All Stories

  1. Data-driven insights into composition-property relationships in FCC high entropy alloys
  2. Sequential Bayesian Inference of the GTN damage model using multimodal experimental data
  3. ML Workflows for Screening Degradation‐Relevant Properties of Forever Chemicals
  4. Flow-Based Generative Models for Estimating Extreme Value Distributions in Unidirectional Polymer Matrix Composites
  5. Uncertainty-Aware Prediction and Generation of Spinodal Decomposition Microstructures via Conditional Variational Autoencoders
  6. Unraveling the PFAS helix: A statistical approach
  7. Assessing the accuracy of Bayesian-optimized CGMD in predicting polymer miscibility
  8. A semi-automatic workflow for atomic force microscopy image analysis and cellulose nanocrystal particle size measurements
  9. Reduced-order structure-property linkages for stochastic metamaterials
  10. Batch active learning for microstructure–property relations in energetic materials
  11. Thermodynamically-Informed Iterative Neural Operators for heterogeneous elastic localization
  12. A texture-dependent yield criterion based on Support Vector Classification
  13. Resolving the strength-to-stiffness ratio dependency for instrumented macroindentation based local mechanical properties
  14. High-throughput experiments and machine learning strategies for efficient exploration of additively manufactured Inconel 625
  15. Implicit implementation of a coupled transformation – plasticity crystal mechanics model for shape memory alloys that includes transformation rotations
  16. Investigation of kinetics of passive layer formation on various microstructures in thermo-mechanically treated steel in simulated concrete pore solution
  17. Active learning for the design of polycrystalline textures using conditional normalizing flows
  18. Bayesian protocols for high-throughput identification of kinematic hardening model forms
  19. Inverse stochastic microstructure design
  20. A Gaussian process autoregressive model capturing microstructure evolution paths in a Ni–Mo–Nb alloy
  21. Statistically conditioned polycrystal generation using denoising diffusion models
  22. Voxelized atomic structure framework for materials design and discovery
  23. Reduced-Order Models Correlating Ti Beta 21S Microstructures and Vickers Hardness Measurements
  24. High throughput structure–property relationship for additively manufactured 316L/IN625 alloy mixtures leveraging 2-step Bayesian estimation
  25. Neighborhood spatial correlations and machine learning classification of fatigue hot-spots in Ti-6Al-4V
  26. A new framework for the assessment of model probabilities of the different crystal plasticity models for lamellar grains in α+β Titanium alloys
  27. Local-global decompositions for conditional microstructure generation
  28. Bayesian calibration of continuum damage model parameters for an oxide-oxide ceramic matrix composite using inhomogeneous experimental data
  29. Transmission electron microscopy image analysis effects on cellulose nanocrystal particle size measurements
  30. Study of a Bimodal α–β Ti Alloy Microstructure Using Multi-Resolution Spherical Indentation Stress-Strain Protocols
  31. Efficient Generation of Anisotropic N-field Microstructures from 2-Point Statistics using Multi-output Gaussian Random Fields
  32. Prediction of the Electron Density of States for Crystalline Compounds with Atomistic Line Graph Neural Networks (ALIGNN)
  33. Machine learning-enabled feature classification of evaporation-driven multi-scale 3D printing
  34. Multiresolution investigations of thermally aged steels using spherical indentation stress-strain protocols and image analysis
  35. A hybrid approach for the efficient computation of polycrystalline yield loci with the accuracy of the crystal plasticity finite element method
  36. Microstructure Quantification and Multiresolution Mechanical Characterization of Ti-Based Bulk Metallic Glass-Matrix Composites
  37. A Generalized and Modular Framework for Digital Generation of Composite Microstructures
  38. Carbon stoichiometry and mechanical properties of high entropy carbides
  39. Evaluation of the influence of B and Nb microalloying on the microstructure and strength of 18% Ni maraging steels (C350) using hardness, spherical indentation and tensile tests
  40. Materials graph ontology
  41. Machine learning approaches for feature engineering of the crystal structure: Application to the prediction of the formation energy of cubic compounds
  42. Decoding defect statistics from diffractograms via machine learning
  43. Automated Image Processing Workflow for Morphological Analysis of Fluorescence Microscopy Cell Images
  44. Digital Representation and Quantification of Discrete Dislocation Structures
  45. Critical Comparison of Spherical Microindentation, Small Punch Test, and Uniaxial Tensile Testing for Selective Laser Melted Inconel 718
  46. Semi-automatic image analysis of particle morphology of cellulose nanocrystals
  47. Critical comparison of image analysis workflows for quantitative cell morphological evaluation in assessing cell response to biomaterials
  48. Correlation of Measured Load-Displacement Curves in Small Punch Tests with Tensile Stress-Strain Curves
  49. Evaluation of Ti–Mn Alloys for Additive Manufacturing Using High-Throughput Experimental Assays and Gaussian Process Regression
  50. Feature engineering of material structure for AI-based materials knowledge systems
  51. A digital workflow for learning the reduced-order structure-property linkages for permeability of porous membranes
  52. Bayesian estimation of single ply anisotropic elastic constants from spherical indentations on multi-laminate polymer-matrix fiber-reinforced composite samples
  53. New Insights into the Microstructural Changes During the Processing of Dual-Phase Steels from Multiresolution Spherical Indentation Stress–Strain Protocols
  54. Study of Local Mechanical Responses in an Epoxy–Carbon Fiber Laminate Composite Using Spherical Indentation Stress–Strain Protocols
  55. Application of Gaussian process autoregressive models for capturing the time evolution of microstructure statistics from phase-field simulations for sintering of polycrystalline ceramics
  56. Localization models for the plastic response of polycrystalline materials using the material knowledge systems framework
  57. Application of Gaussian Process regression models for capturing the evolution of microstructure statistics in aging of Nickel-based superalloys
  58. A Bayesian framework for materials knowledge systems
  59. Materials knowledge system for nonlinear composites
  60. Establishing structure-property localization linkages for elastic deformation of three-dimensional high contrast composites using deep learning approaches
  61. A new framework for rotationally invariant two-point spatial correlations in microstructure datasets
  62. Phonon transport properties of two-dimensional electride Ca2N—A first-principles study
  63. Application of chord length distributions and principal component analysis for quantification and representation of diverse polycrystalline microstructures
  64. Multiresolution mechanical characterization of hierarchical materials: Spherical nanoindentation on martensitic Fe-Ni-C steels
  65. Data-driven reduced-order models for rank-ordering the high cycle fatigue performance of polycrystalline microstructures
  66. Computationally efficient predictions of crystal plasticity based forming limit diagrams using a spectral database
  67. Prediction of microscale plastic strain rate fields in two-phase composites subjected to an arbitrary macroscale strain rate using the materials knowledge system framework
  68. Material structure-property linkages using three-dimensional convolutional neural networks
  69. Probing nanoscale damage gradients in ion-irradiated metals using spherical nanoindentation
  70. Extracting knowledge from molecular mechanics simulations of grain boundaries using machine learning
  71. Reduced-order structure-property linkages for polycrystalline microstructures based on 2-point statistics
  72. Estimating the slip resistance from spherical nanoindentation and orientation measurements in polycrystalline samples of cubic metals
  73. Extraction of reduced-order process-structure linkages from phase-field simulations
  74. Development of high throughput assays for establishing process-structure-property linkages in multiphase polycrystalline metals: Application to dual-phase steels
  75. On capturing the grain-scale elastic and plastic anisotropy of alpha-Ti with spherical nanoindentation and electron back-scattered diffraction
  76. High throughput exploration of process-property linkages in Al-6061 using instrumented spherical microindentation and microstructurally graded samples
  77. Correlation of spherical nanoindentation stress-strain curves to simple compression stress-strain curves for elastic-plastic isotropic materials using finite element models
  78. Studies of grain boundary regions in deformed polycrystalline aluminum using spherical nanoindentation
  79. Microstructure-based knowledge systems for capturing process-structure evolution linkages
  80. Quantification and classification of microstructures in ternary eutectic alloys using 2-point spatial correlations and principal component analyses
  81. The materials innovation ecosystem: A key enabler for the Materials Genome Initiative
  82. Microstructure taxonomy based on spatial correlations: Application to microstructure coarsening
  83. Effect of microstructure on oxygen rich layer evolution and its impact on fatigue life during high-temperature application of α/β titanium
  84. Investigations of orientation and length scale effects on micromechanical responses in polycrystalline zirconium using spherical nanoindentation
  85. Nacre-like hybrid films: Structure, properties, and the effect of relative humidity
  86. Versatile algorithms for the computation of 2-point spatial correlations in quantifying material structure
  87. Statistical construction of 3-D microstructures from 2-D exemplars collected on oblique sections
  88. Analytics for microstructure datasets produced by phase-field simulations
  89. Machine learning approaches for elastic localization linkages in high-contrast composite materials
  90. In situ X-ray nanotomography of metal surfaces during electropolishing
  91. Proceedings of the 3rd World Congress on Integrated Computational Materials Engineering (ICME 2015)
  92. Application of data science tools to quantify and distinguish between structures and models in molecular dynamics datasets
  93. Representation and calibration of elastic localization kernels for a broad class of cubic polycrystals
  94. Materials Data Science: Current Status and Future Outlook
  95. Structure–property linkages using a data science approach: Application to a non-metallic inclusion/steel composite system
  96. Calibrated Localization Relationships for Polycrystalline Aggregates by Using Materials Knowledge System
  97. Spherical nanoindentation stress–strain curves
  98. Grain-scale measurement of slip resistances in aluminum polycrystals using spherical nanoindentation
  99. Crystal plasticity finite element simulations using a database of discrete Fourier transforms
  100. Materials, Data, and Informatics
  101. Structure–Property Linkages
  102. Microstructure Function
  103. Process–Structure Linkages
  104. Materials Innovation Cyberinfrastructure
  105. Statistical Quantification of Material Structure
  106. Reduced-Order Representations of Spatial Correlations
  107. Generalized Composite Theories
  108. Calibrated localization relationships for elastic response of polycrystalline aggregates
  109. Understanding pop-ins in spherical nanoindentation
  110. Extracting single-crystal elastic constants from polycrystalline samples using spherical nanoindentation and orientation measurements
  111. Data science and cyberinfrastructure: critical enablers for accelerated development of hierarchical materials
  112. Workflow for integrating mesoscale heterogeneities in materials structure with process simulation of titanium alloys
  113. Strong cube recrystallization texture in silicon steel by twin-roll casting process
  114. Mechanical characterization of grain boundaries using nanoindentation
  115. Dependence of mechanical properties on crystal orientation of semi-crystalline polyethylene structures
  116. A data-driven approach to establishing microstructure–property relationships in porous transport layers of polymer electrolyte fuel cells
  117. Exploration of data science techniques to predict fatigue strength of steel from composition and processing parameters
  118. Influence of deformation twinning on static annealing of AZ31 Mg alloy
  119. Morphological Analyses of Polymer Electrolyte Fuel Cell Electrodes with Nano-Scale Computed Tomography Imaging
  120. Effect of the continuous stiffness measurement on the mechanical properties extracted using spherical nanoindentation
  121. Microstructure-Driven Analysis of Two-Phase Transport in Diffusion Media of PEFCs
  122. Resolving macro- and micro-porous layer interaction in polymer electrolyte fuel cells using focused ion beam and X-ray computed tomography
  123. Microstructure Informatics
  124. Key computational modeling issues in Integrated Computational Materials Engineering
  125. Introduction
  126. Spectral Representation
  127. Homogenization Theories
  128. Microstructure Hull and Closures
  129. Design for Performance Optimization
  130. Symmetry in Microstructure Representation
  131. Structure–Property Relations
  132. Description of the Microstructure
  133. Spectral Representation of Microstructure
  134. Tensors and Rotations
  135. Microstructure Evolution by Processing
  136. Higher-Order Microstructure Representation
  137. Higher-Order Homogenization
  138. Second-Order Hull, Property Closure, and Design
  139. Higher-Order Models of Deformation Processing
  140. Electron Backscatter Diffraction Microscopy and Basic Stereology
  141. Novel microstructure quantification framework for databasing, visualization, and analysis of microstructure data
  142. Assessment of lamellar level properties in mouse bone utilizing a novel spherical nanoindentation data analysis method
  143. Estimating the response of polycrystalline materials using sets of weighted statistical volume elements
  144. Multi-scale modeling of the elastic response of a structural component made from a composite material using the materials knowledge system
  145. Microstructure Evolution during Roller Hemming of AZ31B Magnesium Sheet
  146. Critical evaluation of the indentation data analyses methods for the extraction of isotropic uniaxial mechanical properties using finite element models
  147. Computationally Efficient, Fully Coupled Multiscale Modeling of Materials Phenomena Using Calibrated Localization Linkages
  148. Selection of representative volume elements for pore-scale analysis of transport in fuel cell materials
  149. 3-D Microstructure Analysis of Fuel Cell Materials: Spatial Distributions of Tortuosity, Void Size and Diffusivity
  150. Understanding and visualizing microstructure and microstructure variance as a stochastic process
  151. Studying grain boundary regions in polycrystalline materials using spherical nano-indentation and orientation imaging microscopy
  152. Formulation and calibration of higher-order elastic localization relationships using the MKS approach
  153. Microstructural Evolution during Roller Hemming of AZ31 Magnesium Sheet
  154. Microstructure informatics using higher-order statistics and efficient data-mining protocols
  155. Representation and computational structure-property relations of random media
  156. Microstructure Analysis Tools for Quantification of Key Structural Properties of Fuel Cell Materials
  157. Measuring the dynamic mechanical response of hydrated mouse bone by nanoindentation
  158. A new framework for computationally efficient structure–structure evolution linkages to facilitate high-fidelity scale bridging in multi-scale materials models
  159. A Representative Volume Element Approach for Pore-Scale Modeling of Fuel Cell Materials
  160. Deformation twinning in AZ31: Influence on strain hardening and texture evolution
  161. Optimized structure based representative volume element sets reflecting the ensemble-averaged 2-point statistics
  162. Special issue in honor of Lallit Anand
  163. Microstructure sensitive design for performance optimization
  164. Building texture evolution networks for deformation processing of polycrystalline fcc metals using spectral approaches: Applications to process design for targeted performance
  165. Multi-scale modeling of elastic response of three-dimensional voxel-based microstructure datasets using novel DFT-based knowledge systems
  166. Representation of the orientation distribution function and computation of first-order elastic properties closures using discrete Fourier transforms
  167. Viscoelasticity and high buckling stress of dense carbon nanotube brushes
  168. Measurement of the local mechanical properties in polycrystalline samples using spherical nanoindentation and orientation imaging microscopy
  169. Modeling texture evolution in equal channel angular extrusion using crystal plasticity finite element models
  170. Crystal plasticity simulations using discrete Fourier transforms
  171. Importance of surface preparation on the nano-indentation stress-strain curves measured in metals
  172. Determination of an effective zero-point and extraction of indentation stress–strain curves without the continuous stiffness measurement signal
  173. Second-Order Microstructure Sensitive Design Using 2-Point Spatial Correlations
  174. First-Order Microstructure Sensitive Design Based on Volume Fractions and Elementary Bounds
  175. A Comparison of Deformation Textures and Mechanical Properties Predicted by Different Crystal Plasticity Codes
  176. Gradient-based microstructure reconstructions from distributions using fast Fourier transforms
  177. Delineation of the space of 2-point correlations in a composite material system
  178. Modeling Anisotropic Stress-Strain Response and Crystallographic Texture Evolution in α-Titanium during Large Plastic Deformation using Taylor-Type Models: Influence of Initial Texture and Purity
  179. Spectral representation of higher-order localization relationships for elastic behavior of polycrystalline cubic materials
  180. Determination of the effective zero-point and the extraction of spherical nanoindentation stress–strain curves
  181. Application of microstructure sensitive design to structural components produced from hexagonal polycrystalline metals
  182. Computationally efficient database and spectral interpolation for fully plastic Taylor-type crystal plasticity calculations of face-centered cubic polycrystals
  183. A strong contrast homogenization formulation for multi-phase anisotropic materials
  184. A new spectral framework for establishing localization relationships for elastic behavior of composites and their calibration to finite-element models
  185. A crystal plasticity finite element analysis of cross-grain deformation heterogeneity in equal channel angular extrusion and its implications for texture evolution
  186. Thermomechanical Processing for Recovery of Desired $$ {\left\langle {001} \right\rangle } $$ Fiber Texture in Electric Motor Steels
  187. Microstructure reconstructions from 2-point statistics using phase-recovery algorithms
  188. Delineation of first-order closures for plastic properties requiring explicit consideration of strain hardening and crystallographic texture evolution
  189. Analyzing indentation stress–strain response of LaGaO3 single crystals using spherical indenters
  190. Analyzing indentation behavior of LaGaO3 single crystals using sharp indenters
  191. Calibration of elastic localization tensors to finite element models: Application to cubic polycrystals
  192. Retention of the ‹001› Fiber Texture for Fe-Si Electric Motor Steels
  193. Application of Microstructure Sensitive Design to FCC Polycrystals
  194. Fast computation of first-order elastic–plastic closures for polycrystalline cubic-orthorhombic microstructures
  195. Elastic–plastic property closures for hexagonal close-packed polycrystalline metals using first-order bounding theories
  196. Application of the Spectral Methods of Microstructure Design to Continuous Fiber-reinforced Composites
  197. Generalized Pareto front methods applied to second-order material property closures
  198. Prediction of crystallographic texture evolution and anisotropic stress–strain curves during large plastic strains in high purity α-titanium using a Taylor-type crystal plasticity model
  199. Integration of Microstructure-Sensitive Design with Finite Element Methods: Elastic-Plastic Case Studies in FCC Polycrystals
  200. Application of Microstructure Sensitive Design to FCC Polycrystals
  201. Retention of the ‹001› Fiber Texture for Fe-Si Electric Motor Steels
  202. Finite element modeling of crystal plasticity with grains shaped as truncated octahedrons
  203. Strain-path effects on the evolution of microstructure and texture during the severe-plastic deformation of aluminum
  204. Procedures for construction of anisotropic elastic–plastic property closures for face-centered cubic polycrystals using first-order bounding relations
  205. On the elastic properties and mechanical damping of Ti3SiC2, Ti3GeC2, Ti3Si0.5Al0.5C2 and Ti2AlC in the 300–1573K temperature range
  206. Elastic properties closures using second-order homogenization theories: Case studies in composites of two isotropic constituents
  207. Spectral calibration of crystal plasticity models
  208. Solid particle erosion resistance of thermally sprayed functionally graded coatings for polymer matrix composites
  209. Incipient and regular kink bands in fully dense and 10vol.% porous Ti2AlC
  210. Sapphire: A kinking nonlinear elastic solid
  211. Macroscale constitutive modeling of kinking nonlinear elastic solids
  212. Compressive creep of fine and coarse-grained T3SiC2 in air in the 1100–1300°C temperature range
  213. A crystal plasticity finite element analysis of texture evolution in equal channel angular extrusion
  214. Microstructure Sensitive Design with First Order Homogenization Theories and Finite Element Codes
  215. Effects of temperature, strain rate and grain size on the compressive properties of Ti3SiC2
  216. Spectral methods for capturing crystallographic texture evolution during large plastic strains in metals
  217. Finite approximations to the second-order properties closure in single phase polycrystals
  218. Strain hardening due to deformation twinning in α-titanium: Constitutive relations and crystal-plasticity modeling
  219. Micro-Mechanical Finite Element Models for Crystal Plasticity
  220. A Crystal Plasticity Framework for Deformation Twinning
  221. Microscale modeling of kinking nonlinear elastic solids
  222. Dynamic Elastic Hysteretic Solids and Dislocations
  223. Adhesive/Cohesive Properties of Thermally Sprayed Functionally Graded Coatings for Polymer Matrix Composites
  224. Damage Mechanisms around Hardness Indentations in Ti3SiC2
  225. Microstructure Sensitive Design with First Order Homogenization Theories and Finite Element Codes
  226. Ambient- and High-Temperature Properties of Titanium Carbide-Titanium Boride Composites Fabricated by Transient Plastic Phase Processing
  227. Processing and Mechanical Properties of Ti3SiC2: II, Effect of Grain Size and Deformation Temperature
  228. Microstructure sensitive design of an orthotropic plate subjected to tensile load
  229. Detailed analyses of grain-scale plastic deformation in columnar polycrystalline aluminium using orientation image mapping and crystal plasticity models
  230. A quantitative evaluation of the deformation texture predictions for aluminium alloys from crystal plasticity finite element method
  231. Kinking Nonlinear Elastic Solids, Nanoindentations, and Geology
  232. Spherical Nanoindentations and Kink Bands in Ti3SiC2
  233. Texture evolution during equal channel angular extrusion
  234. Kink bands, nonlinear elasticity and nanoindentations in graphite
  235. DNET: The Drexel Nano Engineering Track.
  236. Erosion/Oxidation Resistant Coatings for High Temperature Polymer Composites
  237. How Do Polycrystalline Materials Deform Plastically?
  238. The role of crystallinity in the crystallographic texture evolution of polyethylenes during tensile deformation
  239. Strain hardening of titanium: role of deformation twinning
  240. Fracture properties of multiphase alloy MP35N
  241. Role of Deformation Twinning on Strain Hardening in Cubic and Hexagonal Polycrystalline Metals
  242. Fully reversible, dislocation-based compressive deformation of Ti3SiC2 to 1 GPa
  243. Plane strain fracture toughness of MP35N in aged and unaged conditions measured using modified CT specimens
  244. Quantitative prediction of textures in aluminium cold rolled to moderate strains
  245. Modeling the evolution of anisotropy in Al–Li alloys: application to Al–Li 2090-T8E41
  246. Materials Design by Spectral Methods
  247. A theoretical investigation of the influence of dislocation sheets on evolution of yield surfaces in single-phase B.C.C. polycrystals
  248. Strain hardening regimes and microstructure evolution during large strain compression of high purity titanium
  249. Comparison of two grain interaction models for polycrystal plasticity and deformation texture prediction
  250. Spectral Integration of Microstructure and Design
  251. Modelling Microstructure-Based Anisotropy in BCC Polycrystals during Changing Strain Paths
  252. The incorporation of dislocation sheets into a model for plastic deformation of b.c.c. polycrystals and its influence on r-values
  253. A disclination-based model for grain subdivision
  254. Influence of deformation path on the strain hardening behavior and microstructure evolution in low SFE FCC metals
  255. Microstructure-sensitive design of a compliant beam
  256. Modeling anisotropic strain hardening and deformation textures in low stacking fault energy fcc metals
  257. Editorial
  258. Evolution of grain-scale microstructure during large strain simple compression of polycrystalline aluminum with quasi-columnar grains: OIM measurements and numerical simulations
  259. Work-hardening/softening behaviour of b.c.c. polycrystals during changing strain paths: I. An integrated model based on substructure and texture evolution, and its prediction of the stress–strain behaviour of an IF steel during two-stage strain paths
  260. Crystallographic texture evolution in high-density polyethylene during uniaxial tension
  261. Swelling of crosslinked poly(methylmethacrylate‐acrylic acid) copolymers in serum and saline solutions
  262. Fixation strength of swellable bone anchors in low-density polyurethane foam
  263. Fixation strength of swellable bone anchors in low‐density polyurethane foam
  264. On the prediction of yield surfaces by the crystal plasticity models for fcc polycrystals
  265. Deformation texture transition in brass: critical role of micro-scale shear bands
  266. Biological and mechanical characteristics of the interface between a new swelling anchor and bone
  267. Swelling of crosslinked poly(methylmethacrylate-acrylic acid) copolymers in serum and saline solutions
  268. Evolution of Grain-Scale Microstructure during Large Strain Simple Compression of Polycrystalline Aluminium
  269. Influence of cold-work and aging heat treatment on strength and ductility of MP35N
  270. Influence of grain size and stacking-fault energy on deformation twinning in fcc metals
  271. On the accuracy of the predictions of texture evolution by the finite element technique for fcc polycrystals
  272. Incorporation of deformation twinning in crystal plasticity models
  273. Effect of water absorption on the izod impact energy of crosslinked poly(methyl methacrylate-acrylic acid) and their composites
  274. Determination of unknown stress states in silicon wafers using microlaser Raman spectroscopy
  275. Strain hardening regimes and microstructural evolution during large strain compression of low stacking fault energy fcc alloys that form deformation twins
  276. Synthesis of nickel aluminides by vacuum plasma spraying and exothermic in-situ reactions
  277. Synthesis and characterization of a poly(methyl methacrylate-acrylic acid) copolymer for bioimplant applications
  278. Development of self-anchoring bone implants. II. Bone-implant interface characteristicsin vitro
  279. Development of self-anchoring bone implants. I. Processing and material characterization
  280. Numerical evaluation of isostrain and weighted-average models for elastic moduli of three-dimensional composites
  281. Development of self‐anchoring bone implants. I. Processing and material characterization
  282. Microstructural Evolution during Transient Plastic Phase Processing of Titanium Carbide-Titanium Boride Composites
  283. The transient plastic phase processing of ceramic-ceramic composites
  284. The process of shear band formation in plane strain compression of fcc metals: Effects of crystallographic texture
  285. Macroscopic shape change and evolution of crystallographic texture in pre-textured FCC metals
  286. Large deformation simple compression of a copper single crystal
  287. An approximate procedure for predicting the evolution of crystallographic texture in bulk deformation processing of fcc metals
  288. Crystallographic texture evolution in bulk deformation processing of FCC metals
  289. A Unified Approach for Modeling CVD Processes
  290. Determination of Rate Controlling Step in CVD Processes with Gas Phase and Surface Reactions
  291. MSR acoustic vibrations due to the HP and LP tube bundle and cavity interactions using a bond graph model
  292. Analytical Model for the Low Pressure Chemical Vapor Deposition of SiO[sub 2] from Tetraethoxysilane
  293. Bond Graphs For Cvd Processes
  294. Contributions of Gas Phase Reactions to CVD Processes