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首页> 外文期刊>Journal of Applied Physics >Phase Changes in Pile‐Irradiated Uranium‐Base Alloys
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Phase Changes in Pile‐Irradiated Uranium‐Base Alloys

机译:堆辐照铀基合金的相变

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摘要

Specimens of U‐9, ‐10.5, ‐12, and ‐13.5 w/o (weight percent) Mo and U‐10 w/o Nb, heat treated to retain the metastable gamma phase at room temperature and also to transform this phase to the room temperature stable phases, were irradiated in the Materials Testing Reactor (MTR) at maximum temperatures of less than 200°C. Electrical resistivity, temperature coefficient of electrical resistivity, hardness, and density measurements as well as x‐ray diffraction patterns indicated that the stable phases at room temperature reverted to the metastable gamma phase during irradiation. No apparent changes in the microstructures of thermally transformed specimens were observed after irradiation. Lack of observable microstructural changes was attributed to the development of a ghost structure. X‐ray line broadening measurements indicated essentially complete homogenization of thermally transformed U‐Mo alloy specimens during irradiation. The mechanism of the phase reversal was explained on the basis of the displacement spike hypothesis.
机译:U-9,‐10.5,‐12和‐13.5 w / o(重量百分比)Mo和U‐10 w / o Nb的样品,经过热处理以在室温下保留亚稳态伽马相并将其转变为在材料测试反应器(MTR)中以低于200°C的最高温度辐照室温稳定相。电阻率,电阻率温度系数,硬度和密度测量值以及X射线衍射图表明,室温下的稳定相在辐照过程中会还原为亚稳态伽马相。辐照后未观察到热转化标本的微观结构有明显变化。缺乏可观察到的微观结构变化是由于重影结构的发展。 X射线线展宽的测量结果表明,在辐照过程中,热变形的U-Mo合金试样基本上完全均质化。基于位移峰值假说对相位反转的机理进行了解释。

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    《Journal of Applied Physics》 |1956年第11期|共14页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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