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Contact-Free Support Structures for Part Overhangs in Powder-Bed Metal Additive Manufacturing

机译:粉末床金属增材制造中零件悬垂的无接触支撑结构

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This study investigates the feasibility of a novel concept, contact-free support structures, for part overhangs in powder-bed metal additive manufacturing. The intent is to develop alternative support designs that require no or little post-processing, and yet, maintain effectiveness in minimizing overhang distortions. The idea is to build, simultaneously during part fabrications, a heat sink (called “heat support”), underneath an overhang to alter adverse thermal behaviors. Thermomechanical modeling and simulations using finite element analysis were applied to numerically research the heat support effect on overhang distortions. Experimentally, a powder-bed electron beam additive manufacturing system was utilized to fabricate heat support designs and examine their functions. The results prove the concept and demonstrate the effectiveness of contact-free heat supports. Moreover, the method was tested with different heat support parameters and applied to various overhang geometries. It is concluded that the heat support proposed has the potential to be implemented in industrial applications.
机译:这项研究调查了一种新颖概念的无接触支撑结构在粉末床金属增材制造中的突出部分的可行性。目的是开发不需要后处理或不需要后处理的替代支撑设计,并且保持最小化悬垂变形的有效性。这个想法是在零件制造过程中同时在悬垂物下方建立一个散热器(称为“热支撑”)以改变不利的热行为。利用有限元分析的热力学建模和模拟方法对悬垂变形的热支撑效应进行了数值研究。实验上,粉末床电子束增材制造系统被用于制造热载体设计并检查其功能。结果证明了这一概念并证明了非接触式热载体的有效性。此外,该方法在不同的热支持参数下进行了测试,并应用于各种悬垂几何形状。结论是,提出的热支撑有可能在工业应用中实现。

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