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Theoretical and experimental study of bistable symmetric shells built by locally nanostructuring an isotropic plate

机译:局部纳米结构化各向同性板构建的双稳态对称壳的理论与实验研究

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A new bistable symmetric isotropic shell is proposed and studied by using nano-technique,surface mechanical attrition treatment(SMAT),to locally treat a rectangular region within a plate.Plastic deformations accumulate in the treated region with the impacts from randomly fast moving balls during the process.The impacts also induce nanotwins and mesh the grains of the material into nanoscales,which largely increase the elastic deformation ability of the processed plate.With sufficient plastic deformations accumulated and stretching the plate under the constraint from the untreated region,the induced residual stress field buckles the plate to hold two different stable configurations and,thus,the bistable characteristic is generated for the nanostructured plate.A numerical model is developed to predict the stable configurations with verification by experiments.The parameters to design the stable configurations of the bistable shells are systematically discussed experimentally and numerically.
机译:通过使用纳米技术,表面机械研磨处理(SMAT)来提出和研究新的双稳态对称各向同性壳,以局部地处理板内的矩形区域。在处理区域中累积在处理区域中的塑化变形,在随机快速移动的球中该过程。抗冲击也诱导纳米型并将材料的晶体滤成为纳米级,这在很大程度上提高了加工板的弹性变形能力。与在未处理区域的约束下积累并拉伸板的充分塑性变形,诱导残留应力场搭扣板以保持两种不同的稳定配置,因此,为纳米结构板产生双稳态特性。开发了数值模型以通过实验预测稳定性的稳定配置。设计稳定的双稳态的参数贝壳经过实验和Numerica系统地讨论lly。

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