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An Integrated Reverse Engineering Approach for Accuracy Control of Free-Form Objects

机译:自由形状对象精度控制的集成逆向工程方法

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Computer-aided tools help in shortening and eradicating numerous repetitive tasks that reduces the gap between digital model and actual product. Use of these tools assists in realizing free-form objects such as custom fit products as described by a stringent interaction with the human body. Development of such a model presents a challenging situation for reverse engineering (RE) which is not analogous with the requirement for generating simple geometric models. Hence, an alternating way of producing more accurate three-dimensional models is proposed. For creating accurate 3D models, point clouds are processed through filtering, segmentation, mesh smoothing and surface generation. These processes help in converting the initial unorganized point data into a 3D digital model and simultaneously influence the quality of model. This study provides an optimum balance for the best accuracy obtainable with maximum allowable deviation to lessen computer handling and processing time. A realistic non trivial case study of free-form prosthetic socket is considered. The accuracy obtained for the developed model is acceptable for the use in medical applications and FEM analysis.
机译:计算机辅助工具有助于缩短和消除许多重复性任务,从而减少了数字模型与实际产品之间的差距。这些工具的使用有助于实现自由形式的对象,例如通过与人体进行严格交互而描述的定制产品。这种模型的开发给逆向工程(RE)带来了挑战,这与生成简单几何模型的需求不相似。因此,提出了一种产生更精确的三维模型的替代方法。为了创建精确的3D模型,通过过滤,分割,网格平滑和曲面生成来处理点云。这些过程有助于将初始的无组织点数据转换为3D数字模型,并同时影响模型的质量。这项研究为获得最佳精度和最大允许偏差提供了最佳平衡,以减少计算机处理和处理时间。考虑了一个自由形式的假肢窝的现实的非琐碎的案例研究。对于医疗应用和FEM分析,开发模型所获得的精度是可以接受的。

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