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GCr15销轴固体渗Cr层的生长机制及孔隙成因探索
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1.山东科技大学材料科学与工程学院;2.济南天盟新材料科技有限公司;3.合鸿新材科技有限公司

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山东省自然科学(项目号ZR2020ME015);泰山学者攀登计划项目(No. tspd20161006)


Exploration on the Growth Mechanism and Pore Formation of Solid Chromizing Layer of GCr15 Pin
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1.School of Materials Science and Engineering,Shandong University of Science and Technology;2.Jinan Tianmeng New Material Technology Co,LTD;3.Hehong New Material Technology Co., LTD

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    摘要:

    低扩渗效率和渗层孔隙是困扰着渗铬生产的两个重要难题。本文采用固体包埋法在GCr15表面制备渗Cr涂层,重点探讨了渗层的生长机制、孔隙成因及不同稀土氧化物的催渗作用。结果表明,加入稀土氧化物后渗层厚度明显提高,三种稀土氧化物的催渗效率依次为Y2O3>CeO2>La2O3。渗Cr层明显的分为双层结构,外层是以(Cr,Fe)23C6相为主的多孔层,内层为(Cr,Fe)7C3相为主的致密层。扩渗初期在基材表面首先生成的(Cr,Fe)23C6相层阻碍了表面活性Cr原子向内扩散,其自身作为Cr源向内扩散促进了致密层的生长,Cr原子扩散速度的差异及渗层中的应力是产生孔隙的主要原因。发现降低基体碳含量抑制(Cr,Fe)23C6相层的生成或细化该相层晶粒增加Cr原子扩散通道可有效降低孔隙率,这为改进渗铬层质量提供了一个重要思路。

    Abstract:

    Low diffusion efficiency and porous layer are two important problems in chromeizing production. In this paper, cr-permeable coating was prepared on GCr15 surface by solid embedding method. The growth mechanism of permeable layer, pore formation and the effect of different rare earth oxides on permeable layer were discussed. The results show that the permeability layer thickness increases obviously after adding rare earth oxides, and the permeability efficiency of the three rare earth oxides is Y2O3> CeO2> La2O3. The Cr permeable layer is obviously divided into two layers, the outer layer is porous layer dominated by (Cr, Fe)23C6 phase, and the inner layer is dense layer dominated by (Cr, Fe)7C3 phase. The (Cr, Fe)23C6 phase layer, which is first generated on the substrate surface at the early stage of diffusion, inhibits the inward diffusion of active Cr atoms and promotes the growth of the tight layer as a Cr source. The difference in the diffusion rate of Cr atoms and the stress in the permeable layer are the main reasons for the formation of pores. It is found that reducing the carbon content of substrate inhibits the formation of (Cr, Fe)23C6 phase layer or refining the grain of the phase layer to increase the diffusion channel of Cr atom can effectively reduce the porosity, which provides an important idea for improving the quality of chromizing layer.

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王海峰,王灿明,刘婷婷,宋强,薛云岭,马庆超,崔洪芝. GCr15销轴固体渗Cr层的生长机制及孔隙成因探索[J].稀有金属材料与工程,2023,52(5):1809~1818.[Wang Haifeng, Wang Canming, Liu Tingting, Song Qiang, Xue Yunling, Ma Qingchao, Cui Hongzhi. Exploration on the Growth Mechanism and Pore Formation of Solid Chromizing Layer of GCr15 Pin[J]. Rare Metal Materials and Engineering,2023,52(5):1809~1818.]
DOI:10.12442/j. issn.1002-185X.20220335

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历史
  • 收稿日期:2022-04-20
  • 最后修改日期:2022-05-24
  • 录用日期:2022-06-17
  • 在线发布日期: 2023-06-08
  • 出版日期: 2023-05-29