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COMPLEX MAGNETIC INVESTIGATION OF FERRITIC STAINLESS STEEL

机译:铁素体不锈钢复杂磁力研究

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Magnetic Barkhausen noise measurement (MSN) is a relatively new non-destructive detection technique. Its working principle is based on Barkhausen discontinuities or noise when a ferromagnetic material is subjected to a varying magnetic field. MEN is being used to characterise the stress state of a ferritic stainless steel (AISI 430). Other magnetic parameters such as saturation induction (Byax), remnant induction (BR), coercive field (He) and maximal relative permeability (PMax) derived from the hysteresis loop have also been used to support the results achieved using MEN. Microstructural changes due to cold working and heat treatments were characterized by the applied magnetic measurements. The MEN technique was proved to be a useful non-destructive and quantitative method for microstuctural investigation of the investigated ferritic stainless steel.
机译:磁性Barkhausen噪声测量(MSN)是一种相对较新的非破坏性检测技术。 当铁磁材料经受不同的磁场时,其工作原理基于巴克豪森的不连续性或噪音。 男性用于表征铁素体不锈钢(AISI 430)的应力状态。 其他磁性参数如饱和感应(BYAX),残余诱导(BR),矫顽磁场(HE)和来自滞后环的最大相对渗透率(PMAX)也被用于支持使用男性实现的结果。 通过冷加工和热处理引起的微观结构变化的特征在于应用磁测量。 被证明,男性技术是对研究铁素体不锈钢的微动画研究的一种有用的非破坏性和定量方法。

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