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Effect of Nitrogen, Carbon and Tungsten on High-temperature Oxidation of 12%Cr-15%Mn Austenitic Steel

机译:氮,碳,钨对12%Cr-15%Mn奥氏体钢高温氧化的影响

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摘要

Oxidation behavior of Fe-12%Cr-15%Mn alloy has been studied in air at 773 to 973 K. The oxidation rate of the alloy was very low at 773 K, and the effect of each alloying element on the oxidation did not identified. At above 873 K, the oxidation behavior was affected by the ratio of N/C and tungsten content in the alloy; the increase of N/C and tungsten content increased oxidation resistance of the alloy. Results of EPMA showed that thin Fe-Cr nitride layer was formed adjacent to the alloy surface when the ratio of N/C was proper, which was useful to prevent the oxidation of alloy. It also showed that homogeneous mono layer oxide was formed on the W-containing alloy, whereas four layer oxide was formed on the W-free alloy. Beneficial effect of tungsten may be related to this homogenization action. Small addition of vanadium and titanium was also effective to improve the oxidation resistance of the alloy. It is confirmed that the oxide formed on the alloy with good oxidation resistance was mainly composed of (Mn,Cr)_2O_3.
机译:已经研究了Fe-12%Cr-15%Mn合金在773至973 K的空气中的氧化行为。该合金的氧化速率在773 K时非常低,并且未发现每种合金元素对氧化的影响。在873 K以上,合金中N / C与钨含量的比值影响了氧化行为。 N / C和钨含量的增加增加了合金的抗氧化性。 EPMA的结果表明,当N / C比合适时,在合金表面附近会形成一层薄薄的Fe-Cr氮化物层,这对于防止合金的氧化是有用的。还表明在含W合金上形成了均匀的单层氧化物,而在无W合金上形成了四层氧化物。钨的有益作用可能与这种均质作用有关。少量添加钒和钛也有效地改善了合金的抗氧化性。可以确定的是,在具有良好抗氧化性的合金上形成的氧化物主要由(Mn,Cr)_2O_3组成。

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