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Influence of 3d-printing parameters on the mechanical properties of 17-4PH stainless steel produced through Selective Laser Melting

机译:3D印刷参数对通过选择性激光熔化产生17-4PH不锈钢机械性能的影响

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Additive Manufacturing (AM) is a technological process in which elements are fruitfully built up adding materials layer by layer. AM had a massive development in recent times, thanks to its intrinsic advantages, especially if compared with conventional processes (i.e. subtractive manufacturing methods), in terms of free-form design, high customization of products, a significant reduction in raw materials consumption, low request of postprocessing and heat treatments, use of pure materials and reduced time for final products to be marketed. In order to give an innovative contribution to the knowledge in the field of metal AM materials, this paper reports the main outcomes of an experimental campaign focused on the influence of several specific printing parameters on the mechanical features of the 17-4PH stainless steel, which is one of the most used metal for the Selective Laser Melting (SLM) technology. The influence of different printing directions and sample inclinations on the material mechanical behavior is assessed, with the aim of considering an innovative use in the field of structural engineering. Moreover, the effects due to scanning and recoating times are studied. In addition, the consequences of heat treatment (annealing) on both the residual stresses and the amount of residual austenite are appraised.
机译:添加剂制造(AM)是一种技术过程,其中通过层果树果树果树效果。由于其内在的优点,AM近来,近一次具有巨大的发展,特别是如果与传统工艺(即减法制造方法)相比,在自由式设计方面,高度定制产品,原料消耗的显着降低,低请求后处理和热处理,使用纯材料和缩短时间以销售的最终产品。为了为金属领域的知识提供创新贡献,该论文报告了一个专注于若干特定印刷参数对17-4PH不锈钢的机械特性的影响的实验活动的主要结果,这是选择性激光熔化(SLM)技术最常用的金属之一。评估了不同印刷方向和样品倾斜对材料机械行为的影响,目的是考虑结构工程领域的创新使用。此外,研究了引起的扫描和再镀时间的影响。此外,评估热处理(退火)对残留应力和残留奥氏体量的后果。

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