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首页|Mechanical non-reciprocity programmed by shear jamming in soft composite solids

Mechanical non-reciprocity programmed by shear jamming in soft composite solids

Mechanical non-reciprocity programmed by shear jamming in soft composite solids

来源:Arxiv_logoArxiv
英文摘要

Mechanical non-reciprocity-manifested as asymmetric responses to opposing mechanical stimuli-has traditionally been achieved through intricate structural nonlinearities in metamaterials. However, continuum solids with inherent non-reciprocal mechanics remain underexplored, despite their promising potential for applications such as wave guiding, robotics, and adaptive materials. Here, we introduce a design principle by employing the shear jamming transition from granular physics to engineer non-reciprocal mechanics in soft composite solids. Through the control of the interplay between inclusion contact networks and matrix elasticity, we achieve tunable, direction-dependent asymmetry in both shear and normal mechanical responses. In addition to static regimes, we demonstrate programmable non-reciprocal dynamics by combining responsive magnetic profiles with the anisotropic characteristics of shear-jammed systems. This strategy enables asymmetric spatiotemporal control over motion transmission, a previously challenging feat in soft materials. Our work establishes a novel paradigm for designing non-reciprocal matter, bridging granular physics with soft material engineering to realize functionalities essential for mechano-intelligent systems.

Xu Liu、Zemin Liu、Chang Xu、Shuaihu Wang、Yiqiu Zhao、Hong Wang、Wenqi Hu、Qin Xu

材料科学

Xu Liu,Zemin Liu,Chang Xu,Shuaihu Wang,Yiqiu Zhao,Hong Wang,Wenqi Hu,Qin Xu.Mechanical non-reciprocity programmed by shear jamming in soft composite solids[EB/OL].(2025-08-22)[2025-09-06].https://arxiv.org/abs/2502.17083.点此复制

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