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    • 21. 发明授权
    • System and methods for x-ray backscatter reverse engineering of structures
    • 结构的x射线反向散射逆向工程的系统和方法
    • US07508910B2
    • 2009-03-24
    • US11739835
    • 2007-04-25
    • Morteza SafaiGary E. GeorgesonWilliam T. Edwards
    • Morteza SafaiGary E. GeorgesonWilliam T. Edwards
    • G01N23/04
    • G01N23/203B64F5/60
    • A system and methods for x-ray backscatter reverse engineering of structures. One embodiment includes a plurality of articulated arms attached to a movable base. Another embodiment includes a single counterweighted arm attached to a movable base. The arms include x-ray detectors. At least one x-ray source, which may be mounted on the arm(s), emits x-rays, which are backscattered off the surfaces and objects of interest and captured by the detectors to generate images of hidden objects. The present system provides improved speed and resolution over prior art systems. The system has a field-of-view and effective scanning range versatile enough to work in various orientations and in environments of various sizes. In certain embodiments the system is compact and lightweight so that it can be easily transported and used within confined spaces or in environments where weight is a consideration, such as inside or underneath aircraft. The system is also pointable and adaptable.
    • 结构的x射线反向散射逆向工程的系统和方法。 一个实施例包括附接到可移动基座的多个铰接臂。 另一个实施例包括附接到可移动基座的单个配重臂。 手臂包括X射线探测器。 可以安装在臂上的至少一个x射线源发射x射线,这些X射线从感兴趣的表面和物体背面散射并被检测器捕获以产生隐藏物体的图像。 本系统提供比现有技术系统更好的速度和分辨率。 该系统具有足够的视野和有效的扫描范围,可以在各种尺寸和各种尺寸的环境中工作。 在某些实施例中,该系统是紧凑且重量轻的,使得其可以容易地在密闭空间内或在重量考虑的环境中运输和使用,例如飞机内部或底部。 该系统也是有针对性和适应性的。
    • 23. 发明申请
    • System and method for in-situ monitoring of composite materials
    • 复合材料原位监测系统及方法
    • US20080312848A1
    • 2008-12-18
    • US11818702
    • 2007-06-15
    • Michael D. FogartyGary E. Georgeson
    • Michael D. FogartyGary E. Georgeson
    • G01N29/04
    • G01N29/223G01M5/0016G01M5/0033G01N29/043G01N2203/0005G01N2203/0073G01N2291/0231G01N2291/0258G01N2291/044G01N2291/048
    • In a non-limiting, exemplary system for in-situ monitoring of a composite workpiece, at least one ultrasonic testing transducer is mounted to a surface of a composite workpiece and configured to transmit and receive ultrasonic energy to and from the composite workpiece during mechanical loading of the composite workpiece. An ultrasonic pulser/receiver is operatively coupled to the at least one ultrasonic testing transducer. A computing system is operatively coupled to the ultrasonic pulser/receiver. The computing system includes a data acquisition component configured to acquire data from the ultrasonic pulser/receiver and a data analysis component configured to analyze the acquired data. The data analysis component may be further configured to analyze the acquired data for initiation of failure of the composite workpiece and/or growth of failure of the composite workpiece. Further, failure of the composite workpiece may include cracking and/or delaminating and/or disbonding.
    • 在用于原位监测复合材料工件的非限制性示例性系统中,至少一个超声波测试传感器安装在复合材料工件的表面上并被配置成在机械加载期间向复合材料工件传送和接收超声能量 的复合工件。 超声波脉冲发生器/接收器可操作地耦合到至少一个超声波测试传感器。 计算系统可操作地耦合到超声脉冲发生器/接收器。 计算系统包括被配置为从超声波脉冲发生器/接收器获取数据的数据采集部件和被配置为分析所获取的数据的数据分析部件。 数据分析部件还可以被配置为分析所采集的数据以便复合材料的故障发生和/或复合材料的故障的增长。 此外,复合工件的故障可能包括开裂和/或分层和/或脱粘。