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Push-pull direct modeling of solid CAD models

机译:实体CAD模型的推挽直接建模

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Direct modeling is a very recent CAD modeling paradigm featuring direct, intuitive push-pull interactions with the geometry of the model to much increase model editing flexibility. The major issue for push-pull direct modeling is the possible inconsistency between the altered geometry of the model and its unchanged topology. The challenge of resolving the geometry-topology inconsistency lies in ensuring that the resulting model remains as a valid solid model and that the model shape follows a continuous change pattern. Although push-pull direct modeling has been implemented in several CAD software packages, robustness towards generating valid modeling results and continuous shape changes still remains an open issue. This paper proposes a systematic method to handle the resolution of any possible inconsistent situation. The method formulates the continuous shape change requirement as successive Boolean operations on the model volume, thereby guaranteeing valid solid models and continuous shape changes. Further, this formulation allows an easy implementation of push-pull direct modeling using existing CAD research and engineering results. In order to show the effectiveness of the proposed method, a software prototype is developed and the modeling results are compared with those of five leading CAD software packages.
机译:直接建模是一种非常新的CAD建模范例,其特征在于可以直接,直观地与模型几何进行推拉交互,从而大大提高了模型编辑的灵活性。推挽直接建模的主要问题是模型的更改的几何形状与其不变的拓扑之间可能存在不一致的情况。解决几何拓扑不一致问题的挑战在于,确保生成的模型保持为有效的实体模型,并且模型形状遵循连续的变化模式。尽管已经在几个CAD软件包中实现了推挽直接建模,但是生成有效建模结果和连续形状变化的鲁棒性仍然是一个悬而未决的问题。本文提出了一种系统的方法来处理任何可能的不一致情况的解决方案。该方法将连续形状变化需求公式化为对模型体积的连续布尔运算,从而保证有效的实体模型和连续形状变化。此外,该公式允许使用现有的CAD研究和工程结果轻松实现推挽直接建模。为了显示该方法的有效性,开发了软件原型并将建模结果与五个领先的CAD软件包的建模结果进行了比较。

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