Machine learning-enabled inverse design of bioinspired layered composite structures with maximum auxetic performance. [PDF]
Li Y +9 more
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Directional Auxetic Behavior of Mechanical Metamaterials: Material-Dependent and Geometry-Driven Mechanisms. [PDF]
Schürger B +4 more
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Study on the Complex Band Structure and Auxetic Behavior of Fractal Re-Entrant Honeycomb Metamaterials. [PDF]
Li J, Chen S, Lin W, Lin Y.
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Study of novel 3D-Printed auxetic metamaterial structures under compressive loading: design, simulation, and experiment. [PDF]
Shahmorad A, Hashemi R, Rajabi M.
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Comfort During Motion: Analyzing the Pressure Profile of Auxetic Bra Pads. [PDF]
Keung YC, Yick KL, Yip J, Yu A.
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Computer Simulations of Soft Responsive Gels with Embedded Regular Arrangements of Stiff Fibers. [PDF]
Yashin VV, Biswas S, Balazs AC.
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Processing-Microstructure-Performance Relations in Thermoformed Auxetic Hyperelastic Foams with Enhanced Energy Absorption Capacity. [PDF]
Das B +4 more
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Pre-Torsion Tubular Metamaterials: Multi-Effect Integration for Advanced Functional Applications. [PDF]
Zhang X +11 more
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In-Plane Mechanical Behavior Design of a Locally Rib-Reinforced Rotating Hexagonal Honeycomb. [PDF]
Xie J, Huang J, Deng X.
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In-Plane Mechanical Properties of a Tetra-Missing Rib Symmetry Honeycomb. [PDF]
Deng X, Lu Q, Cai Z, Zhang X.
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