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    • 1. 发明授权
    • System and method for glass processing and temperature sensing
    • 玻璃加工和温度检测系统和方法
    • US06796144B2
    • 2004-09-28
    • US09870332
    • 2001-05-30
    • Chester L. ShepardBret D. CannonMohammad A. Khaleel
    • Chester L. ShepardBret D. CannonMohammad A. Khaleel
    • C03B2700
    • C03B27/0417C03B27/00C03B29/00G01K11/20Y10S65/13
    • Techniques for measuring the temperature at various locations through the thickness of glass products and to control the glass processing operation with the sensed temperature information are disclosed. Fluorescence emission of iron or cerium in glass is excited and imaged onto segmented detectors. Spatially resolved temperature data are obtained through correlation of the detected photoluminescence signal with location within the glass. In one form the detected photoluminescence is compared to detected scattered excitation light to determine temperature. Stress information is obtained from the time history of the temperature profile data and used to evaluate the quality of processed glass. A heating or cooling rate of the glass is also controlled to maintain a predetermined desired temperature profile in the glass.
    • 公开了通过玻璃制品的厚度测量各个位置的温度以及用感测到的温度信息来控制玻璃加工操作的技术。 玻璃中铁或铈的荧光发射被激发并成像到分段检测器上。 通过检测到的光致发光信号与玻璃内的位置的相关性获得空间分辨的温度数据。 在一种形式中,将检测到的光致发光与检测到的散射激发光进行比较以确定温度。 应力信息从温度曲线数据的时间历程中获得,用于评估加工玻璃的质量。 还控制玻璃的加热或冷却速率以在玻璃中保持预定的期望温度分布。
    • 6. 发明授权
    • Dual x-ray fluorescence spectrometer and method for fluid analysis
    • 双X射线荧光光谱仪和流体分析方法
    • US06859517B2
    • 2005-02-22
    • US10420460
    • 2003-04-22
    • Bary W. WilsonChester L. Shepard
    • Bary W. WilsonChester L. Shepard
    • G01N23/223G21K4/00
    • G01N33/2858G01N23/223G01N2223/076
    • Disclosed are an X-ray fluorescence (SRF) spectrometer and method for on-site and in-line determination of contaminant elements in lubricating oils and in fuel oils on board a marine vessel. An XRF source block 13 contains two radionuclide sources 16, 17 (e.g. Cd 109 and Fe 55), each oriented 180 degrees from the other to excite separate targets. The Cd 109 source 16 excites sample lube oil flowing through a low molecular weight sample line 18. The Fe 55 source 17 excites fuel oil manually presented to the source beam inside a low molecular weight vial 26 or other container. Two separate detectors A and B are arranged to detect the fluorescent x-rays from the targets, photons from the analyte atoms in the lube oil for example, and sulfur identifying x-rays from bunker fuel oil for example. The system allows both automated in-line and manual on-site analysis using one set of signal processing and multi-channel analyzer electronics 34, 37 as well as one computer 39 and user interface 43.
    • 本发明公开了一种X射线荧光(SRF)光谱仪和用于现场和在线确定润滑油中的污染物和在船上的燃料油中的方法。 XRF源块13包含两个放射性核素源16,17(例如Cd 109和Fe 55),每个放射性核素源彼此相对180度,以激发单独的靶。 Cd 109源16激发流过低分子量样品管线18的样品润滑油.Fe 55源17激发手动提供给低分子量小瓶26或其他容器内的源束的燃料油。 布置两个分开的检测器A和B以检测来自目标的荧光X射线,例如来自润滑油中的分析物原子的光子,以及例如识别来自燃料燃料油的X射线的硫。 该系统允许使用一组信号处理和多通道分析仪电子装置34,37以及一个计算机39和用户接口43进行自动在线和手动现场分析。