| Authors |
Stepanenko D.A., Candidate of Technical Sciences, Associate Professor of the Department “Design and Manufacture of Devices”, Belarusian National Technical University, Minsk, Republic of Belarus, This email address is being protected from spambots. You need JavaScript enabled to view it. Minchenya V.T., Candidate of Technical Sciences, Associate Professor, Professor of the Department “Design and Manufacture of Devices”, Belarusian National Technical University, Minsk, Republic of Belarus
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| Bibliography |
- Manipulation of acoustic waves using a functionally graded material and process for making the same: US Patent 6278656 B1.
- Goljamina I.P. ed. Ul'trazvuk. Malen'kaja jenciklopedija [Ultrasound. Little encyclopedia]. Moscow, Sovet. jenciklopedija, 1979. 400 p.
- Amplifying ultrasonic waveguides. US Patent Application, no. 0131034, 2007.
- Ljushinskij A.V. Diffuzionnaja svarka raznorodnyh materialov [Diffusion welding of dissimilar materials]. Moscow, Izdat. centr “Akademija”, 2006. 208 p.
- Minchenja V.T., Stepanenko D.A. Perspektivy ispol'zovanija gibkih ul'trazvukovyh volnovodnyh sistem v medicine i tehnike [Prospects for use of flexible ultrasonic waveguide systems in medicine and technology]. Pribory i metody izmerenij [Devices and measurement methods], no. 1, 2010, pp. 6-16.
- Sutou Y. [et al.]. Development of superelastic guidewire with functionally graded property using Cu-Al-Mn-based shape memory alloy. Copper. Proceedings of the International conference Copper’06. Weinheim, Wiley-VCH Verlag, 2006, pp. 307-313.
- Functionally graded alloy, use thereof and method for producing same. Patent US, no. 6328822.
- Gavin G.P. Experimental and numerical investigation of therapeutic ultrasound angioplasty, PhD thesis. Dublin City University, 2005. 188 p.
- Elishakoff I., Yost J. Design for a specified natural frequency of elastically constrained axially graded bars. Acta Mechanica Sinica, 2010, vol. 26, pp. 313-316.
- Stepanenko D.A., Minchenja V.T., Minchenja N.T. Issledovanie prodol'nyh kolebanij gibkih ul'trazvukovyh volnovodov s pomoshh'ju metoda peredatochnyh matric [Investigation of longitudinal ultrasonic oscillations of flexible waveguides using transfer-matrix method]. Mehanika mashin, mehanizmov i materialov [Mechanics of machines, mechanisms and materials], 2011, no. 2(15), pp. 71-75.
- Stepanenko D.A., Minchenya V.T. Modeling of flexible waveguides for ultrasonic vibrations transmission: longitudinal and flexural vibrations of nondeformed waveguide. Ultrasonics, 2010, vol. 50, pp. 424-430.
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