Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves
碩士 === 長庚大學 === 機械工程研究所 === 89 === The research is focused on the dispersion behavior of acoustic wedge waves propagating along the tip of ring-type wedges with a laser ultrasound technique and finite element analysis. The measurements results indicate that the dispersion relation of the...
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ndltd-TW-089CGU004890032016-07-06T04:10:04Z http://ndltd.ncl.edu.tw/handle/72378502590118917679 Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves 環型楔形體導波之研究 Lin, Peng-fei 林鵬飛 碩士 長庚大學 機械工程研究所 89 The research is focused on the dispersion behavior of acoustic wedge waves propagating along the tip of ring-type wedges with a laser ultrasound technique and finite element analysis. The measurements results indicate that the dispersion relation of the fundamental antisymmetric flexural(ASF)mode has a negative slope in the phase velocity-frequency dispersion space for a nearly truncation-free ring-type wedge. It is also observed that, at the low-frequency, or long-wavelength limit, the fundamental ASF mode of the ring-type wedge has a phase velocity higher than that a straight wedge due to the curvature effect. And FEM result support this discover. However, at the high-frequency, or short wavelength limit, the fundamental ASF mode of the ring-type wedges become insensitive to the curvature effect and dominated by the truncation effect. Yang, Che-hwa 楊哲化 2001 學位論文 ; thesis 80 zh-TW |
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碩士 === 長庚大學 === 機械工程研究所 === 89 === The research is focused on the dispersion behavior of acoustic wedge waves propagating along the tip of ring-type wedges with a laser ultrasound technique and finite element analysis. The measurements results indicate that the dispersion relation of the fundamental antisymmetric flexural(ASF)mode has a negative slope in the phase velocity-frequency dispersion space for a nearly truncation-free ring-type wedge. It is also observed that, at the low-frequency, or long-wavelength limit, the fundamental ASF mode of the ring-type wedge has a phase velocity higher than that a straight wedge due to the curvature effect. And FEM result support this discover. However, at the high-frequency, or short wavelength limit, the fundamental ASF mode of the ring-type wedges become insensitive to the curvature effect and dominated by the truncation effect.
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author2 |
Yang, Che-hwa |
author_facet |
Yang, Che-hwa Lin, Peng-fei 林鵬飛 |
author |
Lin, Peng-fei 林鵬飛 |
spellingShingle |
Lin, Peng-fei 林鵬飛 Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves |
author_sort |
Lin, Peng-fei |
title |
Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves |
title_short |
Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves |
title_full |
Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves |
title_fullStr |
Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves |
title_full_unstemmed |
Measurement and Finite Element Analysis on the Dispersion Behavior of Ring-Type Wedge Waves |
title_sort |
measurement and finite element analysis on the dispersion behavior of ring-type wedge waves |
publishDate |
2001 |
url |
http://ndltd.ncl.edu.tw/handle/72378502590118917679 |
work_keys_str_mv |
AT linpengfei measurementandfiniteelementanalysisonthedispersionbehaviorofringtypewedgewaves AT línpéngfēi measurementandfiniteelementanalysisonthedispersionbehaviorofringtypewedgewaves AT linpengfei huánxíngxiēxíngtǐdǎobōzhīyánjiū AT línpéngfēi huánxíngxiēxíngtǐdǎobōzhīyánjiū |
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