanical fastening, adhesive bonding can offer substantial performance and economic advantages.

AuthorLiyong Tong, Grant P. Steven
PublisherSpringer
Published2014-02-23
ISBN-139781461373360
BindingPaperback
Pages288
LanguageEnglish
SubjectsTechnology & Engineering
TopicDynamics

Format: Paperback

Length: 288 pages

Language: English

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