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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Improvement of high temperature oxidation behavior of Cr3C2-20 wt % Ni cermets by adding 1 wt % Mo
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Improvement of high temperature oxidation behavior of Cr3C2-20 wt % Ni cermets by adding 1 wt % Mo

机译:通过加入1wt%Mo加入CR3C2-20wt%Ni CERMet的高温氧化行为的改善

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摘要

Cr3C2-20 wt % Ni cermets were prepared by Cr, C and Ni mixed powders using high energy milling and reactive sintering method comparing with the one contains 1 wt % Mo addition. Isothermal oxidation experiments were conducted at 800 degrees C in the static air from 10 h to 100 h using cyclic oxidation method. The high temperature oxidation behavior of Cr3C2-20 wt % Ni cermets effected by 1 wt % Mo addition was investigated. After 100 h oxidation, the oxidation weight increase and parabolic rate constants of the one with Mo decreased from 0.126 to 0.080 mg/cm(2) and 4.41 x 10(-12) to 1.78 x 10(-12) kg(2)/m(4).s, respectively. Generally, two positive effects were found by Mo additive, such as increasing the Cr atom concentration in the Ni and minimizing the formation of NiO during oxidation. The oxidation products of the cermets changed from forming the Cr2O3 and NiCr2O4 to that only forming Cr2O3 after adding molybdenum element. Pure Cr2O3 possessed better and denser crystal structure than that of NiCr2O4. The cermets were protected due to the formation of the dense oxide films on the surfaces of the substrates at high temperature. This novel mechanism was of academic influence and could serve as a guide for the further research on Cr3C2 - 20 wt % Ni cermets. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过使用高能铣削和与含有1wt%Mo的反应性烧结方法,通过Cr,C和Ni混合粉末制备CR3C2-20wt%Ni CERMet。使用环状氧化方法在10小时至100小时的情况下在800℃下在800℃下在800℃下进行等温氧化实验。研究了1wt%Mo加入的CR3C2-20wt%Ni Cermet的高温氧化行为。在100小时氧化后,氧化重量增加和Mo的抛物率常数从0.126降低至0.080mg / cm(2)和4.41×10(-12)至1.78×10(-12)kg(2)/ m(4)。分别。通常,Mo添加剂发现了两种正效应,例如增加Ni中的Cr原子浓度并在氧化过程中最小化NiO的形成。金属陶瓷的氧化产物从形成Cr2O3和NiCr2O4改变为仅在加入钼元素后形成Cr2O3。纯CR2O3具有比Nicr2O4更好,更密集的晶体结构。由于在高温下形成致密氧化物薄膜的致密氧化物膜而受到保护。这种新机制是学术影响力,可以作为进一步研究CR3C2 - 20重量%Ni Cermets的指导。 (c)2017年Elsevier B.V.保留所有权利。

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