复合数
模块化设计
材料科学
弹性体
相(物质)
计算机科学
可扩展性
编码(内存)
限制
复合材料
智能材料
粘弹性
体素
纳米技术
3D打印
重写
拓扑(电路)
变形(气象学)
数字光处理
控制器(灌溉)
数字控制
作者
Yun Bai,Xuebo Yuan,Yang Weng,Kaiping Yin,H. D. Wang,Xiaoyue Ni
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-01-23
卷期号:12 (4): eaed9698-eaed9698
标识
DOI:10.1126/sciadv.aed9698
摘要
Spatial patterning of material phases underpins the functional diversity of natural and engineered composites. However, phase architectures are typically fixed once formed, limiting adaptability. Here, we introduce a digital composite with reprogrammable solid-liquid phase architectures at voxel resolution. Each elastomeric voxel contains a liquid metal composite capable of electrically switching between nonvolatile solid and liquid states within seconds, analogous to rewriting data on a hard disk. High-throughput experiments and coupled modeling demonstrate precise tuning of viscoelastic and plastic properties, as well as programmable constitutive behaviors and strain distributions. A modular assembly strategy allows scalable 3D construction of reprogrammable composites into free-form, bulk geometries. By encoding phase states as digital inputs, the composite unlocks unprecedented access to real-time, voxel-level tuning of material properties.
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