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    • 1. 发明授权
    • Support system with improved reusability of work history data and design support method
    • 支持系统提高工作历史数据的可重用性和设计支持方法
    • US08126682B2
    • 2012-02-28
    • US10046715
    • 2002-01-17
    • Yasuyuki AnamiHiroshi Nakajima
    • Yasuyuki AnamiHiroshi Nakajima
    • G06F17/50G06F19/00G06G7/48
    • G06T17/00G06F17/50
    • To provide a design support system which can enhance reusability of historical data about past design work and improve work efficiency, design work history data is divided according to an instruction to generate unit work history data, input work made by a person in charge of work in a history is retrieved, input of design support information for the work is accepted, and the input design support information is inserted into the unit work history data to be stored in a database 1. The person in charge of work who reuses the unit work history data performs design work with reference to the design work history data which is previously reproduced in a design support window shown on a display section 24 of a design support device 2 and the design support information contained in it.
    • 提供一种设计支持系统,可以提高对过去设计工作的历史数据的可重用性,提高工作效率,根据生成单位工作历史数据的指示划分工作历史数据,由负责工作的人员进行投入工作 检索历史,接受工作的设计支持信息的输入,并将输入设计支持信息插入到单元工作历史数据中以存储在数据库1中。负责单位工作历史的工作负责人 参考设计工作历史数据进行设计工作,该设计工作历史数据先前在设计支持设备2的显示部分24所示的设计支持窗口中以及包含在其中的设计支持信息。
    • 3. 发明授权
    • Impeller manufacturing method
    • 叶轮制造方法
    • US08590150B2
    • 2013-11-26
    • US13805021
    • 2011-10-25
    • Khanhson PhamHiroshi Nakajima
    • Khanhson PhamHiroshi Nakajima
    • B21D51/16
    • B23K31/02B23K2101/001F04D29/023F04D29/284F05D2230/232Y10T29/49316Y10T29/49968
    • The present invention relates to a method of joining a hub 11 and a shroud 12 of an impeller 10, either one of which has blades 13 integrally formed thereon, by welding. During the welding, in an upright state in which the hub 11 is placed to face a mount surface, the hub 11 and the shroud 12 are placed on top of each other to form an assembled body 10. Welding is performed on the assembled body 10 covered with a heat insulating jacket 30(a to g), the jacket 30 covering the assembled body 10 except an open region (OP) and an inflow port 14IN required for welding. When welding of one open region OP is completed, a new open region OP is formed by moving the heat insulating jacket 30 with respect to the assembled body, and then the next welding is performed.
    • 本发明涉及一种将叶轮10的轮毂11和护罩12连接起来的方法,叶轮10中的任一个具有通过焊接一体形成的叶片13。 在焊接期间,在轮毂11被放置成面向安装表面的直立状态下,轮毂11和护罩12被放置在彼此的顶部以形成组装体10.在组装体10上进行焊接 覆盖有隔热护套30(a至g),除了开放区域(OP)和焊接所需的流入端口14IN之外,护套30覆盖组装体10。 当一个开放区域OP的焊接完成时,通过相对于组装体移动隔热套30而形成新的开放区域OP,然后进行下一次焊接。
    • 4. 发明授权
    • Optical surface defect inspection apparatus and optical surface defect inspection method
    • 光学表面缺陷检查装置和光学表面缺陷检查方法
    • US08547547B2
    • 2013-10-01
    • US13213116
    • 2011-08-19
    • Shintaro TamuraMasanori FukawaAyumu IshiharaKenichi ShitaraHiroshi Nakajima
    • Shintaro TamuraMasanori FukawaAyumu IshiharaKenichi ShitaraHiroshi Nakajima
    • G01N21/00
    • G01N21/00G01N21/8806G01N21/9501G01N21/9506G01N2201/0833
    • The present invention is to provide an optical surface defect inspection apparatus or an optical surface defect inspection method that can improve a signal-to-noise ratio according to a multi-segmented cell method without performing autofocus operations, and can implement highly sensitive inspection. The present invention is an optical surface defect inspection apparatus or an optical surface defect inspection method in which an inspection beam is applied onto a test subject, an image of a scattered light from the surface of the test subject is formed on a photo-detector, and a defect on the surface of the test subject is inspected based on an output from the photo-detector. The photo-detector has an optical fiber bundle. One end thereof forms a circular light receiving surface to receive the scattered light. The other end thereof is connected to a plurality of light receiving devices. The optical fiber bundle is divided into a plurality of fan-shaped cells in the light receiving surface, and connected to the light emitting devices in units of the cells for performing the inspection based on the outputs of the plurality of cells.
    • 本发明提供一种光学表面缺陷检查装置或光学表面缺陷检查方法,其可以在不进行自动对焦操作的情况下,根据多分段单元法提高信噪比,并且可以实现高度敏感的检查。 本发明是一种光学表面缺陷检查装置或光学表面缺陷检查方法,其中将检查光束施加到测试对象上,在光检测器上形成来自受检者表面的散射光的图像, 并且基于光电检测器的输出来检查测试对象的表面上的缺陷。 光检测器具有光纤束。 其一端形成圆形光接收表面以接收散射光。 其另一端连接到多个光接收装置。 光纤束在光接收表面被分成多个扇形单元,并且以基于多个单元的输出执行检查的单元为单位连接到发光器件。
    • 10. 发明申请
    • FEATURE PARAMETER CANDIDATE GENERATION APPARATUS AND FEATURE PARAMETER CANDIDATE GENERATION METHOD
    • 特征参数候选生成装置和特征参数候选生成方法
    • US20100235151A1
    • 2010-09-16
    • US12740336
    • 2008-10-31
    • Mitsuhiro YonedaHiroshi NakajimaNaoki TsuchiyaHiroshi Tasaki
    • Mitsuhiro YonedaHiroshi NakajimaNaoki TsuchiyaHiroshi Tasaki
    • G06F17/10
    • G06K9/6298G06F19/00G16H50/50
    • A feature parameter candidate generation apparatus has a storage unit that stores the values of feature parameters extracted from each of samples, an index value calculation unit that calculates an index value, which is obtained by normalizing the number of the kinds of the values of feature parameters by the number of the samples, for each of the feature parameters, an evaluation object selection unit that selects combinations of feature parameters which are objects to be evaluated, an evaluation unit that evaluates whether the uniformity of a frequency distribution of index values of the individual feature parameters for combinations of feature parameters selected as the objects to be evaluated satisfies a predetermined criterion, and a candidate determination unit that determines, as feature parameter candidates to be given to the model generation device, a combination of feature parameters that is evaluated to satisfy the predetermined criterion.
    • 特征参数候选生成装置具有存储单元,存储从各样本提取的特征参数的值,计算索引值的索引值计算单元,该索引值计算单元通过对特征参数的值的种类的数量进行归一化而获得 通过对于每个特征参数的样本数量,评估对象选择单元,其选择作为评估对象的特征参数的组合;评估单元,其评估个体的指标值的频率分布的均匀性 作为要评估对象选择的特征参数的组合的特征参数满足预定标准,以及候选确定单元,其将作为要赋予模型生成装置的特征参数候补确定为评估满足的特征参数的组合 预定标准。