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首页> 外文期刊>International Journal of Heat and Mass Transfer >Measurement of core temperature through semi-transparent polyamide 6 using scanner-integrated pyrometer in laser welding
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Measurement of core temperature through semi-transparent polyamide 6 using scanner-integrated pyrometer in laser welding

机译:使用扫描仪集成高温计在激光焊接中通过半透明聚酰胺6测量核心温度

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Predicting the core temperature during welding is an ambitious aim in many research works. In this work, a 3D-scanner with integrated pyrometer is characterized and used to measure the temperature during quasi-simultaneous laser transmission welding of polyamide 6. However, due to welding in an overlap configuration, the heat radiation emitted from the joining zone of a laser transmission weld has to pass through the upper polymer, which is itself a semi-transparent emitter. Therefore, the spectral filtering of the heat radiation in the upper polymer is taken into account by calibrating the pyrometer for the measurement task. Thermal process simulations are performed to compare the temperature field with the measured temperature signal. The absorption coefficients of the polymers are measured, in order to get precise results from the computation. The temperature signals during welding are in good agreement with the computed mean temperature inside the detection spot, located in the joining area. This is also true for varying laser power, laser beam diameter and the carbon black content in the lower polymer. Both, the computed mean temperature and the temperature signal are representing the core temperature. In order to evaluate the spatial sensitivity of the measurement system, the emitted heat radiation from both polymers is calculated on basis of the computed temperature field. Hereby it is found, that more than 90 percent of the detected heat radiation comes from the joining area, which is a crucial information for contact-free temperature measurement tasks on semi-transparent polymers. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在许多研究工作中,预测焊接过程中的中心温度是一个雄心勃勃的目标。在这项工作中,带有集成高温计的3D扫描仪的特征是,用于在聚酰胺6的准同时激光透射焊接过程中测量温度。但是,由于焊接处于重叠状态,因此从聚酰亚胺的连接区域发出的热辐射激光透射焊缝必须穿过上部聚合物,该聚合物本身是半透明的发射器。因此,通过校准用于测量任务的高温计,可以考虑对上层聚合物中的热辐射进行光谱过滤。进行热过程仿真以将温度场与测得的温度信号进行比较。测量聚合物的吸收系数,以便从计算中获得精确的结果。焊接过程中的温度信号与位于连接区域的检测点内部的计算出的平均温度高度吻合。对于改变激光功率,激光束直径和低级聚合物中炭黑含量的情况也是如此。计算的平均温度和温度信号均代表核心温度。为了评估测量系统的空间灵敏度,基于计算出的温度场计算了两种聚合物发出的热辐射。由此发现,检测到的热辐射中有90%以上来自接合区域,这对于半透明聚合物的非接触式温度测量任务而言是至关重要的信息。 (C)2019 Elsevier Ltd.保留所有权利。

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