首页> 外文会议>2003 TMS Annual Meeting Mar 2-6, 2003 San Diego, California >THE EFFECT OF HOMOGENIZATION PRACTICE ON THE MICROSTRUCTURE OF AA6063 ALLOYS
【24h】

THE EFFECT OF HOMOGENIZATION PRACTICE ON THE MICROSTRUCTURE OF AA6063 ALLOYS

机译:均质化实践对AA6063合金显微组织的影响

获取原文
获取原文并翻译 | 示例

摘要

Homogcnization is an essential step in the preparation of aluminum billets for extrusion and is performed to produce a homogeneous solid solution and to transform theβ-AlFeSi particles to the finer and more equiaxed and thus more acceptable αvariety. Homogenized billets require lower extrusion pressures and give extrusions with better surface finish and higher strength than as-cast billets. The extrudability of the billet is maximized once the solutionizing of the Mg_2Si particles is optimized and the β→α transformation is complete. The latter takes higher temperatures and longer times and often requires help through revision of the alloy chemistry, i.e. addition of some Mn. The cooling practice in a homogenization treatment is just as significant as soaking and a variety of microstructures ranging from a fully solutionized homogeneous matrix to a heterogeneous one with a coarse dispersion of Mg_2Si particles can be produced by simply adjusting the cooling rate. The optimum rate is that which gives Mg_2Si precipitation readily redissolvable during subsequent processing and is dictated by the preheating practice. The present work was undertaken to identify the optimum homogenization soaking and cooling practice for a semicontinous DC-cast AA6063 billet which, due to its composition (very low Mn), relies solely on the soaking practice for the β→α transformation.
机译:均质化是制备用于挤压的铝坯的必不可少的步骤,并且进行均质化是为了产生均匀的固溶体并将β-AlFeSi颗粒转变为更细和更均等的并因此更可接受的α品种。均质钢坯比铸坯需要较低的挤压压力,并具有更好的表面光洁度和更高的强度。一旦优化了Mg_2Si颗粒的固溶并完成了β→α转变,方坯的可挤压性就会最大化。后者需要更高的温度和更长的时间,并且常常需要通过修改合金化学即添加一些Mn来提供帮助。均质化处理中的冷却实践与均热一样重要,并且可以通过简单地调节冷却速率来生产各种微观结构,从完全固溶的均质基体到具有Mg_2Si颗粒粗分散的非均质基体。最佳速率是使Mg_2Si沉淀易于在随后的加工过程中重新溶解的速率,并且由预热实践决定。进行本工作是为了确定半连续DC浇铸AA6063钢坯的最佳均质均热和冷却方法,由于其成分(非常低的Mn),其仅依赖于β→α转变的均热方法。

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