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Visual Observation and Numerical Studies of N2 vs. CO2 Foaming Behavior in Core-Back Foam Injection Molding

机译:芯背泡沫注塑成型中N2与CO2发泡行为的肉眼观察和数值研究

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摘要

We investigated, by visual observation and numerical calculations, the foaming behavior of polypropylene within a foam injection mold cavity with the environmentally benign physical blowing agents nitrogen (N2) and carbon dioxide (CO2). An 85-ton core-back injection-molding machine with temperature and pressure monitoring systems as well as a high-pressure view cell was used for the investigation. The experiments showed a prominent difference in bubble nucleation and growth between N2 and CO2 injection foaming. Even when the weight concentration of N2 dissolved in polymer was one-third that of CO2, N2 injection foaming provided a bubble number density that was 30 times larger and a bubble size that was one-third smaller compared to CO2 injection foaming. Classical bubble nucleation and growth models developed for batch foaming were employed to analyze these experimental results. The models reasonably explained the differences in injection foaming behavior between N2 and CO2. It was clearly demonstrated by both experiments and numerical calculations that N2 provides a higher number of bubbles with a smaller bubble size in foam injection molding compared to CO2 as a result of the lower solubility of N2 in the polymer and the larger degree of super-saturation.
机译:我们通过视觉观察和数值计算研究了聚丙烯在泡沫注射模腔中与环境友好的物理发泡剂氮(N2)和二氧化碳(CO2)的发泡行为。使用具有温度和压力监控系统以及高压观察室的85吨芯背衬注塑机进行研究。实验表明,在氮气注入和二氧化碳注入发泡之间,气泡成核和生长方面存在显着差异。即使当溶解在聚合物中的N2的重量浓度为CO2的三分之一时,N2注入发泡仍提供的气泡数密度是CO2注入发泡的30倍,气泡尺寸也缩小了三分之一。为批量发泡开发的经典气泡成核和生长模型用于分析这些实验结果。该模型合理地解释了N2和CO2之间注入发泡行为的差异。通过实验和数值计算都清楚地表明,由于N2在聚合物中的溶解度较低和过饱和度较高,与CO2相比,N2在泡沫塑料注射成型中提供的气泡数量更多,气泡尺寸更小。 。

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