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    • 3. 发明公开
    • SYSTEM AND METHOD FOR INTERNALLY INSPECTING A TUBULAR COMPOSITE PART
    • 用于内部检查管状复合部件的系统和方法
    • EP3270145A1
    • 2018-01-17
    • EP17162907.4
    • 2017-03-24
    • The Boeing Company
    • SHELLEY, Paul H. JRFAY, Christopher Wayne
    • G01N21/954G01J3/28G01N21/35G01N21/359G02B23/24G02B23/26G01N21/84
    • G01N21/94G01J3/0221G01N21/359G01N21/954G01N2021/8472G01N2021/9546G01N2201/061G01N2201/0833G02B23/2469G02B23/26
    • A system (50) and method for internally inspecting a tubular composite part (10) so as to identify and measure adhesive flow therewithin are provided, along with an endpoint adapter (30) assembly of a near infrared (NIR) spectrometer (54). The system (50) includes an end point adapter that fits within and maintains a consistent cross-sectional position within the tubular composite part (10). The system (50) also includes a plurality of optical fibers (40) extending radially outward from the end point adapter. The end point adapter moves longitudinally through the tubular composite part (10) and receives light with the plurality of optical fibers (40) following interaction of the light with the tubular composite part (10). The system (50) further includes a NIR imaging spectrometer (54) configured to disperse the light being collected by the plurality of optical fibers (40) across an NIR spectrum λ and a NIR camera (58) configured to generate images of the tubular composite part (10) based on dispersed light.
    • 提供了用于内部检查管状复合部件(10)以识别和测量其中的粘合剂流动的系统(50)和方法以及近红外(NIR)光谱仪(54)的端点适配器(30)组件。 系统(50)包括端点适配器,该端点适配器配合在管状复合部件(10)内并保持在一致的横截面位置内。 系统(50)还包括从端点适配器径向向外延伸的多根光纤(40)。 端点适配器纵向移动通过管状复合部件(10)并且在光与管状复合部件(10)相互作用之后用多个光纤(40)接收光。 系统(50)还包括NIR成像光谱仪(54),NIR成像光谱仪(54)被配置为将由多根光纤(40)收集的光分散在NIR光谱λ上,NIR照相机(58)配置成生成管状复合材料 部分(10)基于散射光。
    • 6. 发明公开
    • APPARATUS AND METHOD FOR TESTING MATERIALS
    • MATERIALPRÜFUNGSVORRICHTUNG外展
    • EP2977746A1
    • 2016-01-27
    • EP15176714.2
    • 2015-07-14
    • Airbus Operations Limited
    • Laid, AddaTothill, Guy
    • G01N21/27G01N21/3563G01N21/35G01N21/84
    • G01J3/0275G01J3/0297G01J3/30G01N21/274G01N21/3563G01N2021/3595G01N2021/8472G01N2201/0221
    • The present invention concerns an apparatus and method for testing materials. More particularly, but not exclusively, this invention concerns an apparatus and method for testing materials which have a useable shelf-life. The invention also concerns an apparatus and method for testing materials which have a useable shelf-life dependent on the chemical degradation of the material. The invention provides a method of obtaining an indication of the lifespan of a chemically reactive material. The method comprises taking an infrared (IR) spectroscopic measurement (26) of the material. The measurement results are compared (28) to a database of previously obtained measurement results. Depending on the comparison (28) of the measurement result to the database of previously obtained measurement results, an indication (30) of a measure of the lifespan of the chemically reactive material is determined and provided. An infrared spectrometer (32) and a method of calibrating an infrared spectrometer is also provided.
    • 本发明涉及用于测试材料的装置和方法。 更具体地但并非排他地,本发明涉及一种用于测试具有可用保质期的材料的装置和方法。 本发明还涉及一种用于测试材料的装置和方法,其具有取决于材料的化学降解的可用的保质期。 本发明提供一种获得化学反应性材料寿命指示的方法。 该方法包括进行材料的红外(IR)光谱测量(26)。 将测量结果与先前获得的测量结果的数据库进行比较(28)。 根据测量结果与先前获得的测量结果的数据库的比较(28),确定和提供化学反应性材料寿命测量的指示(30)。 还提供了红外光谱仪(32)和校准红外光谱仪的方法。