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Analysis of geometrical error in the stereolithography process using a stochastic approach

机译:使用随机方法分析立体光刻过程中的几何误差

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The geometrical error in the stereolithography process is analysed using a stochastic approach. This approach is based on a unified methodology, developed by the authors, for studying the mechanical error in different rapid prototyping processes. The tolerances and clearances have been assumed to be random variables. The coordinates of a point on the resin surface, traced by the laser beam, are expressed as a function of random variables. In a numerical example, the geometrical error has been found for a grid of points traced by the laser beam. The three-sigma error bands are plotted when tracing example curves. This is the band in which the laser beams of 99.73% of machines, produced on a mass scale, lie on the work surface for the given tolerances and clearances. Stringent values of tolerances and clearances reduce the error at the tool tip, but the cost of manufacturing and assembling the machines may become prohibitive.
机译:使用随机方法分析立体光刻过程中的几何误差。该方法基于作者开发的统一方法,用于研究不同快速原型制作过程中的机械误差。公差和游隙假定为随机变量。树脂表面上被激光束跟踪的点的坐标表示为随机变量的函数。在数值示例中,已经找到了由激光束跟踪的点的网格的几何误差。跟踪示例曲线时,绘制了三个西格玛误差带。在该带中,按给定的公差和间隙,按质量比例产生的99.73%的机器激光束位于工作表面上。严格的公差和游隙值可减少刀尖处的误差,但是制造和组装机器的成本可能变得过高。

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