80
Views
19
CrossRef citations to date
0
Altmetric
Original Articles

Diffraction contrast images of small stacking fault tetrahedra in f.c.c. metals

, , , &
Pages 869-891 | Received 18 Apr 1994, Accepted 24 Apr 1994, Published online: 27 Sep 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Y. Satoh, T. Yoshiie & S. Arai. (2018) Undersize solute element effects on defect structure development in copper under electron irradiation. Philosophical Magazine 98:8, pages 646-672.
Read now
M. Horiki, T. Yoshiie, K. Sato & Q. Xu. (2013) Point defect processes in neutron irradiated Ni, Fe–15Cr–16Ni and Ti-added modified SUS316SS. Philosophical Magazine 93:14, pages 1701-1714.
Read now
Michio Kiritani, Kazufumi Yasunaga, Yoshitaka Matsukawa & Masao Komatsu. (2002) Plastic Deformation of Metal Thin Films without Involving Dislocations and Anomalous Production of Point Defects. Radiation Effects and Defects in Solids 157:1-2, pages 3-24.
Read now
Y. Satoh, T. Yoshiie, I. Ishida & M. Kiritani. (2000) Defect structure development in electron-irradiated Cu-based Si, Ge and Sn binary alloys. Philosophical Magazine A 80:11, pages 2567-2590.
Read now
Yuko Kizuka, Yuhki Satoh, Shigeo Arai & Michio Kiritani. (1998) Identification of the nature of neutron-irradiation-induced defects in copper by means of electron irradiation. Radiation Effects and Defects in Solids 145:1-2, pages 143-167.
Read now

Articles from other publishers (13)

Siqi Hu, Quan Li, Haowen Sun, Xueqian Lv, Miao Song, Yi Zhao, Ruiqian Zhang, Chonghong Zhang, Yao Shen, Yue Liu & Tongxiang Fan. (2024) Introducing vacancy defects by rapid quenching in FCC metal for deep learning micrograph dataset. Materials Characterization 211, pages 113827.
Crossref
Toshimasa Yoshiie & Qiu Xu. (2021) Effects of alloying elements Mn, Mo, Ti, Si, P and C on the incubation period of void swelling in austenitic stainless steels. Tungsten 3:1, pages 3-19.
Crossref
Panagiotis Grammatikopoulos. 2020. Computational Modelling of Nanomaterials. Computational Modelling of Nanomaterials 161 186 .
Yuhki Satoh, Takahiro Hatano, Nobuyasu Nita, Kimihiro Nogiwa & Hideki Matsui. (2014) Simulation of Transmission Electron Microscope Images of Dislocations Pinned by Obstacles. MATERIALS TRANSACTIONS 55:3, pages 413-417.
Crossref
X. L. Wu, B. Li & E. Ma. (2007) Vacancy clusters in ultrafine grained Al by severe plastic deformation. Applied Physics Letters 91:14.
Crossref
Takeo Iwai, Hidetsugu Tsuchida & Misa Awano. (2007) Application of positron beam Doppler broadening technique to ion beam irradiation in nickel. Journal of Nuclear Materials 367-370, pages 372-376.
Crossref
M. L. Jenkins, Z. Zhou, S. L. Dudarev, A. P. Sutton & M. A. Kirk. (2006) Electron microscope weak-beam imaging of stacking fault tetrahedra: observations and simulations. Journal of Materials Science 41:14, pages 4445-4453.
Crossref
S.J Zinkle & Y Matsukawa. (2004) Observation and analysis of defect cluster production and interactions with dislocations. Journal of Nuclear Materials 329-333, pages 88-96.
Crossref
Y. Satoh, T. Yoshiie, H. Mori & M. Kiritani. (2004) Formation of stacking-fault tetrahedra in aluminum irradiated with high-energy particles at low-temperatures. Physical Review B 69:9.
Crossref
Y. Satoh, T. Yoshiie, Y. Matsukawa & M. Kiritani. (2003) Simulation of transmission electron microscopy images during tensile fracture of metal foils. Materials Science and Engineering: A 350:1-2, pages 207-215.
Crossref
A C Nicol, M L Jenkins & M A Kirk. (2011) Matrix Damage in Iron. MRS Proceedings 650.
Crossref
M. Kiritani. (1997) Defect interaction processes controlling the accumulation of defects produced by high energy recoils. Journal of Nuclear Materials 251, pages 237-251.
Crossref
E. Johnson. 1997. Surface Characterization. Surface Characterization 445 464 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.