Study on Middle Annealing Process of HSn88-1 Alloy

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Abstract:

The tensile strength, elongation and microstructure of alloy are respectively tested and observed after annealing treatment. The results show that the working rate the larger, the initial recrystallization temperature the lesser. The proper middle annealing process of HSn88-1 alloy with 80% deformation is 460°C×5h.

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253-257

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January 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] Tang R J, Wang J, Yin J L, et al. Study of a new elastic alloy, Material Review, 19(2005), 54-55.

Google Scholar

[2] Jin M D, Pi X. Research and application for elastic dental film, Journal of Clinical Stomatology, 12(1996), 90-91.

Google Scholar

[3] Qi X Z. Development for High elastic limit and New elinvar elastic alloy, Material Research, 12(1990), 13-17.

Google Scholar

[4] Zheng S L, Wu N Q, Zeng Y W, et al. Research for high elastic and electrical conductivity Cu-Ni-Sn alloy, Material science and engineering, 13(1997), 61-66.

Google Scholar

[5] Cemoch T, Landab M, Nov6ka V, et al. Acoustic characterization of zhe elastic properties of austenite phase and martensitic transformations in CuAlNi shape memory alloy [J]. Journal of Alloys and Compounds, 2004, 378: 140-144.

DOI: 10.1016/j.jallcom.2003.10.093

Google Scholar

[6] Li Z X. The manual of composition and properties for world nonferrous metal., Beijing, (1992).

Google Scholar

[7] Wang Z M, Liu Q S, Zhang Z C. Study of Aluminum-nickel –Brass Alloy as a Substitute for Beryllium Bronze, Hot working Technology, 1(2003), 49-50.

Google Scholar

[8] Pan Q H. A New cast copper alloy, Foundry, 11(1991), 1-5.

Google Scholar

[9] Yang B, Zhang Y H, Sun H B, et al. Resistant soften and recrystallization of silver-cooper alloy applied to Copper –Aluminum contact wire, Special casting & Nonferrous alloys , 29(2009), 991-993.

Google Scholar

[10] Tang R Z,. Physical Metallurgical fundamentals., Bei Jing, (1997).

Google Scholar