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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Accuracy control of complex surfaces in reverse engineering
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Accuracy control of complex surfaces in reverse engineering

机译:逆向工程中复杂曲面的精度控制

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CAD systems have greatly affected the way which engineers perform their function. Computers have simplified and eliminated many of repetitious tasks and the gap between computer models and physical products has significantly shortened. These tools have stimulated the impetus for product development but the manufacturing processes still depends on human skills which ultimately reduce errors and produce better products. Complex shapes representing the patient’s anatomy are widely applied, namely in computer-assisted surgery and manufacturing of customized implants. These type of models represent a challenge for the reverse engineering processes and are not comparable with the demands of regular geometric models. In order to create a replica, data is processed in a series of steps that transforms the initial data obtained from the physical model into a three dimensional digital model. Most commonly it is necessary to include filtering, segmentation, mesh smoothing and surface generation. These steps can strongly affect the accuracy of the model. It is therefore necessary to find a compromise between the finest accuracy and maximum deviation acceptable to reduce computer processing time and achieve the best model. This study shows an iterative and alternating process to produce more accurate complex geometry models.
机译:CAD系统极大地影响了工程师执行其功能的方式。计算机简化并消除了许多重复性的任务,计算机模型与物理产品之间的差距已大大缩短。这些工具刺激了产品开发的动力,但是制造过程仍然取决于人工技能,最终可以减少错误并生产出更好的产品。代表患者解剖结构的复杂形状被广泛应用,即在计算机辅助手术和定制植入物的制造中。这些类型的模型代表了逆向工程过程的挑战,无法与常规几何模型的需求相提并论。为了创建副本,将按照一系列步骤处理数据,这些步骤将从物理模型获得的初始数据转换为三维数字模型。最常见的是,必须包括过滤,分割,网格平滑和曲面生成。这些步骤会严重影响模型的准确性。因此,有必要在可接受的最高精度和最大偏差之间找到折衷方案,以减少计算机处理时间并获得最佳模型。这项研究显示了迭代和交替的过程,可以生成更准确的复杂几何模型。

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