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Influence of Powder Surface Contamination in the Ni-Based Superalloy Alloy718 Fabricated by Selective Laser Melting and Hot Isostatic Pressing

机译:选择性激光熔融热等静压法制备的镍基高温合金718粉末表面污染的影响

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The aim of this study was to gain a deep understanding of the microstructure-mechanical relationship between solid-state sintering and full-melting processes. The IN718 superalloy was fabricated by hot isostatic pressing (HIP) and selective laser melting (SLM). Continuous precipitates were clearly localized along the prior particle boundary (PPB) in the HIP materials, while SLM materials showed a microstructure free of PPB. The mechanical properties of specimens that underwent SLM + solution treatment and aging were comparable to those of conventional wrought specimens both at room temperature and 650 °C. However, a drop was observed in the ductility of HIP material at 650 °C. The brittle particles along the PPB were found to affect the HIP materials’ creep life and ductility during solid-state sintering.
机译:这项研究的目的是加深对固态烧结与全熔过程之间的微观结构-机械关系的理解。 IN718超级合金通过热等静压(HIP)和选择性激光熔化(SLM)制成。连续的沉淀物明显沿着HIP材料中的先前粒子边界(PPB)定位,而SLM材料显示出无PPB的微观结构。经过SLM +固溶处理和时效处理的样品在室温和650°C下的机械性能均与常规变形样品的机械性能相当。但是,在650°C下观察到HIP材料的延展性下降。发现沿PPB的脆性颗粒会影响HIP材料在固态烧结过程中的蠕变寿命和延展性。

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