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Development of ultrafine grained high strength age hardenable Al 7075alloy by cryorolling

机译:冷冻轧制超细晶粒高强度时效可硬化Al 7075合金

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High strength age hardenable Al 7XXX series alloys are difficult to process by many of the severe plastic deformation processes at room temperature. The Al 7075 alloy has been processed at cryogenic temperature and room temperature up to different rolling strains, in the present work, with the objective of developing a processing strategy to obtain ultrafine grained microstructure with enhanced mechanical properties in the alloy. It has been identified that the Al 7075 alloy samples can be successfully cryorolled to higher strains (up to 3.4) if the reduction per pass is less than 0.3 mm, however it was found to be difficult to deform the samples at room temperature. A cryorolling strain of 3.4 has been found to be desirable for producing the ultrafine grained Al 7075 alloys with the high angle grain boundaries. However, the subgrains are not recrystallized up to this strain in the case of room temperature rolled Al alloys. The strength and hardness of the cryorolled Al 7075 alloy samples are higher than that of the room temperature rolled samples as observed in the present work. The improved strength and hardness of cryorolled samples are due to the grain size effect and higher dislocation density. The reduction in dimple size of cryorolled Al 7075 alloy upon failure confirms the grain refinement and strain hardening mechanism operating in the heavily deformed samples.
机译:高强度可时效硬化的Al 7XXX系列合金在室温下很难通过许多严重的塑性变形过程进行加工。在本工作中,Al 7075合金已经在低温和室温下加工到不同的轧制应变,目的是开发一种加工策略以获得具有增强的机械性能的超细晶粒组织。已经确定,如果每次通过的减少量小于0.3 mm,则Al 7075合金样品可以成功地冷轧至更高的应变(最高3.4),但是发现很难在室温下使样品变形。已经发现3.4的低温轧制应变对于生产具有高角度晶界的超细晶粒Al 7075合金是理想的。但是,在室温轧制铝合金的情况下,亚晶粒不会重结晶到此应变。如本工作中所观察到的,Al 7075冷轧合金样品的强度和硬度高于室温轧制样品的强度和硬度。低温轧制样品强度和硬度的提高归因于晶粒尺寸效应和较高的位错密度。失效后,冷轧Al 7075合金的凹痕尺寸减小,证实了在严重变形的样品中晶粒细化和应变硬化机制。

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