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    • 1. 发明专利
    • Marine organism adhesion preventing device, composite plate thereof, and device setting method
    • 海洋有机粘合防止装置,其复合板及其装置设定方法
    • JP2007132112A
    • 2007-05-31
    • JP2005327177
    • 2005-11-11
    • Toshiba Corp株式会社東芝
    • INAGAKI SHUICHIYAN LIANGSATO KENJINEMOTO AKIRAMIKAMI YOSHIHARUYAMAYA NOBUO
    • E02B1/00C23F15/00E02B5/00
    • PROBLEM TO BE SOLVED: To provide a marine organism adhesion preventing device which efficiently generates oxygen, effectively prevents the adhesion of marine organisms to an inlet channel wall surface, and prevents the corrosion of stainless steel band bodies when oxygen generation is stopped.
      SOLUTION: The marine organism adhesion preventing device is arranged along the stream direction of an inlet channel W, and formed of: titanium sheets 4 which are obtained by partly overlapping a plurality of panel-like titanium plates 10 on one another, and serve an anodes; insulation materials 11 which are arranged on one surface of the titanium sheet 4, and composed of insulating resins 11a and foamed materials 11b; long stainless steel plates 12; and corrosion preventive electrodes 7.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种有效地产生氧气的海洋生物粘附防止装置,有效地防止海洋生物与入口通道壁表面的粘附,并且防止在产生氧气时停止不锈钢带体的腐蚀。 解决方案:海洋生物附着防止装置沿着入口通道W的流动方向布置,并且由通过将多个板状钛板10彼此部分重叠而获得的钛片4形成,以及 服务阳极; 绝缘材料11,其布置在钛片4的一个表面上,由绝缘树脂11a和泡沫材料11b组成; 长不锈钢板12; 和防腐蚀电极7.版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • METHOD OF OPERATING COMBINED CYCLE POWER PLANT, AND COMBINED CYCLE POWER PLANT
    • JPH1193693A
    • 1999-04-06
    • JP25378897
    • 1997-09-18
    • TOSHIBA CORP
    • NAGASHIMA TAKAYUKINEMOTO AKIRASASAKI TAKASHISAKAMOTO TETSUZO
    • F01K17/04F01K23/10F02C7/18F02C9/00
    • PROBLEM TO BE SOLVED: To secure the stabilized operation of a gas turbine at a high temperature part thereof while restraining the generation of drain at the time of starting operation or at the time of stop operation by maintaining the high temperature part of a gas turbine plant in the vacuum condition, and thereafter, performing the purge operation, warming-up operation, steam cooling operation and stop operation in order. SOLUTION: Before starting a plant, an adjustment valve 68 of a bypass system 70, an adjustment valve 69 of an outlet side of a high pressure superheater 49 and an adjustment valve 75 of an auxiliary boiler 76 are closed, and a vacuum pump of a condenser 46 is driven. With this operation, the condenser 46, a warming recovery system 79, 81, cooling steam recovery system 80, 72, and a high temperature part 71 of a gas turbine 42 are vacuumed. Air and drain inside of the high temperature part 71 is led to the condenser 46 by a pressure difference. Thereafter, the gas turbine 42 is started, and an outer surface of the high temperature part 71 is heated by the combustion gas of a combustor 41. The adjustment valve 75 is opened so as to supply the steam of the auxiliary boiler 76 to the high temperature part 71 through the cooling steam supplying system 72, and warming-up operation is performed.
    • 5. 发明专利
    • HEAT RECOVERY STEAM BOILER
    • JPH10205705A
    • 1998-08-04
    • JP1281897
    • 1997-01-27
    • TOSHIBA CORP
    • NEMOTO AKIRA
    • F22B37/22
    • PROBLEM TO BE SOLVED: To perform absorption of vibration, generated in a casing, by utilizing slashing of drum water in a steam drum. SOLUTION: A heat recovery steam boiler is constituted such that a heat- exchange part 52 is contained in a casing 51 and the heat-exchange part 52 is connected to a steam boiler 53, arranged at the top part of the casing 51, through a line 54. In this case, a support part 55 to transmit vibration of the casing 51 generated by an external force to a steam drum through only the direction of a pipe axis is arranged in the line 54 and meanwhile, drum water in the steam drum 53 is caused to effect sloshing according to the frequency of vibration of the casing 51 and partition plates 63a and 63b to cause coincidence of the frequencies thereof with each other are arranged in the axial direction of the steam drum 53.
    • 7. 发明专利
    • DEAERATOR
    • JPH07190306A
    • 1995-07-28
    • JP33190193
    • 1993-12-27
    • TOSHIBA CORP
    • KONO SHUNJINEMOTO AKIRAOYAMA TOSHIKI
    • F22D1/28
    • PURPOSE:To obtain a deaerator in which operating stability at the time of decreasing a load is improved and which can supply uniformly deaerator storage water by controlling to start or stop a flash evaporation accelerator according to whether thermodynamic state of the storage water is in a superheated water state or not by measuring a pressure and a temperature. CONSTITUTION:A spray flash evaporation accelerator has an automatic valve 26 for branching part of feed water from an outlet side of a feed water pump 15, returning it above a water level of a water storage tank 1 and spraying it, a tube 27 and a circulating water spray 20. A controller 23 calculates thermodynamic state of the storage water based on a detected pressure and a detected temperature, and controls switching of the valve 26 disposed at the outlet side of the pump 15. That is, when it becomes a superheated state of a predetermined temperature or higher, the valve 26 is opened to spray part of feed water from the spray 20 above a water surface of the tank to flash evaporate it. Thus, before the thermodynamic state of the feed water in a deaerator becomes excessively superheated water, its state can be eliminated.
    • 8. 发明专利
    • MAGNETIC HEAD
    • JPS63193310A
    • 1988-08-10
    • JP2605187
    • 1987-02-06
    • TOSHIBA CORPTOSHIBA AUDIO VIDEO ENG
    • AKIYAMA TOSHIROKONUKI AKIONEMOTO AKIRAMATSUZAKI MIKI
    • G11B5/187
    • PURPOSE:To reduce the generation of internal stress of a ferromagnetic metal film caused by the difference of thermal expansion coefficient by forming the ferromagnetic metal film at a depth longer than the depth length from a tape sliding face up to the vicinity of a winding window. CONSTITUTION:A pair of magnetic core half bodies 10a and 10b consist of a ferromagnetic oxide such as a ferrite, and the ferromagnetic metal film 11 whose angle to the gap joint surface is THETA is formed on the tape sliding face of each magnetic core half body at a depth approximating a depth length D. Ferromagnetic metal films 11 of magnetic core half bodies 10a and 10b are joined to each other through a diffusion preventing film 12 between them, and filling glass 13a and 13b as nonmagnetic materials are fused and filled to adhere magnetic core half bodies 10a and 10b, and a magnetic gap 14 is formed. A winding window 15 is formed in the middle part between magnetic core half bodies 10a and 10b, and a winding for recording and reproducing electromagnetic conversion is wound there. By this constitution, the unfavorable influence caused by the difference of thermal expansion coefficient between magnetic core half bodies 10a and 10b and the ferromagnetic metal film 11 is reduced. Thus, the internal stress generated in the ferromagnetic metal film is reduced to improve the magnetic characteristic.
    • 9. 发明专利
    • MAGNETIC HEAD
    • JPS62229505A
    • 1987-10-08
    • JP7214886
    • 1986-03-29
    • TOSHIBA CORP
    • NEMOTO AKIRAKATO MITSUO
    • G11B5/127G11B5/23
    • PURPOSE:To improve the magnetic characteristic by using a glass with high wear resistance for a glass part near a track forming a tape slide face and using an adhering glass having a lower softening point than that of the glass for the peripheral of the rear butted part. CONSTITUTION:A couple of magnetic blocks, 11a, 11b are subjected to mirror finish and a trapezoidal winding slot 12 and a square glass slot 18 are formed on the opposed face along the lengthwise direction. Further, plural upper glass slots 7a, 7b and regulating slots 10a, 10b connected to them are formed to the opposed face of the both in the lengthwise direction. Moreover, a nonmagnetic substance such as SiO2 is formed to any upper face of the block, the regulating slots 10a, 10b forming a track width TW are butted so as not to be deviated, a glass rod 15 having a high wear resistance is inserted in the slots 7a, 7b so as to be given in the regulating slots 10, and a glass rod 16 having a low softening glass rod 16 is inserted to the rear slot 18 and heated, then both the glass rods 15, 16 are molten to adhere both the blocks 11a, 11b. After the tape sliding part of the blocks is processed into a uniform round by the cylindrical cutting or the like, the result is sliced into a prescribed thickness.