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Directional solidification casting technology of heavy-duty gas turbine blade with liquid metal cooling (LMC) process

机译:液态金属冷却(LMC)工艺重型燃气轮机叶片定向凝固铸造技术

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摘要

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 °C for upper region and 1,500 °C 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 , 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.
机译:在这项工作中,一些重要因素如陶瓷壳体强度,保温温度,站立时间和取出率,影响了与液态金属冷却(LMC)工艺的定向凝固的大型燃气轮机的可成形性的可成形性,通过微观结构分析结合的方法研究了研究。结果表明,陶瓷壳具有中强度(高温弯曲强度为8MPa,热抗冲击性后的弯曲强度为12MPa,剩余弯曲强度为20MPa)可以防止叶片的破裂和跳动。加热炉的适当温度(上部区域的1,520℃和1,500℃)可以消除广角晶界,谷物的偏差和由壳体裂缝引起的跳动。浇注后的保持时间(3-5分钟)可以促进竞争性晶粒的生长,避免柱状颗粒沿晶体取向的巨大偏差,导致晶粒结构直率和均匀的晶粒结构。另外,为了避免形成皱纹并确保光滑的叶片表面,提取率不应大于谷物的生长速率。还发现叶片的树突空间随着凝固速率的升高而降低,并且随着凝固位置和冷却板之间的增大距离而增加。

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