首页> 外文期刊>International Journal of Mechanical Sciences >A parametric study on geometrically nonlinear behavior of curved beams with single and double link rods, and supported on moving boundary
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A parametric study on geometrically nonlinear behavior of curved beams with single and double link rods, and supported on moving boundary

机译:单向双连杆杆弯曲梁几何非线性行为的参数研究,并支持移动边界

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The paper presents a parametric study on effect of several geometric parameters on stress and deformation behavior of non-uniform curved beam with moving boundary. The parameters, considered in the present study, are height to span ratio of curved beam, ratio of radius of roller support to height of beam and types of support connection mechanisms. Effect of these parameters is observed for different curved profile shapes. Non-uniform initial curvature and combined effects of bending, stretching and warping of beam cross-section due to shear deformation are considered in the derivation of nonlinear strain-displacement relation in body fitted curvilinear frame. Based on the derived nonlinear kinematics and assumptions of large deformation but small strain and moderate initial curvature, nonlinear system governing equation is derived through variational principle based minimization of total potential energy method. An iterative numerical solution algorithm is developed and implemented in the computational environment of MATLAB (R) software to solve the nonlinear governing equation. The complicating effect coming from moving boundary imposes a kinematic constraint on the solution field. Hence, the solution methodology not only ensures energy balance of the system, but also satisfies shear force balance at each incremental load step. The geometric nonlinear incremental curved beam model is validated with deflection and stress results of commercial finite element software ABAQUS (R). The geometry of master leaf spring of a previously reported study is considered as curved beam for the purpose of validation. After the validation study, results are generated for different curved profiles with two different combinations of support connection mechanisms and different height to span ratio for each type of them. In addition, to observe effect of roller radius, results are generated with different roller radius to height ratio for each type of the two curved beam systems. Investigations are made on the effects of the geometric parameters, support connection mechanisms and curved profile shape on large deflection characteristics of curved beam and the present study leads towards several meaningful observations.
机译:本文提出了几何参数对具有移动边界的非均匀弯曲梁应力和变形行为的参数研究。在本研究中考虑的参数是弯曲光束的高度,横梁比率,辊子支撑率的比率与光束的高度以及支撑连接机构的类型。观察到这些参数的效果,用于不同弯曲的轮廓形状。在体积曲线框架中的非线性应变 - 位移关系的推导中,考虑了由于剪切变形引起的束横截面弯曲,拉伸和翘曲的初始初始曲率和梁横截面的综合影响。基于衍生的非线性运动学和大变形的假设,但小菌株和中等初始曲率,通过基于总势能法的变分原理最小化来源的非线性系统控制方程。在Matlab(R)软件的计算环境中开发和实现了一种迭代数值解决方案算法,以解决非线性控制方程。来自移动边界的复杂效果对解决方案施加了运动的运动。因此,解决方案方法不仅可以确保系统的能量平衡,而且还满足每个增量负载步骤的剪切力平衡。几何非线性增量弯曲光束模型被偏转和应力结果验证了商业有限元软件ABAQUS(R)。以前报告的研究的主叶子弹簧的几何形状被认为是弯曲梁,用于验证。在验证研究之后,为不同的弯曲曲线生成结果,具有两种不同的支撑连接机构组合和不同的高度,每个类型的频率为它们。另外,为了观察辊半径的效果,用不同的辊半径产生结果,每个类型的两个曲线梁系统产生高度比。对几何参数的影响,支撑连接机构和弯曲轮廓形状的研究进行了研究,并且本研究导致了几种有意义的观察。

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