Department of Materials, ETH Zurich, CH8093 Zurich, Switzerland (Received 31 January 2013; accepted 3 April 2013) The mechanical properties of porous ceramics are greatly inﬂuenced by their microstructure. Therefore, mechanical behavior of highly porous ceramics is different from that of .
Porous materials are now widely used in noise control for their acoustic properties in sound absorption and transmission. These properties are function of the internal porous medium structure. Generally, most of the models assume that the porous medium is isotropic. Mineral wools (as well as some foams) clearly present an anisotropic structure.
Mechanical properties of porous and fully dense lowκ dielectric thin films measured by means of nanoindentation and the planestrain bulge test technique Volume 21 Issue 2 Y. Xiang, X. Chen, Tsui, JI. Jang, Vlassak
compared with the intrinsic contact angle. This also holds. for contact angles in porous media, as shown, for example, by Morrow [1975, 1976]. Morrow used PTFE (polytetra. fluoroethylene) as a test material, from which both smooth. plates and rough capillaries, as well as a porous medium, were prepared.
The Journal of Porous Materials is an interdisciplinary and international periodical devoted to all types of porous materials. Its aim is the rapid publication of high quality, peerreviewed papers focused on the synthesis, processing, characterization and property evaluation of all porous materials.
Porous silicon and its combination with a variety of filling materials leads to nanocomposites with specific physical properties caused by the nanometric size and give rise to a multiplicity of potential applications in spintronics, magnetic and magnetooptic devices, nutritional food additives as well as drug delivery.
NASA/TM— 7. Foams are an example of a porous material used as acoustic absorbers. Foams are solid materials with a large number of gas bubbles trapped throughout the volume. The foam density depends upon the porosity, the skeletal density of the solid matrix material, and the density of the gas in the pores.
Materials Journals, Journal of Advanced Materials, Biotechnology Biomaterials, Microporous and Mesoporous Materials, Microporous Materials,Journal of Porous Materials, Advances in Nanoporous Materials.
Porous plastics retain most of the physical properties of their solid counterparts, but also offer a unique set of properties. The unique "tortuous filtration path" of the material produces high filtration efficiency combining the properties of both surface and depth filters.
Porous materials (such as zeolites, clay minerals, and assemblies of oxide nanoparticles) are of great importance in many technological and environmental processes, such as catalysis, adsorption, separation and ion exchange, because of their unique pore topologies, tunable structures, and the possibility to introduce active reaction sites.
5/19/2017:Gennady Gor gave an oral presentation "Elastic Properties of Confined Fluids and their Application for Characterization of Porous Materials" at the XI International Conference on Characterization of Porous Solids in Avignon. Two other contributions based on the collaborative work of Dr. Gor with ZAE Bayern (Germany) were presented at ...
Hygric properties of porous building materials (II): Analysis of temperature influence Many aspects of the built environment can benefit from the insight into hygrothermal performances, be it the level of indoor air quality [1–3], the service life of building components [4,5], or the energy efficiency of buildings [6,7] .
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Advantages of Porous Plastic Materials. Chemically Resistant to most acids, bases, solvents and hydrocarbons Excellent Corrosion Resistance High Purity FDA/USDA approved resins High Strength, Light Weight friendly to assembly requirements Dual Filtration Capabilities acts as both a surface and depth filter Hydrophilic, Hydrophobic, or SelfSealing Properties.
FoamX: Acoustic property identification of porous materials OVERVIEW Defining the acoustic properties of porous noise control treatments is a critical part of the acoustical design process in a simulation software.
ADVANCED POROUS MATERIALS (APM) is an international peerreviewed journal that publishes research activities on the fundamental aspects, synthesis, advanced characterization, structural properties, and multiple applications of all kinds of novel micro, meso, nano and macroporous materials. APM also offers unique opportunity to report the energy and environmental related .