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   Mechanical and thermo–mechanical properties of bi-directional and short carbon fiber reinforced epoxy composites  
   
نویسنده agarwal g. ,patnaik a. ,sharma r.k.
منبع journal of engineering science and technology - 2014 - دوره : 9 - شماره : 5 - صفحه:590 -604
چکیده    This paper based on bidirectional and short carbon fiber reinforced epoxy composites reports the effect of fiber loading on physical,mechanical and thermo-mechanical properties respectively. the five different fiber loading,i.e.,10wt. %,20wt. %,30wt. %,40wt. % and 50wt. % were taken for evaluating the above said properties. the physical and mechanical properties,i.e.,hardness,tensile strength,flexural strength,inter-laminar-shear strength and impact strength are determined to represent the behaviour of composite structures with that of fiber loading. thermo-mechanical properties of the material are measured with the help of dynamic mechanical analyser to measure the damping capacity of the material that is used to reduce the vibrations. the effect of storage modulus,loss modulus and tan delta with temperature are determined. finally,cole–cole analysis is performed on both bidirectional and short carbon fiber reinforced epoxy composites to distinguish the material properties of either homogeneous or heterogeneous materials. the results show that with the increase in fiber loading the mechanical properties of bidirectional carbon fiber reinforced epoxy composites increases as compared to short carbon fiber reinforced epoxy composites except in case of hardness,short carbon fiber reinforced composites shows better results. similarly,as far as loss modulus,storage modulus is concerned bidirectional carbon fiber shows better damping behaviour than short carbon fiber reinforced composites. © school of engineering,taylor’s university.
کلیدواژه Bidirectional carbon fiber; Composites; Mechanical properties; Thermo-mechanical analysis
آدرس department of mechanical engineering,s.r.m.s.c.e.t, India, department of mechanical engineering,national institute of technology, India, department of mechanical engineering,national institute of technology, India
 
     
   
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