عنوان مقاله :
ارتعاشات آزاد نانو صفحات دولايه ي گرافن - برن نيتريد با استفاده از نظريه ي آيفانتيس و روش ريتز
عنوان به زبان ديگر :
FREE VIBRATION OF TWO-LAYERED GRAPHENE BORON NITRIDE NANOSHEETS VIA AIFANTIS THEORY AND RITZ METHOD
پديد آورندگان :
ضيايي، سيما دانشگاه ياسوج - گروه مهندسي مكانيك
كليدواژه :
نانوحسگرهاي جرم , نانوصفحات دولايه ي گرافن , برن نيتريد , نظريه ي ورق غيركلاسيك
چكيده فارسي :
نانو تشديدگرهاي آشكارساز جرم، نانوحسگرهايي اند كه جرم هاي خارجي چسبيده به آنها بر اساس جابه جايي بسامد پايه ي حسگرها شناسايي مي شوند. در اين پژوهش سعي شده است كه در كنار تعيين فاصله ي تعادلي و تقريب غيرخطي نيروي واندروالز ميان نانوصفحات دولايه ي برن نيتريدٓـ برن نيتريد و نانوصفحات دولايه ي گرافن ـ برن نيتريد، بسامد پايه ي اين دو معماري نيز يافت شود و تاثير شرايط مرزي بر آن بررسي شود. در ضمن، قدرت شناسايي جرم نانوصفحات دولايه با دو معماري متفاوت گرافنٓ ـ برن نيتريد و برن نيتريدٓـ برن نيتريد نيز مطالعه شده است. به اين منظور، از تلفيق نظريه ي كلاسيك ورق با نظريه ي آيفانتيس بهره گرفته شده است. نتايج بيان مي كند كه معماري برن نيتريدٓـ برن نيتريد جابه جايي بسامد پايه ي بيشتري نسبت به معماري گرافنٓ ـ برن نيتريد نشان مي دهد. درضمن با افزايش مقياس كوچك، حساسيت نانوصفحات دولايه ي گرافن- برن نيتريد مستطيلي به جرم خارجي نسبت به نانوصفحات هم وزن مربعي با همان معماري كاهش مي يابد.
چكيده لاتين :
The nano-resonator sensors are designed to detect atoms or molecules more precisely and robustly. One of the techniques used to design nano-sensors is vibration-based method. In this method، the detection principle is based on the differentiable shift in resonant frequencies in nano-resonator due to foreign atoms or molecules attached to the surface of the nano-resonators. Carbon-based nano-structures are common nano-materials used for design of nano-sensors due to their high modulus of elasticity and extremely low mass. Nowadays، boron nitride nano-tubes which have similar structures to the carbon nano-tubes are considered as nano-resonators.The present study aims to investigate the ability of bi-layered nano-sheets made of graphene or boron-nitride or a monolayer graphene and a monolayer boron-nitride to detect foreign atoms or molecules in comparison with a monolayer nano-sheet. Also، the free vibration of two-layered nano-sheets formed by a monolayer graphene and a monolayer boron nitride nano-sheet with different boundary conditions are studied. The fundamental frequencies of this hybrid two-layered system are compared with those of bi-layered graphene and boron nitride nano-sheets as well. To this end، Aifantis's theory is incorporated into the classical plate theory to obtain a non-classical plate theory which is suitable to study the mechanical behavior of carbon- and/or boron-nitride-based nano-structures. Because of the importance of the inter-layer van der waals force on mechanical behavior of multi-layer nano-sheets، the nonlinear model of inter-layered interaction between graphene and boron-nitride nano-sheets and between boron-nitride layers is estimated based on Lenard-Jones 6-12 potential at first، although the linear part of inter-layered interaction model is used in linear free vibration study.The results show that bi-layered boron-nitride nano-sheets are more suitable for detecting foreign mass rather than bi-layered graphene sheets or hybrid two-layer system، although the sensitivity of a monolayer boron-nitride nano-sheet with the same surface area to foreign mass is more than the bi-layered one. On the other hand، between the bi-layered boron-nitride and the monolayer boron-nitride nano-sheets، which have the same mass، the bi-layered boron-nitride is more sensitive to foreign mass.
عنوان نشريه :
مهندسي مكانيك شريف
عنوان نشريه :
مهندسي مكانيك شريف