Electromagnetoelastic Actuator for Nanomechanics

1
SM Afonin
SM Afonin
1 National Research University of Electronic Technology (MIET)

Send Message

To: Author

GJRE Volume 18 Issue A2

Article Fingerprint

ReserarchID

I5JER

Electromagnetoelastic Actuator for Nanomechanics Banner

AI TAKEAWAY

The objective of our study was to evaluate, in a population of Togolese People Living With HIV(PLWHIV), the agreement between three scores derived from the general population namely the Framingham score, the Systematic Coronary Risk Evaluation (SCORE), the evaluation of the cardiovascular risk (CVR) according to the World Health Organization.
  • English
  • Afrikaans
  • Albanian
  • Amharic
  • Arabic
  • Armenian
  • Azerbaijani
  • Basque
  • Belarusian
  • Bengali
  • Bosnian
  • Bulgarian
  • Catalan
  • Cebuano
  • Chichewa
  • Chinese (Simplified)
  • Chinese (Traditional)
  • Corsican
  • Croatian
  • Czech
  • Danish
  • Dutch
  • Esperanto
  • Estonian
  • Filipino
  • Finnish
  • French
  • Frisian
  • Galician
  • Georgian
  • German
  • Greek
  • Gujarati
  • Haitian Creole
  • Hausa
  • Hawaiian
  • Hebrew
  • Hindi
  • Hmong
  • Hungarian
  • Icelandic
  • Igbo
  • Indonesian
  • Irish
  • Italian
  • Japanese
  • Javanese
  • Kannada
  • Kazakh
  • Khmer
  • Korean
  • Kurdish (Kurmanji)
  • Kyrgyz
  • Lao
  • Latin
  • Latvian
  • Lithuanian
  • Luxembourgish
  • Macedonian
  • Malagasy
  • Malay
  • Malayalam
  • Maltese
  • Maori
  • Marathi
  • Mongolian
  • Myanmar (Burmese)
  • Nepali
  • Norwegian
  • Pashto
  • Persian
  • Polish
  • Portuguese
  • Punjabi
  • Romanian
  • Russian
  • Samoan
  • Scots Gaelic
  • Serbian
  • Sesotho
  • Shona
  • Sindhi
  • Sinhala
  • Slovak
  • Slovenian
  • Somali
  • Spanish
  • Sundanese
  • Swahili
  • Swedish
  • Tajik
  • Tamil
  • Telugu
  • Thai
  • Turkish
  • Ukrainian
  • Urdu
  • Uzbek
  • Vietnamese
  • Welsh
  • Xhosa
  • Yiddish
  • Yoruba
  • Zulu

From the structural-parametric model of the electromagnetoelastic actuator we obtain the parametric structural schematic diagram and the matrix transfer function, the characteristics of the electromagnetoelastic actuator for the nanomechanics. The generalized parametric structural schematic diagram, the matrix transfer function of the electromagnetoelastic actuator is described with using its physical parameters and external load.

Article content is being processed or not available yet.

33 Cites in Articles

References

  1. J Schultz,J Ueda,H Asada (2017). Cellular Actuators.
  2. K Uchino (1997). Piezoelectric actuator and ultrasonic motors.
  3. Jacek Przybylski (2015). Static and dynamic analysis of a flextensional transducer with an axial piezoelectric actuation.
  4. J Ueda,T Secord,H Asada (2010). Large Effective-Strain Piezoelectric Actuators Using Nested Cellular Architecture With Exponential Strain Amplification Mechanisms.
  5. Michael Karpelson,Gu-Yeon Wei,Robert Wood (2012). Driving high voltage piezoelectric actuators in microrobotic applications.
  6. S Afonin (2006). Solution of the wave equation for the control of an electromagnetoelastic transducer.
  7. S Afonin (2008). Structural parametric model of a piezoelectric nanodisplacement transducer.
  8. S Afonin (2014). Stability of strain control systems of nano- and microdisplacement piezotransducers.
  9. V Talakokula,S Bhalla,R Ball,C Bowen,G Pesce,R Kurchania,B Bhattacharjee,A Gupta,K Paine (2016). Diagnosis of carbonation induced corrosion initiation and progression in reinforced concrete structures using piezo-impedance transducers.
  10. Yaowen Yang,Lihua Tang (2009). Equivalent Circuit Modeling of Piezoelectric Energy Harvesters.
  11. Walter Cady,Joseph Valasek (1946). BOOK REVIEWS: Piezoelectricity: An Introduction to the Theory and Applications of Electro-mechanical Phenomena in Crystals.
  12. Unknown Title.
  13. (1964). Part A. Methods and Devices.
  14. D Zwillinger (1989). Handbook of Differential Equations.
  15. S Afonin (2015). Structural-parametric model of an electroelastic actuator for nanomechanics.
  16. S Afonin (2016). Structural-Parametric Model of Electromagnetoelastic Actuator for Nanoscience and Nanotechnology.
  17. S Afonin (2016). Structural-parametric models and transfer functions of electromagnetoelastic actuators nano-and micro displacement for mechatronic systems.
  18. S Afonin (2002). Parametric structural diagram of a piezoelectric converter.
  19. S Afonin (2003). Elastic compliances and mechanical and adjusting characteristics of composite piezoelectric transducers.
  20. S Afonin (2004). Parametric block diagram and transfer functions of a composite piezoelectric transducer.
  21. S Afonin (2005). Generalized parametric structural model of a compound electromagnetoelastic transducer.
  22. S Afonin (2010). Design of static and dynamic characteristics of a piezoelectric nanomicrotransducer.
  23. S Afonin (2011). Electromechanical deformation and transformation of the energy of a nano-scale piezomotor.
  24. S Afonin (2011). Electroelasticity problems for multilayer nano- and micromotors.
  25. S Afonin (2012). Nano- and micro-scale piezomotors.
  26. S Afonin (2015). Optimal control of a multilayer submicromanipulator with a longitudinal piezo effect.
  27. S Afonin (2015). Block diagrams of a multilayer piezoelectric motor for nano- and microdisplacements based on the transverse piezoeffect.
  28. S Afonin (2006). Absolute stability conditions for a system controlling the deformation of an electromagnetoelastic transducer.
  29. S Afonin (2007). Elastic compliances and mechanical and adjusting characteristics of composite piezoelectric transducers.
  30. S Afonin (2009). Static and dynamic characteristics of a multi-layer electroelastic solid.
  31. S Afonin (2017). Structural-parametric model electromagnetoelastic actuator nanodisplacement for mechatronics.
  32. (1222). Springer Handbook of Nanotechnology.
  33. H Nalwa (2004). Welcome to the <I>Journal of Nanoscience and Nanotechnology</I>.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

SM Afonin. 2018. \u201cElectromagnetoelastic Actuator for Nanomechanics\u201d. Global Journal of Research in Engineering - A : Mechanical & Mechanics GJRE-A Volume 18 (GJRE Volume 18 Issue A2): .

Download Citation

Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Keywords
Classification
GJRE-A Classification: FOR Code: 100799
Version of record

v1.2

Issue date

October 20, 2018

Language

English

Experiance in AR

The methods for personal identification and authentication are no exception.

Read in 3D

The methods for personal identification and authentication are no exception.

Article Matrices
Total Views: 2968
Total Downloads: 1449
2026 Trends
Research Identity (RIN)
Related Research
Our website is actively being updated, and changes may occur frequently. Please clear your browser cache if needed. For feedback or error reporting, please email [email protected]
×

This Page is Under Development

We are currently updating this article page for a better experience.

Request Access

Please fill out the form below to request access to this research paper. Your request will be reviewed by the editorial or author team.
X

Quote and Order Details

Contact Person

Invoice Address

Notes or Comments

This is the heading

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

High-quality academic research articles on global topics and journals.

Electromagnetoelastic Actuator for Nanomechanics

SM Afonin
SM Afonin National Research University of Electronic Technology (MIET)

Research Journals