首页 | 本学科首页   官方微博 | 高级检索  
     检索      

TC6钛合金棒材热处理工艺研究
引用本文:朱知寿,王庆如,周宇,王新南.TC6钛合金棒材热处理工艺研究[J].航空材料学报,2004,24(5):15-20.
作者姓名:朱知寿  王庆如  周宇  王新南
作者单位:北京航空材料研究院,北京100095
基金项目:“863”项目(2002AA305107),航空基础科学基金项目(03G21008)资助
摘    要:对TC6钛合金φ20mm~φ120mm不同规格棒材进行了普通退火、双重退火、等温退火、固溶时效等热处理方法和热处理制度研究,并对比分析了热处理制度和组织、性能之间的影响关系,结果表明,TC6钛合金的组织和性能对热处理工艺敏感,应根据半成品规格、类型、截面形状、使用温度、受力情况以及设备条件等诸多因素选择合适的热处理方法和制度,才能达到强度、塑性和韧性的最佳匹配。研究结果证实普通退火是一种简单易行的退火制度,适用于飞机结构用中等规格棒材等半成品的退火,进一步提出了TC6钛合金棒材的热处理工艺选择原则。

关 键 词:TC6钛合金  普通退火  双重退火  等温退火  固溶时效  热稳定性
文章编号:1005-5053(2004)05-0015-06
修稿时间:2003年8月10日

Study of heat treatment processings of TC6 titanium alloy bars
ZHU Zhi-shou,WANG Qing-ru,ZHOU Yu,WANG Xin-nan.Study of heat treatment processings of TC6 titanium alloy bars[J].Journal of Aeronautical Materials,2004,24(5):15-20.
Authors:ZHU Zhi-shou  WANG Qing-ru  ZHOU Yu  WANG Xin-nan
Abstract:A stady of the heat treatment of TC6 Titanium alloy bars have been conducted. The bars of the alloy with the diameter ranging from 20mm to 120mm have undergone the conventional annealing, dual annealing, and isothermal annealing and the relationships among heat treatment, microstructure and property have been analyzed. The result shows that the microstrueture and properties of TC6 Titanium alloy are sensitive to its heat treatment processing and thus the optimum heat treatment method should be chosen to achieve to the perfect combination of strength, plasticity, and toughness according to the specification, type, shape of cross section, operating temperature, condition of stress of semi-products and equipments available. It is proved that conventional annealing is a feasible way for the annealing of seml-products used in aircraft structure, such as bars et al. The principles for the selection of heat treatment methods of TC6 Titanium alloy bars are also presented for reference of research and manufacture.
Keywords:TC6 titanium alloy  conventional annealing  dual-annealing  isothermal annealing  solution annealing & aging  thermal stability
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号