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Micro-arrayed stretch drawing process of nanocrystalline Ni-Co foils with soft-male-die

机译:纳米晶体镍氢铝箔的微量阵列拉伸拉伸工艺,软雄模

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摘要

A novel micro forming method, combining arrayed forming and soft-die forming, has been developed for manufacturing micro stretch drawing parts from nanocrystalline Ni-Co foils. In this study, nanocrystalline Ni-Co foils were prepared by electrodeposition and a series of micro-arrayed stretch drawing experiments with soft-male-die (5083 aluminum) were conducted by using these foils. The as-deposited Ni-Co material has smooth surfaces and uniform sized grains, and the roundness and surface quality of stretch drawing parts are satisfactory. Experimental results indicate that the die size, forming temperature and foil thickness have significant effects on the stretchability of the Ni-Co foil. And the maximum height-to-diameter ratio was obtained when the diameter of female die, forming temperature and foil thickness were 800 pm, 823 K and 60 mu m, respectively. The micro-arrayed stretch drawing technology has prospects for industrial applications because of the significantly improved efficiency and comparatively high formability. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经开发了一种新型微型形成方法,组合排列的成型和软模形成,用于制造来自纳米晶体Ni-Co箔的微型拉伸拉伸部件。在这项研究中,通过电沉积制备纳米晶镍钴箔和一系列具有软阳模具(5083铝)微阵列拉伸拉伸实验均通过使用这些箔进行。沉积的Ni-Co材料具有光滑的表面和均匀尺寸的晶粒,并且拉伸拉伸部件的圆度和表面质量令人满意。实验结果表明,模具尺寸,成形温度和箔厚度对Ni-Co箔的拉伸性具有显着影响。当母模的直径,形成温度和箔厚度分别为800μm,823k和60μm时,获得最大高度直径比。微量排列的拉伸绘图技术具有工业应用的前景,因为效率显着提高,可成形性相对高。 (c)2016 Elsevier B.v.保留所有权利。

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