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烟气轮机涡轮盘锻造开裂原因分析 被引量:2

Analysis on Crack of Turbine Disk During Forging
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摘要 在TMTS热模拟机上采用等温压缩试验研究Waspaloy合金高温压缩变形行为,获得合金在温度为1000~1160℃、应变率为0.01~1s-1条件下的真应力-应变曲线,通过单向拉伸试验获得了该合金在温度为850~1250℃、应变率为0.01~1s-1条件下的伸长率-温度曲线。根据试验结果,应用Normalized Cockcroft&Latham韧性断裂准则,结合数值模拟技术对烟气轮机涡轮盘锻造开裂原因进行了分析。分析结果表明:模具和坯料的初锻温度过低是引起锻件开裂的重要原因。根据锻造开裂原因的分析结果,提出了避免开裂的工艺方案,并对新方案进行了数值模拟,后续的模拟结果证明,新方案可以有效避免锻造裂纹的产生。 The hot deformation behavior of Waspaloy nickel-based alloy were investigated by hot compression tests with TMTS simulated machine. The true stress-true strain curves under the temperature of 1000-1160℃ and strain rate of 0.01s~1s-1 were obtained. An analysis on the crack of turbine disk during forging was presented by numerical simulation technology based on the Normalized Cockcroft & Latham ductile fracture criterion, the turbine disk was made of Waspaloy alloy. The results show that the cracks in the turbine disk may be caused by the lower initial temperature of the turbine disk and the dies. According to the conclusion, an impropved forging process is suggested. The numerical simulation show that the improved forging process can avoid the crack.
出处 《热加工工艺》 CSCD 北大核心 2011年第21期187-190,共4页 Hot Working Technology
关键词 数值模拟 Waspaloy合金 涡轮盘 开裂分析 断裂准则 numerical simulation Waspaloy alloy turbine disk crack analysis fracture criterion
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