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Super Enhancement of Elastic Wave Emission Using Extremely Low Effective Impedance Medium Realized by Paired Resonators : 공진기 쌍을 이용한 극저 임피던스 유효 매질 구현 및 탄성파 출력 향상

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dc.contributor.advisor김윤영-
dc.contributor.author김기연-
dc.date.accessioned2018-11-12T01:00:47Z-
dc.date.available2018-11-12T01:00:47Z-
dc.date.issued2018-08-
dc.identifier.other000000153091-
dc.identifier.urihttps://hdl.handle.net/10371/143296-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 공과대학 기계항공공학부, 2018. 8. 김윤영.-
dc.description.abstractThis work is mainly dedicated about the development of passive and non-destructive super enhancement of elastic wave emission, and revealing the reason of enhancement by setting up a new effective medium theory. Ultrasonic transducers have been designed and improved to enhance its wave emission performance, but yet manipulation on the medium where the transducers are attached has not been considered. However, conventional non-destructive manipulation on the medium leads to higher impedance, which is not desirable for the super enhancement. Inversely, digging out the material lowers the mechanical impedance but it is also not desirable in practice. Therefore, a method to lower the impedance without damaging the medium should be introduced.



In order to achieve the goal, we use a pair of resonators to be attached on the base medium. Since just the pair of resonators is not in a periodic arrangement, it requires a new tool to analyze the effective properties of the system. With this unique arrangement of resonators, the corresponding effective medium theory is newly established. Furthermore, since size of the paired resonator system is not in a subwavelength range, the existing methods for characterizing the effective medium cannot be applied directly.



With the newly derived analysis, the equivalent effective medium is found and the effective impedance of the medium surrounded by the resonators is found to be extremely lowered than that of nominal medium. As a usage of the lowered impedance, ultrasonic transducers are attached on the region where the impedance is lowered to enhance their wave emissions. However, the high contrast of impedance does not assure the high transmission of wave generated by the transducers. This work reveals the condition which the wave can be highly generated and fully transmitted through the outer medium. As examples of the theory, super enhancements of three modes in plate, S0, SH0 and A0, are shown.



To investigate the extreme low impedance and the super enhancement, we show a detailed theoretical analysis, Numerical simulations using finite element method and experimental results.
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dc.description.tableofcontentsCHAPTER 1. INTRODUCTION 1

1.1 Research motivation 1

1.2 Research Objectives 4

1.3 Outline of Thesis 7

CHAPTER 2. THEORETICAL BACKGROUND 11

2.1 Fundamentals of waves in a plate 11

2.1.1 Lamb wave 12

2.1.2 Timoshenko beam theory 13

2.1.3 Shear-horizontal wave 15

2.2 Ultrasonic transducers 16

2.2.1 Principle of piezoceramic transducer 16

2.2.2 Principle of magnetostrictive patch transducer 17

2.2.3 Pin-force modeling of ultrasonic transducers 20

2.3 Effective medium theory 21

CHAPTER 3. PROPOSITION OF EQUIVALENT SYSTEM THEORY OF RESONATOR PAIRING 31

3.1 Resonator-paired waveguide system 32

3.2 Equivalent medium of the paired resonator system 35

3.3 Effective properties of the equivalent system 45

3.4 Frequency selection process 50

3.5 Summary 50

CHAPTER 4. DESIGN OF THE RESONATOR PAIRING FOR LAMB WAVE AND SHEAR-HORIZONTAL WAVE EMISSION ENHANCEMENT 56

4.1 Realization of the resonator pair for S0 Lamb wave 57

4.2 Realization of the resonator pair for SH0 wave 61

4.3 Realization of resonators for axisymmetric S0 Lamb wave and SH0 wave 64

4.4 Summary 65

CHAPTER 5. RESONATOR PAIRING FOR ENHANCED SENSING 75

5.1 Resonator-paired waveguide system in receiving mode 75

5.2 Realization and experimental results for S0 and SH0 wave 78

5.3 Equivalent system of the paired resonator system in receiving mode 80

5.4 Summary 83

CHAPTER 6. ANALYSIS OF EMISSION IN BENDING WAVE SYSTEM 85

6.1 Analytic model 88

6.2 Experiments 99

6.3 Realization of a resonator for axisymmetric A0 Lamb wave 102

6.4 Summary 102

CHAPTER 7. CONCLUSIONS 114

Appendix A. Output enhancing of omnidirectional Lamb wave-MPT by slits in a patch 117

A.1 Introduction 117

A.2 Patch slitting effect on eddy current circuit 122

A.3 Effects of the numbers of slits on the transducer performance 131

A.4 Detailed eddy current circuit and strain states 136

A.5 Summary 137

REFERENCES 153

ABSTRACT (KOREAN) 165
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dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subject.ddc621-
dc.titleSuper Enhancement of Elastic Wave Emission Using Extremely Low Effective Impedance Medium Realized by Paired Resonators-
dc.title.alternative공진기 쌍을 이용한 극저 임피던스 유효 매질 구현 및 탄성파 출력 향상-
dc.typeThesis-
dc.description.degreeDoctor-
dc.contributor.affiliation공과대학 기계항공공학부-
dc.date.awarded2018-08-
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