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首页> 外文期刊>Composite Structures >Controllable optimal design of auxetic structures for extremal Poisson's ratio of -2
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Controllable optimal design of auxetic structures for extremal Poisson's ratio of -2

机译:极值泊松比为-2的可膨胀结构的可控优化设计

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We develop a lattice structure of a desired Poisson's ratio that is maintained when subjected to finite deformation. Using a gradient-based design optimization in an isogeometric computational framework, the representative unit cell is sophisticatedly tailored to attain the controlled Poisson's ratio of up to -2. The ligaments of the lattice structure are modeled using geometrically exact beams whose configuration and cross-sectional area are regarded as design variables, which are parameterized by the higher order B-spline basis functions. The obtained optimal design is fabricated using a PolyJet 3-D printing machine and validated by physical experiments. Excellent quantitative agreement is observed between the numerical and the experimental results measured from an optical deformation measurement system.
机译:我们开发出具有所需泊松比的晶格结构,该结构在受到有限变形时可以保持不变。在等几何计算框架中使用基于梯度的设计优化,可以对代表性的晶胞进行精心定制,以达到高达-2的受控泊松比。晶格结构的韧带使用几何精确的梁建模,其构型和横截面面积视为设计变量,这些变量由高阶B样条基函数进行参数化。使用PolyJet 3-D打印机制造获得的最佳设计,并通过物理实验进行验证。从光学变形测量系统测得的数值和实验结果之间观察到极好的定量一致性。

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