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Theory of Thermoelasticity with Applications (Softcover Reprint of the Original 1st 1978)

Theory of thermoelasticity with applications

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"Theory of thermoelasticity with applications" by J.L. Nowinski is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

Although the theory of thermoelasticity has a long history, its foun dations having been laid in the first half of the nineteenth century by Duhamel and Neumann, wide-spread interest in this field did not develop until the years subsequent to World War Two. There are good reasons for this sudden and continuing revival of interest. First, in the field of aeronautics, the high velocities of modern aircraft have been found to give rise to aerodynamic heating; in turn, this produces intense thermal stresses and, by lowering the elastic limit, reduces the strength of the aircraft structure. Secondly, in the nuclear field, the extremely high temperatures and temperature gradients originating in nuclear reactors influence their design and operation. Likewise, in the technology of modern propulsive systems, such as jet and rocket engines, the high temperatures associated with combustion processes are the origin of unwelcome thermal stresses. Similar phenomena are encountered in the technologies of space vehicles and missiles, in the mechanics of large steam turbines, and even in shipbuilding, where, strangely enough. ship fractures are often attributed to thermal stres ses of moderate intensities. The investigations of these, and similar, problems have brol!ght forth a remarkable number of research papers, both theoretical and experimental, in which various aspects of thermal stresses in engineering structures are described.

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Best For: Students and professionals in physics and mechanics focusing on material behavior under thermal and mechanical stresses.
Focus: The theoretical foundations and practical applications of thermoelasticity, emphasizing the interaction between thermal and elastic effects in materials.
Covers: Historical development of thermoelasticity theory and its relevance to modern aeronautics and material science.
Why It Matters: Understanding thermoelasticity is crucial for analyzing and predicting material responses in high-velocity aeronautical environments and other engineering applications involving thermal and mechanical coupling.

"Theory of thermoelasticity with applications" by J.L. Nowinski is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

Topic: Dynamics

Author: J.L. Nowinski

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.

Although the theory of thermoelasticity has a long history, its foun dations having been laid in the first half of the nineteenth century by Duhamel and Neumann, wide-spread interest in this field did not develop until the years subsequent to World War Two. There are good reasons for this sudden and continuing revival of interest. First, in the field of aeronautics, the high velocities of modern aircraft have been found to give rise to aerodynamic heating; in turn, this produces intense thermal stresses and, by lowering the elastic limit, reduces the strength of the aircraft structure. Secondly, in the nuclear field, the extremely high temperatures and temperature gradients originating in nuclear reactors influence their design and operation. Likewise, in the technology of modern propulsive systems, such as jet and rocket engines, the high temperatures associated with combustion processes are the origin of unwelcome thermal stresses. Similar phenomena are encountered in the technologies of space vehicles and missiles, in the mechanics of large steam turbines, and even in shipbuilding, where, strangely enough. ship fractures are often attributed to thermal stres ses of moderate intensities. The investigations of these, and similar, problems have brol!ght forth a remarkable number of research papers, both theoretical and experimental, in which various aspects of thermal stresses in engineering structures are described.

AuthorJ.L. Nowinski
PublisherSpringer
Published2011-12-13
ISBN-139789400999312
BindingPaperback
Pages852
LanguageEnglish
SubjectsScience
TopicDynamics
SeriesMechanics of Surface Structure

Format: Paperback

Length: 852 pages

Language: English

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