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magneto-thermoelastic fracture in nonlocal cracked nanobeams using modified couple stress model with memory effect
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نویسنده
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muthulakshmi selvapandi ,selvamani rajendran ,marin marin
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منبع
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journal of applied and computational mechanics - 2026 - دوره : 12 - شماره : 3 - صفحه:1164 -1178
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چکیده
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The study of thermal characteristics in cracked nanobeams is vital for the reliable functioning of micro and nanoelectromechanical systems. classical solid mechanics and fourier heat law fail to accurately predict size-dependent elastic deformation and thermal hysteresis effects in such structures. to address this, a new computational model rooted in memory dependent derivatives is constructed to assess viscoelastic rotating cracked nanobeams subjected to a magnetic field and heat source. the model incorporates nonlocal generalized couple stress theory and generalized thermoelasticity considering memory dependent effects. the governing equations are derived based on the euler-bernoulli beam model, maxwell's formulations, and a fractional-order kelvin-voigt viscoelastic framework. the deflection, temperature field, displacement, and bending moment of the cracked nanobeam are numerically determined using the laplace transform and its inverse.
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کلیدواژه
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memory-dependent ,nonlocal elasticity theory ,magnetic induction ,thermal viscoelastic behavior ,laplace-based solution technique ,crack
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آدرس
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karunya institute of technology and sciences, department of mathematics, india, karunya institute of technology and sciences, department of mathematics, india, transilvania university of brasov, department of mathematics and computer science, romania. academy of romanian scientists, romania
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پست الکترونیکی
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m.marin@unitbv.ro
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Authors
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