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Aluminum/Calcium Deformation Metal-Metal Composites After Conversion to Al2Ca Intermetallic Reinforcement.

机译:转换为Al2Ca金属间增强后的铝/钙变形金属-金属复合材料。

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摘要

Deformation-processed metal-metal composites (DMMCs) provide an appealing approach for producing lightweight materials with high strength and high conductivity. DMMCs can be produced by powder metallurgy and severe plastic deformation resulting in nano-filamentary reinforcement. Al/Ca composites with monolithic construction have shown promise as next-generation overhead transmission conductors. Previous research has shown that these materials tend to form various intermetallic species when exposed to elevated temperatures resulting in the degradation of properties. This study examines the effect of using a reduced loading of Ca and intentionally converting the reinforcement to an intermetallic species to produce a material with enhanced high-temperature stability while retaining superior performance properties. Al/Ca (11.5 vol.%) composites were produced and converted to Al/Al2Ca (18 vol.%) by heat-treatment at 260°C. In addition to the effect of reinforcement material, the influence of filament spacing was studied. The transformation to Al2Ca was analyzed by differential-scanning calorimetry and scanning electron microscopy. Tensile strength and electrical conductivity were investigated for unconverted and converted materials as well as samples that had undergone extended heat treatment. The measured material properties were used in line sizing calculations to determine the benefits of using these composites for high-voltage direct-current transmission.
机译:变形加工的金属-金属复合材料(DMMC)为生产具有高强度和高导电性的轻质材料提供了一种有吸引力的方法。 DMMC可以通过粉末冶金和严重的塑性变形产生,从而产生纳米丝增强。具有整体结构的Al / Ca复合材料已显示出有望成为下一代架空传输导体。先前的研究表明,这些材料在暴露于高温下时会形成各种金属间化合物,从而导致性能下降。这项研究检验了使用减少的Ca负载量,并有意将增强物转变为金属间化合物,以生产具有增强的高温稳定性同时又保留优异性能的材料的效果。制备Al / Ca(11.5体积%)复合材料,并通过在260℃下的热处理将其转化为Al / Al 2 Ca(18体积%)。除了增强材料的作用外,还研究了细丝间距的影响。通过差示扫描量热法和扫描电子显微镜分析了向Al 2 Ca的转化。研究了未转化和转化材料以及经过长期热处理的样品的拉伸强度和电导率。将测得的材料特性用于线径计算中,以确定将这些复合材料用于高压直流输电的好处。

著录项

  • 作者

    Czahor, Charles Frederick.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Materials science.
  • 学位 M.S.
  • 年度 2017
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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