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Three-Dimensional Glass Monolithic Micro-Flexure Fabricated by Femtosecond Laser Exposure and Chemical Etching

机译:飞秒激光曝光和化学刻蚀制造三维玻璃整体微弯曲

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Flexures are components of micro-mechanisms efficiently replacing classical multi-part joints found at the macroscale. So far, flexures have been limited to two-dimensional planar designs due to the lack of a suitable three-dimensional micromanufacturing process. Here we demonstrate and characterize a high-strength transparent monolithic three-dimensional flexural component fabricated out of fused silica using non-ablative femtosecond laser processing combined with chemical etching. As an illustration of the potential use of this flexure, we propose a design of a Hoecken linkage entirely made with three-dimensional cross-spring pivot hinges.
机译:挠曲是微观机制的组成部分,有效地替代了在宏观上发现的传统的多部分接头。到目前为止,由于缺乏合适的三维显微制造工艺,挠曲件仅限于二维平面设计。在这里,我们演示和表征由非熔融飞秒飞秒激光加工与化学蚀刻相结合的熔融石英制成的高强度透明单片三维挠曲部件。为了说明这种挠性的潜在用途,我们提出了一种Hoecken连杆的设计,该连杆完全由三维十字弹簧枢轴铰链制成。

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