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Development of microstructure and texture during single and multiple pass friction stir processing of a strain hardenable aluminium alloy

机译:一种菌株硬化铝合金单次和多通摩擦搅拌加工过程中微观结构和质地的研制

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摘要

In the present study, microstructure and texture development during single and multiple pass friction stir processing (FSP) of a strain hardenable wrought Al-Mg alloy (AA5086) was investigated. Subtle differences were observed while comparing with heat treatable alloys in the nucleation mechanism of the recrystallized microstructure observed in the nugget zone. Strain induced boundary migration was the dominant mechanism of microstructure evolution in the alloy, which influenced the crystallographic texture development by weakening it. Micro-texture measurements reveal variations in the crystallographic texture along the thickness of the sample. Recrystallization texture components were observed in the nugget zone indicative of a pronounced static recrystallization in the alloy as compared to the heat treatable alloys. Bulk texture measurements within the nugget zone of the optimally processed sample reveal a relatively dominant C component of shear texture. Average grain size in the nugget zone remained the same and the bulk crystallographic texture components were retained during multiple-pass FSP. The lower strain energies involved and the enhanced recovery processes due to the high temperature materials processing of the alloy during FSP resulted in a stable microstructure and texture. In summary, FSP could be promoted as a competent and suitable secondary processing technique for the bulk production of ultra-fine-grained materials in strain hardenable aluminium alloys.
机译:在本研究中,研究了在菌株硬化锻造Al-Mg合金(AA5086)的单一和多次通过摩擦搅拌处理(FSP)期间的微观结构和质地显影。观察到块状区域中的重结晶微观结构的成核机理中的热处理合金相同时观察到微妙的差异。应变诱导的边界迁移是合金中微观结构演化的主要机理,通过削弱它来影响结晶纹理发展。微纹理测量显示沿着样品厚度的晶体纹理的变化。与热处理合金相比,在指示合金中的明显静息重结晶中,观察到重结晶纹理组分。在最佳处理的样品的块区域内的批量纹理测量显示剪切纹理的相对优势C分量。块区的平均晶粒尺寸保持相同,并且在多通FSP期间保留块状晶体纹理组分。涉及的较低的应变能量和增强的恢复过程由于合金在FSP期间的高温材料加工导致稳定的微观结构和质地。总之,可以促进FSP作为批量生产的超细颗粒材料在应变硬化铝合金中的散装和合适的二级加工技术。

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