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Influence of Sintering under Nitrogen Atmosphere on Microstructures of Powder Metallurgy Duplex Stainless Steels

机译:氮气氛下烧结对粉末冶金双相不锈钢组织的影响

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摘要

Duplex stainless steels (SS) obtained through powder metallurgy (PM) from austenitic AISI 316L and ferritic AISI 430L powders were mixed in different amounts to obtain a biphasic structure with an austenite/ferrite ratio of 50/50, 65/35, and 85/15. Prepared powders were compacted at 750 MPa and sintered in N2-H2 (95 pct–5 pct) at 1250 °C for 1 hour. Some samples sintered in vacuum were taken as references. Optical metallography, X-ray diffraction, and scanning electron microscopy/energy dispersive analysis of X-rays were used for microstructural characterization. Powder metallurgy base materials, AISI 430L and 316L, showed a single lamellar constituent after sintering in nitrogen. A mixed constituent was identified in PM duplex SS sintered in nitrogen and in vacuum. However, coarse and fine lamellar constituents were only present in PM duplex SS sintered in nitrogen. The effects of annealing solution heat treatment (1150 °C) on microstructures were evaluated. Homogeneous structures were obtained for the PM base materials, while for PM duplex SS, annealing dissolved lamellar constituents but mixed constituent were still present.
机译:将奥氏体AISI 316L和铁素体AISI 430L粉末通过粉末冶金(PM)获得的双相不锈钢(SS)混合使用,以获得奥氏体/铁素体比为50 / 50、65 / 35和85 /的双相结构。 15将准备好的粉末在750 MPa下压实,并在N2 -H2 (95 pct–5 pct)中于1250°C烧结1小时。以真空烧结的一些样品作为参考。光学金相,X射线衍射和X射线扫描电子显微镜/能量色散分析用于微观结构表征。粉末冶金基础材料AISI 430L和316L在氮气中烧结后显示出单一的片状成分。在氮气和真空中烧结的PM双相SS中鉴定出混合成分。然而,仅在氮气中烧结的PM双相不锈钢中存在粗细的片状成分。评估了退火溶液热处理(1150°C)对显微组织的影响。 PM基材获得了均匀的结构,而PM双相不锈钢则获得了溶解的片状成分退火但仍存在混合成分的结构。

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    《Metallurgical and Materials Transactions A》 |2009年第2期|292-301|共10页
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    Materials Engineering E.T.S.I.I. Universidad de Valladolid 47011 Valladolid Spain;

    Materials Engineering E.T.S.I.I. Universidad de Valladolid 47011 Valladolid Spain;

    Materials Engineering E.T.S.I.I. Universidad de Valladolid 47011 Valladolid Spain;

    Materials Engineering E.T.S.I.I. Universidad de Valladolid 47011 Valladolid Spain;

    Materials Engineering E.T.S.I.I. Universidad de Valladolid 47011 Valladolid Spain;

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