Prediction of the Mechanical Properties of P91 Steel by Means of Magneto-acoustic Emission and Acoustic Birefringence

被引:0
作者
Katarzyna Makowska
Leszek Piotrowski
Zbigniew Ludwik Kowalewski
机构
[1] Motor Transport Institute,Institute of Fundamental Technological Research
[2] Gdańsk University of Technology,undefined
[3] Polish Academy of Sciences,undefined
来源
Journal of Nondestructive Evaluation | 2017年 / 36卷
关键词
Creep; Plastic deformation; Acoustic birefringence; Magnetoacoustic emission; Magnetic hysteresis loop;
D O I
暂无
中图分类号
学科分类号
摘要
The paper describes an application of non-destructive volumetric magnetic and ultrasonic techniques for evaluation of the selected mechanical parameter variations of P91 steel having direct influence on its suitability for further use in critical components used in power plants. Two different types of deformation processes were carried out. First, a series of the P91 steel specimens was subjected to creep and second, one to plastic deformation in order to achieve the material with an increasing strain level up to 10%. Subsequently, non-destructive and destructive tests were performed. Magnetic methods based on measurements of magnetoacoustic emission and magnetic hysteresis loop changes as well as the ultrasonic method based on acoustic birefringence measurements, were applied. Finally, the static tensile tests were carried out in order to evaluate the mechanical parameters. It is shown that some relationships between the selected parameters coming from the non-destructive and destructive tests may be formulated.
引用
收藏
相关论文
共 87 条
[1]  
Govindaraju WR(1997)Nondestructive evaluation of creep damage in power-plant steam generators and piping by magnetic measurements NDT&E Int. 30 11-17
[2]  
Kaminski DA(2008)Comparison of properties of magnetoacoustic emission and mechanical Barkhausen effects for P91 steel after plastic flow and creep IEEE Trans. Magn. 44 3273-3276
[3]  
Devine MK(2010)On the possibility of the application of magnetoacoustic emission intensity measurements for the diagnosis of thick-walled objects in the industrial environment Meas. Sci. Technol. 21 1-8
[4]  
Biner SB(2007)Magnetic evaluation of creep in modified 9Cr-1Mo steel Scr. Mater. 57 813-816
[5]  
Jiles DC(2010)Study of high-temperature ageing and creep on bainitic 5Cr-0.5Mo steel by magnetic NDE techniques J. Magn. Magn. Mater. 322 589-595
[6]  
Augustyniak B(2010)A review of non-destructive techniques for the detection of creep damage in power plant steels NDT&E Int. 43 555-567
[7]  
Chmielewski M(1986)Magnetoacoustic and Barkhausen emission in ferromagnetic materials Philos. Trans. R. Soc. Lond. A320 363-378
[8]  
Piotrowski L(2007)The effect of microstructure and applied stress on magnetic Barkhausen emission in induction hardened steel J. Mater. Sci. 42 4364-4371
[9]  
Kowalewski ZL(2004)Magneto-acoustic emission for the characterisation of ferritic stainless steel microstructural state J. Magn. Magn. Mater. 271 381-389
[10]  
Piotrowski L(1984)Magnetomechanical acoustic emission of ferromagnetic materials at low magnetization levels (Type I Behaviour) J. Acoust. Emiss. 3 144-156