期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Directional solidification casting technology of heavy-duty gas turbine blade with liquid metal cooling(LMC) process 被引量:5
1
作者 Xiao-fu Liu Yan-chun Lou +5 位作者 Bo Yu Gui-qiao Su Chang-chun Li Xin-li Guo Biao Li Guo-yan Shui 《China Foundry》 SCIE 2019年第1期23-30,共8页
In this work, some important factors such as ceramic shell strength, heat preservation temperature, standing time and withdrawal rate, which influence the formability of directionally solidified large-size blades of h... In this work, some important factors such as ceramic shell strength, heat preservation temperature, standing time and withdrawal rate, which influence the formability of directionally solidified large-size blades of heavy-duty gas turbine with the liquid metal cooling(LMC) process, were studied through the method of microstructure analysis combining. The results show that the ceramic shell with medium strength(the high temperature flexural strength is 8 MPa, the flexural strength after thermal shock resistance is 12 MPa and the residual flexural strength is 20 MPa) can prevent the rupture and runout of the blade. The appropriate temperature(1,520 ℃ for upper region and 1,500 ℃ for lower region) of the heating furnace can eliminate the wide-angle grain boundary, the deviation of grain and the run-out caused by the shell crack. The holding time after pouring(3-5 min) can promote the growth of competitive grains and avoid a great deviation of columnar grains along the crystal orientation <001>, resulting in a straight and uniform grain structure. In addition, to avoid the formation of wrinkles and to ensure a smooth blade surface, the withdrawal rate should be no greater than the growth rate of grain. It is also found that the dendritic space of the blade decreases with the rise of solidification rate, and increases with the enlarging distance between the solidification position and the chill plate. 展开更多
关键词 liquid metal cooling (lmc) HEAVY-DUTY gas turbine large-size blade directional SOLIDIFICATION microstructure
下载PDF
LMC法定向凝固抽拉速率对DD488单晶高温合金组织和持久性能的影响 被引量:2
2
作者 陈晶阳 吴文津 +4 位作者 李青 张明军 汤鑫 曹腊梅 肖程波 《金属热处理》 CAS CSCD 北大核心 2018年第6期111-116,共6页
研究了液态金属冷却(LMC)法定向凝固抽拉速率对DD488单晶高温合金组织和980℃/250 MPa持久性能的影响。结果表明:增大抽拉速率能够显著细化合金的枝晶组织,减小铸态共晶含量和γ'相尺寸。同时,随着抽拉速率的增大,标准热处理后的γ... 研究了液态金属冷却(LMC)法定向凝固抽拉速率对DD488单晶高温合金组织和980℃/250 MPa持久性能的影响。结果表明:增大抽拉速率能够显著细化合金的枝晶组织,减小铸态共晶含量和γ'相尺寸。同时,随着抽拉速率的增大,标准热处理后的γ通道宽度减小,γ'相体积分数增加。抽拉速率较小时(5 mm/min),合金980℃/250 MPa持久寿命为70.3 h,随着抽拉速率提高至8 mm/min,持久寿命增大到107.5 h。DD488合金持久寿命的提高得益于在较高的抽拉速率下合金标准热处理组织中的γ'相体积分数增加,γ通道宽度减小,并且共晶组织基本消除。 展开更多
关键词 DD488合金 液态金属冷却(lmc) 抽拉速率 显微组织 持久性能
原文传递
单晶高温合金杂晶形成倾向性数值模拟 被引量:1
3
作者 李传涛 玄伟东 +3 位作者 刘欢 兰亮 李传军 任忠鸣 《上海金属》 CAS 北大核心 2017年第3期51-56,共6页
采用液态金属冷却法(LMC)实现定向凝固,运用ProCAST有限元软件包计算了DD483高温合金的定向凝固过程。在试验验证获得合理模拟参数的基础上,模拟抽拉速度和平台尺寸对高温合金变截面试样定向凝固过程温度场的影响,并采用ProCAST中的元... 采用液态金属冷却法(LMC)实现定向凝固,运用ProCAST有限元软件包计算了DD483高温合金的定向凝固过程。在试验验证获得合理模拟参数的基础上,模拟抽拉速度和平台尺寸对高温合金变截面试样定向凝固过程温度场的影响,并采用ProCAST中的元胞自动机(CA)与有限元(FE)耦合模块计算相应条件下的微观组织,探究拉速和平台尺寸对高温合金变截面试样平台区域杂晶形成的影响。结果表明,冷却曲线模拟结果与试验结果吻合良好;拉速越大,杂晶形成倾向越大;同样,平台尺寸越大,杂晶形成倾向也越大;试样平台尺寸越大,获得单晶的临界拉速越小。 展开更多
关键词 液态金属冷却法 PROCAST 高温合金 抽拉速度 平台尺寸 杂晶
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部