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TOWARDS ASSEMBLY-FREE METHODS FOR ADDITIVE MANUFACTURING SIMULATION

机译:面向总装配法的增材制造仿真

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摘要

There is significant interest today in the finite element simulation of various Additive Manufacturing (AM) processes. AM simulation is time-dependent, inherently non-linear, and involves multiple physics. In addition, repeated meshing and insertion of new elements during material deposition can pose significant implementation challenges. Currently, AM simulation is handled either through a 'quiet' approach or an 'inactive' approach. In the quiet approach, all finite elements within the workspace are assembled into the global stiffness matrix, and the elements yet to be deposited are assigned 'void' material properties. In the inactive approach, only the elements that have been deposited are assembled into the global stiffness matrix. The advantages and disadvantages of the two methods are well documented. In this paper, we propose a voxel-based, assembly-free framework for AM simulation. This framework presents several advantages including. (1) The workspace is meshed only once at the start of the simulation, (2) addition and deletion of elements is trivial, (3) reduced memory requirement as the global stiffness matrix is never assembled and (4) the underlying linear systems of equations can be solved efficiently through assembly-free methods. We demonstrate the framework here by simulating transient non-linear thermal behaviour of a laser deposition process, with material deposition.
机译:当今,人们对各种增材制造(AM)过程的有限元仿真产生了极大的兴趣。 AM仿真是时间相关的,固有地是非线性的,并且涉及多种物理。此外,在材料沉积过程中重复啮合和插入新元素会带来重大的实施挑战。当前,AM仿真是通过“安静”方法或“非活动”方法进行处理的。在安静的方法中,将工作空间中的所有有限元素组装到整体刚度矩阵中,然后将尚未沉积的元素指定为“无效”材料属性。在非活动方法中,仅将已沉积的元素组装到整体刚度矩阵中。两种方法的优缺点都有据可查。在本文中,我们提出了一种基于体素的,无装配的AM仿真框架。该框架具有许多优点,包括。 (1)在模拟开始时,仅对工作空间进行一次网格划分;(2)元素的添加和删除非常简单;(3)由于从未组装整体刚度矩阵,因此减少了内存需求;(4)底层的线性系统可以通过无装配方法有效地求解方程。我们通过模拟具有材料沉积的激光沉积过程的瞬态非线性热行为,在此演示了框架。

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