Abstract
In order to develop the filler metal for Hastelloy alloy XR structure with thick wall, the weldability and high temperature strength properties of Hastelloy alloy XR weldment were investigated using the filler metals, which were alloy-designed on the basis of multiple regression analysis. The former was examined through the chemical analysis in the deposited metal, bend test, FISCO cracking test, optical microscopy and hardness measurement. The latter was investigated by means of tensile and creep test. It was found from these results that the crack susceptibility in the weldment was apparent to be lowered without degrading the high temperature strength properties. Therefore, it is concluded that these filler metals possess excellent performance as the filler metal for Hastelloy alloy XR structure with thick wall. (author).
Watanabe, Katsutoshi;
Nakajima, Hajime;
[1]
Sahira, Kensho
[2]
- Japan Atomic Energy Research Inst., Tokai, Ibaraki (Japan). Tokai Research Establishment
- and others
Citation Formats
Watanabe, Katsutoshi, Nakajima, Hajime, and Sahira, Kensho.
Filler metal development for Hastelloy alloy XR. Filler metal for hastelloy alloy XR structure with thick wall.
Japan: N. p.,
1991.
Web.
Watanabe, Katsutoshi, Nakajima, Hajime, & Sahira, Kensho.
Filler metal development for Hastelloy alloy XR. Filler metal for hastelloy alloy XR structure with thick wall.
Japan.
Watanabe, Katsutoshi, Nakajima, Hajime, and Sahira, Kensho.
1991.
"Filler metal development for Hastelloy alloy XR. Filler metal for hastelloy alloy XR structure with thick wall."
Japan.
@misc{etde_10127213,
title = {Filler metal development for Hastelloy alloy XR. Filler metal for hastelloy alloy XR structure with thick wall}
author = {Watanabe, Katsutoshi, Nakajima, Hajime, and Sahira, Kensho}
abstractNote = {In order to develop the filler metal for Hastelloy alloy XR structure with thick wall, the weldability and high temperature strength properties of Hastelloy alloy XR weldment were investigated using the filler metals, which were alloy-designed on the basis of multiple regression analysis. The former was examined through the chemical analysis in the deposited metal, bend test, FISCO cracking test, optical microscopy and hardness measurement. The latter was investigated by means of tensile and creep test. It was found from these results that the crack susceptibility in the weldment was apparent to be lowered without degrading the high temperature strength properties. Therefore, it is concluded that these filler metals possess excellent performance as the filler metal for Hastelloy alloy XR structure with thick wall. (author).}
place = {Japan}
year = {1991}
month = {Nov}
}
title = {Filler metal development for Hastelloy alloy XR. Filler metal for hastelloy alloy XR structure with thick wall}
author = {Watanabe, Katsutoshi, Nakajima, Hajime, and Sahira, Kensho}
abstractNote = {In order to develop the filler metal for Hastelloy alloy XR structure with thick wall, the weldability and high temperature strength properties of Hastelloy alloy XR weldment were investigated using the filler metals, which were alloy-designed on the basis of multiple regression analysis. The former was examined through the chemical analysis in the deposited metal, bend test, FISCO cracking test, optical microscopy and hardness measurement. The latter was investigated by means of tensile and creep test. It was found from these results that the crack susceptibility in the weldment was apparent to be lowered without degrading the high temperature strength properties. Therefore, it is concluded that these filler metals possess excellent performance as the filler metal for Hastelloy alloy XR structure with thick wall. (author).}
place = {Japan}
year = {1991}
month = {Nov}
}