Neutron Stress Measurement of Coarse Crystal Grain in Aluminium Casting Alloy

Author:

Masayuki Nishida1,Takao Hanabusa2,Tatsuya Matsue3,Suzuki Hiroshi4

Affiliation:

1. Kobe City College of Technology

2. University of Tokushima

3. Niihama National College of Technology

4. Japan Atomic Energy Research Institute

Abstract

Internal stresses in aluminum casting alloy were measured by the neutron stress measurement method with the apparatus RESA in the Japan Atomic Energy Agency (JAEA). In most cases, coarse crystal grains are included in aluminum casting alloy. These coarse crystal grains make it extremely difficult to estimate the internal stresses by the neutron diffraction [1]. The two problems arise because of the existence of the coarse crystal grains. The first problem is the production of an unstable diffraction profile in the necessary direction. The second is the edge effect which is generated by the exclusion of the coarse crystal grains from the neutron irradiation area (gage volume). In this study, two kinds of new techniques used were proposed to resolve these problems. Firstly, the elastic theory based on the sin2ψ method is shown. Diffraction peaks in several directions were found by use of the rocking curve method. Following that, the lattice spaces in each principal direction were calculated from these diffraction peaks using the elastic theory. Secondly, the edge effect was canceled out by the modified measurement method which was done symmetrically. Finally, the aluminum casting sample which included coarse crystal grains was set to the tensile testing machine on RESA’s measurement table and the applicability of these new techniques were confirmed experimentally.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference7 articles.

1. Masayuki Nishida, Tian Jing, M. Refai MUSLIH, Takao Hanabusa: Ti-2007 Science and Technology, (2007), pp.793-796.

2. Masayuki Nishida, M Refai Muslih, Yasukazu Ikeuchi, Nobuaki Minakawa and Takao Hanabusa: Materials Science Forum, Vols. 490-491 (2005), pp.239-244.

3. Masayuki Nishida, M. Rifai Muslih, Yasukazu Ikeuchi, Nobuaki Minakawa, Takao Hanabusa: International Journal of Modern Physics B, Vol. 20, No. 25, 26 & 27 Part 1 of 3(2006), pp.3668-3673.

4. Edited by A.J. Bottger, R. Delhez and E.J. Mittemeijer: Journal Materials Science Forum, Vols 347-349 (2000), pp.107-112.

5. Edited by A.M. Dias, J. Pina, A.C. Batista and E. Diogo: Journal Materials Science Forum, Vols 404-407(2002), pp.399-404.

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