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Titlebook: EMATs for Science and Industry; Noncontacting Ultras Masahiko Hirao,Hirotsugu Ogi Book 20031st edition Springer Science+Business Media New

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書目名稱EMATs for Science and Industry
副標(biāo)題Noncontacting Ultras
編輯Masahiko Hirao,Hirotsugu Ogi
視頻videohttp://file.papertrans.cn/301/300417/300417.mp4
圖書封面Titlebook: EMATs for Science and Industry; Noncontacting Ultras Masahiko Hirao,Hirotsugu Ogi Book 20031st edition Springer Science+Business Media New
描述.EMATs for Science and Industry. comprises the physical principles of electromagnetic acoustic transducers (EMATs) and the applications to scientific and industrial ultrasonic measurements on materials. The text is arranged in four parts: .-PART I is intended to be a self-contained description of the basic elements of coupling mechanism along with practical designing of EMATs for various purposes. There are several implementations to compensate for the low transfer efficiency of the EMATs. Useful tips to make an EMAT are also presented. .-PART II describes the principle of electromagnetic acoustic resonance (EMAR), which makes the most of contactless nature of EMATs and is the most successful amplification mechanism for precise velocity and attenuation measurements. .-PART III applies EMAR to studying the physical acoustics. New measurements emerged on three major subjects; in situ monitoring of dislocation behavior, determination of anisotropic elastic constants, and acoustic nonlinearity evolution. .-PART IV deals with a variety of individual topics encountered in industrial applications, for which the EMATs are believed to the best solutions.
出版日期Book 20031st edition
關(guān)鍵詞alloy; crystal; diffraction; elasticity; spectroscopy; thin film; ultrasound
版次1
doihttps://doi.org/10.1007/978-1-4757-3743-1
isbn_ebook978-1-4757-3743-1
copyrightSpringer Science+Business Media New York 2003
The information of publication is updating

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Principles of Emar for Spectral Responseransducer is placed on the surface of a plate of thickness . and excites an ultrasonic plane wave of single cycle propagating in the thickness direction, whose wavelength and period are λ and ., respectively. The pulse wave undergoes the repeated reflections at both free surfaces and is received by
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Nonlinear Acousticst interfaces. In the atomic scale, the interatomic potential contains non-parabolic terms of interatomic distance, the magnitude and characteristics being specific to the crystal. Those terms are the origin of non-Hookean behaviors of solids and also account for the thermal expansion and specific he
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On-Line Texture Monitoring of Steel Sheetsg and normal directions, in case of a rolled plate, showing an orthorhombic symmetry. The magnitude of the anisotropy is usually small and the fractional velocity differences are observed on the order of 10. at most. But, it is large enough to obscure the acoustoelastic effect, which refers to the u
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