Flexural Response of Cantilever Beam Subjected to Varying Load by HSDT

R. Thote, Dr. Gajendra Ghande, D. Tupe, S. Salve
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Abstract

Later the revolution of different theories in the shear deformation theories, a Higherorder Shear Deformation Theory (HSDT) captivating into account transverse shear deformation effect has been grown; this will be worn for the static flexure study of thick isotropic beams. In these theories a displacement field is prolonged up to the second power of thickness coordinate of beams to have the parabolic difference of transverse shear stresses. The theory assume a parabolic deviation of transverse shear stress crosswise the thickness of the beams. A transverse shear stress will be obtain directly from the make use of constitutive relations, pleasing the shear stress-free boundary conditions at top and bottom of the beam. Governing differential equations and boundary conditions of theory will be obtain by the principle of virtual work. Common clarifications of thick isotropic simply cantilever beam subjected to various loading conditions will be analyzed for transverse displacement, axial displacement, transverse shear stress and axial stress. The outcomes of the contemporary theory will be compare with those of supplementary refined shear deformation theories of beam to authenticate the accuracy of the theory.
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变荷载作用下悬臂梁的弯曲响应
后来在剪切变形理论中出现了不同理论的革命,一种考虑横向剪切变形效应的高阶剪切变形理论(HSDT)应运而生;这将为厚各向同性梁的静挠曲研究提供参考。在这些理论中,位移场被扩展到梁的厚度坐标的二次幂,从而得到横向剪应力的抛物线差。该理论假定横向剪应力沿梁的厚度呈抛物线偏差。利用本构关系可直接求出横向剪应力,满足梁顶和梁底无剪应力边界条件。由虚功原理得到理论的控制微分方程和边界条件。各向同性简悬臂梁在不同荷载条件下的横向位移、轴向位移、横向剪应力和轴向应力的一般解释进行了分析。将当代理论的结果与补充精细化的梁剪切变形理论的结果进行比较,以验证理论的准确性。
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Research of Nonlinear Dynamic Deformation of Spatial Bodies with Cracks Flexural Response of Cantilever Beam Subjected to Varying Load by HSDT Structural Cost Comparison of Low Rise Building Having Moment Resisting Frames and Moment Resisting Frames With Shear Wall for Different Seismic Zones: Case Study
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