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Optimum design of a gearbox for low vibration

机译:变速箱的优化设计,可降低振动

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摘要

A computer program was developed for designing a low vibration gearbox. The code is based on a finite element shell analysis, a modal analysis, and a structural optimization method. In the finite element analysis, a triangular shell element with 18 degrees-of-freedom is used. In the optimization method, the overall vibration energy of the gearbox is used as the objective function and is minimized at the exciting frequency by varying the finite element thickness. Modal analysis is used to derive the sensitivity of the vibration energy with respect to the design variable. The sensitivity is representative of both eigenvalues and eigenvectors. The optimum value is computed by the gradient projection method and a unidimensional search procedure under the constraint condition of constant weight. The computer code is applied to a design problem derived from an experimental gearbox in use at the NASA Lewis Research Center. The top plate and two side plates of the gearbox are redesigned and the contribution of each surface to the total vibration is determined. Results show that optimization of the top plate alone is effective in reducing total gearbox vibration.
机译:开发了用于设计低振动齿轮箱的计算机程序。该代码基于有限元壳分析,模态分析和结构优化方法。在有限元分析中,使用了具有18个自由度的三角形壳单元。在优化方法中,将变速箱的总振动能量用作目标函数,并通过改变有限元厚度在激励频率下将其最小化。模态分析用于得出振动能量相对于设计变量的灵敏度。灵敏度代表特征值和特征向量。在恒定权重的约束条件下,通过梯度投影法和一维搜索程序来计算最佳值。该计算机代码被应用于由NASA Lewis研究中心使用的实验齿轮箱得出的设计问题。重新设计了变速箱的顶板和两个侧板,并确定了每个表面对总振动的影响。结果表明,单独优化顶板可有效降低变速箱总振动。

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