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SYSTEM AND METHOD FOR OPTIMIZING TOOL PATHS BASED ON THERMAL/STRUCTURAL SIMULATIONS OF A PART BEING PRODUCED VIA A 3D-PRINTER

机译:基于通过3D打印机生产的零件的热/结构模拟优化刀具路径的系统和方法

摘要

A system and method is provided that facilitates optimizing tool paths based on thermal/structural simulations of a part produced via a 3D-printer. A processor may carry out a first simulation of the part being additively produced according to a first set of tool paths that correspond to instructions usable to drive the 3D-printer to produce the part. The first simulation may include: determining a hexahedral mesh of the part that includes a plurality of hexahedron elements; determining an order of the elements of the mesh to deposit for additively producing the part based on the first set of tool paths; and simulating an incremental deposit of each of the elements of the mesh in the order that the elements are determined to be deposited. For each incremental deposit of an additional respective element, thermal characteristics and structural deformation characteristics of the deposited elements are determined, in which some elements have a change in volume to account for a structural deformation of previously deposited adjacent elements.
机译:提供了一种系统和方法,其有助于基于经由3D打印机生产的零件的热/结构模拟来优化刀具路径。处理器可以根据与可用于驱动3D打印机以生产零件的指令相对应的第一组工具路径,对附加生产的零件进行第一模拟。所述第一模拟可以包括:确定包括多个六面体元素的零件的六面体网格;基于第一组工具路径,确定要沉积以额外生产零件的网格元素的顺序;并按照确定要沉积元素的顺序,模拟网格中每个元素的增量沉积。对于附加的各个元素的每次增量沉积,确定所沉积元素的热特性和结构变形特性,其中某些元素的体积发生变化,以解决先前沉积的相邻元素的结构变形。

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