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The effect of reduced oxygen content powder on the impact toughness of 316 steel powder joined to 316 steel by low temperature HIP

机译:降低氧含量粉末对低温HIP结合316钢的316钢粉冲击韧性的影响。

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摘要

During the manufacture of the blanket modules, 316L steel powder is simultaneously consolidated and joined to tubes and blocks of 316L materials by hot isostatic pressing (HIP). The high processing temperature can detrimentally increase the grain size of the water-cooling tubes in the structure and the blocks reducing their strength. It is well known [L. Arnberg, A. Karlsson, Influence of powder surface oxidation on some properties of a HIPed martensitic chromium steel, Int. J. Powder Metall. 24 (2) (1988) 107-112] that surface oxides on the powder particles negatively influence the impact toughness of material and joints consolidated in this way. At a high HIP temperature, the oxides are at least partly transformed, thereby improving the impact toughness [L. Nyborg, I. Olefjord, Surface analysis of PM martensitic steel before and after consolidation. Part 2. Surface analysis of compacted material, Powder Metall. 31 (1) (1988) 40-44]. In order to get acceptable mechanical properties of materials produced at a low HIP temperature, the oxygen content on the powder surfaces needs to be reduced. In order to study the effect of reducing the powder oxygen content, it was reduced and the results were compared to those of specimens with ordinary oxygen content. The effect on the impact toughness and the tensile strength of low temperature (1020 and 1060℃) HIP joints between steel blocks and powder consolidated material with low and ordinary oxygen content was measured.
机译:在橡皮布模块的制造过程中,同时将316L钢粉固结并通过热等静压(HIP)连接到316L材料的管和块上。较高的加工温度会有害地增加结构中水冷管的晶粒尺寸,而块会降低其强度。众所周知[L. Arnberg,A. Karlsson,粉末表面氧化对HIP马氏体铬钢某些性能的影响。 J.粉末金属。 24(2)(1988)107-112]指出,粉末颗粒上的表面氧化物会对材料的冲击韧性产生负面影响,并以此方式固结的接缝。在高HIP温度下,氧化物至少部分发生了转变,从而提高了冲击韧性[L. Nyborg,I。Olefjord,固结前后的PM马氏体钢的表面分析。第2部分。压实材料粉末金属的表面分析。 31(1)(1988)40-44]。为了获得在低HIP温度下生产的材料的可接受的机械性能,需要降低粉末表面的氧含量。为了研究降低粉末含氧量的效果,将其降低了,并将结果与​​普通含氧量的样品进行了比较。测量了低氧含量和普通氧含量的钢块与粉末固结材料之间的低温(1020和1060℃)HIP接头的冲击韧性和拉伸强度的影响。

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