热轧带钢氧化铁皮拉伸开裂行为

Tensile cracking behavior of oxide scale in hot-rolled steel

  • 摘要: 采用X射线衍射仪(XRD)、扫描电子显微镜(SEM)和万能拉力试验机,研究了Q235-A带钢氧化铁皮的组织、结构及其开裂行为.结果表明,氧化铁皮的成分主要为Fe3O4、Fe2O3和Fe,含有少量的FeO,氧化层厚度比较均匀,约为10 μm,结构致密且与基体结合较好.拉伸实验表明,随着应变的增加,裂纹条数增加呈先慢,后快,再慢的规律.应变达到0.05%时氧化铁皮开始出现裂纹,当应变在0.08%~0.10%范围内裂纹条数随应变增加非常明显,当应变超过0.10%时裂纹条数增加缓慢,应变超过0.15%时裂纹条数几乎不再增加.

     

    Abstract: The microstructure, structure, and cracking behavior of Q235-A strip iron oxide skin were studied using X-ray diffraction (XRD), scanning electron microscopy (SEM), and a universal tensile testing machine. The results show that the composition of the iron oxide mainly consists of Fe3O4, Fe2O3, and Fe, together with small amount of FeO, the oxide layer has the same thickness all over, about 10 μm, the structure is dense, and the matrix is better connected. The tensile experiments show that with increasing strain, the increase in the number of cracks is at first slow, then fast, then slow again. When the strain reaches 0.05%, its iron oxide skin begins to crack; the number of cracks increases with increasing strain in the range 0.08% -0.10%. When the strain exceeds 0.10%, the crack number increases slowly, and when the strain exceeds 0.15%, the number of cracks stops grow.

     

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