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Materials and Design, ISSN 0264-1275, 2009, Volume 30, Issue 3, pp. 469 - 474
Al–Si alloy and pure titanium were lap joined using friction stir welding technology. Microstructure and tensile properties of joints were examined. The... 
Non-ferrous metals and alloys (A) | Welding (D) | INTERLAYER GROWTH | EVOLUTION | Welding | MATERIALS SCIENCE, MULTIDISCIPLINARY | Non-ferrous metals and alloys | ELEMENTAL POWDER-METALLURGY | TI-6AL-4V | HEAT-TREATMENT | PURE TITANIUM | JOINT | IN-SITU | Mechanical properties | Nonferrous alloys | Nonferrous metals | Alloys
Journal Article
Materials and Design, ISSN 0264-1275, 2010, Volume 31, Issue 2, pp. 816 - 828
Journal Article
Materials and Design, ISSN 0264-1275, 05/2012, Volume 37, pp. 56 - 63
► Microstructure evolution of sub-critical annealed laser deposited Ti–6Al–4V. ► Unique bi-modal microstructure is obtained by sub-critical annealing. ►We... 
Lasers | Heat treatments | Non-ferrous metals and alloys | TI-6.5AL-3.5MO-1.5ZR-0.3SI ALLOY | HOT COMPRESSION | TEMPERATURE | MATERIALS SCIENCE, MULTIDISCIPLINARY | HEAT-TREATMENT | TITANIUM-ALLOY | MECHANICAL-PROPERTIES | Nonferrous alloys | Nonferrous metals | Production processes | Alloys
Journal Article
Materials and Design, ISSN 0264-1275, 08/2012, Volume 39, pp. 404 - 409
► The deformation and aging behaviors of a Cu–Cr–Zr–Mg–Si alloy were investigated. ► A faster and larger increase in resistivity is found during deformation... 
C. Heat treatments | E. Electrical | A. Non-ferrous metals and alloys | HIGH-STRENGTH | MATERIALS SCIENCE, MULTIDISCIPLINARY | Non-ferrous metals and alloys | ELECTRICAL-CONDUCTIVITY | COPPER | Heat treatments | MECHANICAL-PROPERTIES | COMPOSITE | PRECIPITATION | SYSTEM ALLOYS | Electrical | COLD-WORKING | MICROSTRUCTURE | Nonferrous alloys | Nonferrous metals | Alloys | Electric properties
Journal Article
Materials and Design, ISSN 0264-1275, 03/2013, Volume 45, pp. 206 - 211
Journal Article
Materials and Design, ISSN 0264-1275, 12/2012, Volume 42, pp. 13 - 20
► A substantial increase in porosity and mean pore size with addition of NH HCO . ► Porous structure of alloy with 25 wt.% NH HCO were similar to this of human... 
Mechanical properties | Surface modification | Non-ferrous metals and alloys | ALKALI | MATERIALS SCIENCE, MULTIDISCIPLINARY | HEAT-TREATMENT | TITANIUM | TI-MO ALLOYS | CORROSION-RESISTANCE | METALS | ABILITY | BIOMEDICAL APPLICATIONS | FABRICATION | LAYER | Phosphate minerals | Nonferrous alloys | Nonferrous metals | Phosphate rock | Alloys | Porosity
Journal Article
Materials and Design, ISSN 0264-1275, 2012, Volume 34, pp. 509 - 515
► Microstructure of TC4-DT alloy consists of primary α and the lamellar (α + β) structures. ► A martensite basketweave microstructure was formed in the FZ. ►... 
Welding | Metallography | Non-ferrous metals and alloys | GAS TUNGSTEN ARC | EVOLUTION | MATERIALS SCIENCE, MULTIDISCIPLINARY | TI-6AL-4V | HEAT-TREATMENT | TITANIUM | Mechanical properties | Nonferrous alloys | Nonferrous metals | Analysis | Alloys | Welded joints | Lamellar structure | Electron beam welding | Phases | Heat affected zone | Base metal | Microstructure | Microhardness | Titanium base alloys
Journal Article
2006, 3rd ed., McGraw-Hill handbooks, ISBN 9780071457873, xvi, 1006
Book
Wear, ISSN 0043-1648, 05/2014, Volume 313, Issue 1-2, pp. 106 - 116
Journal Article
Materials and Design, ISSN 0264-1275, 04/2011, Volume 32, Issue 4, pp. 2130 - 2142
Journal Article
Materials and Design, ISSN 0264-1275, 2011, Volume 32, Issue 7, pp. 3900 - 3910
► Both the alloy toughness and fracture behavior are influenced by some parameters. ► Heat treatment or controlling Mg content can enhance alloy impact... 
E. Mechanical | A. Non-ferrous metals and alloys | G. Fractography | FRACTURE CHARACTERISTICS | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | Non-ferrous metals and alloys | Mechanical | TENSILE | Fractography | Nonferrous alloys | Nonferrous metals | Alloys | Heat treatment | Fracture mechanics | Cooling rate | Impact strength | Magnesium | Crashworthiness | Fracture toughness
Journal Article
15.