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首页> 外文期刊>Advances in Engineering Software >Employment of finite element analysis and Response Surface Methodology to investigate the geometrical factors in T-type bi-layered tube hydroforming
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Employment of finite element analysis and Response Surface Methodology to investigate the geometrical factors in T-type bi-layered tube hydroforming

机译:运用有限元分析和响应面方法研究T型双层管液压成形的几何因素

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摘要

Bi-layered tubing which consists of two different metallic layers is recommended to use in complex working environments as it offers combined properties that single layer structure does not have. However, in this wok, producing of T-shape bi-layered components using the tube hydroforming process is investigated. In this regard, the bulge height and the wall thickness reduction of the bi-layered hydro-formed parts (responses) are modelled as functions of the geometrical factors using the combination of the finite element modelling (FEM) and Response Surface Methodology (RSM) for design of experiments (DOE). The geometrical factors effects and their interactions on the responses were determined and discussed. Based on the resultant models, a multi-response optimization study was conducted. Furthermore, for the optimum solutions, a significant agreement was indicated between the predicted and numerical values.
机译:建议将包含两个不同金属层的双层管用于复杂的工作环境,因为它具有单层结构所不具备的综合性能。然而,在此炒锅中,研究了使用管液压成型工艺生产T形双层组件。在这方面,使用有限元建模(FEM)和响应曲面方法(RSM)的组合,将双层液压成型零件(响应)的凸出高度和壁厚减小建模为几何因子的函数用于实验设计(DOE)。确定并讨论了几何因素对反应的影响及其相互作用。基于结果模型,进行了多响应优化研究。此外,对于最佳解决方案,在预测值和数值之间显示出显着的一致性。

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