CREEP DAMAGE ASSESSMENT OF 47NI-23CR-23FE-7W ALLOY

被引:0
作者
Shioda, Yoshiki [1 ]
Nakagawa, Hirokatsu [1 ]
Nomura, Kyohei [2 ]
Yamazaki, Naoki [2 ]
Kubushiro, Keiji [3 ]
机构
[1] IHI Corp, Tokyo, Japan
[2] IHI Corp, Yokohama, Kanagawa, Japan
[3] IHI Asia Pacific Thailand Co Ltd, Bangkok, Thailand
来源
JOINT EPRI - 123HIMAT INTERNATIONAL CONFERENCE ON ADVANCES IN HIGH-TEMPERATURE MATERIALS, 2019 | 2019年
关键词
D O I
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中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In order to establish a creep damage assessment method for 47Ni-23Cr-23Fe-7W (HR6W), which is a candidate material of A-USC, microstructure observation of creep interrupted specimens and ruptured specimen was conducted, and the creep damage process was examined. Creep tests were conducted under conditions of 800 degrees C, 70 MPa, 700 degrees C, and 100 MPa. For creep damage assessment, an optical microscope was used for replicas sampled from the outer surface of specimens, and crack ratio at grain boundaries was assessed. The results indicated that creep voids and cracks were initiated at grain boundaries from about 0.35 of creep life ratio, and crack ratio increased drastically after creep life ratio of 0.65. This crack ratio was almost the same regardless of the specimen shape Therefore, the method to assess crack ratio using replicas is considered to be an effective method for creep damage assessment of HR6W. An increase in the crack ratio due to an increase in creep life ratio showed the same trend as the change in elongation of creep interrupted specimens. Microstructure observations were conducted with interrupted specimens using SEM-ECCI (Electron Channeling Contrast Imaging) in order to clarify the cause of acceleration creep. The results showed that sub -boundary developed significantly near grain boundaries, which indicates that sub-boundary development may cause acceleration.
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页码:592 / 602
页数:11
相关论文
共 26 条
[1]  
Fukuda M, 2016, ADVANCES IN MATERIALS TECHNOLOGY FOR FOSSIL POWER PLANTS: PROCEEDINGS FROM THE EIGHTH INTERNATIONAL CONFERENCE, 2016, P12
[2]  
Garofalo F., 1965, Fundamentals of Creep and Creep-Rupture in Metals, V1st
[3]  
Gianfrancesco A., 2013, P 7 INT C ADV MAT TE, P9
[4]  
Kimura T., 2019, J SOC MAT SCI JPN, V68, P142
[5]  
Kubushiro K., 2015, P INT C POW ENG 15 Y
[6]  
Kubushiro K., 2016, P ASME 2016 PRESS VE
[7]  
Kubushiro K., 2016, IHI ENG REV, V49, P34
[8]  
Kubushiro K., 2017, J SOC MAT SCI JPN, V66, P179, DOI [10.2472/jsms.66.179, DOI 10.2472/JSMS.66.179]
[9]  
MATSUO T, 1984, TETSU TO HAGANE, V70, P565
[10]   Creep Rupture Strength for Weld Joint of 23Cr-45Ni-7W Alloy [J].
Nomura, Kyohei ;
Kubushiro, Keiji ;
Nakagawa, Hirokatsu ;
Murata, Yoshinori .
JOURNAL OF THE JAPAN INSTITUTE OF METALS AND MATERIALS, 2015, 79 (07) :348-355