Viscoelastic material damping characteristics of carbon nanotubes based functionally graded composite shell structures

被引:9
作者
Swain, Ashirbad [1 ]
Roy, Tarapada [1 ]
机构
[1] Natl Inst Technol Rourkela, Dept Mech Engn, Rourkela 769008, Odisha, India
关键词
Carbon nanotubes; functionally graded nanocomposite shell structures; viscoelasticity; shell finite element; modal loss factors; impulse and frequency responses; EFFECTIVE ELASTIC PROPERTIES; FREE-VIBRATION ANALYSIS; FINITE-ELEMENT; REINFORCED COMPOSITES; PLATES; CNT; PANELS; BEHAVIOR; NANOCOMPOSITES; AGGLOMERATION;
D O I
10.1177/1464420718764513
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This work deals with the study of viscoelastic modeling and vibration analysis of functionally graded nanocomposite shell panels where carbon nanotubes are reinforced in the polymer matrix based on the functionally graded distributions of carbon nanotubes. Five types of grading of carbon nanotubes (such as UD, FGX, FGV, FGO, and FG?) in the thickness directions have been considered in order to investigate the vibration damping performance of such composite shell panels. A detailed mathematical formulation for the determination viscoelastic properties is presented. The Mori-Tanaka micromechanics in conjunction with weak interface theory has been developed for the mathematical formulations of the viscoelastic modeling of carbon nanotubes based polymer matrix phase. An eight-noded shell element with five degrees-of-freedom per node has been formulated to study the vibration damping characteristics of various panels made by such functionally graded nanocomposite materials. The shell finite element formulation is based on the transverse shear effects as per the Mindlin's hypothesis, and stress resultant-type Koiter's shell theory. Impulse and frequency responses of such structures have been performed to study the effects of various important parameters (such as volume fraction of carbon nanotubes, interfacial condition, agglomeration, temperature, geometries of shell panel) on the dynamic responses. Obtained results demonstrate that quick vibration mitigation may be possible using such carbon nanotubes based proposed composite materials.
引用
收藏
页码:1510 / 1541
页数:32
相关论文
共 73 条
[11]   Free vibration of carbon nanotubes reinforced (CNTR) and functionally graded shells and plates based on FSDT via discrete singular convolution method [J].
Civalek, Omer .
COMPOSITES PART B-ENGINEERING, 2017, 111 :45-59
[12]   Modal strain energy based methods for the analysis of complex patterned free layer damped plates [J].
Cura, Francesca ;
Mura, Andrea ;
Scarpa, Fabrizio .
JOURNAL OF VIBRATION AND CONTROL, 2012, 18 (09) :1291-1302
[13]   THE DETERMINATION OF THE ELASTIC FIELD OF AN ELLIPSOIDAL INCLUSION, AND RELATED PROBLEMS [J].
ESHELBY, JD .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL AND PHYSICAL SCIENCES, 1957, 241 (1226) :376-396
[14]   EFFECTIVE ELASTIC PROPERTIES OF NANOTUBE REINFORCED COMPOSITES WITH SLIGHTLY WEAKENED INTERFACES [J].
Esteva, Milton ;
Spanos, Pol D. .
JOURNAL OF MECHANICS OF MATERIALS AND STRUCTURES, 2009, 4 (05) :887-900
[15]   Multiwalled carbon nanotubes as a unique agent to fabricate nanostructure-controlled functionally graded alumina ceramics [J].
Estili, Mehdi ;
Takagi, Kenta ;
Kawasaki, Akira .
SCRIPTA MATERIALIA, 2008, 59 (07) :703-705
[16]   Free vibration analysis of arbitrarily shaped Functionally Graded Carbon Nanotube-reinforced plates [J].
Fantuzzi, Nicholas ;
Tornabene, Francesco ;
Bacciocchi, Michele ;
Dimitri, Rossana .
COMPOSITES PART B-ENGINEERING, 2017, 115 :384-408
[17]   Viscoelastic interphases in polymer-matrix composites: theoretical models and finite-element analysis [J].
Fisher, FT ;
Brinson, LC .
COMPOSITES SCIENCE AND TECHNOLOGY, 2001, 61 (05) :731-748
[18]   Three-dimensional modeling of interfacial stick-slip in carbon nanotube nanocomposites [J].
Formica, Giovanni ;
Lacarbonara, Walter .
INTERNATIONAL JOURNAL OF PLASTICITY, 2017, 88 :204-217
[19]   Nonlinear modeling of carbon nanotube composites dissipation due to interfacial stick-slip [J].
Formica, Giovanni ;
Talo, Michela ;
Lacarbonara, Walter .
INTERNATIONAL JOURNAL OF PLASTICITY, 2014, 53 :148-163
[20]   Vibrations of carbon nanotube-reinforced composites [J].
Formica, Giovanni ;
Lacarbonara, Walter ;
Alessi, Roberto .
JOURNAL OF SOUND AND VIBRATION, 2010, 329 (10) :1875-1889