Tang Minjin, Xie Huimin, Zhu Jianguo, Li Xiaojun, Li Yanjie
AML, Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.
Opt Express. 2012 Jan 30;20(3):2942-55. doi: 10.1364/OE.20.002942.
A moiré grating is a basic optical component used in various moiré methods for deformation measurement. In this study, nanoimprint lithography (NIL) was proposed to produce high frequency moiré gratings on metal samples. A new type of NIL mold and a hot embossing system were developed to overcome the poor flatness and roughness of metal samples. This three-layer mold based on nickel grating was unbreakable, and the self-developed hot embossing system used a bellows cylinder to satisfy the parallelism requirement of grating fabrication on metal samples. In order to generate high quality moiré patterns, the grating profile of the mold was optimized. Then, 1200-3000 lines/mm frequency gratings were successfully fabricated on the different materials such as SiO2, aluminum and stainless steel. In order to evaluate the quality of the replication, the distortion in the fabricated SiO2 grating was analyzed by an inverse moiré method. As an application, the replicated grating on the aluminum sample in combination with the moiré interferometry was used to measure the tensile deformation of the sample. The successful experimental results demonstrate the feasibility and reliability of nanoimprint lithography to produce gratings on metal samples.
莫尔条纹光栅是一种用于各种莫尔条纹变形测量方法的基本光学元件。在本研究中,提出了纳米压印光刻技术(NIL)以在金属样品上制备高频莫尔条纹光栅。开发了一种新型的NIL模具和热压印系统,以克服金属样品平整度和粗糙度较差的问题。这种基于镍光栅的三层模具不易损坏,且自行开发的热压印系统使用波纹管气缸来满足在金属样品上制造光栅的平行度要求。为了生成高质量的莫尔条纹图案,对模具的光栅轮廓进行了优化。然后,在诸如SiO2、铝和不锈钢等不同材料上成功制备了1200 - 3000线/毫米频率的光栅。为了评估复制质量,采用反莫尔条纹法分析了所制备的SiO2光栅中的畸变。作为一种应用,铝样品上复制的光栅与莫尔条纹干涉测量法相结合,用于测量样品的拉伸变形。成功的实验结果证明了纳米压印光刻技术在金属样品上制备光栅的可行性和可靠性。