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    • 1. 发明授权
    • Molten glass discharging device
    • 熔融玻璃放电装置
    • US09212077B2
    • 2015-12-15
    • US13884052
    • 2012-02-15
    • Deuk Man KimSeok Mo ChoiHyun Jun JoHyun Je ChoSeung Chul ParkCheon Woo KimTae Won Hwang
    • Deuk Man KimSeok Mo ChoiHyun Jun JoHyun Je ChoSeung Chul ParkCheon Woo KimTae Won Hwang
    • C03B5/26C03B5/00G21F9/30
    • C03B5/26C03B5/005G21F9/305Y02P40/52
    • A molten glass discharging device provided in the bottom of a melting furnace of a waste vitrification apparatus so that the device can control the melting or cooling of a molten material. The molten glass discharging device, which is provided in the bottom of the furnace and controls discharging of a molten material, includes: an induction heating unit (110) having a discharging passage (10) along a discharging port formed in the bottom of the melting furnace; an induction coil (120) provided outside the induction heating unit (110); and a cooling unit (130) supporting the induction heating unit (110) and having a cooling conduit through which a cooling fluid circulates. The device can realize repeated discharging of the molten material by induction heating or cooling of the induction heating unit. Further, even when glass is adhered to the discharging port, the adhered glass can be easily discharged from the furnace.
    • 一种设置在废玻璃化装置的熔炉的底部的熔融玻璃排放装置,使得该装置能够控制熔融材料的熔化或冷却。 设置在炉底部并控制熔融材料排出的熔融玻璃排放装置包括:感应加热单元(110),其具有沿着形成在熔化底部的排出口的排出通道(10) 炉; 设置在感应加热单元(110)外部的感应线圈(120); 以及支撑所述感应加热单元(110)并具有冷却管道的冷却单元(130),冷却流体通过所述冷却导管循环。 该装置可以通过感应加热或感应加热单元的冷却来实现熔融材料的重复排放。 此外,即使当玻璃粘附到排出口时,粘附的玻璃也可以容易地从炉排出。
    • 5. 发明申请
    • MOLTEN GLASS DISCHARGING DEVICE
    • 玻璃放电装置
    • US20130283862A1
    • 2013-10-31
    • US13884052
    • 2012-02-15
    • Deuk Man KimSeok Mo ChoiHyun Jun JoHyun Je ChoSeung Chul ParkCheon Woo KimTae Won Hwang
    • Deuk Man KimSeok Mo ChoiHyun Jun JoHyun Je ChoSeung Chul ParkCheon Woo KimTae Won Hwang
    • C03B5/26
    • C03B5/26C03B5/005G21F9/305Y02P40/52
    • A molten glass discharging device provided in the bottom of a melting furnace of a waste vitrification apparatus so that the device can control the melting or cooling of a molten material. The molten glass discharging device, which is provided in the bottom of the furnace and controls discharging of a molten material, includes: an induction heating unit (110) having a discharging passage (10) along a discharging port formed in the bottom of the melting furnace; an induction coil (120) provided outside the induction heating unit (110); and a cooling unit (130) supporting the induction heating unit (110) and having a cooling conduit through which a cooling fluid circulates. The device can realize repeated discharging of the molten material by induction heating or cooling of the induction heating unit. Further, even when glass is adhered to the discharging port, the adhered glass can be easily discharged from the furnace.
    • 一种设置在废玻璃化装置的熔炉的底部的熔融玻璃排放装置,使得该装置能够控制熔融材料的熔化或冷却。 设置在炉底部并控制熔融材料排出的熔融玻璃排放装置包括:感应加热单元(110),其具有沿着形成在熔化底部的排出口的排出通道(10) 炉; 设置在感应加热单元(110)外部的感应线圈(120); 以及支撑所述感应加热单元(110)并具有冷却管道的冷却单元(130),冷却流体通过所述冷却导管循环。 该装置可以通过感应加热或感应加热单元的冷却来实现熔融材料的重复排放。 此外,即使当玻璃粘附到排出口时,粘附的玻璃也可以容易地从炉排出。
    • 10. 发明申请
    • Polypropylene nanocomposites
    • 聚丙烯纳米复合材料
    • US20070093592A1
    • 2007-04-26
    • US11305728
    • 2005-12-15
    • Tae Won HwangSoon Joon JungChi Hoon ChoiJae Young JoByeong Uk Nam
    • Tae Won HwangSoon Joon JungChi Hoon ChoiJae Young JoByeong Uk Nam
    • C08K5/00
    • C08L51/006C08K9/04C08L23/0815C08L23/10C08L23/16C08L51/06C08L53/00C08L2310/00C08L2666/02C08L2666/24C08L2666/04
    • The present invention relates to a polypropylene nanocomposite comprising (a) about 1 wt % to about 40 wt % of an acid- or acid anhydride-modified polypropylene; (b) about 0.1 wt % to about 50 wt % of an organically modified layered silicate; and (c) about 30 wt % to about 90 wt % of a nonpolar polypropylene, wherein the acid- or anhydride-modified polypropylene has a molecular weight that is lower than that of the nonpolar polypropylene, and wherein the polypropylene nanocomposite has a linear thermal expansion coefficient ranging from about 4×10−5/° C. to about 9×10−5/° C. The density and linear thermal expansion coefficient of these nanocomposites are, respectively, 10% to 20% and 20% to 40% less than conventional polypropylene composites and can be used to form durable molded products with superior dimensional stability, good tensile strength, good moldability, and high thermal resistance.
    • 本发明涉及一种聚丙烯纳米复合材料,其包含(a)约1重量%至约40重量%的酸或酸酐改性的聚丙烯; (b)约0.1重量%至约50重量%的有机改性层状硅酸盐; 和(c)约30重量%至约90重量%的非极性聚丙烯,其中所述酸或酸酐改性的聚丙烯的分子量低于非极性聚丙烯的分子量,并且其中所述聚丙烯纳米复合材料具有线性热 膨胀系数范围为约4×10 -5 /℃至约9×10 -5 /℃。这些纳米复合材料的密度和线性热膨胀系数分别为10 比常规聚丙烯复合材料低20%至20%至40%,可用于形成具有优异的尺寸稳定性,良好的拉伸强度,良好的成型性和高耐热性的耐用的模制产品。