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Simulation of the Melting Behavior in an Injection Molding Plasticizing Unit as Measured by Pressure and Ultrasound Measurement Technology

机译:压力和超声测量技术测量的注塑成型塑化单元中的熔化行为模拟

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The melting behavior of a Polyamid material in an injection molding plasticizing unit (40/20D) was simulated and experimentally verified. Hence, a simulation program with a focus on standard three-section screws was developed. A clear separation of the melt and solid fraction in the screw channel is a precondition, referring to physical models, which are included. For this reason. the main constituent of the simulation program is the calculation of the melting process in an injection molding plasticizing unit. First of all. a 2D grid generator is used to represent an unwrapped screw channel of a standard three -section screw. Under consideration of the axial screw movement, mechanical, mathematical and physical models based on Tadmor, Gogos, White and Potente, it is possible to determine the melting process of the individual functional areas. Validation of simulation and experiment data is indispensable to get significant results. In order to verify the measurement relating to the melting profile, so called pull-out tests are normally executed. This method is very time-consuming and very inaccurate. With this in mind, we combined two different methods for the in-situ measurement of the solid-bed ratio: Analyzing pressure data and ultrasound reflection signals at different axial positions. These methods are more useful to investigate the melting behavior over the screw channel.
机译:模拟并通过实验验证了注射成型塑化单元(40 / 20d)中的聚酰胺材料的熔化行为。因此,开发了一种专注于标准三段螺钉的仿真程序。在螺杆通道中清楚地分离熔体和固体部分是前提条件,参考包括的物理模型。为此原因。仿真程序的主要组成部分是计算注塑成型塑化单元中的熔化过程。首先。 2D电网发电机用于表示标准三件螺钉的未包装螺钉通道。在考虑基于Tadmor,Gogos,White和Potente的轴向螺钉运动,机械,数学和物理模型,可以确定各个功能区域的熔化过程。仿真和实验数据的验证是必不可少的,以获得显着的结果。为了验证与熔化曲线有关的测量,因此通常执行被称为拉出测试。这种方法非常耗时,非常不准确。考虑到这一点,我们组合了两种不同的方法,用于原位测量的固床比例:分析在不同轴向位置处的压力数据和超声反射信号。这些方法更有用来研究螺杆通道上的熔化行为。

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