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超超临界机组汽轮机转子材料25Cr2MoVA钢高周疲劳性能分析 被引量:1
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作者 梁军 王斌 +2 位作者 杜晋峰 张峥 赵子华 《热力发电》 CAS 北大核心 2016年第5期112-116,共5页
超超临界机组汽轮机转子服役期所受的疲劳周次高于传统疲劳设计规范规定的循环周次,因此采用传统疲劳设计规范对汽轮机转子实际运行过程中超过108循环周次的部件进行疲劳寿命设计及分析是危险的。本文针对符合汽轮机转子材料要求的25Cr2... 超超临界机组汽轮机转子服役期所受的疲劳周次高于传统疲劳设计规范规定的循环周次,因此采用传统疲劳设计规范对汽轮机转子实际运行过程中超过108循环周次的部件进行疲劳寿命设计及分析是危险的。本文针对符合汽轮机转子材料要求的25Cr2MoVA钢进行了高周疲劳试验,基于无疲劳极限半对数曲线模型、有疲劳极限半对数曲线模型和有疲劳极限半对数双线性模型对疲劳试验数据拟合得到P-S-N曲线,并分析了疲劳断口形貌。结果表明:25Cr2MoVA钢108循环周次的条件疲劳强度极限为465 MPa;基于无疲劳极限模型拟合的P-S-N曲线分析超超临界百万机组汽轮机转子材料运行可靠性符合运行实际和材料本征特性要求;疲劳断口表明裂纹源均萌生于表面,裂纹扩展呈放射状;断裂试样经历过程为P-S-N曲线高应力短寿命阶段。 展开更多
关键词 超超临界机组 汽轮机转子 25cr2mova 条件疲劳极限 无疲劳极限 裂纹源
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蠕变-疲劳载荷下25 Cr2 MoVA 钢的循环应力松弛行为 被引量:2
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作者 张红才 郑小涛 +1 位作者 轩福贞 王正东 《压力容器》 2014年第9期23-27,共5页
试验测试了500℃时高温螺栓材料25Cr2MoVA在应变控制的蠕变—疲劳载荷下的循环应力松弛行为,重点考虑了不同应变幅和峰值保持时间对材料应力松弛行为的影响。研究表明,保持阶段的蠕变变形和循环加载阶段的粘塑性变形共同加速了25Cr2MoV... 试验测试了500℃时高温螺栓材料25Cr2MoVA在应变控制的蠕变—疲劳载荷下的循环应力松弛行为,重点考虑了不同应变幅和峰值保持时间对材料应力松弛行为的影响。研究表明,保持阶段的蠕变变形和循环加载阶段的粘塑性变形共同加速了25Cr2MoVA的应力松弛速率,且应变幅小的时候,材料的循环松弛速率更大。 展开更多
关键词 25cr2mova 蠕变-疲劳 应力松弛 螺栓
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Analysis on hot deformation and following cooling technology of 25Cr2Ni4MoVA steel 被引量:1
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作者 Jie Yang Zong-hui Su Feng-li Sui 《Journal of Iron and Steel Research International》 SCIE EI CSCD 2021年第10期1305-1314,共10页
The true stress–true strain curves of 25Cr2Ni4MoVA steel were obtained by uniaxial compression experiments at 850–1200℃ in the strain rate range of 0.001–10.0 s^(−1).And the dynamic continuous cooling transformati... The true stress–true strain curves of 25Cr2Ni4MoVA steel were obtained by uniaxial compression experiments at 850–1200℃ in the strain rate range of 0.001–10.0 s^(−1).And the dynamic continuous cooling transformation curves were obtained at the cooling rate range of 0.5–15.0℃ s^(−1) from the austenitization temperature of 1000℃ to the room temperature by pre-strain of 0.2 as well.The power dissipation map and the dynamic continuous cooling transformation diagram were constructed based on the data provided by these curves.Compared with the optical micrographs of the compressed samples,the full dynamic recrystallization region is located between 1000 and 1200℃ and at the strain rate range from 0.01 to 10.0 s^(−1) with the power dissipation efficiency not less than 0.33.In the full dynamic recrystallization region,the power dissipation efficiency increases and the dynamic recrystallization activation energy decreases with the temperature increasing.With the strain rate decreasing,the power dissipation efficiency increases firstly and then starts to decrease as the strain rate is less than 0.1 s^(−1),and dynamic recrystallization activation energy changes on the contrary.According to the dynamic continuous cooling transformation diagram,slow cooling is a better way for the hot-deformed piece with large size or complex shape to avoid cracking as the temperature of the piece is lower than 400℃,and different cooling ways can be used for the hot-deformed piece with small size and simple shapes to obtain certain microstructure and meet good compressive properties. 展开更多
关键词 25Cr2Ni4MoVA steel Power dissipation map Dynamic continuous cooling transformation diagram Hot deformation Cooling rate
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