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Effect of sintering atmosphere and carbon content on the densification and microstructure of laser-sintered M2 high-speed steel powder

机译:烧结气氛和碳含量对激光烧结M2高速钢粉致密化和组织的影响

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In the present work, the role of graphite addition and sintering atmosphere on the laser sintering of M2 high-speed steel (HSS) powder was studied. The test specimens were produced using a continuous wave CO_2 laser beam at power of 200 W and at varying scan rate ranges from 50 to 175 mm s~(-1) under nitrogen and argon atmospheres. It was found that laser scan rate and sintering atmosphere strongly influence the densification of M2 HSS powder. Opposite to the conventional sintering that the sinterability of HSS is improved by graphite addition, the result of this work demonstrated that graphite addition decreases the sintered density of M2 HSS at relatively low laser scan rates, i.e. <100 mms~(-1), whilst at higher scan rates the effect is not very conspicuous. Furthermore, sintering under argon atmosphere yielded better densification compared to nitrogen atmosphere, particularly at higher scan rates. The microstructure of laser-sintered parts consisted of large and elongated pores and a heterogeneous metal matrix. The matrix structure includes martensite, high carbon austenite and inter-cellular or inter-dendrite carbide network. Addition of graphite to the M2 HSS powder increases the heterogeneity of the microstructure, as it was noticed from the variation in the micro-hardness throughout the sintered specimens.
机译:在目前的工作中,研究了添加石墨和烧结气氛对M2高速钢(HSS)粉末的激光烧结的作用。使用连续波CO_2激光束以200 W的功率在氮气和氩气气氛下以从50到175 mm s〜(-1)的不同扫描速率生产试样。发现激光扫描速率和烧结气氛强烈影响M2 HSS粉末的致密化。与常规烧结相反,通过添加石墨可以改善HSS的可烧结性,这项工作的结果表明,在相对较低的激光扫描速率(即<100 mms〜(-1))下,添加石墨会降低M2 HSS的烧结密度。在较高的扫描速率下,效果不是很明显。此外,与氮气氛相比,在氩气氛下烧结产生更好的致密化,特别是在更高的扫描速率下。激光烧结零件的微观结构由大而细长的孔和异质金属基质组成。基体结构包括马氏体,高碳奥氏体和胞间或枝晶间碳化物网络。从整个烧结样品的显微硬度变化中可以看出,在M2 HSS粉末中添加石墨会增加微观结构的异质性。

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