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Nanocrystalline Materials From Aerospace Machining Chips

机译:来自航空航天加工芯片的纳米晶体材料

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The creation of nanostructured materials with enhanced mechanical properties by controlled chip formation has been demonstrated. The present study examines the microstructure and mechanical properties of chips from various alloys -Waspaloy AMS 5704, Inconel 718, Al 6061-T6, and titanium - produced in aerospace machining operations. While the deformation conditions with respect to chip formation may be 'less than controlled' in these cases, it is nevertheless seen that the chips created are composed entirely of nanocrystalline structures of high hardness and strength. The microstructural characteristics and properties of these chips are compared and contrasted with those produced under controlled conditions of strain and temperature. The results suggest that aerospace machining chips can be up-scaled as high-performance structural materials with substantial cost benefits.
机译:已经证明了通过受控芯片形成具有增强的机械性能的纳米结构材料。本研究研究了来自各种合金 - 匙瓦洛AMS 5704,Inconel 718,Al 6061-T6和在航空加工操作中产生的替代铜的微观结构和机械性能。虽然在这些情况下,相对于芯片形成的变形条件可能是“小于控制”,但仍然可以看到产生的芯片完全由高硬度和强度的纳米晶体结构组成。将这些芯片的微观结构特征和性质与在受菌株和温度的受控条件下产生的那些对比。结果表明,航空航天加工芯片可以以高性能的结构材料升高,具有实质性的成本效益。

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