鑄坯取樣位置對經濟型雙相不銹鋼2101熱塑性的影響
Influence of the sample position of the cast on the thermoplasticity of lean duplex stainless steel 2101
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摘要: 為了解大型鑄錠在軋制過程中產生邊裂的原因,通過對比鑄坯中部和邊部的成分、不同溫度下相比例、兩相硬度差等的變化規律,利用光學顯微鏡,掃描電子顯微鏡和電子背散射衍射觀察分析試驗鋼的微觀組織和斷口形貌,分析了邊部容易開裂的原因.結果表明,和中部相比,邊部晶粒細小,且鐵素體含量較多,但邊部開裂更嚴重.這說明晶粒尺寸和相比例并不是影響使邊部開裂嚴重的主要原因.而和中部比,鑄錠邊部試樣兩相硬度差較大,使兩相在熱變形過程中應變分配不均勻,容易在相界處產生應力集中,導致開裂.同時邊部析出物較中部多,相界析出物的產生破壞了基體的連續性,容易在相界處產生顯微裂紋,導致開裂.Abstract: To understand the reasons behind edge cracks of large-scale cast ingot during hot deformation, this paper compared the compositions, phase ratios at different temperatures, and differences in the hardness of two phases in the middle and edges of cast ingots. The microstructure and fracture morphology of the samples were observed by optical microscopy, scanning electron microscopy, and electron back-scattered diffraction. The results indicate the presence of smaller grains and larger ferrite content in the edge portion than in the middle. However, edge cracking is also more serious than middle cracking, which indicates that grain size and phase proportion are not the main factors influencing the side cracking of ingots. Compared with that of the middle portion, the hardness difference between the two phases of the ingot edge is larger. Thus, the strain distribution of the two phases varies during hot deformation, and stress concentration occurs along the phase boundary. More precipitates are observed in the phase boundary of the ingot edge than in that of the middle specimens, and these precipitates are believed to destroy the continuity of the matrix, leading to microcracks.