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Effect of Heat Treatment Process on Microstructure and Texture of Hot-Rolled Sheet of High-Silicon Steel

机译:热处理工艺对高硅钢热轧板组织和织构的影响

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摘要

The influences of heat treatment process (annealing temperature and cooling methods) on the micro structure and mechanic properties of 6.5 wt%Si steel for hot-rolled sheet products were studied by optical microscopy (OM), electron backscattered diffraction (EBSD), and microhardness tester. The results show that when the annealing temperature increases, the average grain sizes become very large similar to abnormal grain growth, but the effects of cooling methods are relatively small. The {001} (110) and {112} (110) textures weakened and {111 }(112) texture enhanced with the increase of annealing temperature, γ fiber texture is relatively high. The microhardness strengthens with increasing annealing temperature or decreasing cooling rate, which means that the plasticity weakens. Therefore, annealing temperature and cooling methods were believed to be mainly responsible for the improvement of plasticity, which may have a significant effect on the production of high-silicon steel.
机译:通过光学显微镜(OM),电子背散射衍射(EBSD)和显微硬度研究了热处理工艺(退火温度和冷却方法)对6.5 wt%Si钢热轧薄板组织和力学性能的影响。测试员。结果表明,当退火温度升高时,平均晶粒尺寸与异常晶粒生长相似,变得非常大,但是冷却方法的效果相对较小。随着退火温度的升高,{001}(110)和{112}(110)的织构减弱,{111}(112)的织构增强,γ纤维织构相对较高。显微硬度随着退火温度的升高或冷却速率的降低而增强,这意味着塑性减弱。因此,认为退火温度和冷却方法是塑性提高的主要原因,这可能对高硅钢的生产具有重要影响。

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