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Investigation on the inclusions in maraging steel produced by selective laser melting

机译:选择性激光熔炼马氏体时效钢中夹杂物的研究

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摘要

Maraging steel is an iron-nickel steel alloy which achieves its superior strength, hardness and toughness by aging the martensite phase. In earlier investigations, however, the toughness of selective laser melted (SLM) and subsequent aged maraging steel was found to be low. Several authors attribute this to the large oxides present in the finished product. In this work, the origin for these oxides is investigated by using microscopy and spectroscopy. The analysis is done on specimens produced under different processing conditions and the most important characteristics of the inclusions are discussed. It is found that during the SLM process, an oxide layer containing Al and Ti is created on top of each layer. Upon melting the next layer, the oxide layer is broken and dragged further. Therefore, accumulations of oxide material are found in the final product as large, irregularly shaped inclusions.
机译:马氏体时效钢是一种铁-镍钢合金,通过对马氏体相进行时效处理而具有出色的强度,硬度和韧性。但是,在较早的研究中,发现选择性激光熔化(SLM)和随后的时效马氏体时效钢的韧性较低。一些作者将其归因于最终产品中存在的大量氧化物。在这项工作中,使用显微镜和光谱法研究了这些氧化物的来源。对在不同加工条件下生产的样品进行了分析,并讨论了夹杂物的最重要特征。发现在SLM工艺期间,在每一层的顶部上形成包含Al和Ti的氧化物层。在熔化下一层时,氧化层破裂并被进一步拖拽。因此,在最终产品中会发现氧化物材料的堆积物是大的不规则形状的夹杂物。

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