A METHODOLOGY FOR CALCULATING THE MINIMUM PRESSURIZATION TEMPERATURE OF NEW BUILT HYDROPROCESSING REACTORS IN 21/4CR-1MO-1/4V LOW ALLOY STEEL

被引:0
|
作者
Rensman, Jan-Willem [1 ]
Frittitta, Davide [2 ]
Fusari, Fausto [2 ]
Ronchi, Nicola [2 ]
机构
[1] Fluor BV, Hoofddorp, Netherlands
[2] Belleli Energy CPE Srl, Mantua, Italy
关键词
MPT; Minimum Pressurization Temperature; hydroprocessing reactors; hydrogen embrittlement; temper embrittlement; EMBRITTLEMENT;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Minimum Pressurization Temperature (MPT) is the lowest temperature at which a hydroprocessing reactor can start pressurizing safely. A reliable MPT evaluation is necessary due to the susceptibility of hydroprocessing reactor materials to the combined effects of temper embrittlement and hydrogen embrittlement. Accurate estimation of the MPT is important for owners, who are looking for the lowest MPT values to reduce start-up time. Several methods to develop an MPT have been adopted in the past mainly based upon experimental data and/or acquired from material exposed in reactors over time. Most of these methods are based on historical concepts of hydrogen embrittlement in conventional 21/4Cr-1Mo alloys. For 21/4Cr-1Mo-1/4V low alloy steels, hydrogen diffusion and trapping capacity are different and thus, potential for internal cracking is different. In addition, experiments to assess the influence of external hydrogen environment on stable cracking have been reported and provide more insight into stable crack growth potential due to a hydrogen atmosphere. The traditional methods could lead to an overly conservative approach. The result could lead to an overestimation (i.e., a shift to higher temperature envelope) of the MPT curve. In this paper the authors describe a methodology for deriving the MPT for new built 21/4Cr-1Mo-1/4V low alloy steel reactors. It is based on API TR-934 F parts 3 and 4 [1],[2] combined with some practices from WRC Bulletin 562 [3]. A case study will be described and a comparison with results according to historical calculations will be presented.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] INDUSTRY EXPERIENCE FABRICATING HYDROPROCESSING REACTORS USING 21/4 CR-1 MO-V STEEL
    Shargay, Cathleen
    Antalffy, Leslie
    Daru, Kuntak
    PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE, 2019, VOL 6B, 2019,
  • [2] 21/4Cr-1Mo-1/4V板焊式加氢反应器制造技术控制
    李仁德
    于海成
    韩非
    王明岩
    李永平
    中国化工装备, 2014, 16 (05) : 3 - 6+14
  • [3] HYDROGEN ATTACK IN A LOW SI-0.10C-21/4CR-1MO-1/4V-TI-B STEEL
    SU, ZJ
    STONE, D
    WANAGEL, J
    LI, CY
    MATERIALS SCIENCE AND ENGINEERING, 1984, 62 (02): : 261 - 264
  • [4] USER'S DESIGN SPECIFICATION PREPARATION FOR 21/4Cr-1Mo-1/4V REACTORS IN ACCORDANCE WITH ASME SECTION VIII, DIVISON 2 AND CODE CASE 2605
    Stefanovic, Radoslav
    Avery, Alicia
    Bardia, Kanhaiya
    Kabganian, Reza
    Oprea, Vasile
    Seipp, Trevor
    PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE - 2013, VOL 3: DESIGN AND ANALYSIS, 2014,
  • [5] CCT diagram of 3Cr-1Mo-1/4V steel
    Zhang, Lexin
    Zhang, Keqin
    Xiao, Furen
    Hu, Yi
    Liao, Bo
    Jinshu Rechuli/Heat Treatment of Metals, 2000, (09): : 23 - 25
  • [6] REPRESENTATION OF CREEP CURVES OF 1CR-1MO-1/4V STEEL
    MARUYAMA, K
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1985, 71 (05): : S503 - S503
  • [8] Creep ductility of 1Cr1Mo1/4V low alloy forging and casting steels
    Singh, Kulvir
    Kamaraj, M.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2009, 510-11 : 51 - 57
  • [9] 21/4Cr-1Mo-1/4V钢大壁厚加氢筒节锻件毛坯调质热处理工艺
    王兴齐
    金属加工(热加工), 2014, (01) : 50 - 52
  • [10] Microstructure and mechanical properties of 3Cr-1Mo-1/4V steel
    Xiao, Furen
    Hu, Yi
    Zhang, Lexin
    Qiao, Guiying
    Liao, Bo
    Zhang, Wenhui
    Li, Ziling
    Kang T'ieh/Iron and Steel (Peking), 2001, 36 (10): : 47 - 50