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    • 21. 发明专利
    • Operation method for plasma type ash melting furnace
    • 等离子体喷砂炉的操作​​方法
    • JP2006132926A
    • 2006-05-25
    • JP2005322485
    • 2005-11-07
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • NOMA AKIRATAKATSUDO YASUHIROYAMASHITA ICHIROIKE MINORUSATO TETSUOTAZAWA TATSUOINOUE KEITASAEKI KENTARO
    • F23J1/00F23M11/04F27B3/28F27D11/08F27D19/00F27D21/00
    • PROBLEM TO BE SOLVED: To provide an operation method for a plasma type ash melting furnace capable of preventing plasma arc from being eliminated when molten metal accumulated at the bottom part of the ash melting furnace is discharged while the ash melting furnace is operated.
      SOLUTION: In this operation method for the plasma type ash melting furnace generating molten slag 23 by throwing incineration ash in the furnace chamber 6 of a furnace body 2 and heating and melting the incineration ash by the plasma arc, an arc length is obtained by using the level height of the slag and the height of the lower end part of a main electrode 4 as viewed by an infrared camera 17, and a length between the lower end part of the main electrode 4 and the level of the molten slag is adjusted to a prescribed value or within a prescribed range.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种等离子体型灰熔化炉的操作方法,其能够防止在灰熔化炉操作时在灰熔融炉底部堆积的熔融金属排出时等离子体电弧被消除 。 解决方案:在这种用于通过在炉体2的炉室6中投掷焚烧灰并通过等离子体电弧加热和熔化焚烧灰的等离子体型灰熔化炉产生熔渣23的操作方法中,电弧长度为 通过使用炉渣的高度和由红外线照相机17观察的主电极4的下端部的高度而获得的,以及主电极4的下端部与熔融炉渣的高度之间的长度 调整为规定值或规定范围。 版权所有(C)2006,JPO&NCIPI
    • 23. 发明专利
    • Measuring instrument for thickness of refractory
    • 测量耐火材料的厚度
    • JP2003294430A
    • 2003-10-15
    • JP2002099114
    • 2002-04-01
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • NOMA AKIRAYAMASHITA ICHIROINOUE KEITA
    • G01B15/02F27D1/00G01N22/00
    • PROBLEM TO BE SOLVED: To provide a measuring instrument for the thickness of a refractory brick during the operation of a furnace.
      SOLUTION: Transmission microwaves oscillated by an oscillator 23 are guided to a probe 112 through a waveguide 22 and a circulator 21. The probe pierces a water jacket 111 to directly come into contact with a stamp material 109 being refractory. The transmission waves propagate through the stamp material and the refractory brick 108 to be reflected by slag 106. The reflected waves propagate through the refractory brick and the stamp material to be detected by the probe and guided to a receiver 25 through a circulator and a waveguide 24 and the receiver determines the thickness of the refractory on the basis of the transmission waves and the reflected waves.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供在炉操作期间耐火砖厚度的测量仪器。 解决方案:通过振荡器23振荡的透射微波通过波导22和循环器21被引导到探针112.探针刺穿水套111以直接与耐火材料109接触。 透射波传播通过印模材料和耐火砖108以被炉渣106反射。反射波通过耐火砖和印模材料传播,以被探针检测,并通过循环器和波导管被引导到接收器25 24并且接收器基于透射波和反射波确定耐火材料的厚度。 版权所有(C)2004,JPO
    • 30. 发明专利
    • ELECTRON BEAM VACUUM CONTAINER
    • JPH1021862A
    • 1998-01-23
    • JP17648596
    • 1996-07-05
    • MITSUBISHI HEAVY IND LTD
    • WAKAMOTO IKUOYAMASHITA ICHIROURANO SUSUMUHARADA TOMOHIRO
    • H01J37/16G21K5/00H01J33/04H01J37/18
    • PROBLEM TO BE SOLVED: To obtain an inexpensive, efficient electron beam vacuum container by fitting with a step opening of an inner face of the vacuum container an angular rod shaped wooden frame having a wooden rod of which both ends are fitted in holes. SOLUTION: A step opening an opposed to an inside of a flange opening end at a tip end portion of a vacuum container main body 6 is provided, and a flange groove b passing an outside of a step opening a opposed to a front face of the flange opening end is provided. An angular rod shaped wooden frame 21 is disposed at the step opening 'a' portion so that a rear face contacts a front face thereof, and at this wooden frame 21 a hole 20 opposed to the inner face and is drilled at specified intervals. Both ends of a wooden frame 11a is fitted in this hole 20, each wooden rod 11a is mechanically fixed to the wooden frame 21, a rear face of the wooden frame 21 is disposed into contact with the front face of the step opening 'a' of the flange end 12. Next, a gasket 9a is disposed on a gasket groove 6, and a thin film 8a is disposed on a front face thereof. A flange ring 13 is abutted and connected between the flange ring 13 and the flange end 12 by means of bolts or the like.