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Compressibility and Forming Ability of Water-Atomized Ni-16Cr-XAl-3Fe (X=4.5, 9.0, 13.5, 18, wt%) Alloy Powders
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Compressibility and Forming Ability of Water-Atomized Ni-16Cr-XAl-3Fe (X=4.5, 9.0, 13.5, 18, wt%) Alloy Powders
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National Key Basic Research Development Plan of China (2012CB723907)

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    摘要:

    研究了高压水雾化Ni-16Cr-XAl-3Fe (X=4.5,9.0,13.5,18,质量分数,%)合金粉末的压缩与成形性能。结果表明,Ni-16Cr-XAl-3Fe合金粉末的显微硬度随Al含量的增加而增大。水雾化Ni-16Cr-XAl-3Fe合金粉末的压制行为可以通过黄培云双对数压制方程进行描述。通过理论计算发现,高Al含量的合金粉末压制过程中出现严重的加工硬化,从而使高Al含量的Ni-16Cr-XAl-3Fe合金粉末难以压制成形,压坯出现分层和开裂。出现上述现象的原因主要是由于高Al含量的Ni-16Cr-XAl-3Fe合金粉末中含有一定数量的Ni3Al或NiAl金属间化合物析出相。

    Abstract:

    The compressibility and forming ability of water-atomized Ni-16Cr-XAl-3Fe (X= 4.5, 9.0, 13.5, 18, wt%) alloy powders were investigated. Results show that the microhardness of the powders increases with the increasing of Al contents, and the compacting behavior of the four kinds of powders is well consisted with Huang Peiyun compacting theory. According to the compacting equations, it is found that serious work-hardening occurs for powders with relatively high Al contents during pressing, and thus the compressibility and forming ability of water-atomized Ni-16Cr-XAl-3Fe powders become poor with the increasing of Al content. Microcracks and delaminations will appear at the corners of compacts. The reason is mainly attributed to the precipitates of intermetallic compounds such as Ni3Al and NiAl.

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李亚宁,王 建,杨保军,汤慧萍,王建永,康新婷,谈 萍. Compressibility and Forming Ability of Water-Atomized Ni-16Cr-XAl-3Fe (X=4.5, 9.0, 13.5, 18, wt%) Alloy Powders[J].稀有金属材料与工程,2012,41(11):1907~1910.[Li Yaning, Wang Jian, Yang Baojun, Tang Huiping, Wang Jianyong, Kang Xinting, Tan Ping. Compressibility and Forming Ability of Water-Atomized Ni-16Cr-XAl-3Fe (X=4.5, 9.0, 13.5, 18, wt%) Alloy Powders[J]. Rare Metal Materials and Engineering,2012,41(11):1907~1910.]
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  • 收稿日期:2012-04-05
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