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Effects of wall slip on ZrO2 rheological behavior in micro powder injection molding

机译:壁滑对微粉注射成型ZrO2流变行为的影响

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摘要

The effects of wall slip on the rheological behavior of ZrO2 feedstock flowing through various channels were studied. As compared to conventional no-slip condition, a power-law wall slip model was established to simulate the filling behavior of ZrO2 feedstock flowing through the mold. The effects of wall slip on pressure distribution of the micro spool mandrils during filling was compared with the injection molded micro components. Experimental results verified that the simulation including wall slip yielded better prediction for the pressure gradient as well as crack propagation for the micro components. Increasing mold temperature not only enhanced the feedstock temperature flowing through the micro channels, but also reduced the temperature difference of the micro components and likely the ensuing thermal stress as well as cracks. Powder-binder separation is more sensitive to the mold temperature variation than melt temperature variation. Defect-free micro spool mandrils were injection molded using the optimized parameters.
机译:研究了墙壁对流过各种通道流动流动的ZrO2原料流变行为的影响。与传统的无滑移条件相比,建立了动力法壁滑移模型以模拟流过模具的ZrO2原料的填充行为。将壁滑移对填充过程中微型阀芯骨髓磨削的压力分布的影响与注塑微量组分进行比较。实验结果证实,包括壁滑的仿真产生了对压力梯度的更好预测,以及微量组分的裂纹传播。增加模具温度不仅提高了流过微通道的原料温度,而且还降低了微部件的温差,并且可能是随后的热应力以及裂缝。粉末粘合剂分离对模具温度变化比熔体温度变化更敏感。使用优化的参数注塑无缺陷的微型线轴MandRils。

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