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Thermoplastic Overmolding onto Injection-Molded and In Situ Polymerization-Based Polyamides

机译:注塑和原位聚合聚酰胺的热塑性包覆成型

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摘要

We investigated products manufactured by in situ polymerization, which were reinforced with overmolded ribs. We developed our own mold and prototype product for the project. We used three different materials as preform: a material with a magnesium catalyst, manufactured by in situ polymerization, a Brüggemann AP-NYLON-based in situ polymerization material and an injection-molded PA6 (Durethan B30S, Lanxess GmbH) material. The ribs were formed from the same PA6 material (Durethan B30S, Lanxess GmbH). We examined the effect of the different technological parameters through the pull-off of the overmolded ribs. We measured the effect of melt temperature, holding pressure and holding time, and mold temperature. Considering the individual preforms, we pointed out that monomer migration and binding strength are related, which we concluded from the temperature-dependent mass loss of the materials, measured by thermogravimetric analysis (TGA). Finally, we designed a mold suitable for manufacturing overmolded parts. We designed and built pressure and temperature sensors into the mold to examine and analyze pressures and temperatures around the welding zone of the materials.
机译:我们研究了通过原位聚合生产的产品,这些产品用包覆成型的肋条加固。我们为该项目开发了自己的模具和原型产品。我们使用三种不同的材料作为预成型件:一种通过原位聚合生产的带有镁催化剂的材料,一种基于BrüggemannAP-NYLON的原位聚合材料和一种注塑PA6(Durethan B30S,Lanxess GmbH)材料。肋由相同的PA6材料(Durethan B30S,Lanxess GmbH)形成。我们通过拉出包覆成型的肋骨检查了不同工艺参数的影响。我们测量了熔体温度,保持压力和保持时间以及模具温度的影响。考虑到各个预成型坯,我们指出单体的迁移和结合强度是相关的,这是根据材料的温度依赖性质量损失得出的,该质量损失是通过热重分析(TGA)测量的。最后,我们设计了适合制造包覆成型零件的模具。我们在模具中设计并内置了压力和温度传感器,以检查和分析材料焊接区域周围的压力和温度。

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