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Comparison of the break-up behaviors of newton and shear thinning non-newton fluid in jet dispensing for LED packaging

机译:LED封装喷射分配中牛顿和剪切稀疏非牛顿液的分解行为的比较

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Dispensing is one of the key technologies in LED packaging, as the dispensed underfill can protect the interconnection from short-circled, release the residual stress and adjust color. However, in order to meet different requirements in packaging, various of underfill are used, typically from newton fluid to shear thinning non-newton fluid. The different fluid properties will greatly affect the break-up behaviors in jet dispensing, furthermore, result in different dispensing volume consistence and dispensing qualities, which strongly affects the LED packaging performance. To reveal the different break-up behaviors of newton fluid and shear thinning non-newton fluid during the jet dispensing process, two mathematical models are developed. The whole break-up process are obtained and compared with the experiments, and the roles of surface tension and viscous fore played in the break-up process are compared and discussed. The effects of relaxation time and shear thinning index on the thread break-up were studied and compared. It is found that the non-newton fluid thread is easier to break-up and dispensed. However, shear thinning is not the main driven factor for thread break-up. Surface tension has larger effects on thread break-up position and time. Specific additive can be added for adjusting surface tension under different dispensing conditions. This study will provide valuable insights for dispenser designs of modern microelectronic packaging.
机译:分配是LED封装中的关键技术之一,因为分配的底部填埋场可以保护互连免受短圆圈,释放残余应力并调节颜色。然而,为了满足包装中的不同要求,使用各种底部填充物,通常来自牛顿液剪切稀疏非牛顿液。此外,不同的流体性质将大大影响喷射分配的分手行为,导致不同的分配体积一致性和分配质量,这强烈影响LED包装性能。为了揭示在喷射分配过程中牛顿液和剪切稀疏非牛顿流体的不同分手行为,开发了两种数学模型。获得整个分解过程并与实验进行比较,比较并讨论了分解过程中出现的表面张力和粘性的作用。研究了缓和时间和剪切稀疏指数对螺纹分类的影响进行了研究。发现非牛顿流体螺纹更容易分解并分配。然而,剪切变薄不是线程分解的主要驱动因子。表面张力对螺纹分解位置和时间具有更大的影响。可以添加特定添加剂以在不同的分配条件下调节表面张力。本研究将为现代微电子包装的分配器设计提供有价值的见解。

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