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November 24, 2025Journal of Applied Mechanics0 citations

Dispersion Engineering in 2D Nonlocal Mechanical Lattices

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JYJin YangYLYu LiuTYTianzhi Yang

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Abstract

Abstract By manipulating dispersion, planar lattices can be endowed with a variety of intriguing wave propagation characteristics, which hold significant value in controlling vibration energy transfer paths, energy harvesting, noise suppression, and structural optimization design. In the realm of twisted moiré physics, dispersion modulation from elliptical to hyperbolic can be achieved through bilayer twisting; however, such designs pose certain challenges for mechanical structures. This paper proposes a two-dimensional mechanical phononic crystal model based on nonlocal dispersion engineering. By designing a spring-mass lattice structure with adjacent and nonlocal couplings, the propagation modes of mechanical waves are effectively controlled. Through flexible and straightforward design of nonlocal connection methods, structures with specific dispersion properties can be easily constructed. The paper also discusses the influence of nonlocal connection methods and stiffness parameters on dispersion. This research provides new insights for designing acoustic metasurfaces and mechanical structures with tailored wave propagation properties, offering broad application prospects, such as directional energy harvesting and intelligent vibration isolation systems.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/69403b8e2d562116f290c2f0https://doi.org/10.1115/1.4070471
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dispersion engineering in 2D non-local mechanical lattices2025
  2. 2Inverse design of arbitrary non-reciprocal acoustic dispersion in non-local phononic crystals and metamaterials2024
  3. 3Spring-loaded: Engineering Dispersion Relations Using Complex Couplings2025
  4. 4Dispersion engineering by rotational symmetry breaking in an optical microcavity2026 · 3 citations
  5. 5Dispersion analysis of lattices with spatially modulated stiffness nonlinearity2026