Burn-through of a Novel Coal Gasification Burner

被引:0
|
作者
Neidel, A. [1 ]
Gadicke, T. [1 ]
Giller, M. [1 ]
Riesenbeck, S. [1 ]
机构
[1] Siemens AG, Power & Gas, Gasturbinenwerk Berlin, Werkslab, Huttenstra 12, D-10548 Berlin, Germany
来源
关键词
LASER;
D O I
10.3139/147.110495
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
A novel tip of a fuel gasification burner, designed-to-SLM (Selective Laser Melting) and made by SLM, was introduced by the client. This component failed prematurely by cracking at the cooled tip. The metallurgical cause of the failure was overheating due to blocked cooling passages, probably as a result of contaminated cooling water, leading to corrosion in the non-stainless piping systems upstream of the burner. Corrosion products, mainly iron oxides, spalled off said non-stainless components, causing blockages in the intricate cooling cavities of the AM-built burner tip. This lead to excessive thermal overload, reaching the melting temperature of the alloy at the burner tip. As a result, the subject burner tip failed by TMF cracking. Neither manufacturing nor design flaws were identified in the course of this failure investigation. It is speculated that the subject component will perform well if cooled properly. The root cause of the failure is the operation of the cooling water system of the subject burner that allowed loose corrosion products to form and to enter the burner tip.
引用
收藏
页码:116 / 127
页数:12
相关论文
共 50 条
  • [21] FORMATION OF BURN-THROUGH IN FUSION-WELDING OF THIN SHEETS
    STOLBOV, VI
    MASAKOV, VV
    WELDING PRODUCTION, 1977, 24 (10): : 26 - 28
  • [22] The Detection of Burn-Through Weld Defects Using Noncontact Ultrasonics
    Abbasi, Zeynab
    Yuhas, Donald
    Zhang, Lu
    Basantes, Alexandra-Del-Carmen
    Tehrani, Niloofar Nabili
    Ozevin, Didem
    Indacochea, Ernesto
    MATERIALS, 2018, 11 (01):
  • [23] Calculation and Analysis of FCR Burn-Through Range with Noise Jamming
    Yu, Wei
    He, Hong
    Wang, Xiaonian
    Wang, Boqi
    Li, Kun
    Luo, Jiang
    MAN-MACHINE-ENVIRONMENT SYSTEM ENGINEERING, MMESE 2018, 2019, 527 : 463 - 470
  • [24] ENHANCEMENT OF MATERIALS BURN-THROUGH BY UNIQUE LASER RADIATION CONDITIONS
    FOX, JA
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1975, 122 (08) : C259 - C259
  • [25] Burn-through and moisture properties of aircraft fuselage insulation blankets
    Tran, KD
    47TH INTERNATIONAL SAMPE SYMPOSIUM AND EXHIBITION, VOL 47, BOOKS 1 AND 2: AFFORDABLE MATERIALS TECHNOLOGY-PLATFORM TO GLOBAL VALUE AND PERFORMANCE, 2002, : 512 - 519
  • [26] BURN-THROUGH WELDING GIVES TOP QUALITY AT HALF COST
    不详
    METALWORKING ECONOMICS, 1970, 26 (08): : 34 - &
  • [27] Monitoring Sintering Burn-Through Point Using Infrared Thermography
    Usamentiaga, Ruben
    Molleda, Julio
    Garcia, Daniel F.
    Bulnes, Francisco G.
    SENSORS, 2013, 13 (08) : 10287 - 10305
  • [28] Plasma burn-through simulations using the DYON code and predictions for ITER
    Kim, Hyun-Tae
    Sips, A. C. C.
    de Vries, P. C.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2013, 55 (12)
  • [29] ESTIMATION OF BURN-THROUGH PROBABILITY IN SF6 INSULATED SUBSTATIONS
    CHU, FY
    FORD, GL
    LAW, CK
    IEEE TRANSACTIONS ON POWER APPARATUS AND SYSTEMS, 1982, 101 (06): : 1391 - 1399
  • [30] Prediction of sinter burn-through point based on support vector machines
    Wu, Xiaofeng
    Fei, Minrui
    Wang, Heshou
    Zheng, Shuibo
    INTELLIGENT CONTROL AND AUTOMATION, 2006, 344 : 722 - 730