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    胡冠桥, 曾燕屏, 王立军, 陈海林, 崔会杰. 新型无取向电工钢在退火过程中组织和织构取向的演变[J]. 机械工程材料, 2011, 35(9): 45-47.
    引用本文: 胡冠桥, 曾燕屏, 王立军, 陈海林, 崔会杰. 新型无取向电工钢在退火过程中组织和织构取向的演变[J]. 机械工程材料, 2011, 35(9): 45-47.
    HU Guan-qiao, ZENG Yan-ping, WANG Li-jun, CHEN Hai-lin, CUI Hui-jie. Evolution of Microstructure and Texture Orientation of A New Non-oriented Electrical Steel during Annealing[J]. Materials and Mechanical Engineering, 2011, 35(9): 45-47.
    Citation: HU Guan-qiao, ZENG Yan-ping, WANG Li-jun, CHEN Hai-lin, CUI Hui-jie. Evolution of Microstructure and Texture Orientation of A New Non-oriented Electrical Steel during Annealing[J]. Materials and Mechanical Engineering, 2011, 35(9): 45-47.

    新型无取向电工钢在退火过程中组织和织构取向的演变

    Evolution of Microstructure and Texture Orientation of A New Non-oriented Electrical Steel during Annealing

    • 摘要: 通过金相分析和电子背散射衍射技术研究了一种新型含铜无取向电工钢在950 ℃退火不同时间(3~180 s)空冷后的组织和织构取向的演变。结果表明: 该钢在退火3 s时的主要织构为α和γ线织构, 100〈110〉织构最强; 退火20 s时织构以〈111〉〈112〉、111〈110〉、112〈110〉、高斯织构和立方织构为主, 随着退火时间的延长, 高斯织构和立方织构强度呈减弱趋势; 合理控制保温时间有利于提高100、110面织构的占有率。

       

      Abstract: Evolution of microstructure and texture oriented of a new non-oriented electrical steel during annealing at 950 ℃ for different times(3-180) s and air cooling was studied by metallography and electron back-scattering diffraction analysis.The results show that after annealing for 3 s most of the texture oriented along α-fibre and γ-fibre,the intensity of 100〈110〉 was the strongest.111〈112〉,111〈110〉,112〈110〉,Gauss texture and cube texture were the main texture after annealing for 20 s,with the prolongation of annealing time the intensity of Gauss texture and cube texture decreased.The controlling of annealing time could contribute to the increase of 100 and 110 plane texture.

       

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