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Effect of height to width ratio on the dynamics of ultrasonic consolidation

机译:高宽比对超声固结动力学的影响

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Purpose - The purpose of this paper is to focus on the changing dynamics of the ultrasonic consolidation (UC) process due to changes in substrate geometry. Past research points to a limiting height to width ranging from 0.7 to 1.2 on build features. Design/methodology/approach - Resonances of a build feature due to a change in geometry are examined and then a simple non-linear dynamic model of the UC process is constructed that examines how the geometry change may influence the overall dynamics of the process. This simple model is used to provide estimates of how substrate geometry affects the differential motion at the bonding interface and the amount of energy emitted by friction change due to build height. The trends of changes in natural frequency, differential motion, and frictional energy are compared to experimental limits on build height. Findings - The paper shows that, at the nominal build, dimensions of the feature the excitation caused by the UC approach two resonances in the feature. In addition trends in regions of changes of differential motion, force of friction, and frictional energy follow the experimental limit on build height. Originality/value - This paper explores several aspects of the UC process not currently found in the current literature: examining the modal properties of build features, and a lumped parameter dynamic model to account for the changes in of the substrate geometry.
机译:目的-本文的目的是关注由于基板几何形状的变化而引起的超声固结(UC)过程的变化动力学。过去的研究表明,构建特征的高度限制在0.7到1.2之间。设计/方法/方法-检查由于几何形状变化引起的构建特征的共振,然后构建UC过程的简单非线性动力学模型,以检查几何形状变化如何影响过程的整体动力学。这个简单的模型用于估算基板的几何形状如何影响键合界面处的差动运动以及由于构建高度而导致的摩擦变化所释放的能量。将自然频率,差动运动和摩擦能的变化趋势与建筑高度的实验极限进行了比较。结果-论文显示,在标称构造下,特征的尺寸由UC引起的激励接近特征中的两个共振。另外,差速运动,摩擦力和摩擦能量变化区域的趋势遵循对构建高度的实验限制。独创性/价值-本文探讨了当前文献中未发现的UC过程的几个方面:检查构造特征的模态特性,以及用于解决基材几何形状变化的集总参数动态模型。

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