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Characterization of Matrices and Graphite Forms of Cast Irons by Electromagnetic Nondestructive Evaluation

机译:电磁非破坏性评估表征铸铁铸铁的矩阵和石墨形式

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摘要

Mechanical properties of cast irons are mainly determined by two factors of microstructures, graphite forms and matrices. Both graphite forms and matrices affect electromagnetic properties very complicatedly. The authors have investigated electromagnetic properties of flake graphite cast irons and ductile cast irons in relation to the their microstructures, and applied electromagnetic nondestructive evaluation method such as eddy current method and DC potential drop method to characterize microstructures of various kind of cast irons. In this paper, we review relationship between electromagnetic properties and microstructures. Issues discussed include ferrite and pearlite ratio in ductile cast irons which decides the hardness, and graphite forms in fake graphite cast irons which is important to estimate damping and wear properties of flake graphite cast irons. Finally, we discuss feasibilities of some applications of electromagnetic nondestructive evaluation methods to characterize graphite forms and matrices of cast irons.
机译:铸铁的力学性能主要由微观结构,石墨形式和矩阵的两个因素决定。石墨形式和矩阵都影响了电磁特性非常复杂。作者对其微观结构的剥落石墨铸铁和延展岩铸铁的电磁特性研究,以及施加的电磁非破坏性评估方法,如涡流方法和直流电位下落方法,以表征各种铸铁的微观结构。在本文中,我们审查了电磁特性和微观结构之间的关系。讨论的问题包括延性铸铁中的铁素体和珠光体比,该铸铁在假石墨铸铁中的硬度和石墨形式,这对于剥落石墨铸铁的阻尼和磨损性能非常重要。最后,我们讨论了电磁非破坏性评估方法的一些应用的可行性,以表征铸铁的石墨形式和矩阵。

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