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Anisotropy in flow and microstructural evolution during superplastic deformation of a layered-microstructured AA8090 Al–Li alloy.

机译:层状微结构AA8090 Al–Li合金超塑性变形过程中的流动各向异性和微结构演变。

摘要

The superplastic forming grade sheets of AA8090 Al–Li alloy were observed to contain layers of different microstructure and microtexture across their cross-section along the normal to the rolling direction (RD). The surface layer (SL) material contained coarse equiaxed grains and the dominance of S {1 2 3}[6 3 4] texture whereas the center layer (CL) material contained fine elongated grains and the dominance of Bs {1 1 0}[1 1 2] texture. Tensile specimens, machined to represent the SL of 0.6 mm thickness from the surface towards center (SL), the CL of 0.6 mm thickness, obtained by removing the material of 0.6 mm thickness from each surface towards center (CL), and full thickness (FL) material of 1.8 mm thick, in a sheet of AA8090 Al–Li alloy, were deformed at optimum superplastic condition of strain RATE=1×10−3 s−1 and TEMPERATURE=803 K to investigate the effect of loading direction. In SL material, the specimen parallel to RD exhibited maximum and the specimen perpendicular to RD exhibited minimum flow stresses. This trend was reversed in CL material. The anisotropy in flow stress could be explained on the basis of texture in the SL material, but the contribution of grain directionality became important in the CL material. The flow behavior of FL material was found to consist of the composite-like contributions of SL and CL materials.
机译:观察到AA8090 Al-Li合金的超塑性成形牌号薄板沿其垂直于轧制方向(RD)的横截面包含不同的微观结构和微观组织。表面层(SL)材料包含等轴粗晶粒和S {1 2 3} [6 3 4]织构占优势,而中间层(CL)材料包含细长形晶粒和Bs {1 1 0} [ 1 1 2]纹理。拉伸试样,其加工表示从表面到中心的SL的厚度为0.6 mm,从表面到中心的SL的厚度为CL的0.6 mm,这是通过从每个表面到中心的CL厚度为0.6 mm的材料去除而获得的,整个厚度在AA8090 Al-Li合金薄板中,厚度为1.8 mm的FL)材料在应变RATE = 1×10-3 s-1和TEMPERATURE = 803 K的最佳超塑性条件下变形,以研究载荷方向的影响。在SL材料中,平行于RD的样品表现出最大的应力,垂直于RD的样品表现出最小的流动应力。这种趋势在CL材料中得到了扭转。可以根据SL材料中的织构解释流动应力的各向异性,但是在CL材料中,晶粒定向性的贡献变得很重要。发现FL材料的流动行为由SL和CL材料的类复合材料组成。

著录项

  • 作者

    FAN W; KASHYAP BP; CHATURVEDI MC;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
  • 中图分类

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