首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Al-based metal matrix composites reinforced with Al-Cu-Fe quasicrystalline particles: Strengthening by interfacial reaction
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Al-based metal matrix composites reinforced with Al-Cu-Fe quasicrystalline particles: Strengthening by interfacial reaction

机译:Al-Cu-Fe准晶颗粒增强的Al基金属基复合材料:界面反应增强

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摘要

The interfacial reaction between the Al matrix and the Al_(62.5)Cu_(25)Fe_(12.5) quasicrystalline (QC) reinforcing particles to form the Al_7Cu_2Fe co-phase has been used to further enhance the strength of the Al/QC composites. The QC-to-co phase transformation during heating was studied by in situ X-ray diffraction using a high-energy monochromatic synchrotron beam, which permits to follow the structural evolution and to correlate it with the mechanical properties of the composites. The mechanical behavior of these transformation-strengthened composites is remarkably improved as the QC-to-co phase transformation progresses: the yield strength increases from 195 MPa for the starting material reinforced exclusively with QC particles to 400 MPa for the material where the QC-to-co reaction is complete. The reduction of the matrix ligament size resulting from the increased volume fraction of the reinforcing phase during the transformation can account for most of the observed improvement in strength, whereas the additional strengthening can be ascribed to the possible presence of nanosized co-phase particles as well as to the improved interfacial bonding between matrix and particles caused by the compressive stresses arising in the matrix.
机译:Al基体与Al_(62.5)Cu_(25)Fe_(12.5)准晶(QC)增强颗粒之间的界面反应以形成Al_7Cu_2Fe共相已被用来进一步提高Al / QC复合材料的强度。使用高能单色同步加速器光束通过原位X射线衍射研究了加热过程中的QC到co相转变,该光束可以跟随结构演变并将其与复合材料的机械性能相关联。随着QC-co共相转变的进行,这些转变强化复合材料的机械性能得到显着改善:屈服强度从仅用QC颗粒增强的原材料的195 MPa增加到QC-to-Co的材料的400 MPa。 -co反应完成。在转化过程中,由于增强相体积分数的增加而导致的基体韧带尺寸的减小,可以解释所观察到的大部分强度提高,而额外的增强也可以归因于纳米级共相颗粒的存在关于由基质中产生的压应力引起的基质与颗粒之间的界面结合的改善。

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