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Theoretical Background and Automation Approach for a Novel Measurement Method for Determining Dynamic Solubility Limits of Supercritical Fluids in Injection Foam Molding

机译:用于测定注射泡沫成型中超临界流体动态溶解度限制的新型测量方法的理论背景和自动化方法

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In terms of sustainability, injection foam molding gains in importance. Yet still many questions throughout the whole process remain unanswered. Especially, the conditions inside the cylinder during gas injection are fraught with uncertainty. Our development of a new methodology for the determination of dynamic solubility in injection foam molding helps to answer the most basic question regarding gas loading: Using the bulk modulus of the polymer-gas mixture, the dynamic solubility limit can be detected. In a first series of tests, the methodology was verified with simultaneous ultrasonic measurements-an excellent agreement was observed. In this work, a second, more thorough test series is presented. Using the bulk modulus methodology on different polypropylene grades, dynamic solubility limits between 0.62 and 2.56 wt% nitrogen at pressures between 80 and 200 bar and a temperature of 230 degrees C were determined directly on an injection molding machine. The detailed theoretical background for this technique, as well as a mathematical automation approach, is provided. This innovative yet simple method yields novel insights on process limits and provides the possibility of an a priori machine setup or a fully automatic self-adjustment of the machine. POLYM. ENG. SCI., 2019. (c) 2019 The Authors. Polymer Engineering & Science published by Wiley Periodicals, Inc. on behalf of Society of Plastics Engineers.
机译:在可持续性方面,注射泡沫成型的重要性。整个过程中还有许多问题仍然没有答案。特别是,气体注入期间气缸内的条件充满了不确定性。我们开发用于测定注射泡沫成型中的动态溶解度的新方法有助于回答气体载荷的最基本问题:使用聚合物 - 气体混合物的体积模量,可以检测动态溶解度极限。在第一系列测试中,通过同时超声测量验证了方法 - 观察到了一个很好的协议。在这项工作中,提出了第二个,更彻底的测试系列。在不同聚丙烯等级上使用块状模量方法,在80至200巴的压力下在0.62和2.56wt%氮气之间的动态溶解度限制和230℃的温度直接在注塑机上测定。提供了这种技术的详细理论背景,以及数学自动化方法。这种创新又简单的方法会产生对过程限制的新颖见解,并提供了先验机器设置的可能性或机器的全自动自动调整。聚合物。 eng。 SCI。,2019.(c)2019年作者。高分子工程与科学由Wiley Hearyichs,Inc。代表塑料工程师协会。

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