Static Flexure of Soft Core Sandwich Beams using Trigonometric Shear Deformation Theory

سال انتشار: 1394
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 261

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شناسه ملی سند علمی:

JR_MACS-2-1_005

تاریخ نمایه سازی: 14 تیر 1399

چکیده مقاله:

This study deals with the applications of a trigonometric shear deformation theory considering the effect of the transverse shear deformation on the static flexural analysis of the soft core sandwich beams. The theory gives realistic variation of the transverse shear stress through the thickness, and satisfies the transverse shear stress free conditions at the top and bottom surfaces of the beam. The theory does not require a problem-dependent shear correction factor. The governing differential equations and the associated boundary conditions of the present theory are obtained using the principle of the virtual work. The closed-form solutions for the beams with simply supported boundary conditions are obtained using Navier solution technique. Several types of sandwich beams are considered for the detailed numerical study. The axial displacement, transverse displacement, normal and transverse shear stresses are presented in a non-dimensional form and are compared with the previously published results. The transverse shear stress continuity is maintained at the layer interface, using the equilibrium equations of elasticity theory.

کلیدواژه ها:

Laminated beam ، Soft core ، Sandwich beam ، Flexure ، Trigonometric shear deformation theory

نویسندگان

Atteshamuddin S. Sayyad

Department of Civil Engineering, SRES’s College of Engineering, Savitribai Phule Pune University, Kopargaon, Maharashtra, India

Y.M. Ghugal

Department of Applied Mechanics, Government College of Engineering, Karad, Maharashtra, India

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  • Lo KH, Christensen RM, Wu EM. A High-order Theory of ...
  • Lo KH, Christensen RM, Wu EM. A High-order Theory of ...
  • Levinson M. A New Rectangular Beam Theory. J Sound Vib ...
  • Reddy JN. A Simple Higher Order Theory for Laminated Composite ...
  • Touratier M. An Efficient Standard Plate Theory. Int J Eng ...
  • Soldatos KP. A Transverse Shear Deformation Theory for Homogeneous Monoclinic ...
  • Karama M, Afaq KS, Mistou S. A Refinement of Ambartsumian ...
  • Sayyad AS. Comparison of Various Refined Beam Theories for the ...
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  • Mechab I, Tounsi A, Benatta MA, Bedia EAA. Deformation of ...
  • Carrera E, Giunta G. Refined Beam Theories based on A ...
  • Carrera E, Filippi M, Zappino E. Laminated Beam Analysis by ...
  • Carrera E, Filippi M, Zappino E. Free Vibration Analysis of ...
  • Giunta G, Metla N, Belouettar S, Ferreira AJM, Carrera E. ...
  • Chakrabarti A, Chalak HD, Iqbal MA, Sheikh AH. A New ...
  • Chalak HD, Chakrabarti A, Iqbal MA, Sheikh AH. Vibration of ...
  • Gherlone M, Tessler A, Sciuva MD. A C0 Beam Elements ...
  • Shimpi RP, Ghugal YM. A New Layerwise Trigonometric Shear Deformation ...
  • Ghugal YM, Shinde SB. Flexural Analysis of Cross-ply Laminated Beams ...
  • Arya H. A New Zig-zag Model for Laminated Composite Beams: ...
  • Sayyad AS, Ghugal YM. Effect of Transverse Shear and Transverse ...
  • Mantari JL, Oktem AS,  Soares CG. A New Trigonometric Shear ...
  • Ferreira AJM, Roque CMC, Jorge RMN. Analysis of Composite Plates ...
  • Zenkour AM. Benchmark Trigonometric and 3-D Elasticity Solutions for an ...
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  • Dahake AG, Ghugal YM. A Trigonometric Shear Deformation Theory for ...
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  • Ghugal YM, Dahake AG. Flexure of Cantilever Thick Beams using ...
  • Pagano NJ. Exact Solutions for Composite Laminates in Cylindrical Bending. ...
  • Timoshenko SP. On the Correction for Shear of the Differential ...
  • Lo KH, Christensen RM, Wu EM. A High-order Theory of ...
  • Lo KH, Christensen RM, Wu EM. A High-order Theory of ...
  • Levinson M. A New Rectangular Beam Theory. J Sound Vib ...
  • Reddy JN. A Simple Higher Order Theory for Laminated Composite ...
  • Touratier M. An Efficient Standard Plate Theory. Int J Eng ...
  • Soldatos KP. A Transverse Shear Deformation Theory for Homogeneous Monoclinic ...
  • Karama M, Afaq KS, Mistou S. A Refinement of Ambartsumian ...
  • Sayyad AS. Comparison of Various Refined Beam Theories for the ...
  • Sayyad AS., Ghugal YM, Borkar RR. Flexural Analysis of Fibrous ...
  • Sayyad AS. Static Flexure and Free Vibration Analysis of Thick ...
  • Mechab I, Tounsi A, Benatta MA, Bedia EAA. Deformation of ...
  • Carrera E, Giunta G. Refined Beam Theories based on A ...
  • Carrera E, Filippi M, Zappino E. Laminated Beam Analysis by Polynomial, ...
  • Carrera E, Filippi M, Zappino E. Free Vibration Analysis of Laminated ...
  • Giunta G, Metla N, Belouettar S, Ferreira AJM, Carrera E. A ...
  • Chakrabarti A, Chalak HD, Iqbal MA, Sheikh AH. A New ...
  • Chalak HD, Chakrabarti A, Iqbal MA, Sheikh AH. Vibration of ...
  • Gherlone M, Tessler A, Sciuva MD. A C0 Beam Elements ...
  • Shimpi RP, Ghugal YM. A New Layerwise Trigonometric Shear Deformation ...
  • Ghugal YM, Shinde SB. Flexural Analysis of Cross-ply Laminated Beams ...
  • Arya H. A New Zig-zag Model for Laminated Composite Beams: ...
  • Sayyad AS, Ghugal YM. Effect of Transverse Shear and Transverse ...
  • Mantari JL, Oktem AS,  Soares CG. A New Trigonometric Shear Deformation ...
  • Ferreira AJM, Roque CMC, Jorge RMN. Analysis of Composite Plates ...
  • Zenkour AM. Benchmark Trigonometric and 3-D Elasticity Solutions for an ...
  • Sayyad AS, Ghugal YM, Naik NS. Bending Analysis of Laminated ...
  • Dahake AG, Ghugal YM. A Trigonometric Shear Deformation Theory for ...
  • Dahake AG, Ghugal YM. A Trigonometric Shear Deformation Theory for ...
  • Ghugal YM, Dahake AG. Flexure of Cantilever Thick Beams using ...
  • Pagano NJ. Exact Solutions for Composite Laminates in Cylindrical Bending. ...
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