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用于成像的定制非球面透镜的3D打印

3D Printing of Customized Aspheric Lenses for Imaging.

作者信息

Zhu Dexing, Zhang Jian, Xu Qiao, Li Yaguo

机构信息

Fine Optical Engineering Research Center, Chengdu 610041, China.

Laser Fusion Research Center, China Academy of Engineering Research Center, Mianyang 621900, China.

出版信息

Polymers (Basel). 2021 Oct 10;13(20):3477. doi: 10.3390/polym13203477.

Abstract

A simple and efficient process for fabricating customized aspheric lenses is reported, in which a stereolithographic 3D printer combined with the meniscus equilibrium post-curing technique is employed. Two kinds of UV-curable resins, DentaClear and HEMA, were used for printing aspheric lenses in our experiments. The printed DentaClear lens featured low surface profile deviation of ~74 μm and showed satisfactory optical imaging resolution of 50.80 lp/mm, i.e., 4.92 μm. The surface roughness of the printed lens with DentaClear was measured to be around 2 nm with AFM. The surface roughness was improved as a result of post-curing, which reduced the ripples on printed lens surfaces. In contrast, the printed HEMA lens exhibited a significant stair-stepping effect with a large surface profile deviation of ~150 μm. The ripples were somewhat apparent even if the printed HEMA lens surface was smoothed by means of post-curing. No sharp image can be obtained with the HEMA lens in the resolution testing. The composition of HEMA resin may be the reason for the relatively poor surface quality and optical properties.

摘要

报道了一种制造定制非球面透镜的简单高效工艺,该工艺采用了立体光刻3D打印机与弯月面平衡后固化技术相结合的方法。在我们的实验中,使用了两种紫外光固化树脂,即DentaClear和甲基丙烯酸羟乙酯(HEMA)来打印非球面透镜。打印的DentaClear透镜具有约74μm的低表面轮廓偏差,并显示出令人满意的50.80 lp/mm(即4.92μm)的光学成像分辨率。用原子力显微镜(AFM)测量,打印的DentaClear透镜表面粗糙度约为2nm。后固化改善了表面粗糙度,减少了打印透镜表面的波纹。相比之下,打印的HEMA透镜表现出明显的阶梯效应,表面轮廓偏差较大,约为150μm。即使通过后固化使打印的HEMA透镜表面光滑,波纹仍有些明显。在分辨率测试中,使用HEMA透镜无法获得清晰的图像。HEMA树脂的成分可能是其表面质量和光学性能相对较差的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a79/8537015/f7fee6a2f029/polymers-13-03477-g001.jpg

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