首页> 外文期刊>Journal of Applied Mechanical Engineering >Ultrasound Tomography for Spatially Resolved Melt TemperatureMeasurements in Injection Moulding Processes
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Ultrasound Tomography for Spatially Resolved Melt TemperatureMeasurements in Injection Moulding Processes

机译:超声层析成像技术在注塑过程中空间分辨的熔体温度测量

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In injection moulding processes, the measurement of the temperature distribution is very important for the validation of models used for simulative part design due to the high influence on shrinkage and warpage of the moulded part, but is also very challenging to measure. During the injection moulding process high mould pressures occur and the cavity is not easily accessible. Therefore, contact sensors cannot be used since they induce shear stress into the melt, which changes the flow behaviour of the melt and thus the temperature field. In this work, we present a method for the contactless determination of the temperature distribution of a moulded part during injection moulding using ultrasound tomography. With time-of-flight ultrasound measurements from different directions it is possible to reconstruct the distribution of ultrasound velocity in the cross-section of a moulded part. With this distribution, the temperature field can be calculated using additional material characteristic properties. Based on this concept, an injection mould was designed, that allows performing ultrasound tomography with 20 ultrasound transducers radially arranged around a cylindrical shaped cavity. This allows the temperature determination under real process conditions with a spatial resolution of 3.5 mm2. A highly parallelised measurement device allows recording of several complete datasets before no more signals can be detected due to shrinkage of the moulded part. During several injections moulding-cycles all sensor positions were able to detect noticeable signals. Due to internal signal processing of the measurement device, it is not yet possible to calculate arrival times of the ultrasound signal but amplitude-scans show the general feasibility of ultrasound tomography during injection moulding..
机译:在注塑成型过程中,温度分布的测量对于模拟零件设计所用模型的验证非常重要,因为它对模塑零件的收缩和翘曲有很大影响,但测量也极具挑战性。在注塑过程中,会产生较高的模具压力,并且不易进入型腔。因此,不能使用接触传感器,因为它们将剪切应力引入熔体中,这会改变熔体的流动行为,从而改变温度场。在这项工作中,我们提出了一种使用超声波断层扫描在注射成型过程中非接触式确定成型部件温度分布的方法。通过从不同方向进行飞行时间超声波测量,可以重建成型零件横截面中超声波速度的分布。通过这种分布,可以使用其他材料特征属性来计算温度场。基于此概念,设计了一种注射模具,该模具允许使用20个沿圆柱形腔体径向排列的超声换能器进行超声层析成像。这样可以在实际过程条件下以3.5 mm2的空间分辨率确定温度。高度并行化的测量设备可以记录多个完整的数据集,然后再因成型件的收缩而无法检测到更多信号。在几次注塑成型周期中,所有传感器位置都能够检测到明显的信号。由于测量设备的内部信号处理,尚无法计算超声信号的到达时间,但是幅度扫描显示出在注塑过程中超声层析成像的一般可行性。

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