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    • 4. 发明申请
    • Methods and apparatus for assembling rotatable machines
    • 用于组装可旋转机器的方法和装置
    • US20060210402A1
    • 2006-09-21
    • US11270091
    • 2005-11-09
    • Thomas HenningJohn MickolDaniel Mollmann
    • Thomas HenningJohn MickolDaniel Mollmann
    • F01D5/30
    • F01D5/3007F01D5/027F01D5/30F05D2230/60F05D2240/30F05D2240/40Y02T50/672Y02T50/673Y10T29/49323
    • Methods and systems for ordering blades in a rotatable machine is provided. The method includes receiving at least one geometric parameter measurement of each blade in a row of blades, determining a root sum squared value of a difference of a selected one of the received geometric parameter measurements between adjacent blades in the row of blades, determining a vector sum of a selected other one of the received geometric parameter measurements, determining a moment weight vector sum of each blade to be positioned on the rotor, and determining, using a computer, a sequence map of each blade using the root sum squared value of the difference of the geometric parameter measurement between adjacent blades in the row of blades, the vector sum of a selected other one of the received geometric parameter measurements, and the moment weight vector sum.
    • 提供了用于在可旋转机器中订购叶片的方法和系统。 该方法包括:接收一行叶片中的每个叶片的至少一个几何参数测量,确定叶片行中相邻叶片之间接收到的几何参数测量值中所选择的一个的差的根和平方值,确定矢量 确定所接收的几何参数测量中所选择的另一个的总和,确定要定位在转子上的每个叶片的力矩加权矢量和,以及使用计算机,使用计算机确定每个叶片的序列图, 刀片行中相邻刀片之间的几何参数测量的差异,所接收的几何参数测量中所选择的另一个的矢量和和力矩权重向量和。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR ANALYSING AN OPTICAL DEVICE
    • 用于分析光学器件的方法和装置
    • US20070188741A1
    • 2007-08-16
    • US11672463
    • 2007-02-07
    • Friedrich FleischmannThomas Henning
    • Friedrich FleischmannThomas Henning
    • G01B9/00G01N21/88
    • G01M11/0242G01M11/0207
    • Described are a method and apparatus for analysing an optical device, including: a) arranging an illuminating device which generates a test beam, the optical device that the test beam passes and a position-resolving sensor device which detects the test beam, relative to each other in a reference position that establishes a reference beam path; b) transmitting the test beam in a plurality of relative positions off set with respect to the reference position, relative to the reference position, the test beam being incident upon a measuring point assigned to the respective relative position on the optical device; c) detecting, for a respective relative position, a position of incidence of the test beam, after it passes the optical device, on one or a plurality of planes of detection offset relative to each other; d) determining the beam path of the test beam from the positions of incidence detected in step c) for each relative position and calculating optical characteristics of the optical device.
    • 描述了一种用于分析光学装置的方法和装置,包括:a)布置产生测试光束的照明装置,测试光束通过的光学装置和相对于每个测试光束检测测试光束的位置分辨传感器装置 另一个在建立参考光束路径的参考位置; b)相对于参考位置相对于参考位置设置的多个相对位置发送测试光束,测试光束入射到分配给光学设备上的相应相对位置的测量点上; c)对于相应的相对位置,检测测试光束在通过光学装置之后在相对于彼此偏移的一个或多个检测平面上的入射位置; d)从每个相对位置的步骤c)中检测到的入射位置确定测试光束的光束路径,并计算光学设备的光学特性。
    • 7. 发明授权
    • Methods of connecting an optical fiber and methods of providing
radiation from an optical fiber
    • 连接光纤的方法和提供来自光纤的辐射的方法
    • US5875275A
    • 1999-02-23
    • US979387
    • 1997-11-26
    • William James EvansThomas HenningKelly CoxVictor C. EschYefim GelfondStephanos PapademetriouDaren L. Stewart
    • William James EvansThomas HenningKelly CoxVictor C. EschYefim GelfondStephanos PapademetriouDaren L. Stewart
    • G02B6/36G02B6/38G02B6/42
    • G02B6/4292G02B6/3869G02B6/4296G02B2006/4297
    • A fiber optic radiation transmission system is provided in which an optical fiber and a radiation source are connected to establish optical communication therebetween. Additionally, a connecting system is provided for connecting an optical fiber and a radiation source such that optical communication is established therebetween. The systems include a connector which carries the optical fiber therein. The connector is extendable within the system toward the radiation source to bring the optical fiber into optical communication with the radiation source. More particularly, the systems are configured in such a way that when the connector is extended sufficiently within the system, it seats the optical fiber relative to the radiation source under bias, thereby establishing a reliable optical connection. Once the optical connection is thus established, the connector engages a connection port associated with the radiation source to secure the system in a fully connected configuration appropriate for use. Thus, in a method of using such a system, the user simply extends the connector until the connector engages the connection port. The present invention thus provides efficient and reliable systems in which optical communication is established between an optical fiber and a radiation source.
    • 提供了一种光纤辐射传输系统,其中光纤和辐射源被连接以在它们之间建立光通信。 此外,提供连接系统以连接光纤和辐射源,使得它们之间建立光通信。 该系统包括在其中承载光纤的连接器。 连接器可在系统内朝向辐射源延伸以使光纤与辐射源成光学通信。 更具体地,系统被配置成使得当连接器在系统内充分地延伸时,其在偏压下相对于辐射源来放置光纤,从而建立可靠的光学连接。 一旦建立了光学连接,则连接器接合与辐射源相关联的连接端口,以将系统固定成适合使用的完全连接的构造。 因此,在使用这种系统的方法中,用户简单地延伸连接器,直到连接器接合连接端口。 因此,本发明提供了在光纤和辐射源之间建立光通信的有效和可靠的系统。
    • 8. 发明授权
    • Fiber optic radiation transmisson system connector for an optical fiber
and methods of usine same
    • 用于光纤的光纤辐射传输系统连接器及其使用方法
    • US5802229A
    • 1998-09-01
    • US915546
    • 1997-08-13
    • William James EvansThomas HenningKelly CoxVictor C. EschYefim GelfondStephanos PapademetriouDaren L. Stewart
    • William James EvansThomas HenningKelly CoxVictor C. EschYefim GelfondStephanos PapademetriouDaren L. Stewart
    • G02B6/36G02B6/38G02B6/42G02B6/00
    • G02B6/4292G02B6/3869G02B6/4296G02B2006/4297
    • A fiber optic radiation transmission system is provided in which an optical fiber and a radiation source are connected to establish optical communication therebetween. Additionally, a connecting system is provided for connecting an optical fiber and a radiation source such that optical communication is established therebetween. The systems include a connector which carries the optical fiber therein. The connector is extendable within the system toward the radiation source to bring the optical fiber into optical communication with the radiation source. More particularly, the systems are configured in such a way that when the connector is extended sufficiently within the system, it seats the optical fiber relative to the radiation source under bias, thereby establishing a reliable optical connection. Once the optical connection is thus established, the connector engages a connection port associated with the radiation source to secure the system in a fully connected configuration appropriate for use. Thus, in a method of using such a system, the user simply extends the connector until the connector engages the connection port. The present invention thus provides efficient and reliable systems in which optical communication is established between an optical fiber and a radiation source.
    • 提供了一种光纤辐射传输系统,其中光纤和辐射源被连接以在它们之间建立光通信。 此外,提供连接系统以连接光纤和辐射源,使得它们之间建立光通信。 该系统包括在其中承载光纤的连接器。 连接器可在系统内朝向辐射源延伸以使光纤与辐射源成光学通信。 更具体地,系统被配置成使得当连接器在系统内充分地延伸时,其在偏压下相对于辐射源来放置光纤,从而建立可靠的光学连接。 一旦建立了光学连接,则连接器接合与辐射源相关联的连接端口,以将系统固定成适合使用的完全连接的构造。 因此,在使用这种系统的方法中,用户简单地延伸连接器,直到连接器接合连接端口。 因此,本发明提供了在光纤和辐射源之间建立光通信的有效和可靠的系统。
    • 10. 发明授权
    • Method and apparatus for analyzing an optical device
    • 用于分析光学装置的方法和装置
    • US07782449B2
    • 2010-08-24
    • US11672463
    • 2007-02-07
    • Friedrich FleischmannThomas Henning
    • Friedrich FleischmannThomas Henning
    • G01B9/00
    • G01M11/0242G01M11/0207
    • Described are a method and apparatus for analysing an optical device, including: a) arranging an illuminating device which generates a test beam, the optical device that the test beam passes and a position-resolving sensor device which detects the test beam, relative to each other in a reference position that establishes a reference beam path; b) transmitting the test beam in a plurality of relative positions off set with respect to the reference position, relative to the reference position, the test beam being incident upon a measuring point assigned to the respective relative position on the optical device; c) detecting, for a respective relative position, a position of incidence of the test beam, after it passes the optical device, on one or a plurality of planes of detection offset relative to each other; d) determining the beam path of the test beam from the positions of incidence detected in step c) for each relative position and calculating optical characteristics of the optical device.
    • 描述了一种用于分析光学装置的方法和装置,包括:a)布置产生测试光束的照明装置,测试光束通过的光学装置和相对于每个测试光束检测测试光束的位置分辨传感器装置 另一个在建立参考光束路径的参考位置; b)相对于参考位置相对于参考位置设置的多个相对位置发送测试光束,测试光束入射到分配给光学设备上的相应相对位置的测量点上; c)对于相应的相对位置,检测测试光束在通过光学装置之后在相对于彼此偏移的一个或多个检测平面上的入射位置; d)从每个相对位置的步骤c)中检测到的入射位置确定测试光束的光束路径,并计算光学设备的光学特性。