All Stories

  1. Nonlinear inverse design of mechanical multi-material metamaterials enabled by video denoising diffusion and structure identifier
  2. Evaluating Energy Absorption Performance of Filled Lattice Structures
  3. Quasi-cylindrical, nanometer-scale columns of mineral platelets contribute to stiffness of bones
  4. Quasi-cylindrical, nanometer-scale columns of mineral platelets contribute to stiffness of bones
  5. Additive Manufacturing of Nuclear Structural Materials: Process Physics, Printability, and Microstructural Evolution
  6. Impact of H+ ion irradiation on near-surface microstructure of 316H stainless steel fabricated via powder bed fusion
  7. The function of citrate in bone: platelet adhesion and mineral nucleation
  8. Effect of laminae count and manufacturing methods on mechanical properties of thin‐ply woven composites
  9. Irradiation-induced microstrain and dislocation density in additively manufactured 316H stainless steel
  10. Geom-DeepONet: A point-cloud-based deep operator network for field predictions on 3D parameterized geometries
  11. Viscoelastic properties of the equine hoof wall
  12. Exploring the Effect of Specimen Size on Elastic Properties of Fused-Filament-Fabrication-Printed Polycarbonate and Thermoplastic Polyurethane
  13. Size Effects in Polycarbonate and TPU 3D-Printed via Fused Filament Fabrication
  14. Mechanical behavior of bio‐inspired composites made of co‐continuous geopolymer and 3D‐printed polymer
  15. In situ surface monitoring of energy materials during processing: impact of defect disorder on surface versus bulk semiconducting properties of photocatalytic hematite (Fe2O3)
  16. Using Neural Networks to Explore Structure-Property Relations in Bio-Inspired Impact-Resistant Structures
  17. Designing impact-resistant bio-inspired low-porosity structures using neural networks
  18. Novel DeepONet architecture to predict stresses in elastoplastic structures with variable complex geometries and loads
  19. Multimodule imaging of the hierarchical equine hoof wall porosity and structure
  20. Correlation between reference point indentation and mechanical properties of 3D-printed polymers
  21. Selective laser melted Ti6Al4V split-P TPMS lattices for bone tissue engineering
  22. Size-dependence of AM Ti–6Al–4V: Experimental characterization and applications in thin-walled structures simulations
  23. Equine Hoof Wall Deformation: Novel Aspects Revealed
  24. Additional Cover
  25. Hierarchical modeling of elastic moduli of equine hoof wall
  26. On the use of graph neural networks and shape‐function‐based gradient computation in the deep energy method
  27. LatticeOPT: a heuristic topology optimization framework for thin-walled, 2D extruded lattices
  28. Biomimetic design of implants for long bone critical-sized defects
  29. Equine hoof wall: Structure, properties, and bioinspired designs
  30. Extending the Operating Life of Thermoplastic Components via On-Demand Patching and Repair Using Fused Filament Fabrication
  31. Defect Chemistry of Titanium Dioxide: Evidence of the n-p Transition during Cooling
  32. Fracture testing of polymer materials processed via fused filament fabrication: a survey of materials, methods, and design applications
  33. Modeling of bending and torsional stiffnesses of bone at sub-microscale: Effect of curved mineral lamellae
  34. Identification and Mapping of Manufacturability Constraints for Extrusion-Based Additive Manufacturing
  35. Topology optimization for three‐dimensional elastoplastic architected materials using a path‐dependent adjoint method
  36. Interfacial bonding between mineral platelets in bone and its effect on mechanical properties of bone
  37. A review of impact resistant biological and bioinspired materials and structures
  38. Deproteinized young bone reveals a continuous mineral phase and its contribution to mechanical properties with age
  39. Scale and size effects on the mechanical properties of bioinspired 3D printed two-phase composites
  40. Multimodal characterization of the bone-implant interface using Raman spectroscopy and nanoindentation
  41. Merging versatile polymer chemistry with multifunctional nanoparticles: an overview of crosslinkable aromatic polyester matrix nanocomposites
  42. Mechanical properties of 3D printed polymeric Gyroid cellular structures: Experimental and finite element study
  43. Shielding effectiveness and bandgaps of interpenetrating phase composites based on the Schwarz Primitive surface
  44. Understanding the influence of carbon addition on the corrosion behavior and mechanical properties of Al alloy “covetics”
  45. Aromatic thermosetting copolyester bionanocomposites as reconfigurable bone substitute materials: Interfacial interactions between reinforcement particles and polymer network
  46. Glass transition broadening via nanofiller-contiguous polymer network in aromatic thermosetting copolyester nanocomposites
  47. Imparting optical functionality to aromatic thermosetting copolyester by luminescent silicon nanoparticles cross-linked via in situ thermal polymerization reaction
  48. Interfacial liquid crystalline mesophase domain on carbon nanofillers in aromatic thermosetting copolyester matrix
  49. Tunneling-percolation model of multicomponent nanocomposites
  50. An Overview on Additive Manufacturing of Polymers
  51. Effects of environmental aging on physical properties of aromatic thermosetting copolyester matrix neat and nanocomposite foams
  52. Nanofiller-conjugated percolating conductive network modified polymerization reaction characteristics of aromatic thermosetting copolyester resin
  53. Nonlinear micro-CT based FE modeling of trabecular bone-Sensitivity of apparent response to tissue constitutive law and bone volume fraction
  54. Periodic Functionalization of Graphene‐Layered Alumina Nanofibers with Aromatic Thermosetting Copolyester via Epitaxial Step‐Growth Polymerization
  55. Induced porosity in Super Alloy 718 through the laser additive manufacturing process: Microstructure and mechanical properties
  56. Aromatic thermosetting copolyester nanocomposite foams: High thermal and mechanical performance lightweight structural materials
  57. Experimental and computational study of shielding effectiveness of polycarbonate carbon nanocomposites
  58. Cortical bone fracture analysis using XFEM
  59. Finite Element Simulation and X-Ray Microdiffraction Study of Strain Partitioning in a Layered Nanocomposite
  60. Modelling of bone fracture and strength at different length scales: a review
  61. Toward high-speed 3D nonlinear soft tissue deformation simulations using Abaqus software
  62. Multiscale damage and strength of lamellar bone modeled by cohesive finite elements
  63. Apparent elastic properties of random fiber networks
  64. The effect of ozone and high temperature on polymer degradation in polymer core composite conductors
  65. Correlation of Multi-scale Modeling and Experimental Results for the Elastic Modulus of Trabecular Bone
  66. Reference point indentation study of age-related changes in porcine femoral cortical bone
  67. Age-related changes in the 3D hierarchical structure of rat tibia cortical bone characterized by high-resolution micro-CT
  68. The effect of ozone on polymer degradation in Polymer Core Composite Conductors
  69. Dielectric behavior of Silica/Poly(dimethylsiloxane) nanocomposites. nano size effects
  70. Elastic behavior of silica/poly(dimethylsiloxane) nanocomposites: nano-size effects
  71. Correlation of Multi-scale Modeling and Experimental Results for the Elastic Moduli of Cortical and Trabecular Bone
  72. A polyurethane‐based nanocomposite biocompatible bone adhesive
  73. Mechanical properties of porcine femoral cortical bone measured by nanoindentation
  74. Bone Resorption Markers and Dual‐Energy X‐Ray Absorptiometry in Dogs with Avascular Necrosis, Degenerative Joint Disease, and Trauma of the Coxofemoral Joint
  75. Elastic modeling of bone at nanostructural level
  76. Elastic moduli of untreated, demineralized and deproteinized cortical bone: Validation of a theoretical model of bone as an interpenetrating composite material
  77. Modeling of cortical bone adaptation in a rat ulna: Effect of frequency
  78. Quantitative second-harmonic generation microscopy for imaging porcine cortical bone: Comparison to SEM and its potential to investigate age-related changes
  79. Multi-scale modelling of elastic moduli of trabecular bone
  80. Hierarchical Structure of Porosity in Cortical and Trabecular Bones
  81. Dissipation energy as a stimulus for cortical bone adaptation
  82. Xenopus Laevisas a Novel Model to Study Long Bone Critical-Size Defect Repair by Growth Factor-Mediated Regeneration
  83. Characterisation of microstructure and mechanical properties of cermets at micro- and nanoscales
  84. Multi-scale characterization of swine femoral cortical bone
  85. Nanoindentation testing and modeling of chromium-carbide-based composites
  86. Effect of specimen geometry on tensile strength of cortical bone
  87. Multiscale modeling of elastic properties of cortical bone
  88. Multiscale Modeling of Elastic Properties of Trabecular Bone
  89. Numerical Modeling of Long Bone Adaptation due to Mechanical Loading: Correlation with Experiments
  90. Scale and Boundary Conditions Effects on the Apparent Elastic Moduli of Trabecular Bone Modeled as a Periodic Cellular Solid
  91. Age-Related Changes in Structure, Composition and Mechanical Properties of Swine Cortical Bone
  92. Micromechanical properties and erosive wear performance of chromium carbide based cermets
  93. Mechanobiology of the SkeletonA presentation from the Keystone Symposium Mechanotransduction in Physiology and Disease in Taos, New Mexico, 18 to 23 January 2009.
  94. Stress invariance and exact relations in the mechanics of composite materials: Extensions of the CLM result – A review
  95. Molecular Dynamics Computations of Flow in Constricted and Wavy Nano Channels
  96. Concentrated force acting on a power law creep half-plane
  97. FTIR Characterization of the Reactive Interface of Cobalt Oxide Nanoparticles Embedded in Polymeric Matrices
  98. Couple-stress moduli of a trabecular bone idealized as a 3D periodic cellular network
  99. The TEM characterization of the lamellar structure of osteoporotic human trabecular bone
  100. Experimental trends in polymer nanocomposites—a review
  101. Modeling of bone at a single lamella level
  102. SEM and TEM study of the hierarchical structure of C57BL/6J and C3H/HeJ mice trabecular bone
  103. Interfacial Stress Analysis and Fracture of a Bi-Material Strip With a Heterogeneous Underfill
  104. TEM analysis of the nanostructure of normal and osteoporotic human trabecular bone
  105. Stresses and Fracture at the Chip/Underfill Interface in Flip-Chip Assemblies
  106. Modeling of Trabecular Bone as a Couple Stress Continuum
  107. Apparent thermal conductivity of periodic two-dimensional composites
  108. A micromechanically based couple-stress model of an elastic orthotropic two-phase composite
  109. Apparent elastic and elastoplastic behavior of periodic composites
  110. A micromechanically based couple–stress model of an elastic two-phase composite
  111. Scale and boundary conditions effects in elastic properties of random composites
  112. Scale-dependent bounds on effective elastoplastic response of random composites
  113. Fracture of random matrix-inclusion composites: scale effects and statistics
  114. Scale and boundary conditions effects in elasticity and damage mechanics of random composites
  115. Composites with functionally graded interphases: Mesocontinuum concept and effective transverse conductivity
  116. Linear elasticity of planar Delaunay networks. III: Self-consistent approximations
  117. Cavities vis-a-vis rigid inclusions: Elastic moduli of materials with polygonal inclusions