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    • 2. 发明授权
    • Method of drawing a glass clad multi core lead telluride wire
    • 拉制玻璃包芯多芯导线碲化物线的方法
    • US07530239B2
    • 2009-05-12
    • US11777112
    • 2007-07-12
    • Biprodas DuttaIan L. PeggRobert K. MohrJugdersuren Battogtokh
    • Biprodas DuttaIan L. PeggRobert K. MohrJugdersuren Battogtokh
    • C03C14/00C03B37/02H01L35/16H01L35/14
    • H01L35/34H01L35/16H01L35/32
    • The present invention provides a method of drawing nanowires, comprising sealing off one end of a glass tube such that the tube has an open end and a closed end, introducing a nanowire material inside the glass tube and evacuating the tube by attaching the open end to a vacuum pump, heating a portion of the glass tube such that the glass partially melts under the vacuum such that the partially melted glass tube provides an ampoule containing the nanowire material to be used in a first drawing operation, introducing the ampoule containing the nanowire material into a heating device, increasing the temperature within the heating device such that the glass tube melts just enough for it to be drawn and drawing fibers of glass clad nanowire material. The invention further provides a method for bunching together such fibers and redrawing them one or more times to produce arrays of nanowires clad in glass.
    • 本发明提供了一种拉制纳米线的方法,包括密封玻璃管的一端,使得管具有开口端和封闭端,将纳米线材料引入玻璃管内部,并通过将开口端附接到 真空泵,加热玻璃管的一部分,使得玻璃在真空下部分熔融,使得部分熔融的玻璃管提供含有用于第一次拉伸操作的纳米线材料的安瓿,引入含有纳米线材料的安瓿 进入加热装置,增加加热装置内的温度,使得玻璃管恰好足够熔化以便拉伸和拉伸玻璃包覆纳米线材料的纤维。 本发明还提供了一种将这种纤维聚束在一起并重新绘制一次或多次以产生玻璃包覆的纳米线阵列的方法。
    • 3. 发明授权
    • Methods of drawing high density nanowire arrays in a glassy matrix
    • 在玻璃基质中绘制高密度纳米线阵列的方法
    • US07559215B2
    • 2009-07-14
    • US11299283
    • 2005-12-09
    • Biprodas DuttaIan L. PeggRobert K. MohrJugdersuren Battogtokh
    • Biprodas DuttaIan L. PeggRobert K. MohrJugdersuren Battogtokh
    • C03C14/00C03B37/02H01L35/16H01L35/14
    • H01L35/34H01L35/16H01L35/32
    • The present invention provides a method of drawing a thermoelectrically active material in a glass cladding, comprising sealing off one end of a glass tube such that the tube has an open end and a closed end, introducing the thermoelectrically active material inside the glass tube and evacuating the tube by attaching the open end to a vacuum pump, heating a portion of the glass tube such that the glass partially melts and collapses under the vacuum such that the partially melted glass tube provides an ampoule containing the thermoelectric material to be used in a first drawing operation, introducing the ampoule containing the thermoelectric material into a heating device, increasing the temperature within the heating device such that the glass tube melts just enough for it to be drawn and drawing fibers of glass clad thermoelectrically active material. The invention further provides a method for bunching together such fibers and re-drawing them one or more times to produce arrays of thermoelectric nanowires clad in glass.
    • 本发明提供了一种在玻璃包层中拉制热电活性材料的方法,包括密封玻璃管的一端,使得管具有开口端和封闭端,将热电活性材料引入玻璃管内并抽空 通过将开口端附接到真空泵,加热玻璃管的一部分,使得玻璃在真空下部分熔融和塌陷,使得部分熔融的玻璃管提供包含要在第一个中使用的热电材料的安瓿 将包含热电材料的安瓿引入加热装置中,增加加热装置内的温度,使得玻璃管刚刚熔化以使其被拉伸并拉伸玻璃包覆的热电活性材料的纤维。 本发明还提供了一种将这种纤维聚束在一起并重新绘制一次或多次以产生玻璃包覆的热电纳米线阵列的方法。
    • 4. 发明授权
    • Methods of drawing wire arrays
    • 绘制线阵列的方法
    • US08658880B2
    • 2014-02-25
    • US12457517
    • 2009-06-12
    • Biprodas DuttaIan L. PeggSezhian AnnamalaiRudra P. BhattaJugdersuren Battogtokh
    • Biprodas DuttaIan L. PeggSezhian AnnamalaiRudra P. BhattaJugdersuren Battogtokh
    • H01L35/34
    • H01L35/16B21C1/003B21C37/042B21C37/047H01L35/26
    • A method of drawing a glass clad wire is provided herein, the method comprising: (i) sealing off one end of a glass tube such that the tube has an open end and a closed end; (ii) introducing a wire material inside the glass tube; (iii) heating a portion of the glass tube such that the glass partially melts to form a first ampoule containing the wire material to be used in a drawing operation; (iv) introducing the first ampoule containing the wire material into a heating device; (v) increasing the temperature within the heating device such that the glass tube is heated enough for it to be drawn and wire material melts; and (vi) drawing the glass clad wire comprising a continuous wire of wire material, wherein the wire material is a metal, semi-metal, alloy, or semiconductor thermoelectrically active material, and wherein the wire diameter is equal to or smaller than about 5 μm.
    • 本文提供了一种拉制玻璃包层线的方法,该方法包括:(i)密封玻璃管的一端,使得管具有开口端和封闭端; (ii)将线材引入玻璃管内; (iii)加热玻璃管的一部分,使得玻璃部分熔融以形成包含用于拉丝操作的线材的第一安瓶; (iv)将含有线材的第一安瓶引入加热装置; (v)增加加热装置内的温度,使得玻璃管被加热到足以使其拉丝,线材熔化; 和(vi)拉制包括线材的连续线的玻璃包层线,其中所述线材是金属,半金属,合金或半导体热电活性材料,并且其中所述线直径等于或小于约5 妈妈
    • 10. 发明申请
    • LOW-TEMPERATURE SOLIDIFICATION OF RADIOACTIVE AND HAZARDOUS WASTES
    • 放射性和危险废物的低温固化
    • US20110104792A1
    • 2011-05-05
    • US12954249
    • 2010-11-24
    • Weiliang GongWerner LutzeIan L. Pegg
    • Weiliang GongWerner LutzeIan L. Pegg
    • G21F9/16G21F9/18
    • G21F9/304C04B28/006C04B28/008C04B28/08G21F9/16Y02P40/165Y02W30/91Y02W30/92Y02W30/94C04B18/0463C04B18/08C04B22/062C04B14/106C04B18/146
    • Treatment of a radioactive waste stream is provided by adding sodium hydroxide (NaOH) and/or potassium hydroxide (KOH) together with a rapidly dissolving form of silica, e.g., fumed silica or fly ash. Alternatively, the fumed silica can be first dissolved in a NaOH/KOH solution, which is then combined with the waste solution. Adding a binder that can be a mixture of metakaolin (Al2O3.2SiO2), ground blast furnace slag, fly ash, or other additives. Adding an “enhancer” that can be composed of a group of additives that are used to further enhance the immobilization of heavy metals and key radionuclides such as 99Tc and 129I. An additional step can involve simple mixing of the binder with the activator and enhancer, which can occur in the final waste form container, or in a mixing vessel prior to pumping into the final waste form container, depending on the particular application.
    • 通过将氢氧化钠(NaOH)和/或氢氧化钾(KOH)与快速溶解形式的二氧化硅(例如热解法二氧化硅或飞灰)一起加入来提供放射性废物流的处理。 或者,可以将热解法二氧化硅溶解在NaOH / KOH溶液中,然后将其与废溶液组合。 添加可以是偏高岭土(Al2O3.2SiO2),高炉渣,粉煤灰或其他添加剂的混合物的粘合剂。 添加可以由用于进一步增强重金属和关键放射性核素如99Tc和129I的固定化的一组添加剂组成的“增强剂”。 根据具体应用,另外的步骤可以包括将粘合剂与活化剂和增强剂简单混合,活化剂和增强剂可以在最终废物形式的容器中发生,或者在泵入最终废物形式的容器之前在混合容器中。