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SLA characterization for surface finish improvement: Inverse design methods for process planning.

机译:用于改善表面光洁度的SLA表征:用于过程规划的逆向设计方法。

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摘要

To facilitate the transition of Stereolithography (SLA) into the manufacturing domain and to increase its appeal to the micro manufacturing industry, process repeatability and surface finish need to be improved. Researchers have mostly focused on improving SLA surface finish within the capabilities of commercially available SLA machines. The capabilities of these machines are limited and a machine-specific approach for improving surface finish is based purely on empirical data. In order to improve surface finish of the SLA process, a more systematic approach that will incorporate process parameters is needed. To achieve this, the contribution of different laser and process parameters, such as laser beam angle, irradiance distribution, and scan speed, to SLA resolution and indirectly to surface finish, need to be quantified and incorporated into an analytical model.; In response, a dynamic analytical SLA cure model has been developed. This model has been applied to SLA geometries of interest. Using flat surfaces, the efficacy of the model has been computationally and experimentally demonstrated. The model has been applied to process planning as a computational inverse design method by using parameter estimation techniques, where surface finish improvement on slanted surfaces has been achieved. The efficacy of this model and its improvement over the traditional cure models has been demonstrated computationally and experimentally. Based on the experimental results, use of the analytical model in process planning achieves an order of magnitude improvement in surface roughness average of SLA parts. The intellectual contributions of this research are the development of an analytical SLA cure model and the application of this model to process planning along with inverse design techniques for parameter estimation and subsequent surface finish improvement.
机译:为了促进立体光刻(SLA)过渡到制造领域并增加其对微制造行业的吸引力,需要提高工艺的可重复性和表面光洁度。研究人员主要致力于在商用SLA机器的能力范围内改善SLA表面光洁度。这些机器的功能是有限的,并且用于改善表面光洁度的特定于机器的方法仅基于经验数据。为了改善SLA工艺的表面光洁度,需要一种更系统的方法,该方法将结合工艺参数。为此,需要对不同的激光和工艺参数(例如激光束角度,辐照度分布和扫描速度)对SLA分辨率以及间接对表面光洁度的影响进行量化,并将其纳入分析模型。作为响应,已经开发了动态分析SLA固化模型。该模型已应用于感兴趣的SLA几何。使用平坦表面,已通过计算和实验证明了该模型的有效性。该模型已通过使用参数估计技术作为计算逆设计方法应用于过程计划,从而实现了倾斜表面的表面光洁度改善。通过计算和实验证明了该模型的有效性及其对传统治愈模型的改进。根据实验结果,在过程计划中使用分析模型可以使SLA零件的表面粗糙度平均值提高一个数量级。这项研究的智力贡献是开发了一种分析性SLA固化模型,并将该模型应用于工艺规划以及用于参数估计和后续表面光洁度改进的逆向设计技术。

著录项

  • 作者

    Sager, Benay.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Mechanical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 368 p.
  • 总页数 368
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;工程材料学;
  • 关键词

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