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Replication quality of micro structures in injection moulded thin wall parts using rapid tooling moulds

机译:使用快速模具在注塑薄壁零件中复制微观结构的质量

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Injection moulding of micro structured polymer parts is often limited due to the replication quality of the structured surfaces. To enhance the replication quality process parameters, e.g., pressure, temperature or injection velocity, are adapted. Here, the mould temperature is the most important factor. This paper investigates the influence of the mould temperature on the replication of micro structured surfaces using amorphous and semi-crystalline polymers. Using rapid tooling moulds and a dynamic tempering system allows mould temperatures about the solidification temperatures during injection and a sufficient cooling for save ejection of the part. The results reveal that for amorphous polymers the mould temperature should be above the glass transition temperature for high replication quality. For semi-crystalline polymers the high cooling velocity seems to inhibit the crystallization process and this leads to a sufficiently low viscosity to achieve high replication quality.
机译:由于结构化表面的复制质量,通常会限制微型结构化聚合物零件的注塑成型。为了提高复制质量,调整工艺参数,例如压力,温度或注射速度。在此,模具温度是最重要的因素。本文研究了模具温度对使用无定形和半结晶聚合物的微结构表面复制的影响。使用快速模具和动态回火系统可以使模具温度在注入过程中达到凝固温度左右,并有足够的冷却方式来节省零件的顶出时间。结果表明,对于无定形聚合物,模具温度应高于玻璃化转变温度才能获得较高的复制质量。对于半结晶聚合物,高冷却速度似乎抑制了结晶过程,并且这导致足够低的粘度以实现高复制质量。

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