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5 edition of Meso-structure in materials: Characterization, modelling, influence on properties found in the catalog.

Meso-structure in materials: Characterization, modelling, influence on properties

Meso-structure in materials: Characterization, modelling, influence on properties

Sapporo (Japan), September 7-9, 1997 (Annales de physique)

  • 117 Want to read
  • 27 Currently reading

Published by Les Editions de Physique .
Written in English


The Physical Object
FormatUnknown Binding
Number of Pages181
ID Numbers
Open LibraryOL8985684M
ISBN 102868833187
ISBN 109782868833181
OCLC/WorldCa38087751

Future work will focus on deeper knowledge about how these surfaces different material- and surface properties correlate to the participants responses regarding perceived quality of a car interior design. The development of a new non-contact measurement is also discussed, enabling the possibility to complement and improve the hard metrology set up. Materials and Design publishes original research reports, review articles and express communications covering the studies of structure and properties of inorganic and organic materials, advances in synthesis, processing, characterisation and testing, design of materials and engineering systems, and applications in technology. The journal is.

These material parameters can be found in literature or are given by companies. The analytical expressions are based on these parameters and test results will be referenced to the material properties of the solid polymeric material. Factors such as strain-rate and specimen size will influence the material behaviour of polymer foams too. The objective of this work was to investigate the effect of sodium caseinate concentration on physical-chemical properties of coating solutions and films obtained by casting as a starting point for the development of an active coating for minimally processed fruits or vegetables. Sodium caseinate solutions at different concentrations (4%, 8%, 10%, 12%, 14%) were used as a coating system. The.

Revue des Composites et des Matériaux Avancés-Journal of Composite and Advanced Materials (RCMA) is a top-rated international journal on topics concerning materials and their developments in the industrial world. Published since , the journal has always focused on the materials and their evolution regarding to their potential applications.   The heterogeneous internal structure of quasi-brittle materials governs several aspects of their behavior, especially in the nonlinear range. Size and spacing of weak spots (e.g., aggregate-matrix interfaces, flaws, and slip planes) where failure is likely to occur are two of the most important material characteristic lengths that can be used to characterize the micro- and meso-structure of.


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Meso-structure in materials: Characterization, modelling, influence on properties Download PDF EPUB FB2

Aside from the properties of polymer-based materials, the scaffold's meso-structure controls its elasticity at the organ length-scale. This study investigated the effect of the meso-structure on scaffolds' mechanical and transport properties using finite element analysis (FEA) and computational fluid dynamics (CFD).Author: Hailong Liu, Astrid Ahlinder, Mohammed A.

Yassin, Anna Finne-Wistrand, T. Christian Gasser. Get this from a library. Meso-structure in materials: characterization, modelling, influence on properties: Sapporo (Japan), September[Omourtague Dimitrov;].

Read the latest articles of Materials Characterization atElsevier’s leading platform of peer-reviewed scholarly literature. In this study, the goal was to focus on the influence of the geometric properties of the meso-structure.

Therefore, after tests to determine the mechanical parameters for each component, the average of each measurement was employed in the numerical model. (1) Mechanical properties of the aggregateAuthor: Xu Yang, Shuo Ma, Hongzhe Dai.

The material structure, obtained by this process, is called the mesostructure, and it has been found in several studies that it has a major influence on the resulting mechanical properties of the.

In addition to the mechanical properties of components, the geometric form of the concrete meso-structure can influence its mechanical behavior. Characterizing the geometric form of the concrete meso-structure and its influence on the macro behavior is important, but understudied, cause for concern.

The micro-/meso-structure of concrete is closely related to its corresponding mechanical properties. Based on a particle packing model, the micro-/meso-structure of concrete can be modelling. Additionally, the influence of the lattice on the results was investigated. In the present study, the size of lattice elements and their spatial arrangement was chosen independently of the material meso-structure.

Of course, the lattice elements must be sufficiently small to be able to represent the discretely modelled aggregates. Influence of the macro-porosity and the meso-structure on the dynamic properties of concrete F.

Gatuingt & S. Pierre. A volumetric upgrade of scalar gradient damage model J. Pamin, A. Wosatko & R. Desmorat. Nano-scale characterization of elastic properties of AFt and AFm phases of hydrated cement paste S. Hajilar & B. Shafei. Modeling and simulation is transforming modern materials science, becoming an important tool for the discovery of new materials and material phenomena, for gaining insight into the processes that govern materials behavior, and, increasingly, for quantitative predictions that can be used as part of a design tool in full partnership with experimental synthesis and characterization.

Rapid characterization of titanium microstructural features for specific modelling of mechanical properties T Searles 1, J Tiley 2, A Tanner 1, R Williams 1, B Rollins 1, E Lee 1, S Kar 1, R Banerjee 1 and H L Fraser 1.

At the outset, I need to clarify that by modeling I mean the analytical representation of material behavior, primarily for use in predictive analysis (simulation). Here are some reasons why this is a challenging endeavor for 3D printed cellular solids – some of these reasons are unique to 3D printing, others are a result of aspects that are.

The laser energy density (ED) is often utilized in many additive manufacturing (AM) processes studies to help researchers to further investigate the process-structure-property correlations of Ti6Al4V alloys. However, the reliability of the ED is still questionable. In this work, a specific empirical calculation equation of the effective laser energy (Ee), which is a dimensionless parameter in.

Towards this end, the nanoscale structure and elastic properties of a model composite system of aligned multi-walled carbon nanotubes embedded in a polystyrene matrix were characterized, and a micromechanical approach for modelling of short fibre composites was modified to account for the structure of the nanotube reinforcement to predict the.

Domingo-Espin et al. [7], Croccolo et al. [8] and Galeja et al. [9] studied the tensile properties of PC and ABS parts when varying the layer orientation, raster angle, and number of contours.

5th Japan-France Materials Science Seminar on Meso-Structure in Materials: Characterization, Modelling, Influence on Properties - JFMSS By D Balvette, O Dimitrov, N Igata and H Takahashi.

Topics: Nonlinear Systems. Year: OAI identifier: oai: This paper is an attempt to review and summarize the current status of the research of the thermal properties of graphene and other 2D based materials including the manufacturing and characterization techniques and their applications, especially in electronics and power modules.

The pyrolysis of solid polymeric materials is a complex process that involves both chemical and physical phenomena such as phase transitions, chemical reactions, heat transfer, and mass transport of gaseous components.

For modeling purposes, it is important to characterize and to quantify the properties driving those phenomena, especially in the case of flame-retarded materials. Extensive experimental characterization of FFF structures has been carried out, however the properties measured with this approach cannot be readily used to model real printed structures.

Instead, the approach that is recommended is the one characterizing the properties of the representative volume along with boundary conditions that best. The material model consists basically of a nonconvex visco-elastic stress strain-relation, and has to be considered as a microscale-model.

The material parameters are adopted to {10 ¯. In this work, the relationship between cellulose crystallinity, the influence of extractive content on lignocellulosic fiber degradation, the correlation between chemical composition and the physical properties of ten types of natural fibers were investigated by FTIR spectroscopy, X-ray diffraction and thermogravimetry techniques.

The results showed that higher extractive contents associated.Book Description. Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications comprises papers that were presented at SEMCthe Seventh International Conference on Structural Engineering, Mechanics and Computation, held in Cape Town, South Africa, from 2 to 4 September The subject matter reflects the broad scope of SEMC conferences, and.influence a wide range of material properties including, for example, reaction and dissolution rates, how easily ingredients flow and mix, or compressibility and abrasivity.

From a manufacturing and development perspective, some of the most important physical properties to measure are: • particle size • particle shape • surface properties.