磁噪声法在铁磁材料力学各向异性控制中的应用

IF 0.2 Q4 INSTRUMENTS & INSTRUMENTATION
V. Busko, A. A. Osipov
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引用次数: 1

摘要

铁磁材料性能各向异性的存在决定了其研究和控制的必要性,因为它对细部、产品和结构的基本物理力学特性有重大影响。本研究的目的是通过实验研究磁噪声法无损检测铁磁材料力学性能的可能性,特别是金属板材的正向各向异性系数Rn值、电钢弹性变形下的机械应力值以及铁磁材料物理力学性能的各向异性。由于力学各向异性与磁各向异性有关,因此采用巴克豪森效应(MBE)的磁方法对其进行研究,其信息参数属于磁各向异性。用MBE对一组冲压钢板样品的各向异性评价结果与制造商测量的Rn值进行了比较,结果表明它们非常吻合。这揭示了使用MBE评价Rn水平的可能性。构造了Barkhausen传感器在试样表面的圆旋转装置和试样内弹性弯曲应力的形成装置。利用MBE研究不同材料的磁各向异性以及弹性拉伸和弯曲压应力对其的影响。研究发现,考虑到试样中产生的应力符号,电工钢试样的弹性变形会导致磁性噪声水平和圆形图形状的剧烈变化。结果表明,由于在生产过程中进行冷轧,电工钢样品由于轧制板的方向而具有明显的织构。在考虑范围内产生的弹性应力实际上不会改变材料轧制后的织构(诱导的晶体各向异性)。研究结果可用于研究、监测和测试铁磁材料的各向异性、晶体织构、结构非均质性,以及在实验室和车间条件下使用磁噪声方法解决其他问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Magnetic Noise Method to Control the Mechanical Anisotropy of Ferromagnetic Materials
Presence of anisotropy of the ferromagnetic materials' properties determines the need for its research and control, since it has a significant impact on the basic physicomechanical characteristics of details, products and constructions. The aim of the work was to experimentally investigate the possibility of using the magnetic noise method for non-destructive testing of mechanical properties of ferromagnetic materials particularly value of the coefficient of normal anisotropy Rn of sheet metal, mechanical stresses under elastic deformation of electrical steel and the anisotropy of the physical and mechanical properties of ferromagnetic materials.Since the mechanical anisotropy is related to the magnetic anisotropy, the magnetic method of the Barkhausen effect (MBE) was used in its study, the informative parameters of which belong to the group of magnetic anisotropy. Comparison of the results of anisotropy evaluation on a set of samples of stamped sheet steel using the MBE with values Rn measured by the manufacturer showed their close match. This revealed the possibility of Rn level evaluation using the MBE. Device for circular rotation of the Barkhausen transducer on the sample surface and device for forming of elastic bending stresses in the sample were constructed. To study the magnetic anisotropy in various materials and the impact of elastic tensile and compressive stresses by bending on it using the MBE.It has been found that the elastic deformation in samples of electrical steel leads to dramatic change of the magnetic noise level and the shape of the circular diagrams, taking into account the sign of the stresses generated in the sample. It was established that as a result of cold rolling in the production process, electrical steel samples have a pronounced texture due to the direction of rolled sheet. The created elastic stresses in the considered range practically do not change the texture (induced crystallographic anisotropy) after the material rolling.The results can be useful for studying, monitoring and testing of anisotropy, crystallographic texture, structural heterogeneity of ferromagnetic materials in the form of sheet metal, sheet steel and coil steel, sheet metal forming and for solving other problems using the magnetic noise method in aboratory and workshop conditions.
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来源期刊
Devices and Methods of Measurements
Devices and Methods of Measurements INSTRUMENTS & INSTRUMENTATION-
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