材料科学
制作
刚度
热的
聚合物
玻璃化转变
辅助
纳米技术
复合材料
医学
替代医学
物理
病理
气象学
作者
J. Howard Mueller,Jennifer A. Lewis,Katia Bertoldi
标识
DOI:10.1002/adfm.202105128
摘要
Abstract Architected materials typically maintain their properties throughout their lifetime. However, there is growing interest in the design and fabrication of responsive materials with properties that adapt to their environment. Toward this goal, a versatile framework to realize thermally programmable lattice architectures capable of exhibiting a broader range of mechanical responses is reported. The lattices are composed of two polymeric materials with disparate glass transition temperatures, which are deterministically arranged via 3D printing. By tailoring the local composition and structure, architected lattices with tunable stiffness, Poisson's ratio, and deformation modes controlled through changes in the thermal environment are generated. The platform yields lightweight polymer lattices with programmable composition, architecture, and mechanical response.
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