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高浓度悬浮液流变学表征中的挑战——以丝网印刷银浆为例

Challenges in Rheological Characterization of Highly Concentrated Suspensions - A Case Study for Screen-printing Silver Pastes.

作者信息

Yüce Ceren, Willenbacher Norbert

机构信息

Applied Mechanics Group, Institute for Mechanical Process Engineering and Mechanics, Department of Chemical Engineering, Karlsruhe Institute of Technology;

出版信息

J Vis Exp. 2017 Apr 10(122):55377. doi: 10.3791/55377.

Abstract

A comprehensive rheological characterization of highly concentrated suspensions or pastes is mandatory for a targeted product development meeting the manifold requirements during processing and application of such complex fluids. In this investigation, measuring protocols for a conclusive assessment of different process relevant rheological parameters have been evaluated. This includes the determination of yield stress, viscosity, wall slip velocity, structural recovery after large deformation and elongation at break as well as tensile force during filament stretching. The importance of concomitant video recordings during parallel-plate rotational rheometry for a significant determination of rheological quantities is demonstrated. The deformation profile and flow field at the sample edge can be determined using appropriate markers. Thus, measurement parameter settings and plate roughness values can be identified for which yield stress and viscosity measurements are possible. Slip velocity can be measured directly and measuring conditions at which plug flow, shear banding or sample spillover occur can be identified clearly. Video recordings further confirm that the change in shear moduli observed during three stage oscillatory shear tests with small deformation amplitude in stage I and III but large oscillation amplitude in stage II can be directly attributed to structural break down and recovery. For the pastes investigated here, the degree of irreversible, shear-induced structural change increases with increasing deformation amplitude in stage II until a saturation is reached at deformations corresponding to the crossover of G' and G'', but the irreversible damage is independent of the duration of large amplitude shear. A capillary breakup elongational rheometer and a tensile tester have been used to characterize deformation and breakup behavior of highly filled pastes in uniaxial elongation. Significant differences were observed in all experiments described above for two commercial screen-printing silver pastes used for front side metallization of Si-solar cells.

摘要

对于满足此类复杂流体在加工和应用过程中多种要求的目标产品开发而言,对高浓度悬浮液或糊剂进行全面的流变学表征是必不可少的。在本研究中,评估了用于最终评估不同工艺相关流变学参数的测量方案。这包括屈服应力、粘度、壁面滑移速度、大变形后的结构恢复、断裂伸长率以及细丝拉伸过程中的拉力的测定。证明了在平行板旋转流变测量过程中同步进行视频记录对于准确测定流变学量的重要性。使用适当的标记可以确定样品边缘的变形轮廓和流场。因此,可以确定能够进行屈服应力和粘度测量的测量参数设置和平板粗糙度值。可以直接测量滑移速度,并能清楚地识别出发生柱塞流、剪切带或样品溢出的测量条件。视频记录进一步证实,在三个阶段的振荡剪切试验中观察到的剪切模量变化,即在第一阶段和第三阶段具有小变形幅度但在第二阶段具有大振荡幅度,可以直接归因于结构破坏和恢复。对于此处研究的糊剂,不可逆的、剪切诱导的结构变化程度随着第二阶段变形幅度的增加而增加,直到在对应于G'和G''交叉点的变形处达到饱和,但不可逆损伤与大振幅剪切的持续时间无关。使用毛细管破裂伸长流变仪和拉伸试验机来表征高填充糊剂在单轴伸长时的变形和破裂行为。对于用于硅太阳能电池正面金属化的两种商用丝网印刷银糊剂,在上述所有实验中都观察到了显著差异。

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