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    • 81. 发明申请
    • SYSTEM, PROGRAM PRODUCT, AND RELATED METHODS FOR REGISTERING THREE-DIMENSIONAL MODELS TO POINT DATA REPRESENTING THE POSE OF A PART
    • 系统,程序产品和相关方法,用于注册三维模型到点数据表示部分的位置
    • US20090248323A1
    • 2009-10-01
    • US12202016
    • 2008-08-29
    • Wesley TurnerJames MillerWilliam Lorensen
    • Wesley TurnerJames MillerWilliam Lorensen
    • G01B5/30
    • G01N29/2418G01N29/0654G01N29/30
    • A system, program product, and method to perform automated three-dimensional image registration of a part within an inspection cell, are provided. The system can include a laser-ultrasound inspection device having a scanning head to generate ultrasonic surface displacements in a part, an inspection laser, and an interferometer to collect phase modulated light reflected by the part. The system can also include a part position locator positioned to measure a distance between points on a surface of the part and a scanning laser reference location. The system can also include a database containing computer-aided design models for each part of interest, and a model of the inspection cell. The system can further include a laser ultrasound inspection computer communication with the laser-ultrasound detection device and the part position locator, and laser ultrasound inspection program product adapted to perform automated three-dimensional image registration of the part.
    • 提供了一种用于执行检查单元内的部件的自动三维图像配准的系统,程序产品和方法。 该系统可以包括具有扫描头的激光超声检查装置,以在部件中产生超声波表面位移,检查激光器和干涉仪,以收集由该部件反射的相位调制光。 该系统还可以包括定位成测量部件表面上的点之间的距离的扫描激光器参考位置的部件位置定位器。 该系统还可以包括一个包含每个感兴趣部分的计算机辅助设计模型的数据库,以及检查单元的模型。 该系统还可以包括与激光超声检测装置和部件位置定位器的激光超声检查计算机通信,以及适于执行部件的自动三维图像配准的激光超声检查程序产品。
    • 87. 发明申请
    • Method for storing and retrieving data objects
    • 存储和检索数据对象的方法
    • US20080065636A1
    • 2008-03-13
    • US11982201
    • 2007-11-01
    • Arthur MillerJames Miller
    • Arthur MillerJames Miller
    • G06F17/30
    • G06F16/93
    • The invention applies the economies of scale to data processing and provides automated methods of collecting, categorizing, indexing, storing and retrieving large amounts of data from a wide variety of sources. The invention discloses the use of location and industry templates to categorize documents and other data objects. Location and industry data for each document is translated into a set of assignment numerals that are used to create a header number. Each document or data object is indexed and stored in a data warehouse in accordance with the header number. Subsequently, documents and data objects are retrieved from the data warehouse using the index of header numbers and the location and industry templates.
    • 本发明将规模经济应用于数据处理,并提供从各种来源收集,分类,索引,存储和检索大量数据的自动化方法。 本发明公开了使用位置和行业模板对文档和其他数据对象进行分类。 每个文档的位置和行业数据被转换成用于创建标题号的一组分配数字。 每个文档或数据对象都按照标题索引并存储在数据仓库中。 随后,使用头号和位置和行业模板的索引从数据仓库检索文档和数据对象。
    • 89. 发明申请
    • Torsion blade pivot windmill
    • 扭转叶片枢轴风车
    • US20070264121A1
    • 2007-11-15
    • US11431937
    • 2006-05-10
    • James Miller
    • James Miller
    • B64C27/615
    • F03D1/0658F03D1/0608F05B2240/30Y02E10/721Y02E10/726
    • A pair of airfoil blades having a longitudinal axis coincident with one another. Each blade is bent at the center on the plane of the chord. Each blade has an airfoil tip blade placed at the outer most trailing edge. The blades are affixed by their root ends to opposite ends of a torsion shaft. The blade chords are offset from one another, which defines a blade pitch angle. The torsion shaft is journaled perpendicular through a driveshaft, whereas the rotation of the blades can transfer through the torsion shaft to the driveshaft and cause the driveshaft to turn, eliminating the need for a hub. The blades are adapted to pivot along with the torsion shaft. The blades lie in substantially the same plane, and are adapted for rotation in a plane orthogonal to the longitudinal axis of the driveshaft. Each blade has an airfoil shaped fluid gate valve disposed on the leading edge.
    • 一对具有彼此重合的纵轴的翼型叶片。 每个叶片在和弦平面上的中心弯曲。 每个叶片具有放置在最外侧最后缘的翼型末端叶片。 叶片的根端固定在扭转轴的相对端。 叶片和弦彼此偏移,这限定了叶片桨距角。 扭转轴通过驱动轴垂直地轴向旋转,而叶片的旋转可以通过扭转轴传递到驱动轴,并使驱动轴转动,从而无需轮毂。 叶片适于与扭转轴一起枢转。 叶片位于基本上相同的平面中,并且适于在与驱动轴的纵向轴线正交的平面中旋转。 每个叶片具有设置在前缘上的翼型流体闸阀。