Magnetic and Magnetoacoustic Parameters for Estimating the Degree of Recrystallization and Anisotropy of a Nickel–Iron Alloy

IF 0.9 4区 材料科学 Q4 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
V. N. Perov, L. V. Mikhailov, V. N. Kostin, A. M. Povolotskaya
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Abstract

The influence of varying annealing temperature on magnetic and magnetoacoustic properties of cold-deformed alloy 97% Ni, 3% Fe has been investigated. The study of the microstructure of the nickel–iron alloy showed the presence of rolling texture up to annealing temperatures of approximately 500°C. With further increase of annealing temperature of the investigated alloy, as a result of recrystallization, the texture disappears and anisotropy of its magnetic and magnetoacoustic parameters decreases considerably. The sensitivities of magnetic and magnetoacoustic parameters to the rolling-induced anisotropy of the nickel–iron alloy are compared. It is shown that the differential magnetic permeability measured with the DIUS-1.21M hardware and software system is a parameter most sensitive to anisotropy.

Abstract Image

Abstract Image

估算镍铁合金再结晶程度和各向异性的磁声参数
研究了不同退火温度对97% Ni, 3% Fe冷变形合金磁性和磁声性能的影响。对镍铁合金微观组织的研究表明,在500℃左右的退火温度下,镍铁合金仍存在轧制织构。随着退火温度的升高,再结晶导致织构消失,磁声参数各向异性显著降低。比较了磁参数和磁声参数对镍铁合金轧制诱导各向异性的敏感性。结果表明,用DIUS-1.21M软硬件系统测量的差磁导率是对各向异性最敏感的参数。
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来源期刊
Russian Journal of Nondestructive Testing
Russian Journal of Nondestructive Testing 工程技术-材料科学:表征与测试
CiteScore
1.60
自引率
44.40%
发文量
59
审稿时长
6-12 weeks
期刊介绍: Russian Journal of Nondestructive Testing, a translation of Defectoskopiya, is a publication of the Russian Academy of Sciences. This publication offers current Russian research on the theory and technology of nondestructive testing of materials and components. It describes laboratory and industrial investigations of devices and instrumentation and provides reviews of new equipment developed for series manufacture. Articles cover all physical methods of nondestructive testing, including magnetic and electrical; ultrasonic; X-ray and Y-ray; capillary; liquid (color luminescence), and radio (for materials of low conductivity).
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