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Non-invasive Ultrasound Based Reflection Measurements at Polymer Plastication Units: Measurement of Melt Temperature, Melting Behaviour and Screw Wear

机译:聚合物塑化装置的非侵入式超声反射测量:熔融温度测量,熔化行为和螺杆磨损

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Previous attempts to accurately measure the real polymer melt temperature, the melting behaviour and the wear along the plastication screw of an injection moulding machine have failed on account of challenging metrological boundary conditions (high pressure, high temperature, rotating and axial moved screw). We developed a novel ultrasound system - based on reflection measurements - for the online determination of these important process parameters. Using available pressure-volume-temperature (pvT) data from a polymer it is possible to estimate the density and adiabatic compressibility of the material and therefore the pressure and temperature depending longitudinal ultrasound velocity. From the measured ultrasonic reflection time from the screw root and the pressure it is possible to calculate the mean temperature in the screw channel (in opposition to flush mounted infrared or thermocouple probes). Furthermore, the absence of the signal from the screw root indicates (due to the scattering of sound energy) unmelted material in the screw channel. This information can be used for the estimation of the melting behaviour along the screw. Monitoring the signal from the screw flight it is possible to detect wear effects due to adhesive, abrasive and corrosive processes. Both the melting behaviour and wear effects at the screw flights are commonly determined by pulling the screw out of the barrel in a time-consuming and cost-intensive process. The proposed online system can significantly reduce the inspection time from hours (or days) to minutes.
机译:以前的尝试准确测量真正的聚合物熔体温度,沿着注塑机的塑料螺杆的熔化行为和磨损由于质具的计量边界条件(高压,高温,旋转和轴向移动的螺钉)失败。我们开发了一种新型超声系统 - 基于反射测量 - 用于在线确定这些重要的过程参数。使用来自聚合物的可用压力体积 - 温度(PVT)数据可以估计材料的密度和绝热压缩性,因此可以根据纵向超声速度的压力和温度。从螺钉根部的测量超声反射时间和压力可以计算螺杆通道(相对以冲洗安装的红外线或热电偶探针)中的平均温度。此外,从螺杆根部不存在信号(由于声能量的散射)在螺杆通道中的未熔化材料。该信息可用于沿螺杆估计熔化行为。监测来自螺旋飞行的信号,可以检测由于粘合剂,磨料和腐蚀性过程引起的磨损效果。螺杆飞行中的熔化行为和磨损效果都是通常通过在耗时和成本密集的过程中从枪管中拉出螺钉来确定的。所提出的在线系统可以显着减少从小时(或天)到几分钟的检查时间。

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