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Segregates at prior particle boundaries in powder metallurgical martensitic stainless steel

机译:在粉末冶金马氏体不锈钢中在先前的颗粒边界处偏析

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摘要

The segregant behaviour in powder metallurgical (PM) martensitic stainless steel produced by hot isostatic pressing of gas atomised powder has been investigated by characterisation of the surface products on atomised powder and of the precipitatepattern on the prior particle boundaries (PPBs) in the consolidated material. Special attention was paid to the distribution of minor alloy constituents and impurities. Attempts were made to correlate the PPBs with microstructural features such as formeraustenite grain boundaries (FAGBs). The powder surfaces were analysed using electron spectroscopy for chemical analysis, Auger electron spectroscopy, and secondary ion mass spectroscopy (SIMS). The particles were covered primarily by Fe, Cr, and Mnoxides. Compared with the alloy composition Mn and Cr were preferentially oxidised. Oxides of the minor constituents W, Nb, and V were also found in the surface layer. In B alloyed material this element was enriched within the surface oxide. Theimpurities Sn, Cu, Zn, and S were enriched on the powder surfaces during atomisation, primarily as a result of the lowering of the surface tension of the liquid metal droplet, and Ca was also observed on the powder surfaces. Higher amounts of Mn and Croxides, as well as enrichment of C, N, and S, were found on smaller than on coarser particles. These differences are a result of the larger undercooling of the smaller particles. Mechanisms are suggested for how this factor alters the diffusion in andevaporation from liquid droplets as well as the solidification structure. The PPBs were localised by means of imaging SIMS of segregants contained in precipitates and correlated with the microstructure via intensity contrast from microhardness indents.The established method has proved useful for PM materials with PPB decoration that can not be visualised using optical microscopy. About 10% of the FAGBs were contiguous with the PPBs in compacts of 10%Cr steel, with and without added B. Evidence for theretention of segregants on the PPBs is shown. These boundaries were decorated with oxide compounds that contain the alloying elements Mn, Si, V, Cr, and B as well as the impurities Ca, Na, Al, and Ti. All these elements were mostly present in mixedcompounds or coprecipitates that were coarser and more dispersed in the B alloyed material than in the material without added B.
机译:通过表征雾化粉末上的表面产物和固结材料中先前颗粒边界(PPB)上的析出图案,研究了通过气体雾化粉末的热等静压生产的粉末冶金(PM)马氏体不锈钢中的偏析行为。特别注意微量合金成分和杂质的分布。尝试将PPB与微结构特征(如奥氏体晶界(FAGB))相关联。粉末表面使用电子光谱进行化学分析,俄歇电子光谱和二次离子质谱(SIMS)进行分析。颗粒主要被铁,铬和二氧化锰覆盖。与合金组成相比,Mn和Cr被优先氧化。在表面层中还发现了次要成分W,Nb和V的氧化物。在B合金材料中,该元素富集在表面氧化物中。雾化过程中,杂质Sn,Cu,Zn和S富集在粉末表面上,这主要是由于液态金属液滴表面张力降低的结果,并且在粉末表面上也观察到Ca。与较小的颗粒相比,发现较小的颗粒中含有较高的Mn和Cr氧化物,以及C,N和S的富集。这些差异是较小颗粒较大的过冷现象的结果。提出了有关该因素如何改变液滴中的扩散和蒸发以及凝固结构的机制。通过对沉淀物中所含偏析物进行SIMS成像对PPB进行定位,并通过显微硬度压痕的强度对比将其与微观结构相关联。已建立的方法已被证明可用于无法通过光学显微镜观察到的具有PPB装饰的PM材料。在添加和不添加B的情况下,约10%的FAGB与10%Cr钢的压坯中的PPB相邻。显示了在PPB上保留分离剂的证据。这些边界用氧化物化合物装饰,该化合物包含合金元素Mn,Si,V,Cr和B以及杂质Ca,Na,Al和Ti。所有这些元素大多数都存在于混合化合物或共沉淀物中,与没有添加B的材料相比,其在B合金材料中的分布更粗糙且分布更广。

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