首页> 外文会议>21st annual international Solid Freeform Fabrication Symposium >Rheology and Flow Behavior of Concentrated Colloidal Gels for Direct-Write Assembly of 3D Mesoscale Structures
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Rheology and Flow Behavior of Concentrated Colloidal Gels for Direct-Write Assembly of 3D Mesoscale Structures

机译:3D中尺度结构直接写组装的浓缩胶体的流变学和流动行为

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3D mesoscale structures with various patterns have been successfully fabricated by direct-write assembly of concentrated colloidal gels. Geometric fidelity of these structures is very important to functionality as devices and has been closely tied to gels microstructure dynamics, which depends on the rheology and shear history. Here, Al_2O_3 gels were prepared and employed as model materials. A thixotropic rheological model was developed to show the time dependent behavior of gels structure during shear flow. The model accounts for structure formation and attrition, each with a shear history dependent rate constant. The true wall stress was measured by correcting the end effects and wall slip. The extrusion flow dynamics of the gel was simulated by using CFD method to disclose the structure profiles of extrusion filaments and predict the structure evolution of as-deposited filaments.
机译:通过浓缩胶体凝胶的直接写入组装,已经成功地制造了具有各种图案的3D中尺度结构。这些结构的几何保真度对于设备的功能性非常重要,并且与凝胶的微观结构动力学密切相关,后者取决于流变学和剪切历史。在此,制备Al_2O_3凝胶并将其用作模型材料。建立了触变流变模型以显示剪切流动过程中凝胶结构的时间依赖性行为。该模型考虑了结构的形成和磨损,每一个都有与剪切历史有关的速率常数。真实的墙体应力是通过校正末端效应和墙体滑移来测量的。利用CFD方法模拟了凝胶的挤出流动动力学,揭示了挤出长丝的结构轮廓,并预测了沉积长丝的结构演变。

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