Meng Zhiqiang, Yan Hujie, Liu Mingchao, Qin Wenkai, Genin Guy M, Chen Chang Qing
Department of Engineering Mechanics, CNMM and AML, Tsinghua University, Beijing, 100084, P. R. China.
School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore, 639798, Republic of Singapore.
Adv Sci (Weinh). 2023 Jul;10(20):e2301581. doi: 10.1002/advs.202301581. Epub 2023 Apr 21.
Information processing using material's own properties has gained increasing interest. Mechanical metamaterials, due to their diversity of deformation modes and wide design space, can be used to realize information processing, such as computing and storage. Here a mechanical metamaterial system is demonstrated for material-based encoding and storage of data through programmed reconfigurations of the metamaterial's structured building blocks. Sequential encoding and decoding are achieved in the three-dimensional (3D) printed pixelated mechanical metamaterial via kirigami-based "pixels" with programmable, temperature-dependent bistability. The mechanical metamaterial is demonstrated via a multistep deformation of encoding messages of texts and surfaces with arrays of binary data, and then decoding them by applying a predetermined stretching and heating regimen to sequentially retrieve layers of stored information and display them on its surface. This approach serves as a general framework to enable the encoding and storage of data with mechanical metamaterials.
利用材料自身特性进行信息处理已引起越来越多的关注。机械超材料由于其变形模式的多样性和广阔的设计空间,可用于实现信息处理,如计算和存储。在此展示了一种机械超材料系统,通过对超材料结构化构建块进行编程重新配置来实现基于材料的数据编码和存储。在三维(3D)打印的像素化机械超材料中,通过具有可编程、温度依赖性双稳态的基于kirigami的“像素”实现了顺序编码和解码。通过对文本和表面的编码消息进行多步变形,并应用预定的拉伸和加热方案依次检索存储信息层并将其显示在表面上,展示了这种机械超材料。这种方法作为一个通用框架,能够实现用机械超材料进行数据的编码和存储。