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Development of Low Carbon Microalloyed High Strength Ultra-Thin Cast Strip Products Produced by the Castrip~ Process With Excellent Strength-Ductility Properties 被引量:3
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作者 C.R. Killmore K.R. Carpenter +6 位作者 H.R. Kaul D.G. Edelman J.M. Cairney S.P. Ringer J.G. Williams P.C. Campbell W.N. Blejde 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2011年第S1期846-850,共5页
The CASTRIP* process produces a range of high strength Ultra-thin Cast Strip (UCS) products (380-550 MPa) in thicknesses between 0.9 mm and 1.5 mm, which is very challenging to produce via conventional hot and cold ro... The CASTRIP* process produces a range of high strength Ultra-thin Cast Strip (UCS) products (380-550 MPa) in thicknesses between 0.9 mm and 1.5 mm, which is very challenging to produce via conventional hot and cold rolled processing routes. The twin roll CASTRIP process fully exploits the hardenability and strengthening potential of Nb in a low C-Mn-Nb-V microalloyed steel type. Significant microstructural strengthening from solute Nb was obtained, even at low microalloying levels, as well as modest Mn additions, through enhancing the hardenability and further strengthening was obtained in coated products by exploiting age hardening during processing on a continuous hot dip galvanising line. Atom probe tomography and TEM determined that Nb was retained in solid solution and subsequent age hardening resulted from the formation of Nb and V rich nanosized particles. Age hardening was achieved without loss of ductility producing galvanised strip with an excellent strength-ductility combination (Y.S. 】600 MPa, T.E. 】10%). 展开更多
关键词 strip casting MICROALLOYING NIOBIUM ntom probe tomography age hardening high strength castrip process
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Castrip流程与其他流程生产50钢脱碳特性分析
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作者 冯海玻 李少华 +2 位作者 汪水泽 冯庆晓 李化龙 《轧钢》 北大核心 2024年第5期180-187,共8页
为探究不同生产工艺对中高碳特殊钢脱碳特性的影响,利用金相法和电子探针(Electron Probe X-ray Micro-Analyzer,EPMA)法对Castrip流程、CSP流程和传统流程生产的50钢脱碳层进行表征对比,研究了不同制造流程的工艺特性对50钢脱碳的影响... 为探究不同生产工艺对中高碳特殊钢脱碳特性的影响,利用金相法和电子探针(Electron Probe X-ray Micro-Analyzer,EPMA)法对Castrip流程、CSP流程和传统流程生产的50钢脱碳层进行表征对比,研究了不同制造流程的工艺特性对50钢脱碳的影响规律。在传统流程生产的50钢观察到完全脱碳层和不完全脱碳层,金相法测得总脱碳层厚度197.2μm,单面脱碳层比例大于4%;而CSP流程及Castrip流程生产的50钢仅观察到不完全脱碳层,金相法测得脱碳层厚度分别为27.3μm和3.1μm,单面脱碳层比例均小于2%。EPMA法测得的传统流程、CSP流程及Castrip流程生产的50钢脱碳层厚度分别为165.0、28.8、8.4μm,厚度趋势同金相法相同。3种流程在控制50钢脱碳行为方面的差异主要来源于其热履历的不同,Castrip流程由于其从凝固至卷取仅25 s,省去了均热保温过程,同时在铸轧辊到热轧机前采用了保护气氛,使得其在中高碳特殊钢脱碳层控制方面具有极大的优势。利用Castrip流程生产中高碳特殊钢具有广阔的发展前景。 展开更多
关键词 脱碳 中高碳特殊钢 castrip流程 CSP流程 近终形制造
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