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    • 6. 发明申请
    • HEATING FURNACE AND CONTINUOUS HEATING FURNACE
    • 加热炉和连续加热炉
    • US20140170582A1
    • 2014-06-19
    • US14183962
    • 2014-02-19
    • Kimiyoshi SATOHToshiyuki SUDAToshiro FUJIMORIMasao AIHARA
    • Kimiyoshi SATOHToshiyuki SUDAToshiro FUJIMORIMasao AIHARA
    • F27B9/06F23D14/12
    • F27B9/06A21B1/10A21B1/48F23D14/125F27B5/14F27B9/08F27B9/10F27B9/20F27B9/24F27B9/36F27D17/00F27D17/004F27D99/0033F27D99/0035F27D2099/0061
    • A heating furnace includes a target space (212a) in which a burning target is disposed, and a furnace main body (212) that surrounds the target space. The heating furnace includes one or more closed gas heaters having an introduction hole configured to introduce a fuel gas into the main body, a combustion chamber in which the introduced fuel gas is combusted, a discharge section to which an exhaust gas generated by combustion is guided, a radiation surface heated by the exhaust gas flowing through the discharge section or combustion in the combustion chamber and configured to transfer radiant heat to the burning target, and an exhaust hole configured to exhaust the exhaust gas that heats the radiation surface to the outside of the main body, and disposed in the furnace main body, and an exhaust heat transfer section (an insulated pipe (222a)) in communication with the exhaust hole of the closed gas heater and to which the exhaust gas is guided. In addition, the exhaust heat transfer section is installed at any portion in the furnace main body except for a radiation space (212b) formed between the closed gas heater and the burning target disposed in the target space and configured to transfer the radiant heat to the burning target.
    • 加热炉包括设置有燃烧对象物的目标空间(212a)和围绕目标空间的炉主体(212)。 加热炉包括一个或多个封闭式气体加热器,其具有引入燃料气体到主体中的引入孔,引入燃料气体燃烧的燃烧室,引导燃烧产生的排气的排出部 由流过排气部分的废气加热的辐射表面或燃烧室中的燃烧并且被配置成将辐射热传递到燃烧目标;以及排气孔,其被配置为排出将辐射表面加热到外部的废气 主体,并且配置在炉主体中,以及排气传热部(绝热管),与封闭气体加热器的排气孔连通,排气被引导到该废气传热部。 另外,排气传热部安装在炉主体的任意部分,除了形成在被设置在目标空间中的封闭气体加热器和燃烧对象物之间的辐射空间212b之外,还配置了将辐射热传递到 燃烧目标
    • 7. 发明申请
    • DEVICE FOR PRODUCING GRANULAR METAL IRON AND PROCESS FOR PRODUCING GRANULAR METAL IRON
    • 用于生产颗粒金属铁的装置和用于生产颗粒金属铁的方法
    • US20130118307A1
    • 2013-05-16
    • US13811782
    • 2011-07-29
    • Shoichi KikuchiOsamu Tsuge
    • Shoichi KikuchiOsamu Tsuge
    • F27B3/10C21B11/08F27B3/06
    • F27B3/10C21B11/08C21B13/105F27B3/06F27B9/24
    • A device for producing granular metal iron by placing a mass of a raw material mixture comprising a substance containing iron oxide and a carbonaceous reducing agent onto a heath of a moving heath type heating furnace and heating the mass to reduce iron oxide in the mass, thereby producing the granular metal iron. The device comprises, in addition to the moving heath type heating furnace, a sieving machine, a first magnetic separator and a second magnetic separator, and also comprises a passage through which a discharged substance from the moving heath type heating furnace is supplied to the sieving machine, a passage through which crude granules that have been sieved by the sieving machine are supplied to the first magnetic separator, and a passage through which fine granules that have been sieved by the sieving machine are supplied to the second magnetic separator.
    • 通过将包含含有氧化铁和碳质还原剂的物质的原料混合物的块放入移动的健康型加热炉的
      蒸发器上并加热该物质以还原该物质中的氧化铁,从而生产颗粒状金属铁的装置,从而 生产颗粒状金属铁。 该装置除了移动的健康型加热炉之外还包括筛分机,第一磁选机和第二磁选机,还包括一个通道,将来自移动式加热炉的排出物质通过该通道供给到筛分机 机器,将通过筛分机筛过的粗颗粒供给到第一磁选机的通道,并且将通过筛分机筛选的细颗粒供给到第二磁选机的通道。
    • 9. 发明授权
    • Casting and continuous rolling method and plant to make long metal rolled products
    • 铸造和连续轧制方法和设备制造长金属轧制产品
    • US08322401B2
    • 2012-12-04
    • US12858896
    • 2010-08-18
    • Gianpietro Benedetti
    • Gianpietro Benedetti
    • B22D11/12B22D11/126B21B1/46
    • F27B9/20F27B9/22F27B9/24F27B9/2407F27D3/026Y10T29/49991
    • A method for making long metal rolled products by continuous casting, made by a continuous casting machine to two casting lines; shearing to size of the cast product; direct introduction of each segment, having an average temperature of at least 1000° C.-1150° C., into a maintenance and/or heating furnace that has a first and a second movement sections, each of the movement sections is disposed in axis respectively with one of the two casting lines to receive a respective segment; lateral transfer of each segment inside the furnace to dispose each segment in a third movement section disposed parallel and misaligned with respect to the first and the second movement sections and aligned to a rolling axis of a rolling line parallel and offset with respect to the two casting lines; and reduction of the section in a rolling mill defining said rolling axis.
    • 一种通过连续铸造制造长金属轧制产品的方法,由连续铸造机制造成两条铸造线; 剪切铸造产品的尺寸; 将具有至少1000℃-1150℃的平均温度的每个段直接引入到具有第一和第二移动部分的维护和/或加热炉中,每个运动部分设置在轴线 分别与两条铸造线之一接收相应的段; 横向转移炉内的每个段以将每个段设置在相对于第一和第二移动部分平行和不对准的第三运动部分中,并且与相对于两个铸件平行和偏移的轧制线的滚动轴线对准 线条 以及减少限定所述滚动轴线的轧机中的截面。
    • 10. 发明申请
    • REFLOW FURNACE
    • 冷却炉
    • US20120240424A1
    • 2012-09-27
    • US13514969
    • 2010-12-07
    • Takashi SugiharaHiroshi TaguchiDaisuke KasaharaKoichiro HosokawaYuta Saito
    • Takashi SugiharaHiroshi TaguchiDaisuke KasaharaKoichiro HosokawaYuta Saito
    • B23K1/012F26B25/06F26B21/06
    • F27B9/3005B23K1/008B23K1/012B23K1/015B23K3/08F27B9/24F27D17/001
    • To prevent evaporated flux from being attached to rotation axes of motors which rotate fans positioned in a preheating zone, a main heating zone and a cooling zone and being solidified, the evaporated flux is efficiently and surely collected with the flux liquefying before the flux is solidified and having fluidity.A drain portion 20 constituting a flux collection apparatus 10A is formed at a side of a motor base 16 opposed to the fan and at a circumferential portion of the rotation axis 14. A surface of the drain portion 20 opposed to the fan is formed as an inclined surface 20A which is inclined from a level position of the motor base 16 to a discharge port 46 provided at a back side of the motor base 16. The flux collected to a center portion of the motor base 16 by the rotation drive of the fan is flown to the drain portion 20 formed in the center portion of the motor base 16, is flown along the inclined surface 20A and contained into a collection container 34 from the drain portion 20 through the discharge port 46, a drain pipe and a pipe 48.
    • 为了防止蒸发的焊剂附着在旋转位于预热区域,主加热区域和冷却区域中的风扇的电动机的旋转轴上,并且固化,在熔剂固化之前,通过液化而使蒸发的熔剂被有效地和可靠地收集 并具有流动性。 构成磁通收集装置10A的排出部分20形成在与风扇相对的电动机底座16的一侧和旋转轴线14的周向部分处。与风扇相对的排水部分20的表面形成为 倾斜面20A从电动机底座16的高度位置倾斜到设置在电动机底座16的后侧的排出口46.通过风扇的旋转驱动而收集到电动机底座16的中心部分的磁通 流到形成在电动机基座16的中心部分的排水部分20,沿着倾斜表面20A流动并通过排放口46从排水部分20收集到收集容器34中,排水管和管道48 。