34 research outputs found

    Edge-defined contact heater apparatus and method for floating zone crystal growth

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    An apparatus for growing a monocrystalline body (30) from a polycrystalline feed rod (22) includes a heater (20) that is positioned to heat a short section of the polycrystalline rod (22) to create a molten zone (34). The heater (20) is formed to include a shaper (40) that contacts the polycrystalline rod (22) in the molten zone (34) and has a hole (46) to allow flow in the molten zone (34) between the polycrystalline rod (22) side and the monocrystalline body (30) side of the shaper. The shaper (40) has an edge (42) that defines the boundary of the cross-section of the monocrystalline body (30) that is formed as the molten material solidifies

    Thermocapillary Convection in Floating Zones Under Simulated Reduced-Gravity Conditions

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    Thermocapillary convection in a transparent floating zone is studied. Equations are derived to relate the optical distortions caused by the floating zone to its refractive index and free-surface shape. Computer simulation and flow visualization of thermocapillary convection are conducted

    Contactless heater floating zone refining and crystal growth

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    Floating zone refining or crystal growth is carried out by providing rapid relative rotation of a feed rod and finish rod while providing heat to the junction between the two rods so that significant forced convection occurs in the melt zone between the two rods. The forced convection distributes heat in the melt zone to allow the rods to be melted through with a much shorter melt zone length than possible utilizing conventional floating zone processes. One of the rods can be rotated with respect to the other, or both rods can be counter-rotated, with typical relative rotational speeds of the rods ranging from 200 revolutions per minute (RPM) to 400 RPM or greater. Zone refining or crystal growth is carried out by traversing the melt zone through the feed rod

    Macrosegregation in electroslag remelted ingots

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    Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 1978.MICROFICHE COPY AVAILABLE IN ARCHIVES AND SCIENCE.Vita.Includes bibliographical references.by Sindo Kou.Ph.D

    Thermocapillary convection in floating zones under simulated reduced-gravity conditions

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    The present study demonstrated that calculated thermocapillary convection in a non-cylindrical floating zone can now be compared with measured one, by considering the lens effect of the floating zone. Flow visualization and computer simulation of thermocapillary convection in a silicone oil zone and a molten zone in an NaNO3 rod were conducted. The calculated results agree very well with the measured ones, including the free surface shapes, the solid/melt interface shapes and the velocity fields

    Thermocapillary Convection in a Low Pr Material Under Simulated Reduced-Gravity Conditions

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    A liquid bridge of tin was held between two vertical coaxial iron rods 4.5 mm in diameter and 4.6 mm apart. The temperatures at the top and bottom of the liquid bridge were 325 and 240 degrees, respectively. Flow oscillation was detected by a thermocouple in the liquid bridge. The amplitude and frequency of oscillation were around 1.3 degrees C and 5 Hz, respectively

    Welding metallurgy/ Kou

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    xii, 410 hal.; ill.; 24 cm

    Welding metallurgy/ Kou

    No full text
    xii, 410 hal.; ill.; 24 cm

    Welding metallurgy/ Kou

    No full text
    xii, 410 hal.; ill.; 24 cm
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