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High Strength Fused Silica Flexures Manufactured by Femtosecond Laser

机译:飞秒激光制造的高强度熔融石英弯曲

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摘要

Flexures are mechanical elements used in micro- and precision-engineering to precisely guide the motion of micro-parts. They consist of slender bodies that deform elastically upon the application of a force. Although counter-intuitive at first, fused silica is an attractive material for flexure. Pending that the machining process does not introduce surface flaws that would lead to catastrophic failure, the material has a theoretically high ultimate tensile strength of several GPa. We report on high-aspect ratio fused silica flexures manufactured by femtosecond laser combined with chemical etching. Notch-hinges with thickness as small as twenty microns and aspect ratios comparable to aspect ratios obtained by Deep-Reactive-Ion-Etching (DRIE) were fabricated and tested under different loading conditions. Multiple fracture tests were performed for various loading conditions and the cracks morphologies were analyzed using Scanning Electron Microscopy. The manufactured elements show outstanding mechanical properties with flexural strengths largely exceeding those obtained with other technologies and materials. Fused silica flexures offer a mean to combine integrated optics with micro-mechanics in a single monolithic substrate. Waveguides and mechanical elements can be combined in a monolithic devices opening new opportunities for integrated opto-mechatronics devices.
机译:挠曲是微工程和精密工程中使用的机械元件,用于精确地引导微零件的运动。它们由细长的主体组成,这些主体在施加力时会弹性变形。尽管起初是违反直觉的,但熔融石英是一种有吸引力的挠曲材料。由于加工过程不会引入会导致灾难性故障的表面缺陷,因此该材料在理论上具有几GPa的极限拉伸强度。我们报告了飞秒激光与化学蚀刻相结合制造的高纵横比熔融石英弯曲。在不同的负载条件下,制造并测试了厚度小至20微米且纵横比与通过深度反应离子刻蚀(DRIE)获得的纵横比相当的缺口铰链。在各种载荷条件下进行了多次断裂测试,并使用扫描电子显微镜分析了裂纹形态。所制造的元件具有出色的机械性能,其抗弯强度大大超过了其他技术和材料所获得的抗弯强度。熔融石英弯曲提供了在单个整体式基板中将集成光学器件与微机械器件相结合的手段。波导和机械元件可以组合在单片设备中,从而为集成光机电一体化设备提供了新的机会。

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