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    • 1. 发明申请
    • CANNED TYPE ROTATING ELECTRICAL MACHINE
    • CANNED型旋转电机
    • US20140054992A1
    • 2014-02-27
    • US14006508
    • 2012-03-22
    • Takeshi HasegawaNaoki MiyakeTakeshi Oguri
    • Takeshi HasegawaNaoki MiyakeTakeshi Oguri
    • H02K5/128
    • H02K5/128H02K7/14
    • A rotating electrical machine according to the present invention includes a can formed in a tubular shape and made of fiber reinforced plastic. At least a part of a first end portion of the can is located on a radially outer side of an adhered portion of a first end member, and a resin-based adhesive is filled in a gap between the part of the first end portion and the adhered portion of the first end member. At least a part of a second end portion of the can is located on a radially outer side of an adhered portion of a second end member, and the resin-based adhesive is filled in a gap between the part of the second end portion and the adhered portion of the second end member.
    • 根据本发明的旋转电机包括形成为管状并由纤维增强塑料制成的罐。 罐的第一端部的至少一部分位于第一端部件的粘合部分的径向外侧上,并且树脂基粘合剂填充在第一端部的部分和第二端部之间的间隙中 第一端部构件的粘附部分。 罐的第二端部的至少一部分位于第二端部件的粘合部分的径向外侧上,并且树脂基粘合剂填充在第二端部的部分和第二端部的部分之间的间隙中 第二端部构件的粘附部分。
    • 2. 发明授权
    • Canned type rotating electrical machine
    • 罐头式旋转电机
    • US09438081B2
    • 2016-09-06
    • US14006508
    • 2012-03-22
    • Takeshi HasegawaNaoki MiyakeTakeshi Oguri
    • Takeshi HasegawaNaoki MiyakeTakeshi Oguri
    • H02K5/12H02K5/128H02K7/14
    • H02K5/128H02K7/14
    • A rotating electrical machine according to the present invention includes a can formed in a tubular shape and made of fiber reinforced plastic. At least a part of a first end portion of the can is located on a radially outer side of an adhered portion of a first end member, and a resin-based adhesive is filled in a gap between the part of the first end portion and the adhered portion of the first end member. At least a part of a second end portion of the can is located on a radially outer side of an adhered portion of a second end member, and the resin-based adhesive is filled in a gap between the part of the second end portion and the adhered portion of the second end member.
    • 根据本发明的旋转电机包括形成为管状并由纤维增强塑料制成的罐。 罐的第一端部的至少一部分位于第一端部件的粘合部分的径向外侧上,并且树脂基粘合剂填充在第一端部的部分和第二端部之间的间隙中 第一端部构件的粘附部分。 罐的第二端部的至少一部分位于第二端部件的粘合部分的径向外侧上,并且树脂基粘合剂填充在第二端部的部分和第二端部的部分之间的间隙中 第二端部构件的粘附部分。
    • 3. 发明申请
    • WASTE HEAT RECOVERY TURBINE SYSTEM
    • 废热回收涡轮机系统
    • US20110162367A1
    • 2011-07-07
    • US12875698
    • 2010-09-03
    • Takeshi OKUMURASeiji YAMASHITATadashi TAKEMURANaoki MIYAKE
    • Takeshi OKUMURASeiji YAMASHITATadashi TAKEMURANaoki MIYAKE
    • F01K11/00
    • F01K25/10F22B35/00Y02P80/152
    • Provided is a waste heat recovery turbine system capable of lowering the temperature of hot water returned to a heat source and of suppressing a steaming phenomenon in a preheater without changing the flow rate of a heating medium flowing through an evaporator. The waste heat recovery turbine system comprises a turbine 4 driven by a working medium M, an evaporator 10 which evaporates the working medium M by heat exchange with a heating medium H supplied from a first heat source 20a and supplies the evaporated working medium M to the turbine 4, a preheater 12 for preheating the working medium M flowing into the evaporator 10, a preheating passage 22b through which the heating medium H is supplied from the evaporator 10 to the preheater 12, a return passage 22d which branches from a location of the preheating passage 22b and serves to return the heating medium H to a second heat source 20b, and a flow control valve 24 for controlling a flow rate of the heating medium H supplied to the preheater 12 by causing the heating medium H which has radiated heat in the evaporator 10 to flow through the return passage 22d.
    • 提供一种废热回收涡轮机系统,其能够降低返回到热源的热水的温度并抑制预热器中的蒸汽现象,而不改变流过蒸发器的加热介质的流量。 废热回收涡轮机系统包括由工作介质M驱动的涡轮机4,蒸发器10,通过与从第一热源20a供应的加热介质H进行热交换来蒸发工作介质M.并将蒸发的工作介质M供应到 涡轮4,用于预热流入蒸发器10的工作介质M的预热器12,从蒸发器10向预热器12供应加热介质H的预热通道22b,从该蒸发器10的位置分支的返回通道22d 预热通道22b,用于将加热介质H返回到第二热源20b;以及流量控制阀24,用于通过使具有辐射热的加热介质H来控制供给到预热器12的加热介质H的流量 蒸发器10流过返回通道22d。
    • 4. 发明申请
    • SPRAYING TUBE DEVICE AND HEAT EXCHANGER USING THE SAME
    • 喷涂设备和使用该设备的热交换器
    • US20130220578A1
    • 2013-08-29
    • US13822321
    • 2010-09-13
    • Takeshi OkumuraNaoki MiyakeKyoko Takemura
    • Takeshi OkumuraNaoki MiyakeTadashi Takemura
    • B05B1/26
    • B05B1/265B05B7/0012F25B39/028F28D3/02F28D3/04
    • Disclosed is a spraying tube device capable of, even in a case where a spray solution having low latent heat is used in a falling film type evaporator, uniformly spraying the spray solution to a heat-transfer tube, and a heat exchanger using the spraying tube device. The spraying tube device includes: a spraying tube configured to eject a spray solution M upward through ejection holes arranged along a tube axis C; a cover arranged above the spraying tube and configured to receive the ejected spray solution M and cause the spray solution M to flow through a space S between the cover and the spraying tube to flow downward on an outer surface of the spraying tube, and fins configured to uniformize in a tube axis C direction a distribution of the spray solution M having flowed downward from the cover.
    • 公开了一种即使在降膜型蒸发器中使用具有低潜热的喷雾溶液的情况下也能够均匀地将喷雾溶液喷射到传热管的喷射管装置,以及使用该喷射管的热交换器 设备。 喷射管装置包括:喷射管,其构造成通过沿着管轴C布置的喷射孔向上喷射喷雾溶液M; 盖子,其布置在喷射管上方并被构造成接收喷射的喷雾溶液M,并使喷雾溶液M流过盖和喷射管之间的空间S,以在喷管的外表面上向下流动,翅片配置 在管轴C方向均匀化从盖子向下流动的喷雾溶液M的分布。