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Topology Optimization of Anisotropic Elastic Metamaterials for Anomalous Reflection and Mode Converting : 특이 반사와 모드 변환을 위한 비등방성 탄성 메타물질 위상최적설계

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dc.contributor.advisor김윤영-
dc.contributor.author안병성-
dc.date.accessioned2018-11-12T01:01:23Z-
dc.date.available2018-11-12T01:01:23Z-
dc.date.issued2018-08-
dc.identifier.other000000152959-
dc.identifier.urihttps://hdl.handle.net/10371/143321-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 공과대학 기계항공공학부(멀티스케일 기계설계전공), 2018. 8. 김윤영.-
dc.description.abstractMetamaterials are artificially engineered materials for realizing material properties that do not exist in nature. They are being used in various disciplines, but in this study, we are mainly concerned with the design of metamaterials for tailoring wave characteristics. Wave characteristics are affected by the shape of the unit cell of the metamaterial, the size of which is smaller than the wavelength of interest. By elaborately designing the shape and arrangement of the heterogeneous body constituting the unit cell, unique material properties, such as negative, zero, and infinite material properties can be obtained. Recently, there have been studies to systematically design a metamaterial unit cell by topology optimization. In this study, we propose a topology optimization formulation to design anisotropic metamaterials. This technique can effectively design the desired metamaterial microstructure for specific tailoring of wave characteristics without any baseline design.

The specific design problems considered in this work are a mode converter for converting a longitudinal wave into a transverse wave and a metasurface for reflecting a vertically incident elastic wave into various reflection angles by controlling a wavefront. To design and evaluate the performance of each metamaterial, specific wave characteristics are unitized
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dc.description.tableofcontentsCHAPTER 1. INTRODUCTION 1

1.1 Metamaterials and Metasurfaces 1

1.2 Motivation and research objectives 3

1.3 Outline of thesis 7

CHAPTER 2. TOPOLOGY OPTIMIZATION OF ANISOTROPIC METAMATERIALS FOR MODE CONVERTING 9

2.1 Overview 9

2.2 Definition of problem 11

2.3 Wave simulation in periodic elastic structures 14

2.3.1 Modeling and Analysis 14

2.3.2 Topology optimization of anisotropic metamaterials 19

2.3.3 Sensitivity analysis 26

2.4 Metamaterial design by the proposed formulation 30

2.4.1 Design of vertical mode converter 31

2.4.2 Design of tilted mode converter 35

2.5 Design of mode-coupled layer 42

2.5.1 Modeling and Analysis 42

2.5.2 Topology optimization for mode-coupled layer 44

2.5.3 Realization of mode-coupled layer 47

2.6 Summary 51

CHAPTER 3. TOPOLOGY OPTIMIZATION OF METASURFACES FOR ANOMALOUS REFLECTION 68

3.1 Overview 68

3.2 Definition of problem 70

3.3 Numerical simulations for anomalous reflection 72

3.3.1 Modeling and Analysis 72

3.3.2 Transfer matrix of the continuum model 77

3.3.3 Topology optimization of anisotropic metasurfaces 83

3.3.4 Sensitivity analysis 86

3.4 Unidirectional L-L anomalous reflection 94

3.4.1 Design of L-L anomalous reflection 96

3.4.2 Applications of L-L anomalous reflection 108

3.5 Unidirectional T-T anomalous reflection 110

3.5.1 Design of T-T anomalous reflection 114

3.5.2 Design of L-L/T-T anomalous reflection 122

3.6 Summary 126

CHAPTER 4. CONCLUSIONS 172

REFERENCES 175

ABSTRACT (KOREAN) 183

ACKNOWLEDGEMENTS 186
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dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subject.ddc621-
dc.titleTopology Optimization of Anisotropic Elastic Metamaterials for Anomalous Reflection and Mode Converting-
dc.title.alternative특이 반사와 모드 변환을 위한 비등방성 탄성 메타물질 위상최적설계-
dc.typeThesis-
dc.contributor.AlternativeAuthorByungseong Ahn-
dc.description.degreeDoctor-
dc.contributor.affiliation공과대학 기계항공공학부(멀티스케일 기계설계전공)-
dc.date.awarded2018-08-
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