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    • 61. 发明专利
    • Deterioration detection device and method of lubricating oil, and engine system equipped with deterioration detection device of lubricating oil
    • 检测装置和润滑油的方法,以及装备有润滑油检测装置的发动机系统
    • JP2012136987A
    • 2012-07-19
    • JP2010288961
    • 2010-12-24
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • DOMEKI REIKOKOMATSU TOMOMITSUKAHARA CHISATODOBASHI SHINSAKU
    • F01M11/10F01M11/00F16N7/38F16N29/00G01N21/78G01N31/00G01N33/30
    • PROBLEM TO BE SOLVED: To provide a deterioration detection device and a method of lubricating oil which can diagnose the deterioration of the lubricating oil at real time without stopping an internal combustion engine, and an engine system equipped with the deterioration detection device of the lubricating oil.SOLUTION: The deterioration detection device 50A comprises: an isolated-lubricating oil tank 51 which isolates a part of the lubricating oil 31 circulating in a circulation line Lof the lubricating oil 31 by using an isolation line L, and has an evaporation space 51a; an impurity removal line Lwhich brings the isolated-lubricating oil tank 51 into a sealed state, and after that, sucks and removes an exhaust gas component 52 by using a pump P; and a detection part 54 which brings the tank into the sealed state once again after removing the exhaust gas component 52, and detects a fuel-derived evaporated component 53 which is generated in the evaporation space 51a.
    • 要解决的问题:提供一种可以在不停止内燃机的情况下实时地诊断润滑油的劣化的润滑油的劣化检测装置和方法,以及配备有劣化检测装置的发动机系统 润滑油。 劣化检测装置50A包括:隔离润滑油箱51,其分离在润滑油的循环管线L 11 中循环的润滑油31的一部分 油31通过使用隔离线L 1 ,并具有蒸发空间51a; 使隔离润滑油箱51成为密封状态的杂质去除线L 2 ,之后,通过使用泵P“吸入排出气体成分52, SB POS =“POST”> 1 ; 以及检测部54,其在除去排气成分52之后再次使罐进入密封状态,并且检测在蒸发空间51a中产生的燃料衍生的蒸发部件53。 版权所有(C)2012,JPO&INPIT
    • 62. 发明专利
    • Apparatus for removing phosphoric ester in waste oil and treatment system of waste oil containing pcb
    • 废弃油中除磷酸盐的设备及含有PCB的废油处理系统
    • JP2011144259A
    • 2011-07-28
    • JP2010006197
    • 2010-01-14
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TSUKAHARA CHISATODOBASHI SHINSAKUNOZAKI AKIHIROTATSUHARA KIYOSHISHINODA KATSUHIKO
    • C10G19/02C02F1/58C10M175/00C10N40/16
    • PROBLEM TO BE SOLVED: To provide an apparatus for removing a phosphoric ester in waste oil and a treatment system of waste oil containing PCB.
      SOLUTION: This apparatus includes: a delivery tank 14 which delivers a predetermined amount of waste oil 13 including a phosphoric ester 12; a mixing tank 18 equipped with a stirring means 17 which mixes an alkali agent 16 from an alkali agent delivery tank 15 with the waste oil 13 delivered from the delivery tank 14 through a line L
      2 ; an analysis part 22 which analyzes phosphorus (P) or phosphoric acid (H
      3 PO
      4 ) in the reaction liquid 19 in which the alkali agent 16 is mixed with the waste oil 13; a circulation line L
      4 which returns the reaction liquid 19 to the mixing tank 18; a stationary tank 25 which allows still standing of the reaction liquid 19 according to the result from the analysis part 22 and separates an oil layer 23 from a water layer 24; a filter 26 which removes a solid content in the oil layer 23; a storage tank 28 which stores treated waste oil 27 which was subjected to removal treatment of the phosphoric ester 12 after passed through the filter 26; and a waste water treatment part 29 which removes phosphoric acid in the water layer 24.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于除去废油中的磷酸酯的装置和含有PCB的废油处理系统。 解决方案:该设备包括:输送预定量的包含磷酸酯12的废油13的输送罐14; 配有搅拌装置17的混合槽18,搅拌装置17将来自碱剂递送罐15的碱剂16与从输送槽14经由管线L 2输送的废油13混合; 在碱性试剂16与废油混合的反应液19中分析磷(P)或磷酸(H 3 PO 4 )的分析部分22 13; 将反应液19返回到混合槽18的循环管线L 4 固定罐25,其根据分析部22的结果允许静置反应液19,并将油层23与水层24分离; 过滤器26,其去除油层23中的固体含量; 存储经过过滤器26的磷酸酯12的去除处理后的经处理废油27的储存箱28; 以及去除水层24中的磷酸的废水处理部件29。版权所有(C)2011,JPO&INPIT
    • 63. 发明专利
    • Icing preventive device
    • 预防性装置
    • JP2011122533A
    • 2011-06-23
    • JP2009281485
    • 2009-12-11
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKEDA KAZUHIROTSUKAHARA CHISATODOBASHI SHINSAKUMORI SHINICHIRONOTOMI RYOSUKEOKANO YASUSHI
    • F03D11/00F03D1/06G01M11/00
    • Y02E10/721
    • PROBLEM TO BE SOLVED: To provide an icing preventive device capable of efficiently restraining icing onto blades of rotating equipment. SOLUTION: The icing preventive device 21A includes a plurality of optical fibers 23 provided at the outer periphery of a windmill blade 13 of a wind power generator to detect iced object sticking to the outer periphery of the windmill blade 13; and heaters 24 which are a plurality of heating means provided at the outer periphery of the windmill blade 13 of the wind power generator 10 to heat the windmill blade 13. The optical fibers 23 are wound around the outer periphery of the windmill blade 13 plurally in parallel at predetermined spaces in a longitudinal direction. A plurality of heaters 24 are provided between the respective optical fibers 23 on the windmill blade 13. The position of ice stuck to the windmill blade 13 is specified by the optical fibers 23, and ice is heated by the heaters 24 provided at the windmill blade 13 to restrain icing of the windmill blade 13. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够有效地限制旋转设备的叶片上的结冰的防冰装置。 防冰装置21A包括设置在风力发电机的风车叶片13的外周的多个光纤23,用于检测粘在风车叶片13的外周的冰块; 以及设置在风力发电机10的风车叶片13的外周的多个加热装置的加热器24,以加热风车叶片13.光纤23多次绕风车叶片13的外周缠绕 在长度方向的预定空间处平行。 多个加热器24设置在风车叶片13上的各个光纤23之间。粘贴在风车叶片13上的冰的位置由光纤23指定,冰被设置在风车叶片上的加热器24加热 13.限制风车叶片13的结冰。版权所有(C)2011,JPO&INPIT
    • 64. 发明专利
    • Corrosion detector and outdoor structure
    • 腐蚀检测器和室外结构
    • JP2011021988A
    • 2011-02-03
    • JP2009166943
    • 2009-07-15
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKEDA KAZUHIROTSUKAHARA CHISATODOBASHI SHINSAKUOKANO YASUSHINOTOMI RYOSUKE
    • G01N17/02
    • PROBLEM TO BE SOLVED: To provide a corrosion detector capable of preventing injury from salt while always monitoring a change with the elapse of time in the injury from salt, and an outdoor structure equipped with the same.
      SOLUTION: The corrosion detector has a first conductive part 11, the same insulating coating film part 12 as the material applied to the outdoor structure covering the first conductive part 11 and a plurality of second linear conductive parts 13 provided on the coating film part 12 at a predetermined interval and is constituted so as to detect the corrosion electric current generated by the deterioration of the coating film part 12, that is, the corrosion electric current by the water film produced by the crack formed by the deterioration of the coating film part 12.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够防止盐受到损伤的腐蚀检测器,同时始终监测在盐的损伤中经过时间的变化,以及配备该腐蚀检测器的室外结构。 解决方案:腐蚀检测器具有第一导电部分11,与施加到覆盖第一导电部分11的室外结构的材料相同的绝缘涂膜部分12和设置在涂膜上的多个第二直线导电部分13 部分12以预定的间隔被构造以便检测由涂膜部分12的劣化产生的腐蚀电流,即由涂层劣化所形成的裂纹产生的水膜的腐蚀电流 电影第12部分。版权所有(C)2011,JPO&INPIT
    • 65. 发明专利
    • Outdoor structure and method of estimating deterioration of component member of outdoor structure
    • 室外结构和室外结构组件成分估算方法
    • JP2010133748A
    • 2010-06-17
    • JP2008308008
    • 2008-12-02
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • DOBASHI SHINSAKUTSUKAHARA CHISATOTAKEDA KAZUHIROOKANO YASUSHI
    • G01N17/04G01N27/00G01N27/26
    • PROBLEM TO BE SOLVED: To provide an outdoor structure, and a method of estimating deterioration of a component member of the outdoor structure, capable of determining precisely the degree of corrosion corresponding to an installation environment. SOLUTION: A corrosion sensor 11A is installed on a tower 102 which is a structure such as a wind power generation system. The corrosion sensor 11A includes a substrate 12 consisting of the same materials 13A... as those of the component members (such as a generator) of a structure such as the wind power generation system. A plurality of conductive sections 15, which are provided on the front surface of the substrate 12 of the corrosion sensor 11A with insulation sections 14 interposed therebetween, are covered up. The same coating 16A as the coating 16A applied to the component members (such as the generator) is applied over the outer surface of the tower 102 which is the structure. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种室外结构,以及估计室外结构的部件的劣化的方法,其能够精确地确定与安装环境相对应的腐蚀程度。 解决方案:腐蚀传感器11A安装在作为风力发电系统等结构的塔架102上。 腐蚀传感器11A包括由与风力发电系统等结构的部件(例如发电机)相同的材料13A ...构成的基板12。 设置在腐蚀传感器11A的基板12的前表面上的多个导电部分15,绝缘部分14插入其间,被覆盖。 施加到构件(例如发电机)上的涂层16A的同一涂层16A被施加在作为结构的塔102的外表面上。 版权所有(C)2010,JPO&INPIT
    • 67. 发明专利
    • Contamination washing apparatus and method
    • 污染洗涤装置和方法
    • JP2006000319A
    • 2006-01-05
    • JP2004178899
    • 2004-06-16
    • Chugoku Electric Power Co Inc:TheMitsubishi Heavy Ind Ltd三菱重工業株式会社中国電力株式会社
    • TATEISHI MASAKAZUTSUKAHARA CHISATOSAWATSUBASHI TETSUYAARIMA KENICHIHATTORI TOSHIOYOKOTA SHINJIYAMAMURA YUKIMASA
    • D06F43/00B08B3/08D06B9/06D06B23/20D06F43/08D06L1/04D06L1/08D06L1/10
    • Y02P70/641
    • PROBLEM TO BE SOLVED: To provide a contamination washing apparatus and method capable of surely washing contamination while confirming the presence/absence of decontamination for the contamination such as a work uniform to which harmful substances are stuck. SOLUTION: This apparatus comprises: a first washing device for washing contamination stuck laundry 12 to be washed to which the harmful substances are stuck with washing liquid; a second washing device 16 for washing the laundry 14 to be washed in the first washing device 13 with clear washing liquid 15; a washing liquid tank 18 for storing the washing liquid 17 used in the second washing device 16; a harmful substance density measuring device 19 for measuring a harmful substance density inside the washing liquid tank 18; a contaminated washing liquid tank 20 for storing contaminated washing liquid 17b used in the first washing device 13 composed by using the washing liquid 17 from the washing liquid tank 18 in the first washing device; a washing liquid regenerator 22 for regenerating the contaminated washing liquid 17b inside the contaminated washing liquid tank 20 and making it to clear regenerated washing liquid 21; and a clear washing liquid tank 23 for storing the regenerated washing liquid 21. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够确定洗涤污染的污染物清洗装置和方法,同时确认有害物质被卡住的工作均匀性等污染物的存在/不存在。 解决方案:该装置包括:第一洗涤装置,用于洗涤被洗涤物的被污染的衣物12,有害物质被洗涤液粘附到其上; 第二清洗装置16,用清洗液15洗涤第一洗涤装置13中要洗涤的衣物14; 用于储存在第二洗涤装置16中使用的洗涤液17的洗涤液罐18; 用于测量洗涤液罐18内的有害物质密度的有害物质密度测量装置19; 用于存储在第一洗涤装置13中使用的受污染的清洗液17b的污染的洗涤液罐20,其由在第一洗涤装置中的洗涤液罐18使用洗涤液17构成; 洗涤液再生器22,用于使被污染的洗涤液罐20内的被污染的清洗液17b再生并使其再次清洗再生洗涤液21; 以及用于储存再生洗涤液21的透明洗涤液罐23.版权所有(C)2006,JPO&NCIPI
    • 68. 发明专利
    • Test piece analyzer
    • 测试分析仪
    • JP2005243573A
    • 2005-09-08
    • JP2004055030
    • 2004-02-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • DOBASHI SHINSAKUTSUKAHARA CHISATOKUBOTA TAKAHIROBABA KEIGO
    • G01N27/62G01N27/64H01J49/04H01J49/10H01J49/14
    • PROBLEM TO BE SOLVED: To provide a test piece analyzer which does not require exchange of the ion electrodes and utilizes the characteristics of both CI method and EI method.
      SOLUTION: The test piece analyzer 10 is equipped with an electron impact and ionization device 16 that comprises a test piece gas chamber 12 in which a test piece gas 11 is introduced, a thermoelectron generating part 14 which is installed in the test piece gas chamber 11 and generates thermoelectrons 13, and an analyzing part 15 which analyzes the test piece ionized matter made by thermoelectrons 13 produced by the generated thermoelectrons 13 and the test piece gas 11, and a chemical ionization device 26 that comprises a reagent gas introduction part 22 which introduces a reagent gas 21 into the test piece gas chamber 12, a laser part 24 which introduces laser beam L into the test piece gas chamber 12 and generates reagent gas ionized matter 23 by ionizing the reagent gas 21 introduced, and an analyzing part 15 which analyzes the test piece ionized matter 25 produced by the reagent gas ionized matter 23 and the test piece gas 11 introduced.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供不需要交换离子电极的试片分析仪,并利用CI法和EI法的特征。 测试片分析仪10配备有电子轰击和电离装置16,该电子轰击和电离装置16包括其中引入试验气体11的试验气体室12,安装在试验片中的热电子产生部分14 气体室11和产生热电子13的分析部件15和分析由所产生的热电子13和试验气体11产生的热电子13制成的试验片离子化物的分析部件15以及包含反应气导入部的化学电离装置26 22,其将试剂气体21引入试验气体室12中,将激光束L引入试验气体室12并通过电离引入的反应气体21而产生反应气体离子化物23的激光器部24和分析部 15,其分析由反应气体离子化物23产生的试片离子化物25和引入的试片气体11。 版权所有(C)2005,JPO&NCIPI