文章摘要
邢佳,刘承志,李爱民,王守明,张欣杰,史咏鑫,于瑞恩.S31254超级奥氏体不锈钢高温氧化行为及涂层防护研究[J].包装工程,2023,44(7):286-293.
XING Jia,LIU Cheng-zhi,LI Ai-min,WANG Shou-ming,ZHANG Xin-jie,SHI Yong-xin,YU Rui-en.High-temperature Oxidation Behavior and Coating Protection of S31254 Super Austenitic Stainless Steel[J].Packaging Engineering,2023,44(7):286-293.
S31254超级奥氏体不锈钢高温氧化行为及涂层防护研究
High-temperature Oxidation Behavior and Coating Protection of S31254 Super Austenitic Stainless Steel
  
DOI:10.19554/j.cnki.1001-3563.2023.07.033
中文关键词: 超级奥氏体不锈钢  高温氧化  涂层防护  氧化动力学  烧损  氧化层
英文关键词: super austenitic stainless steel  high-temperature oxidation  coating protection  oxidation kinetics  oxidation loss  oxide layer
基金项目:国家自然科学基金青年基金项目(51902294);山西省基础研究计划(20210302124044)
作者单位
邢佳 中北大学 机械工程学院 特种金属材料与装备研究院太原 030051 
刘承志 中北大学 机械工程学院 特种金属材料与装备研究院太原 030051 
李爱民 中航上大高温合金股份有限公司河北 邢台 054800 
王守明 中航上大高温合金股份有限公司河北 邢台 054800 
张欣杰 中航上大高温合金股份有限公司河北 邢台 054800 
史咏鑫 中航上大高温合金股份有限公司河北 邢台 054800 
于瑞恩 中北大学 机械工程学院 特种金属材料与装备研究院太原 030051 
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中文摘要:
      目的 通过研究高温氧化特征,定量分析抗氧化涂层对S31254超级奥氏体不锈钢在热处理过程中氧化速率的影响。方法 通过热重分析实验测定S31254超级奥氏体不锈钢恒温氧化增量曲线,调查试样在不同温度下退火过程中的氧化烧损现象,并分析退火试样的纵截面氧化层微观形貌。结果 实验结果显示,当加热温度达到1 300 ℃后,试样的氧化增量曲线由原先的抛物线规律逐渐向线性规律转变。由于MoO3易于挥发,造成了试样高温氧化烧损严重。当退火温度为1 220 ℃时,试样在空气中的平均单面烧损速率约为4.0 μm/h;而当使用抗氧化涂层后,平均单面烧损速率降至3.2 μm/h,涂层防护效果显著。试样在1 220 ℃下退火时生成的氧化层可分为2层,分别是Cr、Fe氧化物组成的内氧化层和Fe氧化物组成的外氧化层。结论 研究结果证明,抗氧化涂层能够显著降低S31254超级奥氏体不锈钢在1 220~1 280 ℃下的氧化速率。
英文摘要:
      The work aims to quantitatively analyze the effect of anti-oxidation coating on the oxidation rate of S31254 super austenitic stainless steel during heat treatment by studying the characteristics of high-temperature oxidation. The oxidation weight-gained curve of S31254 super austenitic stainless steel at constant temperature was measured by thermogravimetric analysis experiment. The oxidation loss of specimen was investigated during annealing at different temperature, and the microstructure of the oxide layer in the longitudinal section of the annealed specimen was analyzed. The results showed that when the annealing temperature reached 1 300 ℃, the oxidation weight-gained curve of the specimen gradually changed from the original parabolic law to the linear law. The high-temperature oxidation loss of the specimen was serious because MoO3 was easy to gasify. When the annealing temperature was 1 220 ℃, the average single-sided oxidation loss rate of the specimen in air was about 4.0 μm/h. When the anti-oxidation coating was used, the average single-sided oxidation loss rate decreased to 3.2 μm/h. The protective effect of the coating was remarkable. The oxide layer formed in the process of annealing at 1 220 ℃ could be divided into two parts, which were the inner oxide layer composed of oxides of Cr and Fe and the outer oxide layer composed of oxides of Fe. The results illustrate that the anti-oxidation coating can significantly reduce the oxidation rate of S31254 super austenitic stainless steel at 1 220~1 280 ℃.
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