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    • 3. 发明申请
    • Microwave iron-making furnace
    • 微波炼铁炉
    • US20090039572A1
    • 2009-02-12
    • US12219942
    • 2008-07-30
    • Kazuhiro NagataMotoyasu Sato
    • Kazuhiro NagataMotoyasu Sato
    • C22B1/00
    • F27B5/04C21B13/12C21C5/52F27B5/14F27B5/16F27D1/0006F27D99/0006F27D2099/0028Y02P10/216
    • A reactor has a casing composed of a magnesia-based refractory, and a bottom plate composed of an MgO-graphite mixed refractory is disposed on a bottom part of this casing. A graphite crucible is provided at a bottom of the reactor, and the graphite crucible and the reactor are joined together by a magnesia cylinder. Iron ore powder, coal powder, and other such raw materials supplied into the reactor are irradiated with microwaves from microwave oscillators and are heated. The iron ore is reduced, and the resulting molten pig iron flows out through a hole into a crucible, and then is poured out of the crucible through another hole into a ladle. It is thereby possible to manufacture molten pig iron with high energy efficiency, instead of using blast-furnace iron-making.
    • 反应器具有由氧化镁基耐火材料构成的壳体,并且在该壳体的底部设置由MgO-石墨混合耐火材料构成的底板。 石墨坩埚设置在反应器的底部,石墨坩埚和反应器通过氧化镁圆筒连接在一起。 供给到反应器中的铁矿粉,煤粉等原料用微波辐射器微波加热。 铁矿石被还原,所生成的熔融生铁通过孔流入坩埚中,然后通过另一个孔从坩埚中倒入钢包中。 因此,可以以高能量的方式制造熔融生铁,而不是使用高炉炼铁。
    • 6. 发明授权
    • Antivibration clamp for elongated objects
    • 细长物体的防振夹
    • US07011277B2
    • 2006-03-14
    • US10810828
    • 2004-03-29
    • Suguru MizukoshiHiroyuki KatoHidehumi OkumotoKotaro TanakaMotoyasu Sato
    • Suguru MizukoshiHiroyuki KatoHidehumi OkumotoKotaro TanakaMotoyasu Sato
    • F16L3/22
    • F16L55/035F16L3/223H02G3/30
    • An antivibration clamp comprises a base made of hard resin and an object-holding portion of hard resin supported by the base. The object-holding portion includes a curved wall defining a recess for receiving an elongated object, and a resilient holding finger extending obliquely from the top of the curved wall or its vicinity toward the recess of the curved wall to press against the outer surface of an object received in the curved wall. The curved wall has an inner wall surface on which a plurality of elongated rigid ribs are formed to protrude inward and extend in the width direction of the curved wall with the ribs being spaced apart from each other in the circumferential direction of the curved wall. The inner wall surface and the ribs of the curved wall are coated with an antivibration material made of soft resin.
    • 防振夹具包括由硬树脂制成的基座和由基底支撑的硬质树脂的物体保持部分。 物体保持部分包括限定用于容纳细长物体的凹部的弯曲壁,以及从弯曲壁的顶部或其附近向弯曲壁的凹部倾斜延伸的弹性保持指,以压靠弯曲壁的外表面 物体在弯曲的墙壁上收到。 弯曲的壁具有内壁表面,多个细长的刚性肋形成为向内突出并且在弯曲壁的宽度方向上延伸,其中肋在弯曲壁的圆周方向上彼此间隔开。 弯曲壁的内壁表面和肋部涂覆有由柔软树脂制成的防振材料。
    • 7. 发明授权
    • Cryopump
    • 冷冻者
    • US5582017A
    • 1996-12-10
    • US427827
    • 1995-04-26
    • Nobuharu NojiJunichi HayakawaMotoyasu SatoHiroshi AonoTetsuo Komai
    • Nobuharu NojiJunichi HayakawaMotoyasu SatoHiroshi AonoTetsuo Komai
    • F04B37/08F04B49/06B01D8/00
    • F04B37/08F04B37/085F04B49/065F04B2205/01F04B2205/10Y10S417/901
    • A cryopump is provided with a detecting means for detecting an operation parameter at an elapsed operation time in a current operation cycle of the cryopump, a storing means for storing a value of another operation parameter in a past operation cycle of the cryopump as a management parameter, an arithmetic controlling means for calculating a succeeding rotational speed of the expander motor based on the current operational parameter and the management parameter stored in the storing means and outputting the same as a driving instruction signal, with which the succeeding rotational speed of the expander motor is controlled so as to maintain a temperature of a cryopanel or a pressure in a vacuum chamber to which the cryopump is attached at a predetermined value by using the operation parameter at the elapsed operation time in the current operation cycle of the cryopump detected by the detecting means and the operation parameter at the corresponding elapsed operation time in the past operation cycle of the cryopump stored in the storing means as the management parameter, and an expander motor driving means for driving the expander motor according to the driving instruction signal output from the arithmetic controlling means, whereby the cryopump may be operated stably even if a temporal load change has occurred.
    • 低温泵设置有检测装置,用于在低温泵的当前运行循环中检测经过的运行时间的运转参数,存储装置,用于将低温泵的过去运转循环中的另一个运转参数值存储为管理参数 运算控制装置,用于根据当前操作参数和存储在存储装置中的管理参数来计算膨胀机马达的后续转速,并输出作为驱动指令信号的膨胀机马达的随后转速, 被控制为通过使用在检测到的低温泵的当前操作循环中经过的操作时间的操作参数来将冷冻板的温度或低温泵所附着的真空室中的压力保持在预定值 手段和操作参数在过去操作中相应的经过的操作时间 存储在存储装置中的低温泵的运转周期作为管理参数;以及扩展器电动机驱动装置,用于根据从算术控制装置输出的驱动指令信号来驱动膨胀机电动机,由此即使在时间 发生负载变化。
    • 9. 发明申请
    • Microwave burning furnace
    • 微波燃烧炉
    • US20050211705A1
    • 2005-09-29
    • US11050455
    • 2005-02-04
    • Eiji NomuraJun NomuraMotoyasu Sato
    • Eiji NomuraJun NomuraMotoyasu Sato
    • F27D11/12H05B6/64H05B6/80
    • H05B6/6494
    • A microwave burning furnace including a housing constituted by a metal on which a microwave is to be irradiated, a metallic door provided in the housing, a burning chamber provided in the housing and surrounded by a material having a low microwave absorption characteristic and a high heat insulating property, and microwave generating means, wherein the burning chamber includes a heater element constituted by at least two types of heating materials having a heating material for a high temperature region which automatically generates a heat mainly in the high temperature region to have a burning temperature by an irradiation of a microwave and a heating material for a low temperature region which automatically generates a heat mainly in the low temperature region including an ordinary temperature.
    • 一种微波燃烧炉,其特征在于,包括由要被照射微波的金属构成的壳体,设置在所述壳体内的金属门,设置在所述壳体内并由微波吸收特性低,热量高的材料包围的燃烧室 绝缘性和微波发生装置,其中燃烧室包括由至少两种类型的加热材料构成的加热元件,该加热材料具有用于高温区域的加热材料,主要在高温区域中自动产生热量以具有燃烧温度 通过微波照射和主要在包括常温的低温区域自动产生热量的低温区域的加热材料。
    • 10. 发明授权
    • Microwave iron-making furnace
    • 微波炼铁炉
    • US07744810B2
    • 2010-06-29
    • US12219942
    • 2008-07-30
    • Kazuhiro NagataMotoyasu Sato
    • Kazuhiro NagataMotoyasu Sato
    • C22B1/00
    • F27B5/04C21B13/12C21C5/52F27B5/14F27B5/16F27D1/0006F27D99/0006F27D2099/0028Y02P10/216
    • A reactor has a casing composed of a magnesia-based refractory, and a bottom plate composed of an MgO-graphite mixed refractory is disposed on a bottom part of this casing. A graphite crucible is provided at a bottom of the reactor, and the graphite crucible and the reactor are joined together by a magnesia cylinder. Iron ore powder, coal powder, and other such raw materials supplied into the reactor are irradiated with microwaves from microwave oscillators and are heated. The iron ore is reduced, and the resulting molten pig iron flows out through a hole into a crucible, and then is poured out of the crucible through another hole into a ladle. It is thereby possible to manufacture molten pig iron with high energy efficiency, instead of using blast-furnace iron-making.
    • 反应器具有由氧化镁基耐火材料构成的壳体,并且在该壳体的底部设置由MgO-石墨混合耐火材料构成的底板。 石墨坩埚设置在反应器的底部,石墨坩埚和反应器通过氧化镁圆筒连接在一起。 供给到反应器中的铁矿粉,煤粉等原料用微波辐射器微波加热。 铁矿石被还原,所生成的熔融生铁通过孔流入坩埚中,然后通过另一个孔从坩埚中倒入钢包中。 因此,可以以高能量的方式制造熔融生铁,而不是使用高炉炼铁。