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Scalable finite element simulation of additive manufacturing

机译:增材制造的可扩展有限元模拟

摘要

Methods and systems for providing accurate, scalable, and predictive 3D printing simulations using numerical methods for part-level simulations. Complex parts can be discretized into finite elements using independent and arbitrary meshing. The real additive manufacturing tooling path and printing time of a printing machine are simulated and applied to the mesh of finite elements using an intersection module that combines the finite element mesh with the tool path information of the printing machine in a geometric sense. This allows for localized heating effects to be simulated very accurately, and for cooling assessments to be precisely computed given the intersection module's computation of partial facets and volumes of the finite elements at any given time in the printing simulation.
机译:使用零件级仿真的数值方法提供准确,可扩展和预测性3D打印仿真的方法和系统。复杂的零件可以使用独立和任意网格划分为有限元。使用相交模块模拟印刷机的实际增材制造工装路径和印刷时间,并将其应用于有限元网格,该相交模块在几何意义上将有限元网格与印刷机的刀具路径信息相结合。这样就可以非常精确地模拟局部加热效果,并且在打印模拟中的任何给定时间,考虑到相交模块对有限元的部分面和体积的计算,就可以精确地计算出冷却评估。

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