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A non-retraction path planning approach for extrusion-based additive manufacturing

机译:基于挤压的增材制造的非回缩路径规划方法

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Notwithstanding the widespread use and large number of advantages over traditional subtractive manufacturing techniques, the application of additive manufacturing technologies is currently limited by the undesirable fabricating efficiency, which has attracted attentions from a wide range of areas, such as fabrication method, material improvement, and algorithm optimization. As a critical step in the process planning of additive manufacturing, path planning plays a significant role in affecting the build time by means of determining the paths for the printing head's movement. So a novel path filling pattern for the deposition of extrusion-based additive manufacturing is developed in this paper, mainly to avoid the retraction during the deposition process, and hence the time moving along these retracting paths can be saved and the discontinuous deposition can be avoided as well. On the basis of analysis and discussion of the reason behind the occurrence of retraction in the deposition process, a path planning strategy called "go and back" is presented to avoid the retraction issue. The "go and back" strategy can be adopted to generate a continuous extruder path for simple areas with the start point being connected to the end point. So a sliced layer can be decomposed into several simple areas and the sub-paths for each area are generated based on the proposed strategy. All of these obtainable sub-paths can be connected into a continuous path with proper selection of the start point. By doing this, separated sub-paths are joined with each other to decrease the number of the startup and shutdown process for the extruder, which is beneficial for the enhancement of the deposition quality and the efficiency. Additionally, some methodologies are proposed to further optimize the generated non-retraction paths. At last, several cases are used to test and verify the developed methodology and the comparisons with conventional path filling patterns are conducted. The results show that the proposed approach can effectively reduce the retraction motions and is especially beneficial for the high efficient additive manufacturing without compromise on the part resistance.
机译:尽管与传统减法制造技术相比具有广泛的用途和众多优势,但增材制造技术的应用目前仍受到不良的制造效率的限制,这种制造效率已引起广泛关注,例如制造方法,材料改进和算法优化。作为增材制造过程规划中的关键步骤,路径规划通过确定打印头移动的路径,在影响构建时间方面起着重要作用。因此,本文开发了一种新颖的用于基于挤压成型的增材制造的沉积路径填充模式,主要是为了避免在沉积过程中发生缩回,因此可以节省沿着这些缩回路径移动的时间,并且可以避免不连续沉积也一样在对沉积过程中发生回缩的原因进行分析和讨论的基础上,提出了一种称为“回退”的路径规划策略,以避免回缩问题。可以采用“前进和后退”策略为起点连接到终点的简单区域生成连续的挤出机路径。因此,可以将切片的层分解为几个简单区域,并根据所提出的策略生成每个区域的子路径。通过适当选择起点,所有这些可获得的子路径都可以连接到连续路径中。通过这样做,将分离的子路径彼此结合以减少挤出机的启动和关闭过程的次数,这对于提高沉积质量和效率是有利的。另外,提出了一些方法来进一步优化所生成的非缩回路径。最后,使用几种情况来测试和验证所开发的方法,并与常规路径填充模式进行比较。结果表明,所提出的方法可以有效地减少回缩运动,并且特别有利于高效的增材制造而不损害部件电阻。

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