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Localized Preheating Approaches for Reducing Residual Stress in Additive Manufacturing

机译:用于降低添加剂制造中残余应力的局部预热方法

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Uniform preheating can be used to limit residual stress in the solid freeform fabrication of relatively small parts. However, in additive manufacturing processes, where a feature is deposited onto a much larger part, uniform preheating of the entire assembly is typically not practical. This paper considers localized preheating to reduce residual stresses, building on previous work using a defined thermal gradient through the part depth as a metric for predicting maximum final residual stress. The building of thin-walled structures is considered. Two types of localized preheating approaches are compared, appropriate for use in laser- or electron beam-based additive manufacturing processes. In evaluating the effectiveness of each approach, a simplified thermomechanical model is used that can be related directly to analytical thermomechanical models for thermal stresses in unconstrained thin plates. Results are presented showing that one of the methods yields temperature profiles likely to yield reduced residual stresses at room temperature. Mechanical model results confirm this, showing a significant reduction in maximum stress values. A more complete thermomechanical simulation of thin wall fabrication is used to verify the trends seen in the simplified model results.
机译:均匀预热可用于限制相对小部分的固体自由形式制造中的残余应力。然而,在添加制造过程中,在将特征沉积到更大的部分上的情况下,整个组件的均匀预热通常不实用。本文考虑了局部预热以减少残余应力,通过零件深度作为预测最大最终残余应力的指标,使用定义的热梯度构建在先前的工作。考虑了薄壁结构的建筑。比较两种类型的定位预热方法,适用于用于基于激光或电子束的添加剂制造方法。在评估每种方法的有效性时,使用简化的热机械模型,其可以直接与非束薄板中的热应力的分析热机械模型相关。提出了结果表明,其中一种方法产生温度曲线可能在室温下产生降低的残余应力。机械模型结果证实了这一点,显示了最大应力值的显着降低。薄壁制造的更完整的热机械模拟用于验证简化模型结果中看到的趋势。

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