DocumentCode :
2705528
Title :
Acoustic Attenuation in Ferromagnetic Shape Memory Alloy Polymer Composites
Author :
Mahendran, M. ; Pandi, R. Senthur ; Chokkalingam, R. ; Kodipandyan, R. ; Peruman, K. Vallal ; Seenithurai, S.
Author_Institution :
Dept. of Phys., Smart Mater. Lab., Madurai, India
fYear :
2009
fDate :
28-30 Dec. 2009
Firstpage :
8
Lastpage :
11
Abstract :
Acoustic attenuation in ferromagnetic shape memory alloy and its composites has been measured using the newly designed and built experiment. This experiment has the ability to determine, simultaneously, the magnetic field, transmitted stress, threshold field and resonance frequency. Acoustic attenuation in polyurethane (PU) polymer composites with Ni-Mn-Ga particulate fillers have been reported which exhibits greater vibration absorption than polymer/ magnetostrictive composites due to the rearrangement of twin variants in Ni-Mn-Ga particles. It is observed that above the low frequency, the acoustic attenuation is gradually decreased from specimen and specimen. It is proposed that the Ni-Mn-Ga/PU polymer composite can be used as a suitable candidate for mechanical energy absorption applications. In this paper, some of the recent developments in both Ni-Mn-Ga single crystal and Ni-Mn-Ga/PU polymer composites, with special reference to the acoustically assisted magnetic-field-induced stress and mechanical energy absorption, are discussed.
Keywords :
absorbing media; acoustic wave absorption; composite materials; ferromagnetic materials; gallium alloys; manganese alloys; nickel alloys; polymers; shape memory effects; vibrations; Ni-Mn-Ga; acoustic attenuation; acoustically assisted magnetic-field-induced stress; ferromagnetic shape memory alloy polymer composites; mechanical energy absorption; particulate fillers; polyurethane polymer composites; resonance frequency; single crystal; threshold field frequency; vibration absorption; Absorption; Acoustic measurements; Attenuation; Magnetic field measurement; Magnetic resonance; Magnetostriction; Mechanical energy; Polymers; Shape memory alloys; Stress; Magnetic Shape Memory Alloys; Magnetic-Field Induced Strain; Polymer Composites; Sensors and Actuators; Vibration Suppression;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
MEMS, NANO, and Smart Systems (ICMENS), 2009 Fifth International Conference on
Conference_Location :
Dubai
Print_ISBN :
978-0-7695-3938-6
Electronic_ISBN :
978-1-4244-5616-1
Type :
conf
DOI :
10.1109/ICMENS.2009.66
Filename :
5489273
Link To Document :
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