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Numerical investigations on hatching process strategies for powder-bed-based additive manufacturing using an electron beam

机译:基于电子束的粉末床基增材制造的孵化工艺策略的数值研究

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This paper investigates in hatching process strategies for additive manufacturing using an electron beam by numerical simulations. The underlying physical model and the corresponding three-dimensional thermal free-surface lattice Boltzmann method of the simulation software are briefly presented. The simulation software has already been validated on the basis of experiments up to 1.2kW beam power by hatching a cuboid with a basic process strategy, whereby the results are classified into porous, good, and uneven, depending on their relative density and top surface smoothness. In this paper, we study the limitations of this basic process strategy in terms of higher beam powers and scan velocities to exploit the future potential of high power electron beam guns up to 10kW. Subsequently, we introduce modified process strategies, which circumvent these restrictions, to build the part as fast as possible under the restriction of a fully dense part with a smooth top surface. These process strategies are suitable to reduce the build time and costs, maximize the beam power usage, and therefore use the potential of high power electron beam guns.
机译:本文通过数值模拟研究了使用电子束进行增材制造的孵化过程策略。简要介绍了基础软件的物理模型和相应的三维热自由表面晶格玻尔兹曼方法。该仿真软件已经通过基于基本工艺策略的长方体孵化在高达1.2kW光束功率的实验基础上进行了验证,根据其相对密度和顶面光滑度,结果可以分为多孔,良好和不均匀。在本文中,我们从更高的束功率和扫描速度方面研究了这种基本工艺策略的局限性,以开发高达10kW的高功率电子束枪的未来潜力。随后,我们引入了改进的工艺策略来规避这些限制,以便在具有光滑顶面的完全致密零件的限制下尽快构建零件。这些工艺策略适合于减少制造时间和成本,最大化电子束功率的使用,并因此利用大功率电子束枪的潜力。

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