On the thermo-mechanical vibration of an embedded short-fiber-reinforced nanobeam

被引:0
作者
Akpinar, Murat [1 ]
Uzun, Busra [1 ]
Yayli, Mustafa Ozgur [1 ]
机构
[1] Bursa Uludag Univ, Engn Fac, Dept Civil Engn, Gorukle Campus, TR-16059 Bursa, Turkiye
关键词
properties elastic boundaries; non-local strain gradient theory; short-fiber-reinforced nanobeam; thermo-mechanical vibration; Winkler foundation; THERMAL VIBRATION; BEAMS; COMPOSITES; BEHAVIOR;
D O I
10.12989/anr.2024.17.3.197
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
This work investigates the thermo-mechanical vibration frequencies of an embedded composite nano-beam restrained with elastic springs at both ends. Composite nanobeam consists of a matrix and short fibers as reinforcement elements placed inside the matrix. An approach based on Fourier sine series and Stokes' transform is adopted to present a general solution that can examine the elastic boundary conditions of the short-fiber-reinforced nanobeam considered with the Halpin-Tsai model. In addition to the elastic medium effect considered by the Winkler model, the size effect is also considered on the basis of non- local strain gradient theory. After creating an eigenvalue problem that includes all the mentioned parameters, this problem is solved to examine the effects of fiber and matrix properties, size parameters, Winkler stiffness and temperature change. The numerical results obtained at the end of the study show that increasing the rigidity of the Winkler foundation, the ratio of fiber length to diameter and the ratio of fiber Young's modulus to matrix Young's modulus increase the frequencies. However, thermal loads acting in the positive direction and an increase in the ratio of fiber mass density to matrix mass density lead to a decrease in frequencies. In this study, it is clear from the eigenvalue solution calculating the frequencies of thermally loaded embbeded short-fiber-reinforced nanobeams that changing the stiffness of the deformable springs provides frequency control while keeping the other properties of the nanobeam constant.
引用
收藏
页码:197 / 211
页数:15
相关论文
共 67 条
[1]   Dynamic analysis of FG nanobeam reinforced by carbon nanotubes and resting on elastic foundation under moving load [J].
Abdelrahman, Alaa A. ;
Esen, Ismail ;
Daikh, Ahmed Amin ;
Eltaher, Mohamed A. .
MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES, 2023, 51 (10) :5383-5406
[2]   Thermal stress and magnetic effects on nonlinear vibration of nanobeams embedded in nonlinear elastic medium [J].
Abdullah, Sardar S. ;
Hosseini-Hashemi, Shahrokh ;
Hussein, Nazhad A. ;
Nazemnezhad, Reza .
JOURNAL OF THERMAL STRESSES, 2020, 43 (10) :1316-1332
[3]   THE MECHANICS OF SHORT-FIBER-REINFORCED COMPOSITES - A REVIEW [J].
ABRATE, S .
RUBBER CHEMISTRY AND TECHNOLOGY, 1986, 59 (03) :384-404
[4]   Size dependent free vibration analysis of 2D-functionally graded curved nanobeam by meshless method [J].
Ahmadi, Isa ;
Sladek, Jan ;
Sladek, Vladimir .
MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2024, 31 (18) :4352-4373
[5]   Free nonlinear vibration analysis of a functionally graded microbeam resting on a three-layer elastic foundation using the continuous piecewise linearization method [J].
Alfred, Peter Brownson ;
Ossia, Chinwuba Victor ;
Big-Alabo, Akuro .
ARCHIVE OF APPLIED MECHANICS, 2024, 94 (01) :57-80
[6]   Dynamic analysis of double cracked bi-directional functionally graded nanobeam using the differential quadrature method [J].
Attia, Mohamed A. ;
Matbuly, Mohamed S. ;
Osman, Tharwat ;
Abdelkhalek, Mohamed .
ACTA MECHANICA, 2024, 235 (04) :1961-2012
[7]   Forced vibration of sinusoidal FG nanobeams resting on hybrid Kerr foundation in hygro-thermal environments [J].
Barati, Mohammad Reza ;
Zenkour, Ashraf .
MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2018, 25 (08) :669-680
[8]   Size-Dependent Electro-Thermal Buckling Analysis of Flexoelectric Microbeams [J].
Beni, Yaghoub Tadi .
INTERNATIONAL JOURNAL OF STRUCTURAL STABILITY AND DYNAMICS, 2024, 24 (08)
[9]   Nonlinear vibration and dynamic stability of dielectric sandwich micro-beams [J].
Chen, Jun ;
Qu, Wenchao ;
Ye, Chao ;
Zhao, Zinan ;
Wang, Huiming .
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2024, 262
[10]   Torsional static and free vibration analysis of noncircular short-fiber-reinforced microwires with arbitrary boundary conditions [J].
Civalek, Omer ;
Uzun, Busra ;
Yayli, Mustafa Ozgur .
POLYMER COMPOSITES, 2025, 46 (02) :971-985