[Study on high temperature oxidation of Ni-Cr ceramic alloys. Effects of Cr and Mo].

Aichi Gakuin Daigaku Shigakkai shi Pub Date : 1990-03-01
M Mizutani
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Abstract

The effects of Cr and Mo addition to Ni-Cr alloys on high temperature oxidation were investigated. The alloys were prepared with the composition of Cr ranging from 5 to 40 wt%. Also 2, 4 and 9 wt% of Mo was added to both Ni-5% Cr and Ni-20% Cr binary alloys. The alloys were heated at 800 degrees C, 900 degrees C and 1000 degrees C for 15 minutes in air, and the weight change after heat treatment was measured by electric automatic balance. The weight change during heating was measured by thermogravimetric measurement (TG). The products after heat treatment were characterized by X-ray diffraction and scanning electron microscopy (SEM). The results are summarized as follows: The Ni-Cr binary alloys were classified into three types of Cr ranging from 5 to 20 wt%, Cr 25% and Cr from 30 wt% to 40 wt% according to the weight gains with oxidation. In the case of the more than 25 wt% Cr content of the Ni-Cr binary alloys, the weight gain was extremely low and the heating temperature effects on the weight change were also small. X-ray diffraction study showed that NiO, NiCr2O4 and Cr2O3 formed on the surface of the Ni-Cr binary alloys whose composition of Cr ranged from 5 to 25 wt%, whereas NiO and NiCr2O4 rarely formed on the Ni-Cr binary alloys whose composition of Cr ranged from 30 to 40 wt%. This suggests that the formation of Cr2O3 prevents the formation of NiO on the alloy with a high Cr content. The weight gain of the Ni-Cr-Mo ternary alloys was smaller than that of the Ni-Cr binary alloys without Mo, and the temperature effects on the weight gain of the Ni-Cr-Mo ternary alloys were different for each Cr content. However, the effect of the amounts of Mo was small. NiO, NiCr2O4, Cr2O3 and MoO2 were identified by X-ray diffraction on the surface of the Ni-Cr-Mo ternary alloys. According to the SEM observation, it seems that NiO was formed at the outermost layer, both NiCr2O4 and Cr2O3 at the inside layer, and MoO2 at the innermost layer. The formation of both NiO and Cr2O3 on the Ni-Cr-Mo ternary alloys was restrained compared with that of the Ni-Cr binary alloys. However, the adhesion of oxides to the Ni-Cr-Mo ternary alloys was lower than that of the Ni-Cr binary alloys.

Ni-Cr陶瓷合金的高温氧化研究。Cr和Mo的影响。
研究了Cr和Mo对Ni-Cr合金高温氧化性能的影响。合金的Cr含量在5% ~ 40%之间。在Ni-5% Cr和Ni-20% Cr二元合金中分别添加2、4和9 wt%的Mo。将合金在空气中分别于800℃、900℃和1000℃加热15分钟,用电动自动天平测量热处理后的重量变化。用热重法(TG)测定了加热过程中的重量变化。热处理后的产物通过x射线衍射和扫描电镜(SEM)进行了表征。结果表明:根据Ni-Cr二元合金的氧化增重情况,将其分为5 ~ 20 wt% Cr、25% Cr和30 ~ 40 wt% Cr三种类型。在Cr含量大于25wt %的Ni-Cr二元合金中,重量增加极低,加热温度对重量变化的影响也很小。x射线衍射研究表明,在Cr含量为5 ~ 25 wt%的Ni-Cr二元合金表面形成NiO、NiCr2O4和Cr2O3,而在Cr含量为30 ~ 40 wt%的Ni-Cr二元合金表面很少形成NiO和NiCr2O4。这说明Cr2O3的形成阻止了高Cr合金上NiO的形成。Ni-Cr-Mo三元合金的增重幅度小于不含Mo的Ni-Cr二元合金,且温度对Ni-Cr-Mo三元合金增重的影响随Cr含量的不同而不同。然而,Mo含量的影响很小。用x射线衍射法在Ni-Cr-Mo三元合金表面鉴定了NiO、NiCr2O4、Cr2O3和MoO2。SEM观察表明,NiO在最外层形成,NiCr2O4和Cr2O3在最内层形成,MoO2在最内层形成。与Ni-Cr二元合金相比,Ni-Cr- mo三元合金中NiO和Cr2O3的形成受到抑制。然而,氧化物与Ni-Cr- mo三元合金的结合力要低于Ni-Cr二元合金。
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