Characterization of creep–fatigue in ferritic 9Cr–1Mo–V–Nb steel using ultrasonic velocity
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference22 articles.
1. Microstructural stability and creep rupture strength of the martensitic steel P92 for advanced power plant
2. Stabilization of martensitic microstructure in advanced 9Cr steel during creep at high temperature
3. Microstructural study of creep rupture in a 12% chromium ferritic steel
4. Laser ultrasonic absorption measurement in fatigue-damaged materials
5. Nondestructive characterization of materials (ultrasonic and micromagnetic techniques) for strength and toughness prediction and the detection of early creep damage
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1. High sensitivity ultrasonic NDT technique for detecting creep damage at the early stage in power plant steels;International Journal of Pressure Vessels and Piping;2022-04
2. Microstructure, corrosion and mechanical properties characterization of AISI type 316L(N) stainless steel and modified 9Cr-1Mo steel after 40,000 h of dynamic sodium exposure at 525 °C;Journal of Nuclear Materials;2019-04
3. Monitoring of Thermal Aging of Aluminum Alloy via Nonlinear Propagation of Acoustic Pulses Generated and Detected by Lasers;Applied Sciences;2019-03-21
4. A study of the noncollinear ultrasonic-wave-mixing technique under imperfect resonance conditions;Ultrasonics;2015-03
5. Creep damage characterization of Ni-based superalloy by acoustic nonlinearity;Progress in Natural Science: Materials International;2012-08
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