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Processing/structure/properties

Wallenberger, F. T., et al., Advanced Inorganic Fibers Processes, Structures, Properties, Applications, Kluwer, 1999. [Pg.670]

Let us first review some of the important characteristics of metals, in particular, the ones that allow metals and their alloys to be drawn into fine filaments, and then describe the processing, structure, properties and applications of some important metallic filaments. Readers already familiar with the basic attributes of metals may turn directly to Section 5.2. [Pg.108]

H. S. Chu, Processing-Structure-Property Relations for High Performance Amine-Cured Epoxy Polymers, M. S. Thesis, Department of Chemical Engineering, University of Washington, Seattle, Washington, (1980). [Pg.112]

Commercial polyolefins often contain additives such as colorants, flame retardants, antioxidants, light stabilizers, nucleating agents, antistatic agents, lubricants (microcrystalline waxes, hydrocarbon waxes, stearic acid, and metal stearates), and so on. These additives aid the processing and fabrication of products from polyolefins. Detailed treatments about specific polyolefins, polymerization systems/ mechanism/processes, structures, properties, processing, and applications may be found in References 2-9. [Pg.8]

J. Yan, M.A. Sutton, and A.P. Reynolds, Process-Structure-Property Relationships for Nugget and Heat Affected Zone Regions of AA2524-T351 Friction Stir Welds, Sci. Technol. Weld. Join., Vol 10 (No. 6), 2005, p 725-736... [Pg.32]

The detailed proof of this conceptual model is difficult experimentally, although it is generally supported by the existing experimental data and melt spinning process model. The overall veracity of the model is less important than the utility of the model in predicting process-structure-property relationships. Important implications of the model are as follows ... [Pg.10]

COUPLING OF DSC AND DYNAMIC MECHANICAL EXPERIMENTS FOR PROBING PROCESSING-STRUCTURE-PROPERTY RELATIONSHIPS OF CATALYST MODIFIED HIGH PERFORMANCE EPOXY MATRICES... [Pg.1]

Molecular structure, as imparted by processing, has a significant influence on the physical properties of extruded products. This is known as a process/structure/property relationship. In the case of blown film, the extruder conditions and the bubble geometry influence the molecular structure, which then affects film performance. [Pg.94]

Generalizations can be made about process/structure/property relationships that are helpful to the blown film processor. That is, we can describe in general the properties that... [Pg.95]

Advanced inorganic fibers processes-structures-properties-applications/ contributors, Frederick T.Wallenberger... [et al.] editor, Frederick T. Wallenberger. p. cm. — (Materials technology series)... [Pg.351]

The three most important aspects to be characterized in fibre reinforced compounds are fibre aspect ratio, 1/d, fibre orientation and fibre-matrix adhesion, (1/d). An experimental difficulty in studying the processing-structure-properties relationships in these materials is the strongly coupled interrelations of interfaces and processing on the microstructure. [Pg.412]

Xanthos, M. and Wu,. (2004) Microporous films from polymer blends and composites - processing/structure/ property relationships. Proceedings of the 62nd SPE ANTEC, vol. 50, p. 2641. [Pg.306]

B. Patham, P.H. Foss, Thermoplastic vibration welding review of process phenomenology and processing-structure-property interrelationships. Polymer Engineering and Science 51 (1) (2011) 1-22. [Pg.52]

Chow, W S, Process-structure-property relationships in poly(biitylene teiephthalate) nanocomposites. Manufacturing of Nanocomposites with Engineering Plastics, Elsevier, 2015, pp. 225-54. [Pg.142]

Process-structure-property relationships in textiles. E -environment parameters, P - process, F - fibre properties, S - material structure, M - material properties. [Pg.4]

Optimization of performance characteristics of textile products and processes is often the final stage in the engineering design where the results of experimental and theoretical modeUmg are combined in order to achieve the best possible combination of properties. In many cases this also includes consideration of economic and logistic aspects. It can be seen from the sections above that the process-structure-property system is governed by complex multi-factor relationships. In these conditions, the optimization problem can be formulated as a problem of finding a combination of independent factors X (optimal point) that provide an extremum... [Pg.55]

Akay, M. and Barkley, D. (1985) Processing-structure-property interaction in injection molded glass-fiber-reinforced polypropylene. Composite Structures, 3, 269-293. [Pg.881]


See other pages where Processing/structure/properties is mentioned: [Pg.2]    [Pg.78]    [Pg.3]    [Pg.211]    [Pg.155]    [Pg.174]    [Pg.198]    [Pg.209]    [Pg.212]    [Pg.282]    [Pg.2]    [Pg.32]    [Pg.80]    [Pg.120]    [Pg.1]    [Pg.1]    [Pg.89]    [Pg.94]    [Pg.95]    [Pg.348]    [Pg.350]    [Pg.489]    [Pg.192]    [Pg.1148]    [Pg.19]    [Pg.39]    [Pg.703]    [Pg.6]   


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Approaches to modelling geometry, structure, properties and processes

Elaboration process and structural properties

Molding processes structure-property relations

Performance Processing/ structure/properties

Process design structure-property functions

Process structure

Processing properties

Processing structural component properties

Processing structure and properties

Processing/structure/properties glass-ceramics

Processing/structure/properties introduction

Processing/structure/properties performance correlations

Processing/structure/properties polymer fibers

Processing/structure/properties silicon semiconductors

Processing/structure/properties steels

Processing/structure/properties summary

Properties processes

Relation between Morphology Structure, Processing, and Properties

Structure and Properties on the Polishing Process

Structure property processing relationship

Structure-property relationships process illustration

Structure-property relationships processes

Thermoplastic polymers in biomedical applications structures, properties and processing

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