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FEM Analysis of Stress on Roll Surface Black Oxide Layers Exfoliation in Hot Strip Rolling

机译:热轧带钢表面氧化层剥落应力的有限元分析

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To understand the mechanism of formation and exfoliation, black oxide layers were investigated, and the effects of stress on the exfoliation were analyzed by finite element method (FEM). The roll surface on which black oxide layers form is composed mainly of Fe_3O_4, which is caused by the oxidation of the roll material itself. Cracks form and are easily propagated along M_3C- and M_7C_3-type carbides, which leads to further cracking along M_3C and M_7C_3 carbides as a result of contact stress fatigue produced by cyclic mechanical stresses that normally occur during the rolling process. Thermal fatigue of the roll surface is produced by the thermal cycles created alternately by contact with the hot strip and the cooling water on the roll. The generation and propagation of cracks in the black oxide layers during rolling is promoted by circumference compressive stress at roll surface. Under this stress, the exfoliation of the black oxide layers happens on the roll surface.
机译:为了了解形成和剥落的机理,研究了黑色氧化物层,并通过有限元方法(FEM)分析了应力对剥落的影响。形成黑色氧化物层的轧辊表面主要由Fe_3O_4组成,这是由轧辊材料本身的氧化引起的。裂纹形成并易于沿着M_3C和M_7C_3型碳化物传播,由于在轧制过程中通常发生的循环机械应力产生的接触应力疲劳,导致沿着M_3C和M_7C_3碳化物进一步开裂。辊表面的热疲劳是由与热轧带和辊上的冷却水接触而交替产生的热循环产生的。在轧制过程中,黑色氧化物层中裂纹的产生和传播是通过轧辊表面的圆周压缩应力来促进的。在该应力下,黑色氧化物层的剥离发生在辊表面上。

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