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Research on solidification of resin in stereo-lithography (Comparison between measured and estimated shapes of solidified resin, and manufacturing accuracy of photo-cured model)

机译:立体光刻中树脂凝固研究(凝固树脂测量和估计形状的比较,以及光固化模型的制造精度)

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In a stereo-lithography, the most important procedure for improving an accuracy of modeling is to clearly identify the relationship between the method of laser irradiation and the solidification of photo-curing resin. Thus, a theoretical analysis was made in order to find any effect on the solidification, viz. thickness and width of solidified resin influenced by laser power, laser beam diameters, laser scanning speeds, and properties of photo-curing resin, and these analytical results were compared with respective test results. The results are summarized below: (1) The cured thickness of solidified resin can be represented by a function of the energy density at the center of laser, the attenuation coefficient and the critical curing energy density of photo-curing resin. (2) The cured width of solidified resin can be represented by a function of laser beam diameters, the energy density at the center of laser and the critical curing energy density of photo-curing resin. (3) Photo-cured models, which have been manufactured by controlling energy density at the center of laser, would have high manufacturing accuracy, and therefore, can be applied as industrial design models.
机译:在立体光刻,为了提高建模的精度的最重要的过程是清楚地识别激光照射的方法和光固化性树脂的固化之间的关系。因此,进行了理论分析,以便找到在凝固,即任何影响制成。厚度和由激光功率,激光束的直径,激光扫描速度,和光固化树脂的性质,并且这些分析结果的影响固化树脂的宽度与各试验结果进行了比较。结果总结如下:(1)固化树脂的固化厚度,可以通过在激光的中心位置,衰减系数和光固化性树脂的固化临界能量密度的能量密度的函数来表示。 (2)固化树脂的固化宽度可以通过激光束的直径,在激光的中心处的能量密度和光固化性树脂的固化临界能量密度的函数来表示。 (3)光固化模型,其已通过控制激光的中心的能量密度。制造,将具有高的制造精度,因此,可应用于工业设计模型。

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