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调控3D打印样品光学性能加工高深径比微孔数据集

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国家基础学科公共科学数据中心2026-01-30 收录
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https://nbsdc.cn/general/dataDetail?id=678d98fe195d2668070f295a&type=1
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调控3D打印样品光学性能加工高深径比微孔主要面向精密医疗器件制造领域,特别是中空微针技术的发展需求。基于3D打印样品的光学透明度调控,以适应飞秒激光贝塞尔光束的微孔加工。通过调控打印平台表面粗糙度、模型切片方向、打印层厚等方式,对3D打印制品的光学透明度进行了优化,最终提高了微孔加工的深度。研究结果实现了高深径比微孔加工,也为未来精密医疗器械的发展提供了新的方向。主要记录了光学透过率光谱、光学显微镜图像、共聚焦显微镜三维图像及表面粗糙度等数据,该数据集的数据量为3.96MB。

Processing high-aspect-ratio micropores by tuning the optical properties of 3D-printed samples is primarily intended for the manufacturing of precision medical devices, particularly to address the development needs of hollow microneedle technology. The optical transparency of 3D-printed samples is regulated to facilitate micropore processing using femtosecond laser Bessel beams. By adjusting key parameters including the surface roughness of the printing platform, model slicing orientation, and printing layer thickness, we optimized the optical transparency of 3D-printed products, which ultimately enhanced the achievable depth of the fabricated micropores. This work has achieved high-aspect-ratio micropore processing, and provides a novel direction for the future development of precision medical devices. This dataset primarily records data such as optical transmittance spectra, optical microscopy images, three-dimensional confocal microscopy images, and surface roughness measurements, with a total data size of 3.96 MB.
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北京理工大学重庆创新中心
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