All Stories

  1. Metamaterials and Fluid Flows
  2. Experimental demonstration of a three-dimensional bioinspired tonotopic metasensor
  3. Longitudinal-flexural wave mode conversion via periodically undulated waveguides with constant and graded profiles
  4. Speech Recognition with Cochlea‐Inspired In‐Sensor Computing
  5. Tunability strategies for elastic metamaterials: waveguiding, tonotopy and topological localization
  6. Thin-lens equation in elasticity: Imaging with gradient-index phononic crystals
  7. Attenuation of bulk waves using locally resonant soil-coupled metabarriers
  8. Selective dynamic band gap tuning in metamaterials using graded photoresponsive resonator arrays
  9. Design and in field validation of a modular metamaterial for mitigation of railway induced vibrations
  10. Seashell-inspired polarization-sensitive tonotopic metasensor
  11. Tunable topologically protected waveguiding in auxetic nonlinear metamaterials
  12. Attenuating surface gravity waves with an array of submerged resonators: an experimental study
  13. Tunable topological edge modes in Su–Schrieffer–Heeger arrays
  14. Elastic wave dispersion in layered media with suture joints: influence of structural hierarchy and viscoelasticity
  15. Bio-inspired non self-similar hierarchical elastic metamaterials
  16. Source and defect localization in thin elastic plates of arbitrary geometry using eigenmodes
  17. Emerging topics in nanophononics and elastic, acoustic, and mechanical metamaterials: an overview
  18. Optimized structures for vibration attenuation and sound control in nature: A review
  19. Correlation between slip precursors and topological length scales at the onset of frictional sliding
  20. A 3D Griffith peeling model to unify and generalize single and double peeling theories
  21. Prey Impact Localization Enabled by Material and Structural Interaction in Spider Orb Webs
  22. Optimization of spider web-inspired phononic crystals to achieve tailored dispersion for diverse objectives
  23. Hierarchical auxetic and isotropic porous medium with extremely negative Poisson’s ratio
  24. Improving rubber concrete strength and toughness by plasma‐induced end‐of‐life tire rubber surface modification
  25. Experimental full wavefield reconstruction and band diagram analysis in a single-phase phononic plate with internal resonators
  26. Band gap enhancement in periodic frames using hierarchical structures
  27. Attenuating surface gravity waves with mechanical metamaterials
  28. Creation of pure non-crystalline diamond nanostructures via room-temperature ion irradiation and subsequent thermal annealing
  29. Robust substrate anchorages of silk lines with extensible nano-fibres
  30. Editorial: Bioinspired wet and dry adhesion
  31. The role of hairs in the adhesion of octopus suckers: a hierarchical peeling approach
  32. Evolutionary Algorithm Optimization of Staggered Biological or Biomimetic Composites Using the Random Fuse Model
  33. Random Fuse Model in the presence of self-healing
  34. Competition between delamination and tearing in multiple peeling problems
  35. An experimental-numerical study of the adhesive static and dynamic friction of micro-patterned soft polymer surfaces
  36. Evolution of aerial spider webs coincided with repeated structural optimization of silk anchorages
  37. A theoretical-numerical model for the peeling of elastic membranes
  38. Proof of concept of a frequency-preserving and time-invariant metamaterial-based nonlinear acoustic diode
  39. Pentamode materials for effective and direction-independent wave control
  40. Evidence of friction reduction in laterally graded materials
  41. Corrigendum: Spider silk reinforced by graphene or carbon nanotubes (2017 2D Mater. 4 031013)
  42. Accordion-like metamaterials with tunable ultra-wide low-frequency band gaps
  43. Grafting carbon nanotubes onto carbon fibres doubles their effective strength and the toughness of the composite
  44. A 2-D model for friction of complex anisotropic surfaces
  45. Tuning the strain-induced resonance shift in silicon racetrack resonators by their orientation
  46. The influence of substrate roughness, patterning, curvature, and compliance in peeling problems
  47. Emergence of the interplay between hierarchy and contact splitting in biological adhesion highlighted through a hierarchical shear lag model
  48. Spider web-structured labyrinthine acoustic metamaterials for low-frequency sound control
  49. Spider silk reinforced by graphene or carbon nanotubes
  50. Coupling local resonance with Bragg band gaps in single-phase mechanical metamaterials
  51. Hierarchical Spring-Block Model for Multiscale Friction Problems
  52. Micro and nano-patterning of single-crystal diamond by swift heavy ion irradiation
  53. Softening the ultra-stiff: Controlled variation of Young’s modulus in single-crystal diamond by ion implantation
  54. Computational modeling of the mechanics of hierarchical materials
  55. Large scale mechanical metamaterials as seismic shields
  56. Spider web-inspired acoustic metamaterials
  57. An experimental and numerical study on the mechanical properties of carbon nanotube-latex thin films
  58. Knotted synthetic polymer or carbon nanotube microfibres with enhanced toughness, up to 1400 J/g
  59. Characterization of the recovery of mechanical properties of ion-implanted diamond after thermal annealing
  60. Metamaterials-based sensor to detect and locate nonlinear elastic sources
  61. Micro-beam and pulsed laser beam techniques for the micro-fabrication of diamond surface and bulk structures
  62. Numerical implementation of multiple peeling theory and its application to spider web anchorages
  63. Fatigue of self-healing hierarchical soft nanomaterials: The case study of the tendon in sportsmen
  64. Structural reinforcement and failure analysis in composite nanofibers of graphene oxide and gelatin
  65. An analytical model for the mechanical deformation of locally graphitized diamond
  66. Self-Healing of Hierarchical Materials
  67. Hierarchical multiple peeling simulations
  68. Direct measurement and modelling of internal strains in ion-implanted diamond
  69. In silicotensile tests and design of hierarchical graphene fibres and composites
  70. Splitting of photoluminescent emission from nitrogen–vacancy centers in diamond induced by ion-damage-induced stress
  71. Systematic numerical investigation of the role of hierarchy in heterogeneous bio-inspired materials
  72. Spectroscopic measurement of the refractive index of ion-implanted diamond
  73. Publisher’s Note: Hierarchical fiber bundle model to investigate the complex architectures of biological materials [Phys. Rev. E85, 011903 (2012)]
  74. Hierarchical fiber bundle model to investigate the complex architectures of biological materials
  75. Investigating the role of hierarchy on the strength of composite materials: evidence of a crucial synergy between hierarchy and material mixing
  76. Modification of the structure of diamond with MeV ion implantation
  77. Evidence of Light Guiding in Ion-Implanted Diamond
  78. Publisher's Note: Hierarchical simulations for the design of supertough nanofibers inspired by spider silk [Phys. Rev. E82, 056103 (2010)]
  79. Hierarchical simulations for the design of supertough nanofibers inspired by spider silk
  80. Finite element analysis of ion-implanted diamond surface swelling
  81. Scaling properties of nanotube-based macroscopic cables through multiscale numerical simulations
  82. Self-similarity of waiting times in fracture systems
  83. Size effects on the strength of nanotube bundles
  84. Mesoscopic modeling of Acoustic Emission through an energetic approach
  85. Phenomenological approach to mechanical damage growth analysis
  86. Multiscale Stochastic Simulations for Tensile Testing of Nanotube-Based Macroscopic Cables
  87. Modelling Damage Progression by a Statistical Energy-Balance Algorithm
  88. Subharmonic generation in physical systems: An interaction-box approach
  89. Preisach-Mayergoyz approach to fatigue-induced irreversibility
  90. Numerical Analysis of the Anomalous Elastic Behavior of Hysteretic Media: Quasistatic, Dynamic, and Relaxation Experiments
  91. Smart composites with embedded shape memory alloy actuators and fibre Bragg grating sensors: activation and control
  92. Through-the-thickness distribution of strains in laminated composite plates subjected to bending
  93. Characterization of the response of fibre Bragg grating sensors subjected to a two-dimensional strain field
  94. Modeling of the residual stresses acting on a low-birefringence fiber Bragg grating sensor embedded in an epoxy matrix
  95. Characterization of embedded fiber Bragg grating sensors written in high-birefringent optical fibers subjected to transverse loading
  96. Deformation characteristics of composite laminates—part I: speckle interferometry and embedded Bragg grating sensor measurements
  97. Deformation characteristics of composite laminates—part II: an experimental/numerical study on equivalent single-layer theories
  98. Effects of piezoelectricity on acoustic axes in crystals