304不锈钢冷轧后的磁性

N. Mubarok, H. Notonegoro
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引用次数: 0

摘要

304奥氏体不锈钢(SS 304)广泛应用于石油和天然气工业,以抵抗高点蚀和应力腐蚀。然而,它的耐磨性非常有限,无法承受油井中产生的细砂颗粒。冷轧是提高304钢硬度的机械方法之一。这种方法使304不锈钢的晶体结构发生变形,使其相由奥氏体转变为马氏体。相变之后,这些材料的磁性能发生了变化。随着结构变形率的增大,磁饱和值增大,矫顽力变化。大量马氏体相的形成影响了磁饱和值。晶粒形状的变形对矫顽力有影响。其磁性的增强将响应于外部磁场。因此,可以通过磁相互作用来观察ss304的结构变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetism of Stainless Steel 304 Due to Cold Rolling
304 austenitic stainless steel (SS 304) is widely used in the oil and gas industry to resist high pitting and stress corrosion. However, It's wear resistance to withstand the fine sand particles carried out from the oil well is very limited. Cold rolling is one of the mechanical methods used to increase the hardness of SS 304 steel. This method causes a crystalline structure deformation of ss 304 and transforms their phase from austenite to martensite. The phase transformation is followed by the change of magnetic properties of these materials. The increasing percentage of structure deformation is followed by an increase of magnetic saturation value and a change of magnetic coercivity. A large population of martensite phase formed influenced the magnetic saturation value. While deforming of grain shape influenced the magnetic coercivity. The rise of its magnetic property will respond to an external magnetic field. Therefore, the observation of structural deformation of SS 304 can be identified by magnetic interaction.
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