首页> 外文会议>Second International Conference on Light Materials for Transportation Systems (LiMAT-2001) Vol.I: Session III May 6-10, 2001 Pusan, Korea >PARTICLE WEAKENGING IN HIGH-STRAIN-RATE SUPERPLASTIC POWDER-METALLURGY PROCESSED 2124 AND 6061 ALUMINUM COMPOSITES
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PARTICLE WEAKENGING IN HIGH-STRAIN-RATE SUPERPLASTIC POWDER-METALLURGY PROCESSED 2124 AND 6061 ALUMINUM COMPOSITES

机译:2124和6061铝复合材料在高强度超塑性粉末冶金过程中的颗粒削弱

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High-strain-rate superplastic behaviors of powder-metallurgy processed 2124 and 6061 Al alloys, and SiC/2124 Al and SiC/6061 Al composites reinforced by SiC particulate were studied over a wide temperature and strain rate ranges. The matrix alloys and composites showed large tensile elongations above 10~(-2) s~(-1). The strengths of both composites are unexpectedly lower than that of the Al matrix alloys in the temperature range where grain boundary sliding dominates the plastic flow. Their difference in strength is also temperature dependent, increasing with increase in temperature. Abnormally high activation energy for plastic flow, being considerably higher than those for the matrix alloys, is another important feature of the composites. High-resolution transmission electron microscopy indicates that solutes such as Mg and Si strongly segregate at interfaces between SiC and Al matrix. Particle weakening, possibly with some liquid formation at the interfaces, is discussed qualitatively and partially quantitatively by adapting the concept of effective diffusivity considering mass flow through liquid phase formed at interfaces between reinforcement and Al matrix.
机译:研究了粉末冶金加工的2124和6061铝合金以及由SiC颗粒增强的SiC / 2124 Al和SiC / 6061 Al复合材料在较宽的温度和应变速率范围内的高应变速率超塑性行为。基体合金和复合材料在10〜(-2)s〜(-1)以上具有较大的拉伸伸长率。在晶界滑动主导塑性流动的温度范围内,两种复合材料的强度都出乎意料地低于Al基合金。它们的强度差异还取决于温度,随着温度的升高而增加。复合材料的另一个重要特征是塑性流动异常高的活化能,远高于基体合金的活化能。高分辨率透射电子显微镜表明,诸如Mg和Si的溶质在SiC和Al基体之间的界面处强烈偏析。考虑到流过在增强材料和铝基体之间的界面形成的液相的质量流量,通过采用有效扩散率的概念,定性和部分定量地讨论了可能在界面处形成液体的颗粒弱化。

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