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不锈钢表面等离子渗铪及渗碳后的抗高温氧化行为
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桂林电子科技大学,桂林电子科技大学

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TG156.8

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国家自然科学基金项目(面上项目,重点项目,重大项目)


High-temperature Oxidation Behavior of Austenite Stainless Steel with Plasma Surface Hafnizing and Carburization
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Guilin University of electronic technology,Guilin University of electronic technology

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    摘要:

    研究了0Cr18Ni9Ti奥氏体不锈钢等离子渗铪以及渗铪后进行渗碳并在静态空气中的抗高温氧化行为。研究表明:渗铪合金层厚度为35um,渗层连续致密无孔洞,与基体呈冶金结合,表面物相主要有Hf、HfC、Hf2Fe;渗铪 渗碳层厚度为100um,渗层弥散分布许多粒状和短棒状碳化物颗粒,尺寸在1~2um,主要类型为MC、M7C3、M23C6型。1050℃、1100℃下氧化时渗Hf试样氧化速率约为基材的1/3、1/8,而渗Hf 渗C试样约为1/8、1/25,随着氧化温度升高时,氧化速率增大,增幅及氧化增重均为渗Hf 渗C试样<渗Hf试样<基材,且氧化增重近似符合抛物线规律;依次渗Hf和渗C后,经过高温氧化,试样表面合金元素降低、Hf含量升高,表面剥落得到改善,氧化缺陷减少、孔洞变小, Hf起到固化表面氧化物层、提高固溶强化的作用,HfC等碳化物以及HfO2可以有效降低氧离子的扩散速率,显著提高抗高温氧化性能

    Abstract:

    High-temperature oxidation resistance in static air of 0Cr18Ni9Ti stainless steel (substrate for short), and the substrates after treated respectively by hafnizing process, hafnizing carburizing process were investigated. The results show that: Thickness of Hf-alloyed layer is 35 um, the layer found continuous and dense with no holes, combined with the matrix as a metallurgical bond, the surface phase is Hf2Fe, HfC, Hf; Thickness of Hf C layer is 100 um, and dispersively distributed many granular and short rod carbide particles which size 1 ~ 2um, the main types are MC, M7C3, M23C6. The oxidation rate of Hf-alloyed sample in 1050℃ and 1100℃ are just 1/3, 1/8 that of substrate, and Hf C layer sample about 1/8, 1/25, the oxidation rate increases as the temperature rises, the rate and oxidation mass is Hf C layer sample < Hf-alloyed sample < substrate, and the oxidation mass comply with the parabolic law; The surface alloying elements reduced, Hf increased after hafnizing and carburizing successively, and surface flaking improved, oxidation defects reduced and holes turn smaller, Hf can solidify the surface oxide layer and improve solid solution strengthening, carbide particles as HfC and oxides as HfO2 can reduce the rate of diffusion of oxygen ions, improved oxidation resistance significantly.

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陆小会,高原.不锈钢表面等离子渗铪及渗碳后的抗高温氧化行为[J].稀有金属材料与工程,2016,45(8):2026~2030.[luxiaohui, gaoyuan. High-temperature Oxidation Behavior of Austenite Stainless Steel with Plasma Surface Hafnizing and Carburization[J]. Rare Metal Materials and Engineering,2016,45(8):2026~2030.]
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  • 收稿日期:2014-06-29
  • 最后修改日期:2014-08-05
  • 录用日期:2014-10-30
  • 在线发布日期: 2016-10-09
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