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    • 6. 发明授权
    • Methods for producing iron methacrylate and hydroxyalkyl methacrylate
    • 生产甲基丙烯酸铁和甲基丙烯酸羟烷基酯的方法
    • US08697899B2
    • 2014-04-15
    • US13822017
    • 2011-12-26
    • Naoshi MurataKuniyoshi OguraTakeshi MatsuoAkira Yoshioka
    • Naoshi MurataKuniyoshi OguraTakeshi MatsuoAkira Yoshioka
    • C07F15/00C07C67/26
    • B01J31/12B01J31/2226B01J2531/842C07C51/412C07C67/26C07C69/54C07C57/04
    • There is provided a method for producing iron methacrylate being inexpensive, and being high in activity and selectivity and good in solubility to a reaction liquid when being used in production of a hydroxyalkyl methacrylate as a catalyst. The method for producing iron methacrylate for production of a hydroxyalkyl methacrylate according to the present invention includes subjecting a mixture of a metallic iron having an oxygen atom content by XRF analysis of the surface thereof of 6% by mass or lower, and methacrylic acid to a heat treatment at 95° C. or higher and lower than 110° C. for 100 to 600 min. The method for producing a hydroxyalkyl methacrylate according to the present invention includes reacting an alkylene oxide with methacrylic acid to produce the hydroxyalkyl methacrylate, wherein iron methacrylate produced by the method according to the present invention is used as a catalyst.
    • 本发明提供了生产廉价的甲基丙烯酸铁的方法,并且当用于生产甲基丙烯酸羟烷基酯作为催化剂时,其活性和选择性高,对反应液的溶解性好。 制造本发明的甲基丙烯酸羟烷基酯的甲基丙烯酸铁的制造方法包括将表面的XRF分析得到的具有氧原子含量的金属铁的混合物的6质量%以下,甲基丙烯酸与 在95℃以上且低于110℃进行100〜600分钟的热处理。 根据本发明的制备甲基丙烯酸羟烷基酯的方法包括使环氧烷与甲基丙烯酸反应以制备甲基丙烯酸羟烷基酯,其中使用根据本发明的方法制备的甲基丙烯酸铁作为催化剂。
    • 8. 发明申请
    • Rotating Electrical Machine Unit
    • 旋转电机单元
    • US20130278090A1
    • 2013-10-24
    • US13994171
    • 2012-01-12
    • Takeshi Matsuo
    • Takeshi Matsuo
    • H02K9/19
    • H02K9/19H02K5/20H02K9/193H02K11/33
    • A rotating electrical machine unit includes a rotating electrical machine including a ring-shaped stator and a rotator provided inside of the stator, and a power inverter including a ring-shaped first casing and a power module accommodated in the first casing and integrated with the rotating electrical machine by being stacked in such a manner that a lower surface of the first casing is in contact with an upper surface of the stator. The power inverter has a first coolant path formed to have a ring shape in the first casing. The power module has a heat radiation unit arranged in the first coolant path and exchanging heat with a cooling medium flowing in the first coolant path.
    • 旋转电机单元包括旋转电机,其包括环形定子和设置在定子内部的转子,以及电力逆变器,包括环形第一壳体和容纳在第一壳体中的功率模块, 电机以这样的方式堆叠,使得第一壳体的下表面与定子的上表面接触。 功率逆变器具有形成为在第一壳体中具有环形的第一冷却剂路径。 功率模块具有布置在第一冷却剂路径中并与在第一冷却剂路径中流动的冷却介质进行热交换的热辐射单元。
    • 9. 发明授权
    • Wind turbine generator
    • 风力发电机组
    • US08082748B2
    • 2011-12-27
    • US12450327
    • 2009-07-08
    • Takeshi MatsuoShinji ArinagaSadamu TakahashiTakatoshi MatsushitaMasaaki Shibata
    • Takeshi MatsuoShinji ArinagaSadamu TakahashiTakatoshi MatsushitaMasaaki Shibata
    • F25B27/00
    • F03D80/80F03D9/25F03D9/28F03D80/60F03D80/88Y02E10/726
    • A wind turbine generator capable of preventing a salt damage and reducing noise as well as easily starting in a cold region is provided. The wind turbine generator includes a nacelle (3) for accommodating a generator set, an internal heat exchanging unit (13, 15, 16) accommodated in the nacelle (3) to exchange heat between the generator set and a refrigerant, an external heat exchanging unit (17) disposed outside the nacelle (3) to exchange heat between an outside air and the refrigerant, a compressor (18) disposed in the nacelle (3) to compress the refrigerant and circulate the refrigerant between the internal heat exchanging unit (13, 15, 16) and the external heat exchanging unit (17), and an expansion unit (19) to expand the refrigerant compressed by the compressor (18).
    • 提供一种能够防止盐损害和降低噪音以及容易地在寒冷地区起动的风力涡轮发电机。 风力涡轮发电机包括容纳发电机组的机舱(3),容纳在机舱(3)中的用于在发电机组和制冷剂之间交换热量的内部热交换单元(13,15,16),外部热交换 设置在所述机舱(3)外部以在外部空气和所述制冷剂之间进行热交换的单元(17),设置在所述机舱(3)中的压缩机(18),以压缩所述制冷剂并使所述制冷剂在所述内部热交换单元 ,15,16)和外部热交换单元(17),以及膨胀单元(19),用于使由压缩机(18)压缩的制冷剂膨胀。