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Deflection and Stress Analysis of a Cantilever and its Validation Using ANSYS

机译:悬臂的偏转和压力分析及其使用ANSYS的验证

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This study investigates the deflection and stress distribution in a long, slender cantilever beam of uniform rectangular cross section made of linear elastic material properties that are homogeneous and isotropic. The deflection of a cantilever beam is essentially a three dimensional problem. An elastic stretching in one direction is accompanied by a compression in perpendicular directions. The beam is modeled under the action of three different loading conditions: vertical concentrated load applied at the free end, uniformly distributed load and uniformly varying load which runs over the whole span. The weight of the beam is assumed to be negligible. It is also assumed that the beam is inextensible and so the strains are also negligible. Considering this assumptions at first using the Bernoulli-Euler's bending- moment curvature relationship, the approximate solutions of the cantilever beam was obtained from the general set of equations. Then assuming a particular set of dimensions, the deflection and stress values of the beam are calculated analytically. Finite element analysis of the beam was done considering various types of elements under different loading conditions in ANSYS 11.0. The various numerical results were generated at different nodal points by taking the origin of the Cartesian coordinate system at the fixed end of the beam. The nodal solutions were analyzed and compared. On comparing the computational and analytical solutions it was found that for stresses the 8 node brick element gives the most consistent results and the variation with the analytical results is minimum.
机译:本研究研究了由均匀和各向同性的线性弹性材料特性制成的长长细长的悬臂梁中的偏转和应力分布。悬臂梁的偏转基本上是三维问题。一个方向上的弹性拉伸伴随着垂直方向的压缩。该光束在三种不同的装载条件的作用下进行建模:在自由端施加的垂直集中负载,均匀分布的负载和均匀的变化负载,其在整个跨度上延伸。假设光束的重量可以忽略不计。还假设光束是不易的,因此应变也可以忽略不计。在首先使用Bernoulli-euler的弯曲力矩曲率关系时考虑到这一假设,从一般方程组中获得悬臂梁的近似解。然后假设特定的尺寸集,分析地计算光束的偏转和应力值。考虑到在ANSYS 11.0的不同装载条件下的各种类型的元素进行了有限元分析。通过在光束的固定端的笛卡尔坐标系的起源来在不同的节点产生各种数值结果。分析并比较节点溶液。在比较计算和分析解决方案的情况下发现,对于应力,8节点砖元件给出了最一致的结果,并且分析结果的变化最小。

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