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Characterization of thermo-rheological behavior of polymer melts during the micro injection moulding process

机译:在微注射成型过程中表征聚合物熔体的热流变行为

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摘要

In-line process monitoring and rheological characterization can help to understand the behaviour of polymer melt flows during manufacture and to make injection moulding a measurable process for manufacturing high quality parts. This work developed an in-line rheology measurement system using a slit die attached to a micro injection moulding machine. A series of dumbbell mould inserts was used to form the slit die with thickness ranging from 600 μm to 200 μm. Two combined pressure and temperature sensors were embedded into the slit die to measure the pressure drop. Based on the slit flow model, it was found that the viscosity of Pebax melts depends on the slit thickness in the actual injection moulding process. The competing effects of wall slip and non-isothermal conditions will determine the melt viscosity. The plastication induced thermo-mechanical history can also influence polymer viscosity, although it is neglected in conventional rheology measurements.
机译:在线过程监控和流变特性可以帮助理解制造过程中聚合物熔体的流动行为,并使注射成型成为制造高质量零件的可测量过程。这项工作开发了一种在线流变学测量系统,该系统使用附接到微型注塑机上的狭缝模头。使用一系列哑铃模具嵌件来形成厚度为600μm至200μm的狭缝模具。两个组合的压力和温度传感器被嵌入到狭缝模具中以测量压降。根据狭缝流动模型,发现Pebax熔体的粘度取决于实际注塑过程中的狭缝厚度。壁滑和非等温条件的竞争影响将决定熔体粘度。塑化引起的热机械历史也可以影响聚合物粘度,尽管在常规流变学测量中被忽略了。

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