首页> 外文会议>International Conference Aluminium Alloys >Microtextural Evolution during Superplastic Deformation in AA8090 Al-Li Alloy
【24h】

Microtextural Evolution during Superplastic Deformation in AA8090 Al-Li Alloy

机译:AA8090 Al-Li合金中超级塑性变形过程中的微局部延伸

获取原文

摘要

Evolution of microtexture during superplastic deformation (SPD) of an AA8090 SPF grade sheet was investigated. The SPD was performed by tensile testing at 530 deg C and at a strain rate of 1 X 10~(-2)/sec, and the microtexture was analyzed by electron back scatter diffraction technique based Orientation Imaging Microscopy (OIM). Prior to the onset of SPD, there was a variation in distribution of different types of textures across the thickness of the sheet. The center location had a predominantly brass-type texture, whereas the surface location had a copper-type texture. The subsequent microtextural determination in samples deformed to various strain levels showed that, there occurred grain growth, grain shape change and textural weakening. The magnitude of these three microstructural changes continuously increased with the amount of SPD. However, there was no evidence of a development of any new type of texture following the deformation. A sample was also statically heated at a higher temperature of 570 deg C and for a longer time of one hour to simulate the grain growth to the same level as occurred during SPD. It was observed that without deformation the original grain morphology and textures did not change. Therefore, it was concluded that discontinuous recrystallization did not occur during static annealing, and the texture weakening that occurred during SPD was the result of deformation itself and not due to grain growth.
机译:研究了AA8090 SPF等级板的超塑性变形(SPD)期间微纹理的演变。通过在530℃下的拉伸测试和以1×10〜(-2)/秒的应变速率来进行SPD,通过基于电子的反散射衍射技术的取向显微镜(OIM)分析微织物。在SPD发作之前,在纸张厚度上分布不同类型的纹理的变化。中心位置主要具有黄铜型纹理,而表面位置具有铜型纹理。随后的微调测定在各种应变水平变形的样品中表明,发生晶粒生长,晶粒形状变化和纹理弱化。这三种微观结构变化的幅度连续增加,随着SPD的量而连续增加。但是,没有证据表明变形后任何新型纹理的发展。在较高温度为570℃的温度下也静态加热样品,较长的时间一小时,以模拟在SPD期间发生的晶粒生长至相同的水平。观察到,没有变形,原始晶粒形态和纹理没有改变。因此,得出结论,在静电退火期间没有发生不连续的重结晶,并且SPD期间发生的纹理弱化是变形本身的结果,而不是由于晶粒生长。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号