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Effects of Temperature and Phase Transformation on Post-buckling Behavior of Non-oriented Electric Steel during Hot Finishing Rolling

机译:温度和相变对无取向电工钢热精轧后屈曲行为的影响

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The traditional buckling model is based on the assumption of homogeneous material. However, for non-oriented electrical steel with high-temperature phase transformation, the transverse differences of temperature and phase transformation during the hot finishing rolling result in uneven distribution of material properties in the dual-phase region. In order to study the effect of inhomogeneous material on the post-buckling behavior of strip, the relationships between tangent modulus and temperature in the austenite region and ferrite region are firstly obtained by hot compression experiments. Secondly, the transverse distribution function of tangent modulus is calculated according to the distributions of temperature and phase structure in the dual-phase region. Finally, the large deflection theory of thin plate is modified, and the elastic modulus constant is replaced by the distribution function of tangent modulus. The post-buckling model considering inhomogeneous material is established to analyze the effect of temperature and phase transformation on the wave height. The results show that strip thickness and tension have great effect on the post-buckling deformation of global longitudinal wave, but little effect on local longitudinal wave. The temperature drop and phase transformation at the strip edge have no significant effect on the wave heights of global and local center waves, but they reduce the wave heights of global and local edge waves by 6% and 20%, respectively.
机译:传统的屈曲模型基于均质材料的假设。但是,对于具有高温相变的无取向电工钢,在热精轧过程中温度和相变的横向差异导致在双相区域中材料性能的不均匀分布。为了研究不均匀材料对带材屈曲后行为的影响,首先通过热压实验获得了奥氏体区和铁素体区的切线模量与温度的关系。其次,根据温度和相结构在双相区的分布,计算出切线模量的横向分布函数。最后,修改了薄板的大挠度理论,用切线模量的分布函数代替了弹性模量常数。建立了考虑材料不均匀的后屈曲模型,以分析温度和相变对波高的影响。结果表明,带材厚度和张力对整体纵波的屈曲后变形影响较大,而对局部纵波的影响较小。条带边缘的温度下降和相变对整体和局部中心波的波高没有​​显着影响,但是它们分别使整体和局部边缘波的波高降低了6%和20%。

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