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    • 1. 发明授权
    • Fan with reduced noise
    • 风扇噪音降低
    • US08651807B2
    • 2014-02-18
    • US13089567
    • 2011-04-19
    • Naoya InadaToshiyuki NakamuraToshiki OgawaraYoshinori Miyabara
    • Naoya InadaToshiyuki NakamuraToshiki OgawaraYoshinori Miyabara
    • F01D25/24
    • F04D25/0613F04D29/526F04D29/667F04D29/681
    • Four tapered portions are formed on an end portion of an inner wall surface of an air channel at four locations corresponding to four corners of the profile of a surface of a housing where a suction port is formed. The four tapered portions are each inclined outwardly in a radial direction of a rotary shaft from a discharge port side toward the suction port side and extending in a rotational direction of an impeller. The tapered portions each include a main portion which is shaped such that an angle formed between the main portion and an axis of the rotary shaft gradually becomes smaller from one end of the main portion located rearward as viewed in the rotational direction of the impeller toward the other end of the main portion located forward as viewed in the rotational direction of the impeller.
    • 在对应于形成有吸入口的壳体的表面的轮廓的四个位置的四个位置处,在空气通道的内壁表面的端部上形成有四个锥形部分。 四个锥形部分分别在旋转轴的径向方向上从排出口侧朝向吸入口侧向外倾斜并沿叶轮的旋转方向延伸。 锥形部分各自包括主要部分,其主要部分形成为使得从旋转轴的主要部分和轴线之间形成的角度从沿叶轮的旋转方向观察的向后的主要部分的一端逐渐变小 主叶片的另一端位于叶轮旋转方向的前方。
    • 2. 发明申请
    • FAN WITH REDUCED NOISE
    • 风扇与减少的噪音
    • US20110255957A1
    • 2011-10-20
    • US13089567
    • 2011-04-19
    • Naoya InadaToshiyuki NakamuraToshiki OgawaraYoshinori Miyabara
    • Naoya InadaToshiyuki NakamuraToshiki OgawaraYoshinori Miyabara
    • F04D29/66
    • F04D25/0613F04D29/526F04D29/667F04D29/681
    • Four tapered portions are formed on an end portion of an inner wall surface of an air channel at four locations corresponding to four corners of the profile of a surface of a housing where a suction port is formed. The four tapered portions are each inclined outwardly in a radial direction of a rotary shaft from a discharge port side toward the suction port side and extending in a rotational direction of an impeller. The tapered portions each include a main portion which is shaped such that an angle formed between the main portion and an axis of the rotary shaft gradually becomes smaller from one end of the main portion located rearward as viewed in the rotational direction of the impeller toward the other end of the main portion located forward as viewed in the rotational direction of the impeller.
    • 在对应于形成有吸入口的壳体的表面的轮廓的四个位置的四个位置处,在空气通道的内壁表面的端部上形成有四个锥形部分。 四个锥形部分分别在旋转轴的径向方向上从排出口侧朝向吸入口侧向外倾斜并沿叶轮的旋转方向延伸。 锥形部分各自包括主要部分,其主要部分形成为使得从旋转轴的主要部分和轴线之间形成的角度从沿叶轮的旋转方向观察的向后的主要部分的一端逐渐变小 主叶片的另一端位于叶轮旋转方向的前方。
    • 4. 发明申请
    • AXIAL FLOW FAN
    • 轴流风扇
    • US20110097226A1
    • 2011-04-28
    • US13001503
    • 2009-06-15
    • Toshiyuki NakamuraMasahiro KoikeNaoya Inada
    • Toshiyuki NakamuraMasahiro KoikeNaoya Inada
    • F04D25/08
    • F04D25/08F04D25/0613F04D25/0693F04D29/52
    • An axial flow fan provided herein allows for a wide range of selection for placement of the fan and wiring of the lead wires. The axial flow fan includes a first lead wire engaging portion 17 configured to be engaged with a plurality of lead wires 15 such that the lead wires are pulled out therefrom into an outer space OS defined between a first flange 21 and a second flange 23 of a fan housing 3, a second lead wire engaging portion 19 configured to be engaged with the plurality of lead wires 15 such that the lead wires, which have been engaged with the first lead wire engaging portion 17 and pulled out therefrom into the outer space OS, are then pulled out toward the other side in the axial direction where the second flange 23 is positioned, and a third lead wire engaging portion 27 configured to be engaged with the plurality of lead wires 15 such that the lead wires, which have been engaged with the first lead wire engaging portion 17 and pulled out therefrom into the outer space OS, are then pulled out in the axial direction toward one side where the first flange 21 is positioned. The third lead wire engaging portion 27 is formed in the first flange 21 at a given distance from the first lead wire engaging portion 17.
    • 这里提供的轴流风扇允许宽范围的选择用于布置风扇和引线的布线。 轴流风扇包括第一引线接合部分17,其被配置为与多个引线15接合,使得引线从其中被拉出到限定在第一凸缘21和第二凸缘21之间的外部空间OS中 风扇壳体3,第二引线接合部分19,被配置为与多个引线15接合,使得已经与第一引线接合部分17接合并从其中被拉出到外部空间OS中的引线, 然后在第二凸缘23所在的轴向方向上向另一侧拉出,以及第三引线接合部27,其被构造成与多根引线15接合,使得已经与 然后将第一引线接合部17从外部空间OS中拉出,然后沿着轴向向第一凸缘21的一侧被拉出。 第三引线接合部分27以与第一引线接合部分17相距给定的距离形成在第一凸缘21中。
    • 5. 发明授权
    • Axial flow fan
    • 轴流风机
    • US08616864B2
    • 2013-12-31
    • US13001503
    • 2009-06-15
    • Toshiyuki NakamuraMasahiro KoikeNaoya Inada
    • Toshiyuki NakamuraMasahiro KoikeNaoya Inada
    • F04B35/04
    • F04D25/08F04D25/0613F04D25/0693F04D29/52
    • An axial flow fan provided herein allows for a wide range of selection for placement of the fan and wiring of the lead wires. The axial flow fan includes a first lead wire engaging portion 17 configured to be engaged with a plurality of lead wires 15 such that the lead wires are pulled out therefrom into an outer space OS defined between a first flange 21 and a second flange 23 of a fan housing 3, a second lead wire engaging portion 19 configured to be engaged with the plurality of lead wires 15 such that the lead wires, which have been engaged with the first lead wire engaging portion 17 and pulled out therefrom into the outer space OS, are then pulled out toward the other side in the axial direction where the second flange 23 is positioned, and a third lead wire engaging portion 27 configured to be engaged with the plurality of lead wires 15 such that the lead wires, which have been engaged with the first lead wire engaging portion 17 and pulled out therefrom into the outer space OS, are then pulled out in the axial direction toward one side where the first flange 21 is positioned. The third lead wire engaging portion 27 is formed in the first flange 21 at a given distance from the first lead wire engaging portion 17.
    • 这里提供的轴流风扇允许宽范围的选择用于布置风扇和引线的布线。 轴流风扇包括第一引线接合部分17,其被配置为与多个引线15接合,使得引线从其中被拉出到限定在第一凸缘21和第二凸缘21之间的外部空间OS中 风扇壳体3,第二引线接合部分19,被配置为与多个引线15接合,使得已经与第一引线接合部分17接合并从其中被拉出到外部空间OS中的引线, 然后在第二凸缘23所在的轴向方向上向另一侧拉出,以及第三引线接合部27,其被构造成与多根引线15接合,使得已经与 然后将第一引线接合部17从外部空间OS中拉出,然后沿着轴向向第一凸缘21的一侧被拉出。 第三引线接合部分27以与第一引线接合部分17相距给定的距离形成在第一凸缘21中。
    • 6. 发明授权
    • Bonding agent comprising spherical sintered metal oxide powder
    • 包含球形烧结金属氧化物粉末的粘合剂
    • US08486328B2
    • 2013-07-16
    • US12837708
    • 2010-07-16
    • Makoto OhmoriToshiyuki NakamuraTakashi Ryu
    • Makoto OhmoriToshiyuki NakamuraTakashi Ryu
    • B22F3/10B22F7/08H01M2/16H01M2/18
    • H01M8/0297H01M4/9033H01M8/0282H01M2008/1293Y10T428/2982
    • Powders of respective metal elements (Mn,Co) constituting a transition metal oxide (MnCo2O4) having a spinel type crystal structure are used as a starting material. A paste containing the mixture of the powders is interposed between an air electrode and an interconnector, and with this state, a sintering is performed, whereby a bonding agent according to the present invention can be obtained. This bonding agent has a “co-continuous structure”. In the “co-continuous structure”, a thickness of an arm portion that links many base portions to one another is 0.3 to 2.5 μm. The bonding agent includes a spherical particle in which plural crystal faces are exposed to the surface, the particle having a side with a length of 1 μm or more, among the plural sides constituting the outline of the crystal face. The diameter of the particle is 5 to 80 μm.
    • 使用构成具有尖晶石型晶体结构的过渡金属氧化物(MnCo 2 O 4)的各金属元素(Mn,Co)的粉末作为原料。 将包含粉末混合物的糊剂置于空气电极和互连器之间,并且在该状态下进行烧结,由此可以获得本发明的粘合剂。 该粘合剂具有“共连续结构”。 在“共连续结构”中,将多个基部彼此连接的臂部的厚度为0.3〜2.5μm。 粘合剂包括构成晶面轮廓的多个面中的多个晶面暴露于表面的粒子,具有长度为1μm或更大的一侧的粒子。 颗粒直径为5-80μm。
    • 10. 发明授权
    • Risk evaluation support device, program product and method for controlling safety network risk evaluation support device
    • 风险评估支持设备,程序产品和方法,用于控制安全网络风险评估支持设备
    • US07840430B2
    • 2010-11-23
    • US11221043
    • 2005-09-06
    • Toshiyuki Nakamura
    • Toshiyuki Nakamura
    • G06F17/50
    • G05B19/058G06Q10/063
    • A risk evaluation support device is used for a safety network which serves to cause an output device to make a controlled device operable based on a detection signal outputted from an input device when the input device detects a safety condition. The support device creates a parameter setting table for correlating a danger source with the input and output devices and a PLC for risk evaluation based on configuration data of the safety network obtained through a communication part and device data on devices obtained from a component database. Operating data for the safety network are obtained according to conditions provided by the parameter setting table and a current risk evaluation value for the danger source is calculated based on the obtained operating data. The calculated risk evaluation value is outputted to a display part.
    • 风险评估支持装置用于安全网络,该安全网络用于当输入装置检测到安全条件时,基于从输入装置输出的检测信号使输出装置使受控装置可操作。 支持装置根据通过部件获取的安全网络的配置数据和从组件数据库获得的设备,创建用于将危险源与输入和输出设备相关联的参数设置表和用于风险评估的PLC。 根据参数设置表提供的条件获取安全网络的操作数据,并根据获得的操作数据计算危险源的当前风险评估值。 将计算出的风险评估值输出到显示部。