شماره ركورد كنفرانس :
3768
عنوان مقاله :
پايداري تير اولر برنولي تحت بارهاي ترمو مكانيكي با تئوري مرتبه بالا
عنوان به زبان ديگر :
Stability of micro-beam including Higher-Order Beam Theories under thermal and mechanical forces
پديدآورندگان :
Mokhtari Ebrahim d.e.mokhtari@gmail.com Islamic azad university Shahin shahr branch , yosefi Amir hoessin aahhyy2000@yahoo.com Islamic azad university Shahin shahr branch
تعداد صفحه :
12
كليدواژه :
micro , beam , stability , Higher , order beam theories , Thermal loads
سال انتشار :
1394
عنوان كنفرانس :
سومين كنفرانس ملي و اولين كنفرانس بين المللي پژوهش هاي كاربردي در مهندسي عمران، معماري و مديريت شهري
زبان مدرك :
انگليسي
چكيده فارسي :
This paper investigatesthe effects of thermal load and shear force on the buckling of nanobeams.Higher-order shear deformation beam theoriesare implementedand their predictions of the critical buckling load and post-buckled configurations are compared to those ofEuler-Bernoulli and Timoshenkobeam theories.The Eringen model for nonlocal elasticity is adopted to account formaterial discontinuity at the nano-scale and analytical solutionsfor critical buckling loads and post-buckling configurations are derived for each beam theory.Results show that thermal loadhas a more significant impact on the buckling behavior ofsimply-supported beams (S-S) than it has onclamped-clamped (C-C)beams. However, the nonlocal effect has more impact on C-C beams that it does on S-S beams.Moreover, it was found that the predictions obtained fromTimoshenko beam theoryare identical to those obtained using all higher-order shear deformation theories, suggesting that Timoshenko beam theory is sufficientto analyze buckling in nanobeams.
چكيده لاتين :
This paper investigatesthe effects of thermal load and shear force on the buckling of nanobeams.Higher-order shear deformation beam theoriesare implementedand their predictions of the critical buckling load and post-buckled configurations are compared to those ofEuler-Bernoulli and Timoshenkobeam theories.The Eringen model for nonlocal elasticity is adopted to account formaterial discontinuity at the nano-scale and analytical solutionsfor critical buckling loads and post-buckling configurations are derived for each beam theory.Results show that thermal loadhas a more significant impact on the buckling behavior ofsimply-supported beams (S-S) than it has onclamped-clamped (C-C)beams. However, the nonlocal effect has more impact on C-C beams that it does on S-S beams.Moreover, it was found that the predictions obtained fromTimoshenko beam theoryare identical to those obtained using all higher-order shear deformation theories, suggesting that Timoshenko beam theory is sufficientto analyze buckling in nanobeams.
كشور :
ايران
لينک به اين مدرک :
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