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Visual simulation of crack pattern based on 3D surface cellular automaton

机译:基于3D表面元胞自动机的裂纹图案的可视化模拟

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This article describes a method for modeling the propagation of cracks on any 3D surface. Taking a previous cellular automata model as basis, this method allows any type of cracks on any type of triangulated 3D object. Our model's main advantage is that it proposes a semi-physical solution, making it at the same time user controllable and easily extensible. After summarizing works in the literature, we make a brief and simple description of what physically are cracks and how they are generated. Based on this idea, we detail our model of crack propagation. We first introduce the general development of cracks. We then propose our original model of spectrum stress. This is followed by the description of the mutual interaction between cracks and stresses. Finally, a set of graphical examples, with their respective parameters, concludes this paper.
机译:本文介绍了一种对3D表面上的裂纹扩展进行建模的方法。以以前的细胞自动机模型为基础,此方法允许在任何类型的三角3D对象上发生任何类型的裂缝。我们的模型的主要优势在于,它提出了一种半物理解决方案,使它同时可被用户控制和轻松扩展。在总结了文献中的工作之后,我们对裂纹在物理上是什么以及如何产生进行了简短的描述。基于此思想,我们详细介绍了裂纹扩展模型。我们首先介绍裂缝的一般发展。然后,我们提出了频谱应力的原始模型。接下来是裂缝和应力之间相互作用的描述。最后,本文总结了一组带有各自参数的图形示例。

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