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Effects of Coincident Site Lattice Grain Boundaries and Ordered Structures on Mechanical Properties of High Silicon Steel

机译:巧晶晶格晶界和有序结构对高硅钢力学性能的影响

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> The coincident site lattice (CSL) grain boundaries and ordered structures of high silicon steel are investigated through different warm rolling reductions. The results reveal that the plastic deformation ability of Fe–6.9 wt%Si warm‐rolled sheet mainly depends on the total content of special ∑CSL boundaries and antiphase domain of ordered structures. With the increase of rolling reductions from 65% to 86%, the superdislocation glide behavior of warm‐rolled sheets is changed into the single dislocation glide, as well as the fragmentation behavior of ordered structures at different rolling reductions causes a decrease in the sizes of antiphase domains. While the sharp and homogeneous distribution of γ ‐orientation texture is beneficial to obtain a large fraction of ∑CSL boundaries that have great contribute to high resistance to the initiation and propagation of cracks. In the three‐point bending tests, the values of fracture deflection improves from 3.5?mm to 12.1?mm, and the mixed fracture mode of inter‐and trans‐granular is transformed into quasi‐cleavage fracture mode, which indicates the high rolling reduction is conducive to the improvement of plastic deformation ability.
机译: <第XML:ID =“SRIN201800430-SEC-0001”> > 通过不同的温度轧制降低,研究了一致的部位晶格(CSL)晶界和高硅钢的有序结构。结果表明,Fe-6.9wt%Si加卷板的塑性变形能力主要取决于有序结构的特殊ΣCSL边界和抗磷酶结构域的总含量。随着轧制减少的增加65%至86%,温轧纸的超级分配滑动行为被改变为单一位错滑动,以及不同轧制减少时有序结构的碎片行为导致尺寸的减少反相域。虽然剧烈和均匀的分布 γ - 能量纹理有利于获得大部分ΣCSL边界,其具有很大促进对裂缝的启动和传播的高抗性。在三点弯曲试验中,断裂挠曲的值改善了3.5μm至12.1×mm,并且将与反式粒状间的混合断裂模式转化为准切割裂缝模式,这表明高轧制减少有利于改善塑性变形能力。

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