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With contributed papers from the 2011 fabrics technological know-how and Technology symposia, this can be a invaluable one-stop source for realizing crucial concerns in advances in fabrics technological know-how for environmental and effort applied sciences. Logically equipped and thoroughly chosen, the articles disguise the topics 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 resources for Advances in Materials Science for Environmental and Energy Technologies: Ceramic Transactions, Volume 236
A trade-off balance between hardness and machinability was reported in the previous literatures14'5. In the present study, new high strength and lead-free machinable a-p duplex brass alloys dispersed with Bi particles were produced by casting process, and extruded consequently. The effects of Bi dispersoids on mechanical properties and machinability of the extruded specimens were investigated. 47 The Characteristics of High Strength and Lead-Free Machinable a-p Duplex Phase MATERIALS AND METHODS Brass alloys were prepared by casting process.
These brittle fractured surface areas were identified as Bi particles by SEM-EDS analysis. Since Bi particles were soft but brittle materials, the elongation of extruded specimens was decreased these coarse Bi particles. 85mass%Bi) Extrusion directiorrC 1> Figure 1. 85 mass% Bi (d). 85mass%Bi) Figure 2. Grain distribution of a-(3 duplex phase structures on EXT1 (a), EXT2 (b), EXT3 (c), and EXT4 (d) acquired by EBSD analysis. 85 Bi I 5 Bi content (mass%) Figure 3. 85 mass% Bi. without Bi Figure 4.
5TirEXT973Kl Figure 5. 5Ti[EXT973K] (b). 5Ti ternary alloys which were solid solutionized and then extruded were investigated. 5 um in diameter. Particularly, a-phase consisted of fine grains due to the pining effect by the fine precipitation at the grain boundaries. The tensile test results indicated YS: 304 Advances in Materials Science for Environmental and Energy Technologies • 45 Microstructural and Mechanical Properties of the Extruded a-p Duplex Phase MPa, UTS: 543 MPa and 44 % elongation.