论文标题

测试融合二氧化硅不同键合技术机械损失的实验

An Experiment to Test the Mechanical Losses of Different Bonding Techniques in Fused Silica

论文作者

Carter, Jonathan J., Birckigt, Pascal, Gerberding, Oliver, Li, Qingfeng, Struening, Rick, Ullsperger, Tobias, Koehlenbeck, Sina M.

论文摘要

高纯度眼镜用于低光学和机械损失,这使它们成为光学系统(例如惯性传感器)中振荡器的绝佳材料。复杂的几何形状通常需要组装多个玻璃及其永久粘合。一种常见方法是氢氧化催化键合,它留下了封闭的培养基层。该层与周围的散装玻璃具有不同的机械性能。该层的机械损失更高,使其更容易受到源自振荡到热量转化为热量的噪声,反之亦然。因此,需要其他方法将玻璃组件粘合在一起。为了研究这一点,我们已经建立了一个实验,以测量融合二氧化硅制造中常用的几种不同类型的键的机械损失,即;等离子体激活了直接键合,氢氧化物催化键合,激光焊接和粘合剂键合。在本文中,我们介绍了实验设计,并显示了第一个测试样本的初始结果。

High-purity glasses are used for their low optical and mechanical loss, which makes them an excellent material for oscillators in optical systems, such as inertial sensors. Complex geometries often require the assembly of multiple pieces of glass and their permanent bonding. One common method is hydroxide catalysis bonding, which leaves an enclosed medium layer. This layer has different mechanical properties to the bulk glass around it. The higher mechanical loss of this layer makes it more susceptible to displacement noise originating from the conversion of energy from oscillation to heat and vice versa. Therefore, other methods are needed to bond together glass assemblies. To investigate this, we have set up an experiment to measure the mechanical losses of several different types of bond commonly used in fused silica manufacturing, namely; plasma activated direct bonding, hydroxide catalysis bonding, laser welding, and adhesive bonding. In this paper we present the experimental design and show initial results of the first test sample.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源