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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Production of nano-sized grains in powder metallurgy processed pure aluminum by equal channel angular densification (ECAD) and equal channel angular pressing (ECAP)
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Production of nano-sized grains in powder metallurgy processed pure aluminum by equal channel angular densification (ECAD) and equal channel angular pressing (ECAP)

机译:通过等通道角致密化(ECAD)和等通道角压制(ECAP)在粉末冶金加工的纯铝中生产纳米级晶粒

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摘要

In this study, pure aluminum powders were turned into bulk material using equal channel angular densification (ECAD)/equal channel angular pressing (ECAP) and further deformed up to 16 passes at 100 degrees C. For comparison, pure aluminum powders were also compacted in a mold without ECAD/ECAP process at the same temperature. The microstructures were characterized using TEM for grain size and shape measurements. In general, the grains were finer in the specimens processed by ECAD/ECAP than in the compacted specimen without ECAD/ECAP process. The high density which is very close to the full density of pure aluminum (2.7 g x cm(-3)) was reached at the second pass of ECAD/ECAP. By the application of ECAD/ECAP process, severe plastic deformation enabled particles to be compacted into fully dense materials at much lower temperatures and shorter times, compared to the conventional sintering process. The ECAD/ECAP process was shown to provide an effective method for producing nano-sized grain and nearly full densification in aluminum powder.
机译:在这项研究中,使用等通道角致密化(ECAD)/等通道角压制(ECAP)将纯铝粉转变为块状材料,并在100摄氏度下进一步变形多达16道次。在相同温度下没有ECAD / ECAP工艺的模具。使用TEM表征晶粒的大小和形状。通常,与不使用ECAD / ECAP工艺的压实样品相比,通过ECAD / ECAP处理的样品中的晶粒更细。在第二次ECAD / ECAP达到了非常接近纯铝全密度(2.7 g x cm(-3))的高密度。与传统的烧结工艺相比,通过ECAD / ECAP工艺的应用,严重的塑性变形使颗粒能够在更低的温度和更短的时间内被压制成完全致密的材料。结果表明,ECAD / ECAP工艺为生产纳米级晶粒和铝粉中几乎完全致密化提供了一种有效的方法。

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