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   bending, buckling, and vibration analysis of functionally graded nanobeams using an inverse trigonometric beam theory  
   
نویسنده sayyad atteshamuddin shamshuddin ,ghugal yuwaraj marotrao
منبع international journal of nano dimension - 2021 - دوره : 12 - شماره : 2 - صفحه:164 -174
چکیده    In this study, an inverse trigonometric nanobeam theory is applied for the bending, buckling, and free vibration analysis of nanobeams using eringen’s nonlocal theory. the present theory satisfies zero shear stress conditions at the top and bottom surfaces of the nanobeam using constitutive relations. equations of motion are derived by applying hamilton’s principle. the present theory is applied for the analysis of functionally graded material nanobeams. all problems are solved by using the navier technique. for the comparison purpose, the numerical results are generated by using the third shear deformation theory of reddy, firstorder shear deformation theory of timoshenko, and classical beam theory of bernoullieuler considering the nanosize effects. the present results are found in good agreement with those of higher order theories.
کلیدواژه bending; buckling; vibration; eringen’s nonlocal theory; fg nanobeam; trigonometric nanobeam theory
آدرس savitribai phule pune university, sres’s sanjivani college of engineering, department of civil engineering, india, government college of engineering, department of applied mechanics, india
پست الکترونیکی ghugal@rediffmail.com
 
     
   
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