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    • 2. 发明专利
    • Vulcanization-molding method, and vulcanizer therefor
    • VULCANIZING-MOLDING方法及其VULCANIZER THEREFER
    • JP2010076454A
    • 2010-04-08
    • JP2009276023
    • 2009-12-04
    • Kobe Steel Ltd株式会社神戸製鋼所
    • OKADA KAZUTOMITAMURA HISASHIINOUE KENICHIKUWABARA HIDEAKI
    • B29C33/02B29C35/02
    • PROBLEM TO BE SOLVED: To heat a heating and pressurizing medium of nitrogen gas at a high heat exchange rate, without requiring high running cost, and size enlargement. SOLUTION: A vulcanization-molding method or the like includes a mold means such as a lower side mold 5 and an upper side mold 25 for storing attachably and detachably a green tire 4, a medium storage means such as a preheating heater 64 for preheating the heating and pressurizing medium such as the nitrogen gas for vulcanization-molding the green tire 4 while storing it suppliably to the green tire 4, by heating the green tire 4 while pressing it onto the mold means, a hot-heat and cold-heat separating means such as a vortex tube 71 for taking out a high temperature component of the heating and pressurizing medium, using pressure energy of the heating and pressurizing medium exhausted after the vulcanization-molding, and a heat exchanger 72 for heating the heating and pressurizing medium replenished to the medium storage means, by heat exchange with the high temperature component. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:以高热交换率加热氮气的加热和加压介质,而不需要高运行成本和尺寸增大。 解决方案:硫化成型方法等包括:模具装置,例如下侧模具5和上侧模具25,用于安装和拆卸生坯轮胎4;诸如预热加热器64的介质存储装置 用于预热加热和加压介质,例如用于硫化成型轮胎4的加热和加压介质,同时将其可供给生轮胎4,通过加热生轮胎4同时将其压在模具装置上,热热冷 - 采用硫化成型后排出的加热和加压介质的压力来取出加热和加压介质的高温组分的涡流管71的加热分离装置和用于加热加热的热交换器72, 通过与高温部件进行热交换,对介质储存装置补充的加压介质。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Screw compressor
    • 螺旋压缩机
    • JP2007132243A
    • 2007-05-31
    • JP2005325086
    • 2005-11-09
    • Kobe Steel Ltd株式会社神戸製鋼所
    • TOTSUKA JUNICHIROYOSHIMURA SEIJIMATSUKUMA MASAKIOKADA KAZUTOFUJISAWA AKIRAHONKE KOICHI
    • F04C18/16F04C27/00
    • PROBLEM TO BE SOLVED: To provide a screw compressor having an inexpensive and space-saving shaft seal construction on a discharge side of a rotor shaft. SOLUTION: The screw compressor 1 compresses target gas by screw rotors 4 contained in a rotor chamber 3 and meshed with each other. In the screw compressor, a non-contact seal 15 is provided between the screw rotor 4 and a discharge side bearing 11 of a rotor shaft 7 of the screw rotor 4, a lip seal 16 is provided between the non-contact seal 15 and the bearing 11 of the rotor shaft 7 and a communication passage 19 is provided for bringing a space 9 between the non-contact seal 15 and the lip seal 16 in communication with a space 5 of lower pressure than durable pressure of the lip seal 16. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种在转子轴的排放侧具有廉价且节省空间的轴密封结构的螺杆式压缩机。 解决方案:螺杆式压缩机1通过包含在转子室3中的螺旋转子4将目标气体压缩并彼此啮合。 在螺杆式压缩机中,在螺杆转子4和螺杆转子4的转子轴7的排出侧轴承11之间设置有非接触式密封件15,在非接触式密封件15和 设置有转子轴7的轴承11和连通通道19,用于使非接触式密封件15和唇形密封件16之间的空间9与低于唇形密封件16的耐久压力的压力较低的空间5连通。 P>版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • Effective use device of surplus steam
    • 有效地使用蒸气蒸汽装置
    • JP2005282512A
    • 2005-10-13
    • JP2004099993
    • 2004-03-30
    • Kobe Steel Ltd株式会社神戸製鋼所
    • KUWABARA HIDEAKIOKADA KAZUTOMIYAKE TOSHIYA
    • F01K7/22F22G3/00
    • PROBLEM TO BE SOLVED: To provide an energy effective use device simply and efficiently converting energy of surplus steam used for driving a steam turbine or process demand into power of high utility value or electric power generation energy via the steam turbine.
      SOLUTION: In this device, surplus steam supplied from a high pressure steam line 1 and a middle pressure steam line 2 provided in a factory and used for steam turbines 5, 5a and process demand P respectively is heated by a heat exchanger 6 using steam bled from the high pressure steam line 1 or the mid low steam line 2 as heating medium to be changed to superheated steam of 3-8kgf/cm
      2 G in a temperature range of 150-260°C, and is supplied to the steam turbine 7. Consequently, since steam bled from the existing steam line 1, 2 is used for heating surplus steam, a heating device is not required separately, energy of surplus steam can be simply and economically converted to power high in use value or electric power generation energy.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能量有效利用装置,其通过蒸汽轮机简单有效地将用于驱动蒸汽轮机的过剩蒸汽的能量或过程需求转换为高效用价值或发电能量的能量。 解决方案:在该装置中,分别由设置在工厂中并用于蒸汽轮机5,5a和加工要求P的高压蒸汽管线1和中压蒸汽管线2供给的多余蒸汽由热交换器6 使用从高压蒸汽管线1或中低温蒸汽管线2排出的蒸汽作为加热介质,在150-260°的温度范围内改变为3-8kgf / cm 2 SPG的过热蒸汽 因此,由于从现有的蒸汽管路1,2排出的蒸汽用于加热多余的蒸汽,所以不需要单独加热装置,能够将多余蒸汽的能量简单经济地转换成 功率高使用价值或发电能量。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Sand manufacturing unit
    • JP2004202496A
    • 2004-07-22
    • JP2004102851
    • 2004-03-31
    • Kobe Steel Ltd株式会社神戸製鋼所
    • INAYOSHI HIDEYUKIOTSUKI FUMIKAZUKAKIGI NOBUHIKOOKADA KAZUTO
    • B02C23/12B02C23/08C04B14/02
    • PROBLEM TO BE SOLVED: To provide a sand manufacturing unit which enables reduction in the required number of such units for a sand manufacturing process as compared with the required number of those for a conventional sand manufacturing process using a screening sizing/dry grain classification method and is capable of performing sizing/classification by such a single unit, and whose size and installation space can be reduced.
      SOLUTION: (1) The sand manufacturing unit comprising a crusher 3, a sizing/classification device 7 connected to the crusher 3, and a dust collector 8 connected to the device 7, is characterized in that the sizing/classification device 7 is provided with an inlet at the upper end of a chamber which composes a part of the device 7, the inlet being connected to the outlet end linking to the crusher 3, and with an outlet for the sieved fine grains at the lower part of the device 7, and in that the device 7 is provided inside with a grain separation element for separating coarse grains and also with grain classification means for classifying fine powder grains by forming a transfer gas flow and transferring the fine powder grains through a passage to the dust collector 8. (2) The sand manufacturing unit further comprises a moistening kneader for moistening and kneading the fine grains produced by the sand manufacturing unit.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 9. 发明专利
    • SAND MANUFACTURING UNIT
    • JP2002253982A
    • 2002-09-10
    • JP2001055171
    • 2001-02-28
    • KOBE STEEL LTD
    • INAYOSHI HIDEYUKIOTSUKI FUMIKAZUKAKIGI NOBUHIKOOKADA KAZUTO
    • B07B1/28B02C23/08B07B4/02B07B7/083B07B9/00
    • PROBLEM TO BE SOLVED: To provide a sand manufacturing unit which enables reduction in the required number of such units for a sand manufacturing process as compared with the required number of those for a conventional sand manufacturing process using a screening grain separation/dry grain classification method and is capable of performing grain separation/classification by such a single unit and whose size and installation space can be reduced. SOLUTION: This manufacturing unit is provided with: a crusher 1 for crushing rock; and a grain separation/classification device 7 for separation grains of the resulting rock crushed material from the crusher 1 into a coarse grain fraction and a fine grain/fine-powder grain fraction and classifying the fine grain/fine-powder grain fraction so as to separate fine-powder grains from the fraction. In the manufacturing unit, the grain separation/classification device 7 is provided with: a grain separation element for separating the rock crushed material into a coarse grain fraction and a fine grain/fine-powder grain fraction; and a grain classification means for classifying the fine grain/fine-powder grain fraction so as to separate fine-powder grains from this fraction, by passing a transfer gas through the fine-powder grains immediately after the grain separation by the grain separation element and conveying the fine- powder grains along the transfer gas stream.