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Detection of seal contamination in heat sealed food packaging based on active infrared thermography

机译:基于主动红外热像仪的热封食品包装中的密封污染检测

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In the food industry packaging is often applied to protect the product from the environment, assuring quality and safety throughout shelf life if properly performed. Packaging quality depends on the material used and the closure (seal). The material is selected based on the specific needs of the food product to be wrapped. However, proper closure of the package is often harder to achieve. One problem possibly jeopardizing seal quality is the presence of food particles between the seal. Seal contamination can cause a decreased seal strength and thus an increased packaging failure risk. It can also trigger the formation of microchannels through which air and microorganisms can enter and spoil the enclosed food. Therefore, early detection and removal of seal-contaminated packages from the production chain is essential. In this work, a pulsed-type active thermography method using the heat of the sealing bars as an excitation source was studied for detecting seal contamination. The cooling profile of contaminated seals was recorded. The detection performance of four processing methods (based on a single frame, a fit of the cooling profile, pulsed phase thermography and a matched filter) was compared. High resolution digital images served as a reference to quantify contamination. The lowest detection limit (equivalent diameter of 0.63 mm) and the lowest processing time (0.42 s per sample) were obtained for the method based on a single frame. Presumably, practical limitations in the recording stage prevented the added value of active thermography to be fully reflected in this application.
机译:在食品工业中,包装通常用于保护产品免受环境影响,如果正确执行,则可确保整个保质期内的质量和安全性。包装质量取决于所使用的材料和封口(密封)。根据要包装的食品的特定需求选择材料。但是,通常很难实现包装的正确封闭。可能危害密封质量的一个问题是密封之间存在食物颗粒。密封污染会导致密封强度降低,从而增加包装失败的风险。它还可以触发微通道的形成,空气和微生物可以通过微通道进入并破坏封闭的食物。因此,必须从生产链中及早发现并清除受密封污染的包装。在这项工作中,研究了一种利用密封条的热量作为激发源的脉冲型主动热成像方法来检测密封污染。记录污染的密封件的冷却曲线。比较了四种处理方法(基于单个帧,冷却曲线的拟合,脉冲相热成像和匹配的滤波器)的检测性能。高分辨率数字图像可作为定量污染的参考。对于基于单帧的方法,获得了最低检测限(等效直径为0.63 mm)和最低处理时间(每个样品0.42 s)。据推测,由于记录阶段的实际限制,有源热成像技术的附加值无法在本应用中得到充分体现。

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