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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Intergranular M23C6 Carbide Precipitation Behavior and Its Effect on Mechanical Properties of Inconel 690 Tubes
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Intergranular M23C6 Carbide Precipitation Behavior and Its Effect on Mechanical Properties of Inconel 690 Tubes

机译:晶间M23C6碳化物的析出行为及其对Inconel 690管力学性能的影响

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The precipitation behaviors of intergranular carbides on various types of grain boundaries and their effect on tensile properties at room temperature were investigated systematically in Inconel 690 tubes. Precipitates of intergranular chromium carbide were identified as Cr-rich M23C6. It was observed that the M23C6 carbide behavior is obviously influenced by grain boundary character and interfacial energy. The intergranular M23C6 carbides were suppressed on low-angle boundaries and coincidence-site lattice boundaries. Plenty of M23C6 carbides precipitated at random high-angle boundaries with high interfacial energy. With increasing aging time, the precipitated carbides became coarse and grew into the matrix near grain boundaries. The ultimate tensile strength and elongation of the Inconel 690 tube solution annealed at 1373 K (1100 A degrees C) for 15 minutes were 671.2 MPa and 47.2 pct, respectively. After aging treatment, the ultimate tensile strength and elongation drastically decreased with increasing aging time. The tensile test generated a number of cracks at the grain boundaries due to coarse intergranular M23C6 carbides near the fracture. Both the decrease of ultimate tensile strength and elongation of the aged Inconel 690 tube were mainly caused by breaking of the coarse M23C6 carbide and reduced chromium concentration in the matrix.
机译:在Inconel 690管中,系统地研究了晶间碳化物在不同类型晶界上的析出行为及其对室温拉伸性能的影响。晶间碳化铬的沉淀被鉴定为富Cr M23C6。观察到,M23C6碳化物的行为明显受晶界特征和界面能的影响。晶间M23C6碳化物被抑制在低角度边界和重合点晶格边界上。大量M23C6碳化物以高界面能沉淀在随机的高角度边界上。随着时效时间的增加,析出的碳化物变得粗大并长大到晶界附近的基体中。在1373 K(1100 A摄氏度)下退火15分钟的Inconel 690管溶液的极限拉伸强度和伸长率分别为671.2 MPa和47.2 pct。时效处理后,随着时效时间的增加,极限抗拉强度和伸长率急剧下降。拉伸试验由于裂纹附近的粗晶间M23C6碳化物而在晶界产生了许多裂纹。老化的Inconel 690管的极限抗拉强度和伸长率的降低均主要是由于粗大的M23C6碳化物的破裂和基体中铬浓度的降低引起的。

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