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    • 11. 发明授权
    • Method and apparatus for measuring slag foaming using microwave lever
meter
    • 使用微波杠杆仪测量炉渣发泡的方法和装置
    • US4210023A
    • 1980-07-01
    • US886573
    • 1978-03-14
    • Yoshiyasu SakamotoSumio KobayashiAkio Hatono
    • Yoshiyasu SakamotoSumio KobayashiAkio Hatono
    • B22D2/00C21C5/28C21C5/36C21C5/46G01F23/284G01S13/34G01S13/88G01F23/00
    • G01S13/34B22D2/003C21C5/4673G01F23/284G01S13/88C21C2005/366
    • A method for continuously measuring slag foaming within a converter during blowing and an apparatus for practising the method are disclosed.In this method, the foaming slag level is determined by detecting and processing a beat signal developed between the frequency-modulated transmitted wave and the reflected wave of a microwave radar. The apparatus for practising this method comprises a microwave generator, an antenna and a waveguide, and signal processing circuitry. The microwave generator generates frequency-modulated microwaves and supplies them to the antenna which is provided with a waveguide for directing these microwaves into the converter. The antenna with the waveguide are provided with water-cooling means and air purge means to overcome the heat, dust and splash from the converter. The signal processor determines the foaming slag level by detecting and processing the beat signal between the microwaves reflected from the slag within the converter and the reflected waves from a reference reflector added to the antenna.
    • 公开了一种用于连续测量吹风过程中炉渣发泡的方法和实施该方法的设备。 在该方法中,通过检测和处理在调频发射波和微波雷达的反射波之间产生的拍频信号来确定发泡炉渣水平。 用于实施该方法的装置包括微波发生器,天线和波导以及信号处理电路。 微波发生器产生频率调制的微波,并将其提供给天线,天线设置有用于将这些微波引导到转换器中的波导。 具有波导的天线设置有水冷装置和空气吹扫装置,以克服来自转换器的热,灰尘和飞溅。 信号处理器通过检测和处理从转炉内炉渣反射的微波和加到天线中的参考反射体的反射波之间的差拍信号来确定发泡炉渣水平。
    • 12. 发明授权
    • Apparatus and method of growing single crystal
    • 生长单晶的装置和方法
    • US5363796A
    • 1994-11-15
    • US837202
    • 1992-02-18
    • Sumio KobayashiShunji MiyaharaToshiyuki FujiwaraTakayuki KuboHideki FujiwaraShuichi Inami
    • Sumio KobayashiShunji MiyaharaToshiyuki FujiwaraTakayuki KuboHideki FujiwaraShuichi Inami
    • C30B15/00C30B15/14C30B15/10
    • C30B29/06C30B15/14Y10T117/1068
    • An apparatus for growing a single crystal having a crucible, two heaters arranged at the outside of the crucible and along the vertical direction, a heat shield placed at the outside of the heaters, a radiation shield for shielding the single crystal from the radiation heat, and an upper heat shield for preventing the upward heat, transfer of the heaters. In the apparatus, a melted layer and solid layer of raw material are formed in the upper and lower portions of the crucible, respectively. While melting the solid layer, the single crystal is pulled up. The lower portion of the heat shield is thinner than the upper portion. The ratio of the height to the diameter of the crucible is 0.85 or more. The melting amount of the solid layer is controlled in the pulling process according to the non-segregation condition in the variable-thickness melted layer method. The oxygen concentration of the pulled single crystal is controlled in the pulling process by adjusting the rotation speed and rotation direction of the crucible.
    • 一种用于生长具有坩埚的单晶的装置,设置在坩埚外部并沿着垂直方向的两个加热器,设置在加热器外部的隔热罩,用于将单晶屏蔽在放射线上的辐射屏蔽, 以及用于防止加热器的向上热传递的上部隔热罩。 在该装置中,在坩埚的上部和下部分别形成熔融层和原料固体层。 在熔化固体层时,单晶被拉起。 隔热罩的下部比上部薄。 坩埚的高度与直径之比为0.85以上。 根据可变厚度熔融层法中的非偏析条件,在拉伸过程中控制固体层的熔融量。 通过调节坩埚的旋转速度和旋转方向,在牵引过程中控制拉出的单晶的氧浓度。
    • 20. 发明授权
    • Apparatus for detecting slag outflow
    • 用于检测渣流出的装置
    • US4693614A
    • 1987-09-15
    • US861110
    • 1986-05-06
    • Akio HatonoSumio Kobayashi
    • Akio HatonoSumio Kobayashi
    • B22D2/00B22D11/18G01D5/48G01J5/00B22D11/10
    • B22D2/001B22D11/186G01D5/48
    • An apparatus for detecting slag outflow when a molten metal covered by molten slag is poured from one vessel to another by receiving the thermal radiation energy at the microwave frequencies emitted from the pouring stream of the molten metal from said one vessel to another to measure a change in thermal radiation energy caused by the difference in the emissivity of the molten metal and of the molten slag is disclosed. The apparatus comprises; a microwave-focusing mechanism which has a focal point at the measuring target point; a waveguide means one end of which is connected to said microwave-focusing mechanism and which receives the thermal radiation energy from said microwave-focusing mechanism; and a radiometer connected to the other end of said waveguide means to measure the thermal radiation energy at microwave frequencies received through said waveguide means.
    • 当熔融金属覆盖的熔融金属从一个容器流入另一个容器时,通过从熔融金属的倾倒流从所述一个容器流出的微波频率接收另一个容器的热辐射能量来测量变化, 公开了由熔融金属和熔融炉渣的发射率差引起的热辐射能。 该装置包括: 在测量目标点具有焦点的微波聚焦机构; 波导,其一端连接到所述微波聚焦机构,并接收来自所述微波聚焦机构的热辐射能; 以及连接到所述波导装置的另一端的辐射计,以测量通过所述波导装置接收的微波频率处的热辐射能量。