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Analytical or semi-analytical soluti...
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Zhong, Zheng.
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Analytical or semi-analytical solutions of functionally graded material structures
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Analytical or semi-analytical solutions of functionally graded material structures/ by Zheng Zhong, Guojun Nie.
作者:
Zhong, Zheng.
其他作者:
Nie, Guojun.
出版者:
Singapore :Springer Singapore : : 2021.,
面頁冊數:
xi, 286 p. :ill., digital ;24 cm.
內容註:
Preface -- Introduction -- Fundamentals for an Elastic FGM Body -- Governing Equations for Different Solution Schemes -- Functionally Graded Beams -- Rectangular Functionally Graded Plates 122 -- Circular Functionally Graded Plates 200 -- Hollow Functionally Graded Cylinders 231 -- Hollow Functionally Graded Spheres 275.
Contained By:
Springer Nature eBook
標題:
Functionally gradient materials. -
電子資源:
https://doi.org/10.1007/978-981-16-2004-1
ISBN:
9789811620041
Analytical or semi-analytical solutions of functionally graded material structures
Zhong, Zheng.
Analytical or semi-analytical solutions of functionally graded material structures
[electronic resource] /by Zheng Zhong, Guojun Nie. - Singapore :Springer Singapore :2021. - xi, 286 p. :ill., digital ;24 cm.
Preface -- Introduction -- Fundamentals for an Elastic FGM Body -- Governing Equations for Different Solution Schemes -- Functionally Graded Beams -- Rectangular Functionally Graded Plates 122 -- Circular Functionally Graded Plates 200 -- Hollow Functionally Graded Cylinders 231 -- Hollow Functionally Graded Spheres 275.
This book provides a comprehensive introduction to the analysis of functionally graded materials and structures. Functionally graded materials (FGMs), in which the volume fractions of two or more constituent materials are designed to vary continuously as a function of position along certain direction(s), have been developed and studied over the past three decades. The major advantage of FGMs is that no distinct internal boundaries exist, and failures from interfacial stress concentrations developed in conventional components can be avoided. The gradual change of material properties can be tailored to different applications and working environments. As these materials' range of application expands, new methodologies have to be developed to characterize them, and to design and analyze structural components made of them. Despite a number of existing papers on the analysis of functionally graded materials and structures, there is no single book that is devoted entirely to the analysis of functionally graded beams, plates and shells using different methods, e.g.,analytical or semi-analytical methods. Filling this gap in the literature, the book offers a valuable reference resource for senior undergraduates, graduate students, researchers, and engineers in this field. The results presented here can be used as a benchmark for checking the validity and accuracy of other numerical solutions. They can also be used directly in the design of functionally graded materials and structures.
ISBN: 9789811620041
Standard No.: 10.1007/978-981-16-2004-1doiSubjects--Topical Terms:
2189404
Functionally gradient materials.
LC Class. No.: TA418.9.F85 / Z466 2021
Dewey Class. No.: 620.118
Analytical or semi-analytical solutions of functionally graded material structures
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Preface -- Introduction -- Fundamentals for an Elastic FGM Body -- Governing Equations for Different Solution Schemes -- Functionally Graded Beams -- Rectangular Functionally Graded Plates 122 -- Circular Functionally Graded Plates 200 -- Hollow Functionally Graded Cylinders 231 -- Hollow Functionally Graded Spheres 275.
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This book provides a comprehensive introduction to the analysis of functionally graded materials and structures. Functionally graded materials (FGMs), in which the volume fractions of two or more constituent materials are designed to vary continuously as a function of position along certain direction(s), have been developed and studied over the past three decades. The major advantage of FGMs is that no distinct internal boundaries exist, and failures from interfacial stress concentrations developed in conventional components can be avoided. The gradual change of material properties can be tailored to different applications and working environments. As these materials' range of application expands, new methodologies have to be developed to characterize them, and to design and analyze structural components made of them. Despite a number of existing papers on the analysis of functionally graded materials and structures, there is no single book that is devoted entirely to the analysis of functionally graded beams, plates and shells using different methods, e.g.,analytical or semi-analytical methods. Filling this gap in the literature, the book offers a valuable reference resource for senior undergraduates, graduate students, researchers, and engineers in this field. The results presented here can be used as a benchmark for checking the validity and accuracy of other numerical solutions. They can also be used directly in the design of functionally graded materials and structures.
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