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Recommendations and guidelines for the performance of accurate heat transfer measurements in rapid forming processes

机译:在快速成型过程中进行精确传热测量的建议和指南

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摘要

The published requirements for accurate measurement of heat transfer at the interface between two bodies have been reviewed. A strategy for reliable measurement has been established, based on the depth of the temperature sensors in the medium, on the inverse method parameters and on the time response of the sensors. Sources of both deterministic and stochastic errors have been investigated and a method to evaluate them has been proposed, with the help of a normalisation technique. The key normalisation variables are the duration of the heat input and the maximum heat flux density. An example of application of this technique in the field of high pressure die casting is demonstrated. The normalisation study, coupled with previous determination of the heat input duration, makes it possible to determine the optimum location for the sensors, along with an acceptable sampling rate and the thermocouples critical response-time (as well as eventual filter characteristics). Results from the gauge are used to assess the suitability of the initial design choices. In particular the unavoidable response time of the thermocouples is estimated by comparison with the normalised simulation.
机译:已审查了已发布的有关准确测量两个物体之间的界面传热的要求。基于介质中温度传感器的深度,方法的反参数和传感器的时间响应,已经建立了一种可靠的测量策略。已经研究了确定性误差和随机误差的来源,并在归一化技术的帮助下提出了一种评估误差的方法。关键的归一化变量是热量输入的持续时间和最大热通量密度。说明了该技术在高压压铸领域中的应用实例。归一化研究与先前确定的热量输入持续时间相结合,可以确定传感器的最佳位置,以及可接受的采样率和热电偶的临界响应时间(以及最终的过滤器特性)。量规的结果用于评估初始设计选择的适用性。特别地,通过与归一化的仿真比较来估计热电偶不可避免的响应时间。

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