All Stories

  1. Automatic determination of mechanical properties from Molecular Dynamic Stress-Strain curves using Regression Fringe Response
  2. Investigation of material properties of thermoplastic and thermoset polymer materials at cryogenic temperatures using molecular dynamics
  3. Nanoscale Structure–Property Relationships of Cyanate Ester as a Function of Extent of Cure
  4. Optimizing Epoxy Nanocomposites with Oxidized Graphene Quantum Dots for Superior Mechanical Performance: A Molecular Dynamics Approach
  5. Investigating the structure–property correlations of pyrolyzed phenolic resin as a function of degree of carbonization
  6. Implementing reactivity in molecular dynamics simulations with harmonic force fields
  7. Evolution of Physical, Thermal, and Mechanical Properties of Poly(methyl Methacrylate)-Based Elium Thermoplastic Polymer During Polymerization
  8. The effect of gamma-ray irradiation on polymer-graphene nanocomposite interfaces
  9. Carbon nanotube as a conductive rheological modifier for carbon fiber-reinforced epoxy 3D printing inks
  10. LUNAR: Automated Input Generation and Analysis for Reactive LAMMPS Simulations
  11. Optimal Molecular Dynamics System Size for Increased Precision and Efficiency for Epoxy Materials
  12. Scaled-Up Continuous Carbon Nanotube Yarn Unidirectional Composite Laminates With Carbon Nanotube Aerogel
  13. A Micromechanical Study of Interactions of Cyanate Ester Monomer with Graphene or Boron Nitride Monolayer
  14. The microscale behaviours and damage evolutions of graphene nanoplatelet (GNP)/epoxy nanocomposites
  15. Multiscale Process Modeling of Semicrystalline PEEK for Tailored Thermomechanical Properties
  16. Evolution of Glassy Carbon Derived from Pyrolysis of Furan Resin
  17. Establishing Physical and Chemical Mechanisms of Polymerization and Pyrolysis of Phenolic Resins for Carbon-Carbon Composites
  18. Scalable High Tensile Modulus Composite Laminates Using Continuous Carbon Nanotube Yarns for Aerospace Applications
  19. Multiscale Process Modeling of a Carbon Fiber/Epoxy Composite for Predicting Residual Stress and Strength
  20. Boron Nitride Nanotubes: Force Field Parameterization, Epoxy Interactions, and Comparison with Carbon Nanotubes for High-Performance Composite Materials
  21. Probing the Influence of Surface Chemical Functionalization on Graphene Nanoplatelets-Epoxy Interfacial Shear Strength Using Molecular Dynamics
  22. Predicting char yield of high-temperature resins
  23. Simple and convenient mapping of molecular dynamics mechanical property predictions of bisphenol-F epoxy for strain rate, temperature, and degree of cure
  24. Molecular Dynamics Modeling of Interfacial Interactions between Flattened Carbon Nanotubes and Amorphous Carbon: Implications for Ultra-Lightweight Composites
  25. Accurate predictions of thermoset resin glass transition temperatures from all-atom molecular dynamics simulation
  26. Computational study of effect of radiation induced crosslinking on the properties of flattened carbon nanotubes
  27. Process modeling and characterization of thermoset composites for residual stress prediction
  28. Understanding the Origin of the Low Cure Shrinkage of Polybenzoxazine Resin by Computational Simulation
  29. Computational Modeling of Hybrid Carbon Fiber/Epoxy Composites Reinforced with Functionalized and Non-Functionalized Graphene Nanoplatelets
  30. Molecular Dynamics Modeling of Epoxy Resins Using the Reactive Interface Force Field
  31. Reactive Molecular Dynamics Simulation of Epoxy for the Full Cross-Linking Process
  32. Computationally Guided Design of Large-Diameter Carbon Nanotube Bundles for High-Strength Materials
  33. Prediction of the Interfacial Properties of High-Performance Polymers and Flattened CNT-Reinforced Composites Using Molecular Dynamics
  34. Mechanical Properties and Characterization of Epoxy Composites Containing Highly Entangled As-Received and Acid Treated Carbon Nanotubes
  35. Wetting Simulations of High-Performance Polymer Resins on Carbon Surfaces as a Function of Temperature Using Molecular Dynamics
  36. Multiscale Modeling of Epoxy-Based Nanocomposites Reinforced with Functionalized and Non-Functionalized Graphene Nanoplatelets
  37. A machine learning framework for predicting the shear strength of carbon nanotube-polymer interfaces based on molecular dynamics simulation data
  38. Interfacial modeling of flattened CNT composites with cyanate ester and PEEK polymers
  39. Cure Behavior Changes and Compression of Carbon Nanotubes in Aerospace Grade Bismaleimide-Carbon Nanotube Sheet Nanocomposites
  40. Mechanical Response of Polymer Epoxy/BMI Composites with Graphene and a Boron Nitride Monolayer from First Principles
  41. A Novel Approach to Characterization of Composite Polymer Matrix Materials for Integrated Computational Materials Engineering Approaches
  42. Interfacial characteristics between flattened CNT stacks and polyimides: A molecular dynamics study
  43. The assessment of carbon nanotube (CNT) geometry on the mechanical properties of epoxy nanocomposites
  44. ReaxFF Reactive Force Field Study of Polymerization of a Polymer Matrix in a Carbon Nanotube-Composite System
  45. Computational Investigation of Large-Diameter Carbon Nanotubes in Bundles for High-Strength Materials
  46. Multiscale Modeling for Virtual Manufacturing of Thermoset Composites
  47. The Effect of Chirality and Strain Rate on Mechanical Properties of Carbon Nanotube (CNT) and CNT/Epoxy Composites
  48. MD Modeling of Epoxy-base Nanocomposites Reinforced with Functionalized Graphene Nanoplatelets
  49. Prediction of Residual Stress Build-up in Polymer Matrix Composite During Cure using a Two-scale Approach
  50. A Multi-scale Approach for Modelling the Cure of Thermoset Polymers within ICME
  51. Multiscale modeling of carbon fiber- graphene nanoplatelet-epoxy hybrid composites using a reactive force field
  52. Microstructure and properties of precipitation-hardened Zr and Zn-Zr based aluminum alloys
  53. Multiscale modeling of PEEK using reactive molecular dynamics modeling and micromechanics
  54. Insight into Geometry-Controlled Mechanical Properties of Spiral Carbon-Based Nanostructures
  55. Modeling-Driven Damage Tolerant Design of Graphene Nanoplatelet/Carbon Fiber/Epoxy Hybrid Composite Panels for Full-Scale Aerospace Structures
  56. Novel Multiscale Approach for the Virtual Manufacturing of Thermoset Composites within ICME
  57. How to characterize interfacial load transfer in spiral carbon-based nanostructure-reinforced nanocomposites: is this a geometry-dependent process?
  58. Investigation of Al-Zn-Zr and Al-Zn-Ni alloys for high electrical conductivity and strength application
  59. The development of multiscale models for predicting the mechanical response of GNP reinforced composite plate
  60. Thermal conductivity of graphene nanoplatelet/cycloaliphatic epoxy composites: Multiscale modeling
  61. Accelerated hygrothermal aging of Talc/Cycloaliphatic epoxy composites
  62. Multiscale modeling of carbon fiber/carbon nanotube/epoxy hybrid composites: Comparison of epoxy matrices
  63. Simulating the effects of carbon nanotube continuity and interfacial bonding on composite strength and stiffness
  64. Modeling Skeletal Muscle Stress and Intramuscular Pressure: A Whole Muscle Active–Passive Approach
  65. Tensile and conductivity properties of epoxy composites containing carbon black and graphene nanoplatelets
  66. Multiscale thermal modeling of cured cycloaliphatic epoxy/carbon fiber composites
  67. Molecular Modeling of Cross-Linked Polymers with Complex Cure Pathways: A Case Study of Bismaleimide Resins
  68. Electrical, Thermal, and Tensile Properties of Cycloaliphatic Epoxy/Carbon Black and Cycloaliphatic Epoxy/Fumed Silica Nanocomposites
  69. Advanced Nanoengineered Materials
  70. Multiscale modeling and analysis of graphene nanoplatelet/carbon fiber/epoxy hybrid composite
  71. Comparing the mechanical response of di-, tri-, and tetra-functional resin epoxies with reactive molecular dynamics
  72. Thermal, electrical, and mechanical properties of talc- and glass microsphere-Reinforced Cycloaliphatic epoxy composites
  73. A validated model of passive skeletal muscle to predict force and intramuscular pressure
  74. A case for poroelasticity in skeletal muscle finite element analysis: experiment and modeling
  75. Effects of carbon fillers on the conductivity and tensile properties of polyetheretherketone composites
  76. Accelerated hydrothermal aging of cycloaliphatic epoxy/graphene nanoparticle composites
  77. How does tissue preparation affect skeletal muscle transverse isotropy?
  78. Determination and Modeling of Mechanical Properties for Graphene Nanoplatelet/Epoxy Composites
  79. Simulation of mechanical performance limits and failure of carbon nanotube composites
  80. Skeletal muscle tensile strain dependence: Hyperviscoelastic nonlinearity
  81. Resin Using Reactive Force Field: Thermo-Mechanical Properties
  82. Mechanical properties of graphene nanoplatelet/carbon fiber/epoxy hybrid composites: Multiscale modeling and experiments
  83. Simulation of the Elastic and Ultimate Tensile Properties of Diamond, Graphene, Carbon Nanotubes, and Amorphous Carbon Using a Revised ReaxFF Parametrization
  84. Shielding effectiveness of carbon-filled polypropylene composites
  85. Shielding effectiveness of carbon‐filled polycarbonate composites
  86. The effect of time step, thermostat, and strain rate on ReaxFF simulations of mechanical failure in diamond, graphene, and carbon nanotube
  87. Fracture properties of nanographene reinforced EPON 862 thermoset polymer system
  88. Asynchronous Crystal Cell Expansion during Lithiation of K+-Stabilized α-MnO2
  89. Multiscale modeling of nanocomposites
  90. Error analysis of cine phase contrast MRI velocity measurements used for strain calculation
  91. Direct Evidence of Lithium-Induced Atomic Ordering in Amorphous TiO2 Nanotubes
  92. Predicting Thermo-Mechanical Response of Crosslinked Epoxy using ReaxFF
  93. Predicting mechanical response of crosslinked epoxy using ReaxFF
  94. Size-dependent mechanical behavior of nanoscale polymer particles through coarse-grained molecular dynamics simulation
  95. Giant Stretchability and Reversibility of Tightly Wound Helical Carbon Nanotubes
  96. Effect of chain architecture on the compression behavior of nanoscale polyethylene particles
  97. Use of a Poroelastic Model to Predict Intramuscular Pressure
  98. Molecular modeling of EPON-862/graphite composites: Interfacial characteristics for multiple crosslink densities
  99. Mechanical properties of graphene nanoplatelet/epoxy composites
  100. Parametric Study of ReaxFF Simulation Parameters for Molecular Dynamics Modeling of Reactive Carbon Gases
  101. Finite size effect on the piezoelectric properties of ZnO nanobelts: A molecular dynamics approach
  102. Molecular modeling of physical aging in epoxy polymers
  103. A Poroelastic Model of Skeletal Muscle Tissue Used to Predict Intramuscular Pressure
  104. Molecular modeling of crosslink distribution in epoxy polymers
  105. Molecular Modeling of the Influence of Crosslink Distribution on Epoxy Polymers
  106. Regional and fiber orientation dependent shear properties and anisotropy of bovine meniscus
  107. Physical aging of epoxy polymers and their composites
  108. Regional and Fiber Orientation Dependent Shear Properties and Anisotropic Modeling of Bovine Meniscus
  109. Transverse mechanical properties of collagen fibers from nanoindentation
  110. Molecular modeling of crosslinked epoxy polymers: The effect of crosslink density on thermomechanical properties
  111. Atomistic Modeling of Cross-linked Epoxy Polymer
  112. Nanoclay-modified asphalt materials: Preparation and characterization
  113. Hyperelastic properties of human meniscal attachments
  114. Nanocomposite electrical generator based on piezoelectric zinc oxide nanowires
  115. A Validated Finite Element Model of Force in Active and Passive Skeletal Muscle
  116. Atomistic Modeling of Cross-linked Epoxy Polymer
  117. A method for assessing the fit of a constitutive material model to experimental stress–strain data
  118. Transversely isotropic tensile material properties of skeletal muscle tissue
  119. Constitutive Modeling of Electrostrictive Polymers Using a Hyperelasticity-Based Approach
  120. Nanoindentation of the insertional zones of human meniscal attachments into underlying bone
  121. Validation of a Finite Element Model of Passive Force and Pressure in Skeletal Muscle
  122. Effect of Chain Length in Multiscale Constitutive Modeling of Polymer Materials
  123. Influence of representative volume element size on predicted elastic properties of polymer materials
  124. Intraneural ganglia: a clinical problem deserving a mechanistic explanation and model
  125. Finite Element Modeling of Intraneural Ganglion Cysts of the Common Peroneal Nerve
  126. Multiscale Modeling of Nanocomposite Materials
  127. Multiscale modeling of polymer materials using a statistics-based micromechanics approach
  128. Constitutive Modeling of Skeletal Muscle Tissue With an Explicit Strain-Energy Function
  129. An elastic micropolar mixture theory for predicting elastic properties of cellular materials
  130. MATERIAL CHARACTERIZATION OF HUMAN MENISCAL HORN ATTACHMENTS
  131. Tensile Material Properties of Skeletal Muscle Tissue in Longitudinal and Transverse Directions
  132. Nanowelding and Multiscale Modeling and Simulation
  133. Temperature Effects in Multiscale Modeling of Polymer Materials
  134. An Elastic Micropolar Mixture Theory for Predicting Elastic Properties of Cellular Materials
  135. Equivalent‐Continuum Modeling of Nanostructured Materials
  136. Parametric Studies in Multiscale Modeling of High-Performance Polymers
  137. Nonlinear multiscale modeling of polymer materials
  138. An Elastic Micropolar Mixture Theory Approach for Predicting Elastic Properties of Open Cell Foams
  139. Multiscale Constitutive Modeling of Polymer Materials
  140. Facesheet delamination of composite sandwich materials at cryogenic temperatures
  141. Multiscale Modeling of Polymer Materials at Cryogenic and Elevated Temperatures
  142. Modeling and Testing of the Viscoelastic Properties of a Graphite Nanoplatelet/Epoxy Composite
  143. Computational materials: Multi-scale modeling and simulation of nanostructured materials
  144. Structure-property relationships in polymer composites with micrometer and submicrometer graphite platelets
  145. Modeling of Carbon Nanotube/Polymer Composites
  146. Effect of Nanotube Functionalization on the Elastic Properties of Polyethylene Nanotube Composites
  147. THE EFFECT OF FUNCTIONALIZATION ON DOUBLE-WALLED NANOTUBE MATERIALS
  148. Prediction of Mechanical Properties of Polymers with Various Force Fields
  149. Characterization of viscoelastic properties of polymeric materials through nanoindentation
  150. Modeling of the mechanical properties of nanoparticle/polymer composites
  151. Constitutive modeling of piezoelectric polymer composites
  152. Comparison of two models of SWCN polymer composites
  153. Constitutive Modeling of Crosslinked Nanotube Materials
  154. Predicting the Influence of Nano-scale Material Structure on the In-plane Buckling of Orthotropic Plates
  155. Synthesis, Characterization, and Modeling of Nanotube Materials with Variable Stiffness Tethers
  156. Constitutive modeling of nanotube–reinforced polymer composites
  157. The Effect of Chemical Functionalization on Mechanical Properties of Nanotube/Polymer Composites
  158. Modeling and Characterization of Elastic Constants of Functionalized Nanotube Materials
  159. Equivalent-continuum modeling of nano-structured materials
  160. Nano-Scale Finite Element Analysis of Polymer Networks
  161. Constitutive Modeling of Nanotube-Reinforced Polymer Composites
  162. The Effect of Eccentric Loads on the Macroscopic Strain and Stress Distributions in Woven Fabric Composite Iosipescu Specimens
  163. Comparison of the ±45° Tensile and Iosipescu Shear Tests for Woven Fabric Composite Materials
  164. A continuum elastic–plastic model for woven-fabric/polymer-matrix composite materials under biaxial stresses
  165. Micro- and mesomechanics of 8-harness satin woven fabric composites: I — evaluation of elastic behavior
  166. Failure Analysis of ±45° Off-Axis Woven Fabric Composite Specimens
  167. Determination of shear strength of unidirectional composite materials with the Iosipescu and 10° off-axis shear tests
  168. Elastic-plastic and failure properties of a unidirectional carbon/PMR-15 composite at room and elevated temperatures
  169. Nonlinear Analysis of Woven Fabric-Reinforced Graphite/PMR-15 Composites under Shear-Dominated Biaxial Loads
  170. Elasto-Plastic Analysis of the Iosipescu Shear Test
  171. Failure Investigation of Graphite/Polyimide Fabric Composites at Room and Elevated Temperatures Using the Biaxial Iosipescu Test
  172. Critical Examination of the Iosipescu Shear Test as Applied to 0degrees Unidirectional Composite Materials
  173. Thermodynamically-Consistent Multiscale Constitutive Modeling of Glassy Polymer Materials