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The application of computerized processing techniques to manipulate and enhance the flow of non-Newtonian viscoelastic thixotropic materials in a production environment

机译:计算机化加工技术在生产环境中操纵和增强非牛顿粘弹性触变材料流动的应用

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摘要

The flow process discussed takes advantage of the complicated, thixotropic nature of an RTV silicone paste using digital processing techniques and computer control to accomplish the desired processing result. The objective was to generate a barrier dam on hybrid circuits in substrate form using a silicone paste. The dam would later be filled in. The paste has to be precisely extruded through a geometrically complicated nozzle to produce the dams on up to 48 separate circuits per substrate simultaneously. The combination of a complicated flow path and a non-Newtonian, thixotropic material produced an inconsistent result. Evaluation of the material indicated that it exhibited stable upper and lower Newtonian regions in viscosity vs. shear rate plots. However, in the region between these two, the viscosity showed a very strong dependence on both shear rate and time at shear. Results showed that process conditions were imposing shear rates on the material which corresponded to viscosities that were highly dependent on both shear rate and time at shear. Since the volume of material extruded was fixed by the geometry of the dam and flow rate through the nozzle restricted by mechanical limitations, the shear rate as a result of flow was essentially fixed for the process.
机译:所讨论的流动过程需要的RTV的复杂,触变性质优点硅氧烷浆料使用数字处理技术和计算机控制,以实现所希望的处理结果。其目的是生成上使用硅酮糊在基板形式混合电路的阻挡坝。坝以后将被填充。糊状必须通过一个复杂的几何喷嘴精确地挤出,同时产生每个基板高达48个独立的电路水坝。一个复杂的流动路径和非牛顿的组合,触变材料产生不一致的结果。该材料的评价表示,它显示出上稳定和降低粘度对剪切速率曲线牛顿区域。然而,在这两者之间的区域,粘度显示出对在剪切两个剪切速率和时间的很强的依赖性。结果表明,工艺条件上,这对应于该高度依赖于剪切两个剪切速率和时间的粘度的材料施加的剪切速率。由于材料挤出的体积是固定的由通过机械限制制约了喷嘴坝和流速的几何形状,剪切速率为流动的结果基本上固定的过程。

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