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首页> 外文期刊>Journal of Agricultural Engineering Research >Time constraints on glass detection in food materials using Compton scattered X-rays
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Time constraints on glass detection in food materials using Compton scattered X-rays

机译:用康普顿散射X射线检测食品中玻璃的时间限制

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The time constraints on foreign body detection in food using Compton scattered X-rays were examined. An equation was developed to calculate the number of scatter counts detected per second, given the geometry of the sample and the X-ray system. This was used to calculate the minimum time required to detect a contaminant in a sample, given that a signal-to-noise ratio of at least 7.4 was required for production line applications. The predicted times required to detect a glass fragment in a cube of water ranged from 0.018s for a 5 mm fragment to 280s for a 1 mm fragment in a 10cm cube, or respectively, 0.00036 and 5.5s in a 5 cm cube. The detection of a 4 mm glass fragment in water, instant coffee and muesli using Compton scatter was demonstrated by experiment. The contrasts obtained between the glass and the samples were, respectively, 0.5, 2.7 and 2.6, and the signal-to-noise ratios were, respectively, 10.1, 23.4 and 24.3. The minimum measurement times implied by the experiments were similar to those predicted by theory. The glass fragment was detected with strong contrast in the experiments, but the measurement times for whole-sample scanning were slow compared to production line speeds in the food industry. The detection of glass from the mean energy of the scattered X-ray spectrum was also demonstrated. A high contrast of 9 was obtained for glass in water, but the measurements were more noisy than the corresponding photon counting measurements, giving a signal-to-noise ratio of only 3.3.
机译:检查了使用康普顿散射X射线检测食品中异物的时间限制。在给定样品和X射线系统的几何形状的情况下,开发了一个方程来计算每秒检测到的散射计数的数量。假定生产线应用要求信噪比至少为7.4,这可用于计算检测样品中污染物所需的最短时间。检测一块水块中的玻璃碎片所需的预计时间范围从5毫米碎片的0.018s到10厘米立方体的1毫米碎片的280s,或者5厘米立方体的0.00036和5.5s。实验证明了使用康普顿散射仪检测水,速溶咖啡和牛奶什锦早餐中4 mm玻璃碎片的能力。玻璃与样品之间的对比度分别为0.5、2.7和2.6,信噪比分别为10.1、23.4和24.3。实验暗示的最小测量时间与理论预测的时间相似。在实验中检测到玻璃碎片的对比度很强,但是与食品行业的生产线速度相比,全样品扫描的测量时间慢。还证明了从散射X射线光谱的平均能量检测玻璃。玻璃在水中的对比度高达9,但测量结果比相应的光子计数测量结果更嘈杂,信噪比仅为3.3。

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