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    • 4. 发明专利
    • Recovery method of permanent magnet
    • 永磁体的恢复方法
    • JP2013214543A
    • 2013-10-17
    • JP2012082602
    • 2012-03-30
    • Kobe Steel Ltd株式会社神戸製鋼所
    • YAMASHITA TAKESHIITO YOSHIHIRO
    • H01F13/00H01F41/00H02K15/03
    • Y02T10/641
    • PROBLEM TO BE SOLVED: To provide a recovery method of a permanent magnet capable of demagnetizing a permanent magnet efficiently, while suppressing pollution in a demagnetization furnace.SOLUTION: In a permanent magnet recovery system having a demagnetization furnace 11 for demagnetizing a permanent magnet attached to a motor by using superheated steam, a first supply line 12 for supplying superheated steam to the demagnetization furnace 11, a preheating furnace 10, and a second supply line 13 for supplying the superheated steam of the demagnetization furnace 11 to the preheating furnace 10, the recovery method of a permanent magnet includes a step for heating a permanent magnet preliminarily in the preheating furnace 10, and a step for further heating the permanent magnet, heated preliminarily, in the demagnetization furnace 11.
    • 要解决的问题:提供一种能够有效地消磁永磁体的永久磁铁的恢复方法,同时抑制退磁炉中的污染。解决方案:在具有用于使永磁体附着到磁体上的退磁炉11的永磁体回收系统中, 通过使用过热蒸汽的电动机,用于向去磁炉11供给过热蒸汽的第一供应管线12,预热炉10和用于将退磁炉11的过热蒸汽供给到预热炉10的第二供给管线13, 永磁体的回收方法包括预热炉10中预先加热永久磁铁的步骤,以及进一步加热在退磁炉11中加热的永磁体的步骤。
    • 5. 发明专利
    • Method for recognizing corrosion state of steel structure
    • 识别钢结构腐蚀状态的方法
    • JP2012047590A
    • 2012-03-08
    • JP2010189820
    • 2010-08-26
    • Kobe Steel Ltd株式会社神戸製鋼所
    • ITO YOSHIHIROYAMASHITA TAKESHIKIKUCHI NAOKI
    • G01N17/04G01N27/00G01N27/26
    • PROBLEM TO BE SOLVED: To provide a method for recognizing a corrosion state of a steel structure, which is capable of accurately recognizing a corrosion state due to a corrosive environmental atmosphere in which the steel structure is installed, and difference in atmosphere and allows employment of quick and appropriate maintenance means according with the corrosion state, when recognizing the corrosion state of the steel structure by using a galvanic corrosion sensor.SOLUTION: In the method for recognizing a corrosion state of a steel structure, a galvanic corrosion sensor which has a laminated structure having two kinds of different metals laminated with an insulating layer therebetween is installed on the steel structure, and a requisite level of measures against corrosion in a carbon dioxide corrosion environment is recognized when an output value from the galvanic corrosion sensor exceeds a preliminarily determined value.
    • 要解决的问题:提供一种用于识别钢结构的腐蚀状态的方法,其能够准确地识别由于安装钢结构的腐蚀性环境气氛导致的腐蚀状态,以及气氛的差异 允许使用电腐蚀传感器识别钢结构的腐蚀状态时,根据腐蚀状态采用快速适当的维护手段。 解决方案:在用于识别钢结构的腐蚀状态的方法中,在钢结构上安装具有层压有绝缘层的两种不同金属层压结构的电镀腐蚀传感器,并且具有必要的水平 当来自电腐蚀传感器的输出值超过预先确定的值时,识别出二氧化碳腐蚀环境中的腐蚀措施。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • Demagnetizer and recovery method of permanent magnet using the same
    • 使用它的永磁体的去磁器和恢复方法
    • JP2013214542A
    • 2013-10-17
    • JP2012082601
    • 2012-03-30
    • Kobe Steel Ltd株式会社神戸製鋼所
    • YAMASHITA TAKESHIITO YOSHIHIRO
    • H01F13/00H02K15/03
    • Y02T10/641
    • PROBLEM TO BE SOLVED: To provide a demagnetizer capable of demagnetizing a permanent magnet by generating superheated steam efficiently, and to provide a recovery method of a permanent magnet.SOLUTION: A demagnetizer 30 includes a demagnetization furnace 11 for demagnetizing a permanent magnet by using superheated steam, a heater 12 for generating superheated steam by heating water, a preheater 13 for heating the superheated steam generated by the heater 12, and a temperature raiser 14 for raising the temperature of the superheated steam heated by the preheater 13. Water is heated, in the heater 12, by utilizing thermal energy of the superheated steam from a fifth supply line 19, and the superheated steam generated by the heater 12 is heated, in the preheater 13, by utilizing thermal energy of the superheated steam from a fourth supply line 18.
    • 要解决的问题:提供一种能够有效地产生过热蒸汽使永久磁铁退磁并且提供永磁体的回收方法的去磁器。解决方案:消磁器30包括使用过热的永磁体退磁的退磁炉11 蒸汽,用于通过加热水产生过热蒸汽的加热器12,用于加热由加热器12产生的过热蒸汽的预热器13和用于提高由预热器13加热的过热蒸汽的温度的升温器14。 在加热器12中,通过利用来自第五供应管线19的过热蒸汽的热能,并且由加热器12产生的过热蒸汽被加热,在预热器13中,通过利用来自第四供应管线的过热蒸汽的热能 18。
    • 10. 发明专利
    • Lubricant composition, lubricant composition-coated metal plate and manufacturing method thereof
    • 润滑剂组合物,润滑油组合物涂层金属板及其制造方法
    • JP2010001450A
    • 2010-01-07
    • JP2008236838
    • 2008-09-16
    • Kobe Steel Ltd株式会社神戸製鋼所
    • ITO YOSHIHIROFUJIWARA NAOYA
    • C10M169/04C10M105/18C10M129/06C10M129/22C10M129/40C10M159/06C10N20/00C10N20/06C10N30/00C10N30/06C10N40/24C10N50/02C10N50/08
    • PROBLEM TO BE SOLVED: To provide a lubricant composition capable of improving stability, and press forming performance, coating removing properties, blocking resistant properties and welding properties of metal plates, to provide a lubricant composition-coated metal plate coated with the lubricant composition, and to provide a method of manufacturing the lubricant composition-coated metal plate that forms a lubricant composition-coated layer having the properties on a metal plate at low cost with high efficiency without generating great environmental loads. SOLUTION: The lubricant composition comprises waxes comprising paraffin wax and a polyoxyethylene alkyl ether, characterized in that the melting peak temperature prescribed in the JIS K7121 is 35°C or higher and the polyoxyethylene alkyl ether is at least one selected from polyoxyethylene cetyl ether, polyoxyethylene stearyl ether, polyoxyethylene bephenyl ether and polyoxyethylene lanolin alcohol ether, having a 10-14 HLB value. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种润滑剂组合物,其能够提高涂布有润滑剂的润滑剂组合物涂覆的金属板的稳定性和冲压成形性能,涂层去除性,耐粘连性和金属板的焊接性能 并且提供一种制造润滑剂组合物涂覆的金属板的方法,其以高效率以低成本形成具有金属板的特性的润滑剂组合物涂层,而不产生很大的环境负荷。 解决方案:润滑剂组合物包含石蜡和聚氧乙烯烷基醚的蜡,其特征在于,JIS K7121规定的熔融峰值温度为35℃以上,聚氧乙烯烷基醚为选自聚氧乙烯十六烷基 醚,聚氧乙烯硬脂醚,聚氧乙烯异苯醚,聚氧乙烯羊毛脂醇醚,10-14 HLB值。 版权所有(C)2010,JPO&INPIT