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Numerical Study about Effect of Different Boundary Conditions on Compressive Modulus Coefficient of Bonded and Non-Bonded Cylindrical Isolators

机译:不同边界条件对粘结和非粘结圆柱隔离器压缩模量系数影响的数值研究

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摘要

Elastomers (Rubber and rubber-like materials) are widely utilized in many engineering applications due to their specific properties like high elasticity with good static and dynamic behaviors. Rubber blocks are one of the elastomeric components and it is employed in many applications such as vibration isolators, bumpers, shock absorbers, and dampers, etc. Most of the rubber blocks are cylindrical in shape and it can undergo large deformation under different loadings and contact conditions (fixed-fixed, friction-friction and fixed-friction). In this present work, experimentally validated Ogden hyper-elastic material model is adopted in the finite element analysis (FEA). The FE model is validated with other published experimental work. In addition, the following six boundary conditions namely BC1 (Fixed - Fixed), BC2 (Fixed - Friction), BC3 (Friction -Friction), BC4 (Fixed - Cap), BC5 (Cap - Friction) and BC6 (Cap - Cap) boundary conditions are taken for comparative study. The aspect ratio (radius/height) of the rubber isolator also varied as 0.5, 0.75, and 1. From the numerical analysis carried out, it is found that the BC6 (Cap-Cap) with aspect ratio 1 showed better compressive modulus coefficient over other parameters taken for study.
机译:由于具有良好的静态和动态行为,因此由于其特定性质,因此在许多工程应用中广泛使用弹性体(橡胶和橡胶状材料)。橡胶块是弹性体组分之一,并且在许多应用中采用诸如隔振器,保险杠,减震器和阻尼器等。大部分橡胶块是圆柱形的,并且它可以在不同的载荷和接触下进行大变形。条件(固定固定,摩擦摩擦和固定摩擦)。在本工作中,在有限元分析(FEA)中采用了实验验证的ogden超弹性材料模型。 FE模型与其他公布的实验工作验证。此外,以下六个边界条件即BC1(固定固定),BC2(固定摩擦),BC3(摩擦框),BC4(固定帽),BC5(帽子 - 摩擦)和BC6(盖帽)对比例研究采取边界条件。橡胶隔离器的纵横比(半径/高度)也变化为0.5,0.75和1.从进行的数值分析中,发现具有纵横比1的BC6(盖帽)显示出更好的压缩模量系数用于学习的其他参数。

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