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Strengthening of a thin austenitic stainless steel coil by cold wavy rolling with no magnetic and dimensional changes

机译:冷波轧轧辊加强薄型奥氏体不锈钢线圈,无磁性尺寸变化

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摘要

A comparison of the effects of wavy rolling and cold rolling on microstructure variation, phase evolution, tensile and magnetic properties of a thin coil of Fe-18.47Cr-8.10Ni-0.94Mn austenitic stainless steel was made at room temperature. Wavy rolling led to strengthening with no change in magnetic property and thickness, unlike the conventional cold rolling that changed all these properties by deformation induced martensitic transformation, in addition to substructure evolution. The yield strength of 413MPa and magnetic saturation 3.7 emu/g under mill-annealed condition increased, respectively, to 1208MPa and 11.8 emu/g, upon four cycles of wavy rolling. While the maximum yield strength of 1790MPa could be achieved by combining this stage of four cycles of wavy rolling with subsequent 50% conventional cold rolling, the magnetic saturation increased to 73.3 emu/g by deformation induced martensitic transformation caused by the latter.
机译:在室温下,在室温下制备了波动轧制和冷轧对微结构变化的影响,在Fe-18.47Cr-8.10Ni-0.94Mn -0Ni-0.94mN奥氏体不锈钢的薄线圈中的相速,拉伸和磁性。 对于磁性和厚度的磁性和厚度没有变化,波浪滚动导致磁性和厚度没有变化,除了子结构演化之外,通过变形诱导的马氏体转化改变所有这些性能的传统冷轧。 在研磨导磨条件下,413MPa和磁饱和度的屈服强度为413MPa和磁饱和度,分别增加至1208MPa和11.8 emu / g,在四个波浪轧制时。 虽然通过将这种波浪滚动的四个循环与随后的50%常规冷轧相结合来实现1790MPa的最大屈服强度,但通过后者引起的变形诱导的马氏体转化,磁饱和度增加到73.3 emu / g。

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