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Journal Articles

Reconstitution of charpy impact specimens by surface activated joining

Nishiyama, Yutaka; Fukaya, Kiyoshi; Onizawa, Kunio; Suzuki, Masahide; Nakamura, Terumi*; ; Sato, Akira*; Yoshida, Kazuo*

Small Specimen Test Techniques (ASTM STP 1329), 0, p.484 - 494, 1998/00

no abstracts in English

Journal Articles

Development of reconstitution technique of Charpy impact specimens by surface-activated joining for reactor pressure vessel surveillance

Onizawa, Kunio; Fukaya, Kiyoshi; Nishiyama, Yutaka; Suzuki, Masahide; ; Nakamura, Terumi*

Int. J. Press. Vessels Piping, 70(3), p.201 - 207, 1997/00

 Times Cited Count:14 Percentile:73.04(Engineering, Multidisciplinary)

no abstracts in English

Journal Articles

Development of reconstitution method for surveillance specimens using surface-activated joining

Nakamura, Terumi*; ; Yoshida, Kazuo*; Sato, Akira*; Onizawa, Kunio; Nishiyama, Yutaka; Fukaya, Kiyoshi; Suzuki, Masahide

Ishikawajima Harima Giho, 36(2), p.91 - 97, 1996/03

no abstracts in English

JAEA Reports

Development of reconstitution technique of irradiated specimen, II; Annual report for FY1994 on JAERI-IHI cooperated research program

Nishiyama, Yutaka; Fukaya, Kiyoshi; Onizawa, Kunio; Suzuki, Masahide; Shibata, Katsuyuki; ; Nakamura, Terumi*; Sato, Akira*; Yoshida, Kazuo*

JAERI-Tech 96-003, 30 Pages, 1996/02

JAERI-Tech-96-003.pdf:1.55MB

no abstracts in English

Journal Articles

Surface-activated joining,reconstitution technique of surveillance specimens

Nakamura, Terumi*; Nishiyama, Yutaka

Genshiryoku Kogyo, 42(9), p.26 - 29, 1996/00

no abstracts in English

JAEA Reports

Development of reconstitution technique of irradiated specimen; Progress report for FY1993 on cooperated research between JAERI and IHI

Onizawa, Kunio; Fukaya, Kiyoshi; Nishiyama, Yutaka; Suzuki, Masahide; Shibata, Katsuyuki; Kosaka, Atsuo; Kaihara, Shoichiro*; Nakamura, Terumi*; Sato, Akira*; Yoshida, Kazuo*; et al.

JAERI-Tech 94-017, 58 Pages, 1994/09

JAERI-Tech-94-017.pdf:2.74MB

Regulatory codes require the surveillance test to evaluate the irradiation embrittlement of reactor pressure vessel during operation. However , it is anticipated that the number of those specimens is insufficient in case plant life is extended. Reconstitution techniques by electron beam weld, laser weld, arc stud weld as well as surface-activated joining (SAJ) have been investigated for the re-use of un-deformed parts from tested Charpy impact specimen. The important items for the reconstitution technique are to reduce the width of heat affected zone to maximize the material available, and to lower the maximum temperature of specimen during joining process to preclude the recovery of radiation damage. SAJ can be achieved from a removal pf surface contamination by rotating one-side specimen in vacuum with applying modest friction force. Therefore, SAJ method is expected to be suitable for specimen reconstitution in view of material heating and melting. This paper describes preliminary study to develop Charpy specimen reconstitution technique using reactor pressure vessel steel, A533B-1, by SAJ method. Test results showed that the SAJ method had a capability of joining affected zone less than 1.5mm in half width, and over-temperature region less than 3 mm in half width above reactor operating temperature during joining. It was also found that transition temperature from reconstituted Charpy specimen could be evaluated.

Journal Articles

Development of reconstitution technique of charpy impact specimens by surface-activated joining for reactor pressure vessel surveillance

Onizawa, Kunio; Fukaya, Kiyoshi; Nishiyama, Yutaka; Suzuki, Masahide; Kaihara, Shoichiro*; Nakamura, Terumi*

IWG-LMNPP-94/9, 0, 12 Pages, 1994/00

no abstracts in English

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