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Experimental Investigation and Numerical Simulation of Injection Molding with Micro-Features

机译:微特征注射成型的实验研究与数值模拟

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Injection molding of thin plates of micro sized features was studied in order to manufacture micro-fluidic devices for bioMEMS applications. Various types of mold inserts -CNC-machined steel, epoxy photoresist, and photolithography and electro-plating produced nickel molds-were fabricated and tested in injection molding. The feature size covers a range of 5 microns to several hundred microns. Issues such as surface roughness and sidewall draft angle of the mold insert were considered. Two optically clear thermoplastics, PMMA and optical quality polycarbonate, were processed at different mold and melt temperatures, injection speeds, shot sizes, and holding pressures. It was found that the injection speed and mold temperature in injection molding greatly affect the replication accuracy of microstructures on the metal mold inserts. The UV-LIGA produced nickel mold with positive draft angles enabled successful demolding. Numerical simulation based on the 2D software C-MOLD was performed on two types of cavity fillings: the radial flow and the unidirectional flow. The simulation and experimental data were compared, showing correct qualitative predictions but discrepancies in the flow front profile and filled depth.
机译:为了制造用于bioMEMS应用的微流控设备,研究了微尺寸特征的薄板的注塑成型。各种类型的模具嵌件-数控加工的钢,环氧光致抗蚀剂,光刻和电镀生产的镍模具均在注射成型中制造和测试。特征尺寸覆盖5微米至几百微米的范围。考虑了诸如模具插入件的表面粗糙度和侧壁拔模角之类的问题。两种光学透明的热塑性塑料PMMA和光学质量的聚碳酸酯在不同的模具和熔体温度,注射速度,注射量和保持压力下进行了加工。已经发现,注射成型中的注射速度和模具温度极大地影响了金属模具嵌件上的微观结构的复制精度。 UV-LIGA生产的具有正拔模角的镍模能够成功脱模。基于2D软件C-MOLD对两种类型的型腔填充物进行了数值模拟:径向流和单向流。对模拟和实验数据进行了比较,显示出正确的定性预测,但流动前沿轮廓和填充深度存在差异。

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