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A Process Map for Consistent Build Conditions in the Solid Freeform Fabrication of Thin-Walled Structures

机译:薄壁结构的固体自由成形中一致的构建条件的流程图

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In solid freeform fabrication (SFF) processes involving thermal deposition, thermal control of the process is critical for obtaining consistent build conditions and in limiting residual stress-induced warping of parts. In this research, a nondimensionalized plot (termed a process map ) is developed from numerical models of laser-based material deposition of thin-walled structures. This process map quantifies the effects of changes in wall height, laser power, deposition speed and part preheating on melt pool length, which is an essential process parameter to control in order to obtain consistent build conditions. The principal application of this work is to the Laser Engineered Net Shaping (LENS) process under development at Sandia Laboratories; however, the general approach and a subset of the presented results are applicable to any SFF process involving a moving heat source. Procedures are detailed for using the process may to predict melt pool length and predictions are compared against experimentally measured melt pool lengths for stainless steel deposition in the LENS process.
机译:在涉及热沉积的固体自由形式制造(SFF)过程中,过程的热控制对于获得一致的构建条件和限制零件的残余应力引起的翘曲至关重要。在这项研究中,从薄壁结构的基于激光的材料沉积的数值模型中开发了无量纲图(称为过程图)。该工艺图量化了壁高,激光功率,沉积速度和零件预热的变化对熔池长度的影响,熔池长度是控制以获得基本成型条件的基本工艺参数。这项工作的主要应用是桑迪亚实验室正在开发的激光工程网整形(LENS)工艺;但是,一般方法和部分结果适用于涉及移动热源的任何SFF工艺。详细说明了使用该过程可以预测熔池长度的程序,并将预测值与LENS工艺中用于不锈钢沉积的实验测量的熔池长度进行了比较。

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