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Novel Grain Boundary Solute Architecture In a Nanostructured Ultra-High Strength 7075 Aluminium Alloy

机译:纳米结构超高强度7075铝合金中的新型晶界溶质体系

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In recent years, the pursuit of higher strength metals and alloys has led researchers to nanometer scale grain refinement. New nanocrystalline engineering techniques have successfully increased properties for a wide range of materials. Here we report a nanocrystalline 7075 alloy processed by high-pressure torsion that exhibits ultra-high strength and features a hierarchical solute architecture. The new hierarchy of solute architecture was discovered through high-resolution characterisation using novel techniques we have developed in atom probe tomography. These new techniques -nanotexture and fine scale solute cluster measurements, are the focus of this paper. Our results indicate that nanometer-scale engineering of solid solutions could offer a pathway towards a new generation of super-strong alloys that hold promise for creating entirely new regimes of property-performance space.
机译:近年来,对高强度金属和合金的追求使研究人员进行了纳米级晶粒细化。新的纳米晶体工程技术已成功提高了多种材料的性能。在这里,我们报告通过高压扭转处理的纳米晶7075合金,具有超高强度并具有分级溶质结构。使用我们在原子探针层析成像中开发的新技术,通过高分辨率表征发现了溶质结构的新层次。这些新技术-纳米纹理和精细尺度溶质簇测量是本文的重点。我们的研究结果表明,固溶体的纳米级工程化可以为新一代超强合金提供一条途径,这些超强合金有望创造出全新的性能空间体系。

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