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By Tatsuki Ohji, Mrityunjay Singh, Elizabeth Hoffman, Matthew Seabaugh, Gary Yang

With contributed papers from the 2011 fabrics technological know-how and Technology symposia, this can be a precious one-stop source for realizing crucial concerns in advances in fabrics technology for environmental and effort applied sciences. Logically geared up and punctiliously chosen, the articles hide the subjects of the symposia: eco-friendly applied sciences for fabrics production and Processing; fabrics technological know-how demanding situations for Nuclear functions; fabrics for Nuclear Waste Disposal and Environmental Cleanup; strength Conversion/Fuel Cells; and effort garage: fabrics, structures and purposes.

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Additional info for Advances in Materials Science for Environmental and Energy Technologies: Ceramic Transactions, Volume 236

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5. 5 to form white precipitate. The suspension of precursor aged for a while at 90 °C. After aging process, the precipitate was separated from the solution by a suction filtration with a membrane filter for 30 minutes and then was dried at room temperature 90 °C for 1 day. In order to investigate the effect of drying temperature, the precipitates after filtration and washing by ethanol dried at room temperature (RT) for 1 day. The sample after drying at RT was heated at 90 °C for 1 day. The crystal structure and morphology of the sample of each aging time were characterized by a powder X-ray diffraction (XRD, RINT 1000, Rigaku) and a field emission scanning electron microscope (FE-SEM, JSM-7600F, JEOL).

It is considered that cast specimens were constituted by larger area fraction of p-phase at the extrusion condition of 973 K. for 15 min compared with that of extrusion condition of 923 K for 3 min. This is due to the nucleation of fine a-phase from P-phase during cooling after the extrusion16, and the nucleated grain growth was inhibited by the pinning effect of the fine precipitation particles at the grain boundaries. 5Ti[EXT973K] Extrusion direction Figure 3. 5Ti[EXT973K] (c). 5Ti[EXT973K] Figure 4.

Umeda, and H. Atsumi, Develpment of Leadfree Machinable Brass with Bismuth and Grapite Particles by Powder Metallurgy Process, Mater. , 51, (2010) 855-859. I2 H. Mindivan, H. S. Kayali, Microstructures and wear properties of brass synchroniser rings, Wear, 254, (2003) 532-537. 1 M. sundberg, R. sundberg, S. Hogmark, R. Otterbergc , B. Lehtinenc, S. E. Hgrnstrgm and S. E. Karlsson, Metallographic aspects on wear of special brass, Wear, 115, (1987) 151 - 165. I4 C. P. Davim, D. Soares, F. Castro, and J.

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