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首页> 外文期刊>CIRP Journal of Manufacturing Science and Technology >Study on factors for pores and cladding shape in the deposition processes of Inconel 625 by the directed energy deposition (DED) method
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Study on factors for pores and cladding shape in the deposition processes of Inconel 625 by the directed energy deposition (DED) method

机译:通过定向能量沉积(DED)方法研究Inconel 625沉积过程中孔隙和包层形状的因素研究

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摘要

Additive manufacturing has been utilized recently for prototyping and mass production of parts especially in the aerospace and medical industries. Most of the parts are processed by the powder bed fusion (PBF) method. On the other hand, the directed energy deposition (DED) method is attractive due to the high deposition speed. However, various parameters must be set for deposition processes and how these parameter settings affect the quality of products in terms of pores and machine properties have not been clarified. This paper studies factors contributing to pore generation in the deposition processes of Inconel 625 by the DED method. First, tests for deposition processes in single layer and multiple layers were conducted under various depositing conditions by changing the laser output and the amount of powder. The test results have clarified depositing conditions where less pores are generated, differences in hardness by deposited position, and the factors for those differences.
机译:最近已经利用了添加剂制造,以进行零件的原型和批量生产,尤其是在航空航天和医疗产业中。 大部分部件由粉末覆盖(PBF)方法加工。 另一方面,由于高沉积速度,定向能量沉积(DED)方法具有吸引力。 但是,必须为沉积过程设置各种参数,以及这些参数设置如何影响孔隙和机器性质的产品质量,并且尚未阐明。 本文研究了DED方法在Inconel 625的沉积过程中有助于孔产生的因素。 首先,通过改变激光输出和粉末的量,在各种沉积条件下进行单层和多层沉积过程的试验。 测试结果澄清了沉积条件,其中产生较少的孔隙,沉积位置的硬度差异,以及这些差异的因素。

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